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Sleep Breath 20:387–394\nHe J, Wang Y, Hu H, Liao Q, Zhang W, Xiang X, Fan X (2017) Impact on the upper airway space of different types of orthognathic surgery for the correction of skeletal class III malocclusion: a systematic review and meta-analysis. Int J Surg 38:31–40\nHasebe D, Kobayashi T, Hasegawa M, Iwamoto T, Kato K, Izumi N, Takata Y, Saito C (2011) Changes in oropharyngeal airway and respiratory function during sleep after orthognathic surgery in patients with mandibular prognathism. Int J Oral Maxillofac Surg 40:584–592\nYang HJ, Jung YE, Kwon IJ, Lee JY, Hwang SJ (2020) Airway changes and prevalence of obstructive sleep apnoea after bimaxillary orthognathic surgery with large mandibular setback. Int J Oral Maxillofac Surg 49:342–349\nOn SW, Kim HJ, Cho DH, Moon YR, Il Song S (2019) Silent changes in sleep quality following mandibular setback surgery in patients with skeletal class III malocclusion: a prospective study. Sci Rep 9:9737\nJang SI, Ahn J, Paeng JY, Hong J (2018) Three-dimensional analysis of changes in airway space after bimaxillary orthognathic surgery with maxillomandibular setback and their association with obstructive sleep apnea. Maxillofac Plast Reconstr Surg 40:33\nFernandez-Ferrer L, Montiel-Company JM, Pinho T, Almerich-Silla JM, Bellot-Arcis C (2015) Effects of mandibular setback surgery on upper airway dimensions and their influence on obstructive sleep apnoea - a systematic review. J Craniomaxillofac Surg 43:248–253\nAurora RN, Casey KR, Kristo D, Auerbach S, Bista SR, Chowdhuri S, Karippot A, Lamm C, Ramar K, Zak R et al (2010) Practice parameters for the surgical modifications of the upper airway for obstructive sleep apnea in adults. Sleep 33:1408–1413\nZaghi S, Holty JE, Certal V, Abdullatif J, Guilleminault C, Powell NB, Riley RW, Camacho M (2016) Maxillomandibular advancement for treatment of obstructive sleep apnea: a meta-analysis. JAMA Otolaryngol Head Neck Surg 142:58–66\nHsieh YJ, Liao YF (2013) Effects of maxillomandibular advancement on the upper airway and surrounding structures in patients with obstructive sleep apnoea: a systematic review. Br J Oral Maxillofac Surg 51:834–840\nLouro RS, Calasans-Maia JA, Mattos CT, Masterson D, Calasans-Maia MD, Maia LC (2018) Three-dimensional changes to the upper airway after maxillomandibular advancement with counterclockwise rotation: a systematic review and meta-analysis. Int J Oral Maxillofac Surg 47:622–629\nBianchi A, Betti E, Tarsitano A, Morselli-Labate AM, Lancellotti L, Marchetti C (2014) Volumetric three-dimensional computed tomographic evaluation of the upper airway in patients with obstructive sleep apnoea syndrome treated by maxillomandibular advancement. Br J Oral Maxillofac Surg 52:831–837\nSchendel SA, Broujerdi JA, Jacobson RL (2014) Three-dimensional upper-airway changes with maxillomandibular advancement for obstructive sleep apnea treatment. Am J Orthod Dentofacial Orthop 146:385–393\nHatab NA, Konstantinovic VS, Mudrak JK (2015) Pharyngeal airway changes after mono- and bimaxillary surgery in skeletal class III patients: cone-beam computed tomography evaluation. J Craniomaxillofac Surg 43:491–496\nHong JS, Park YH, Kim YJ, Hong SM, Oh KM (2011) Three-dimensional changes in pharyngeal airway in skeletal class III patients undergoing orthognathic surgery. J Oral Maxillofac Surg 69:e401–e408\nLee ST, Park JH, Kwon TG (2019) Influence of mandibular setback surgery on three-dimensional pharyngeal airway changes. Int J Oral Maxillofac Surg 48:1057–1065\nPark JW, Kim NK, Kim JW, Kim MJ, Chang YI (2010) Volumetric, planar, and linear analyses of pharyngeal airway change on computed tomography and cephalometry after mandibular setback surgery. Am J Orthod Dentofacial Orthop 138:292–299\nPark SB, Kim YI, Son WS, Hwang DS, Cho BH (2012) Cone-beam computed tomography evaluation of short- and long-term airway change and stability after orthognathic surgery in patients with class III skeletal deformities: bimaxillary surgery and mandibular setback surgery. Int J Oral Maxillofac Surg 41:87–93\nShah DH, Kim KB, McQuilling MW, Movahed R, Shah AH, Kim YI (2016) Computational fluid dynamics for the assessment of upper airway changes in skeletal class III patients treated with mandibular setback surgery. Angle Orthod 86:976–982\nHsieh YJ, Chen YC, Chen YA, Liao YF, Chen YR (2015) Effect of bimaxillary rotational setback surgery on upper airway structure in skeletal class III deformities. Plast Reconstr Surg 135:361e-369e\nKim HS, Kim GT, Kim S, Lee JW, Kim EC, Kwon YD (2016) Three-dimensional evaluation of the pharyngeal airway using cone-beam computed tomography following bimaxillary orthognathic surgery in skeletal class III patients. Clin Oral Investig 20:915–922\nKim MA, Kim BR, Youn JK, Kim YJ, Park YH (2014) Head posture and pharyngeal airway volume changes after bimaxillary surgery for mandibular prognathism. J Craniomaxillofac Surg 42:531–535\nLee Y, Chun YS, Kang N, Kim M (2012) Volumetric changes in the upper airway after bimaxillary surgery for skeletal class III malocclusions: a case series study using 3-dimensional cone-beam computed tomography. J Oral Maxillofac Surg 70:2867–2875\nLi YM, Liu JL, Zhao JL, Dai J, Wang L, Chen JW (2014) Morphological changes in the pharyngeal airway of female skeletal class III patients following bimaxillary surgery: a cone beam computed tomography evaluation. Int J Oral Maxillofac Surg 43:862–867\nYang Y, Yang K, Zhao Y (2018) Three-dimensional changes in the upper airway of skeletal class III patients after different orthognathic surgical procedures. J Oral Maxillofac Surg 76:155–164\nUesugi T, Kobayashi T, Hasebe D, Tanaka R, Ike M, Saito C (2014) Effects of orthognathic surgery on pharyngeal airway and respiratory function during sleep in patients with mandibular prognathism. Int J Oral Maxillofac Surg 43:1082–1090\nTan SK, Leung WK, Tang ATH, Zwahlen RA (2017) Effects of mandibular setback with or without maxillary advancement osteotomies on pharyngeal airways: an overview of systematic reviews. PLoS One 12:e0185951\nGokce SM, Gorgulu S, Gokce HS, Bengi O, Sabuncuoglu F, Ozgen F, Bilgic H (2012) Changes in posterior airway space, pulmonary function and sleep quality, following bimaxillary orthognathic surgery. Int J Oral Maxillofac Surg 41:820–829\nSchilbred Eriksen E, Gulati S, Moen K, Wisth PJ, Loes S (2019) Apnea-hypopnea index in healthy class III patients treated with intraoral vertical ramus osteotomy: a prospective cohort study. J Oral Maxillofac Surg 77:582–590\nRuehland WR, Rochford PD, O’Donoghue FJ, Pierce RJ, Singh P, Thornton AT (2009) The new AASM criteria for scoring hypopneas: impact on the apnea hypopnea index. Sleep 32:150–157\nWorld Health Organization. Obesity and overweight. Fact sheet no 311 January 2015. (2016; Available from]) http:\u002F\u002Fwww.who.int\u002Fmediacentre\u002Ffactsheets\u002Ffs311\u002Fen\u002F\nKobayashi T, Funayama A, Hasebe D, Kato Y, Yoshizawa M, Saito C (2013) Changes in overnight arterial oxygen saturation after mandibular setback. Br J Oral Maxillofac Surg 51:312–318\nFairburn SC, Waite PD, Vilos G, Harding SM, Bernreuter W, Cure J, Cherala S (2007) Three-dimensional changes in upper airways of patients with obstructive sleep apnea following maxillomandibular advancement. J Oral Maxillofac Surg 65:6–12\nAl-Moraissi EA, Al-Magaleh SM, Iskandar RA, Al-Hendi EA (2015) Impact on the pharyngeal airway space of different orthognathic procedures for the prognathic mandible. Int J Oral Maxillofac Surg 44:1110–1118\nAraujo PM, Osterne RLV, de Souza Carvalho ACG, Azevedo NO, Gondim RF, Goncalves Filho RT, Sant’Ana E, Nogueira RLM (2019) Pharyngeal airway space changes after maxillomandibular advancement: a five-year retrospective study. Int J Oral Maxillofac Surg 48:732–738\nTan SK, Leung WK, Tang ATH, Zwahlen RA (2017) How does mandibular advancement with or without maxillary procedures affect pharyngeal airways? An overview of systematic reviews. PLoS One 12:e0181146\nConradt R, Hochban W, Brandenburg U, Heitmann J, Peter JH (1997) Long-term follow-up after surgical treatment of obstructive sleep apnoea by maxillomandibular advancement. Eur Respir J 10:123–128\nLi KK, Powell NB, Riley RW, Troell RJ, Guilleminault C (2000) Long-term results of maxillomandibular advancement surgery. Sleep Breath 4:137–140\nJones R, Badlani J, Jones C (2010) Maxillary, mandibular and chin advancement surgery for the treatment of obstructive sleep apnoea. Aust Dent J 55:314–321\nDekeister C, Lacassagne L, Tiberge M, Montemayor T, Migueres M, Paoli JR (2006) Mandibular advancement surgery in patients with severe obstructive sleep apnea uncontrolled by continuous positive airway pressure. A retrospective review of 25 patients between 1998 and 2004. Rev Mal Respir 23:430–437\nJaspers GW, Booij A, de Graaf J, de Lange J (2013) Long-term results of maxillomandibular advancement surgery in patients with obstructive sleep apnoea syndrome. Br J Oral Maxillofac Surg 51:e37–e39\nRonchi P, Cinquini V, Ambrosoli A, Caprioglio A (2013) Maxillomandibular advancement in obstructive sleep apnea syndrome patients: a restrospective study on the sagittal cephalometric variables. J Oral Maxillofac Res 4:e5\nHsieh YJ, Liao YF, Chen NH, Chen YR (2014) Changes in the calibre of the upper airway and the surrounding structures after maxillomandibular advancement for obstructive sleep apnoea. Br J Oral Maxillofac Surg 52:445–451\nBoyd SB, Walters AS, Waite P, Harding SM, Song Y (2015) Long-term effectiveness and safety of maxillomandibular advancement for treatment of obstructive sleep apnea. J Clin Sleep Med 11:699–708\nVigneron A, Tamisier R, Orset E, Pepin JL, Bettega G (2017) Maxillomandibular advancement for obstructive sleep apnea syndrome treatment: long-term results. J Craniomaxillofac Surg 45:183–191\nVeys B, Pottel L, Mollemans W, Abeloos J, Swennen G, Neyt N (2017) Three-dimensional volumetric changes in the upper airway after maxillomandibular advancement in obstructive sleep apnoea patients and the impact on quality of life. Int J Oral Maxillofac Surg 46:1525–1532\nde Ruiter MHT, Apperloo RC, Milstein DMJ, de Lange J (2017) Assessment of obstructive sleep apnoea treatment success or failure after maxillomandibular advancement. Int J Oral Maxillofac Surg 46:1357–1362\nEikermann M, Jordan AS, Chamberlin NL, Gautam S, Wellman A, Lo YL, White DP, Malhotra A (2007) The influence of aging on pharyngeal collapsibility during sleep. Chest 131:1702–1709\nJura M, Kozak LP (2016) Obesity and related consequences to ageing. Age (Dordr) 38:23\nWare JC, McBrayer RH, Scott JA (2000) Influence of sex and age on duration and frequency of sleep apnea events. Sleep 23:165–170\nPillar G, Malhotra A, Fogel R, Beauregard J, Schnall R, White DP (2000) Airway mechanics and ventilation in response to resistive loading during sleep: influence of gender. Am J Respir Crit Care Med 162:1627–1632\nBurschtin O, Wang J (2016) Testosterone deficiency and sleep apnea. Urol Clin North Am 43:233–237\nLozo T, Komnenov D, Badr MS, Mateika JH (2017) Sex differences in sleep disordered breathing in adults. Respir Physiol Neurobiol 245:65–75\nBehan M, Wenninger JM (2008) Sex steroidal hormones and respiratory control. Respir Physiol Neurobiol 164:213–221\nRomero-Corral A, Caples SM, Lopez-Jimenez F, Somers VK (2010) Interactions between obesity and obstructive sleep apnea: implications for treatment. Chest 137:711–719\nYoung T, Palta M, Dempsey J, Skatrud J, Weber S, Badr S (1993) The occurrence of sleep-disordered breathing among middle-aged adults. N Engl J Med 328:1230–1235\nPahkala R, Seppa J, Ikonen A, Smirnov G, Tuomilehto H (2014) The impact of pharyngeal fat tissue on the pathogenesis of obstructive sleep apnea. Sleep Breath 18:275–282\nNashi N, Kang S, Barkdull GC, Lucas J, Davidson TM (2007) Lingual fat at autopsy. Laryngoscope 117:1467–1473\nKim AM, Keenan BT, Jackson N, Chan EL, Staley B, Poptani H, Torigian DA, Pack AI, Schwab RJ (2014) Tongue fat and its relationship to obstructive sleep apnea. Sleep 37:1639–1648\nIsono S (2012) Obesity and obstructive sleep apnoea: mechanisms for increased collapsibility of the passive pharyngeal airway. Respirology 17:32–42\nStuck BA, Maurer JT (2017) Recent developments in the diagnosis and treatment of obstructive sleep apnea : English version. HNO 65:13–18",{"EN":147},"Maxillomandibular advancement (MMA) is effective for the treatment of obstructive sleep apnea (OSA). In previous studies, the airway was increased in the anteroposterior and transverse dimensions after MMA. However, the effect of the opposite of mandibular movement (mandibular setback) on the airway is still controversial. Mandibular setback surgery has been suggested to be one of the risk factors in the development of sleep apnea. Previous studies have found that mandibular setback surgery could reduce the total airway volume and posterior airway space significantly in both the one-jaw and two-jaw surgery groups. However, a direct cause-and-effect relationship between the mandibular setback and development of sleep apnea has not been clearly established. Moreover, there are only a few reported cases of postoperative OSA development after mandibular setback surgery. These findings may be attributed to a fundamental difference in demographic variables such as age, sex, and body mass index (BMI) between patients with mandibular prognathism and patients with OSA. Another possibility is that the site of obstruction or pattern of obstruction may be different between the awake and sleep status in patients with OSA and mandibular prognathism. In a case-controlled study, information including the BMI and other presurgical conditions potentially related to OSA should be considered when evaluating the airway. In conclusion, the preoperative evaluation and management of co-morbid conditions would be essential for the prevention of OSA after mandibular setback surgery despite its low incidence.",{"EN":149},"Why most patients do not exhibit obstructive sleep apnea after mandibular setback surgery?",{"VOID":151},"10.1186\u002Fs40902-020-00250-x","PUBLICATION","VERIFIED","Auto Verify","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-020-00250-x",[157,174],{"id":158,"sortIndex":159,"researcher":18,"roles":160,"affiliations":162,"properties":171},"b5b9bf18-2ca5-4297-bcaf-f56378e57f1b",1,[161],"AUTHOR",[163],{"id":18,"sortIndex":19,"affiliation":164,"properties":18},{"id":165,"createTime":166,"updateTime":166,"relativeEntities":167,"slug":18,"properties":168,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"1abb5e20-e5c1-40f4-9522-e5d8723efa12","2023-12-08T08:10:44.731+00:00",[],{"title":169},{"VI":170},"Department of Oral and Maxillofacial Surgery, School of Dentistry, Kyungpook National University, Daegu, Republic of Korea",{"title":172},{"VI":173},"Tae-Geon Kwon",{"id":175,"sortIndex":19,"researcher":18,"roles":176,"affiliations":177,"properties":183},"84fdccb8-9773-4ad9-bbe2-a92dea24717b",[161],[178],{"id":18,"sortIndex":19,"affiliation":179,"properties":18},{"id":165,"createTime":166,"updateTime":166,"relativeEntities":180,"slug":18,"properties":181,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":182},{"VI":170},{"title":184},{"VI":185},"Jin-Wook Kim","ARTICLE",{"url":155,"publisher":188,"properties":215},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":189,"slug":10,"properties":190,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":193,"manageAffiliations":194,"indexDatabases":195,"url":90,"thumbnailPath":18,"statistic":210,"gsStatistic":18,"type":132,"analyzePriority":18},[],{"issn":191,"title":192},{"VOID":13},{"EN":15},[],[],[196,203],{"id":53,"indexDatabase":197,"url":68,"indexYears":18,"academicFieldIds":202,"indexDatabaseRanking":18},{"id":55,"createTime":56,"updateTime":57,"relativeEntities":198,"label":199,"description":200,"key":64,"publicationTags":201,"standard":18},[],{"EN":60,"VI":60},{"VI":62,"EN":63},[66,67],[70],{"id":72,"indexDatabase":204,"url":85,"indexYears":86,"academicFieldIds":209,"indexDatabaseRanking":89},{"id":74,"createTime":75,"updateTime":76,"relativeEntities":205,"label":206,"description":207,"key":82,"publicationTags":208,"standard":18},[],{"EN":79,"VI":79},{"EN":79,"VI":81},[84],[88],{"impactFactor":19,"impactFactorByYear":211,"i10Index":101,"i10IndexLast5Year":102,"totalPublication":103,"totalPublicationByYear":212,"totalCitation":112,"totalCitationByYear":213,"totalCitationPerPublication":121,"totalCitationPerPublicationByYear":214,"hindexLast5Year":131,"hindex":131},{"2016":93,"2017":94,"2018":95,"2019":96,"2020":97,"2021":98,"2022":99,"2023":100},{"2015":105,"2016":106,"2017":107,"2018":108,"2019":106,"2020":109,"2021":108,"2022":110,"2023":109,"2024":111},{"2015":114,"2016":115,"2017":116,"2018":117,"2019":118,"2020":107,"2021":119,"2022":120},{"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130},{"volume":216,"pages":218},{"VOID":217},"42",{"VOID":219},"1-8","2020-03-17",2020,false,{"id":224,"createTime":225,"updateTime":226,"relativeEntities":227,"slug":228,"properties":229,"entityType":152,"verifyStatus":153,"verifyTime":226,"verifyNote":154,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":238,"fullTextUrl":18,"authors":239,"publicationType":186,"publisherRelationship":316,"citationCount":18,"citationInfo":18,"publishDate":349,"publishYear":350,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":222},"b0e58c5b-4577-459a-ab13-40f6f44d0252","2024-01-19T03:44:31.317+00:00","2025-02-09T23:51:44.050+00:00",[],"Management-of-frontal-sinus-trauma-a-retrospective-study-of-surgical-interventions-and-complications",{"references":230,"abstract":232,"title":234,"doi":236},{"VOID":231},"Nahum AM (1975) The biomechanics of maxillofacial trauma. Clin Plast Surg 2:59–64\nGossman DG, Archer SM, Arosarena O (2006) Management of frontal sinus fractures: a review of 96 cases. Laryngoscope 116:1357–1362\nBell RB, Dierks EJ, Brar P, Potter JK, Potter BE (2007) A protocol for the management of frontal sinus fractures emphasizing sinus preservation. J Oral Maxillofac Surg 65:825–839\nMonnazzi M, Gabrielli M, Pereira-Filho V, Hochuli-Vieira E, de Oliveira H, Gabrielli M (2014) Frontal sinus obliteration with iliac crest bone grafts. Review of 8 cases. Craniomaxillofac Trauma Reconstr 7:263–270\nGerbino G, Roccia F, Benech A, Caldarelli C (2000) Analysis of 158 frontal sinus fractures: current surgical management and complications. J Craniomaxillofac Surg 28:133–139\nDoonquah L, Brown P, Mullings W (2012) Management of frontal sinus fractures. Oral Maxillofac Surg Clin North Am 24:265–274\nChoi M, Li Y, Shapiro SA, Havlik RJ, Flores RL (2012) A 10-year review of frontal sinus fractures: clinical outcomes of conservative management of posterior table fractures. Plast Reconstr Surg 130:399–406\nRohrichRJ HollierL (1996) The role of the nasofrontal duct in frontal sinus fracture management. J Craniomaxillofac Trauma 2:31–40\nRohrich RJ, Hollier LH (1992) Management of frontal sinus fractures. Changing concepts. Clin Plast Surg 19:219–232\nWallis A, Donald PJ (1988) Frontal sinus fractures: a review of 72 cases. Laryngoscope 98:593–598\nYaldiz C, Ozdemir N, Yaman O, Seyin İE, Oguzoglu S (2015) Intracranial repair of posttraumatic cerebrospinal fluid rhinorrhea associated with recurrent meningitis. J Craniofac Surg 26:170–173\nRavindra VM, Neil JA, Shah LM, Schmidt RH, Bisson EF (2015) Surgical management of traumatic frontal sinus fractures: case series from a single institution and literature review. Surg Neurol Int 6:141\nShin J, Oh S, Chung B, Rhim J, Lee C, Choi J (2013) Delayed meningitis complicated by the frontal sinus opening to the dura mater in a patient with intracranial injury fifteen years ago. Korean J Neurotrauma 9:142\nRodriguez ED, Stanwix MG, Nam AJ, St Hilaire H, Simmons OP, Christy MR, Grant MP, Manson PN (2008) Twenty-six-year experience treating frontal sinus fractures: a novel algorithm based on anatomical fracture pattern and failure of conventional techniques. Plast Reconstr Surg 122:1850–1866\nStrong EB, Pahlavan N, Saito D (2006) Frontal sinus fractures: a 28-year retrospective review. Otolaryngol Head Neck Surg 135:774–779\nPatel SA, Berens AM, Devarajan K, Whipple ME, Moe KS (2017) Evaluation of a minimally disruptive treatment protocol for frontal sinus fractures. JAMA Facial Plast Surg 19:225–231\nArnold MA, Tatum SA 3rd (2019) Frontal sinus fractures: evolving clinical considerations and surgical approaches. Craniomaxillofac Trauma Reconstr 12:85–94\nPawar SS, Rhee JS (2014) Frontal sinus and naso-orbital-ethmoid fractures. JAMA Facial Plast Surg 16:284–289\nStevens M, Kline SN (1995) Management of frontal sinus fractures. J Craniomaxillofac Trauma 1:29–37\nChen KT, Chen CT, Mardini S, Tsay PK, Chen YR (2006) Frontal sinus fractures: a treatment algorithm and assessment of outcomes based on 78 clinical cases. Plast Reconstr Surg 118:457–468\nRice DH (2004) Management of frontal sinus fractures. Curr Opin Otolaryngol Head Neck Surg 12:46–48\nHwang K, Song YB (2005) Closed reduction of fractured anterior wall of the frontal bone. J Craniofac Surg 16:120–122\nJeyaraj P (2019) Frontal bone fractures and frontal sinus injuries: treatment paradigms. Ann Maxillofac Surg 9:261–282\nCultrera F, Giuffrida M, Mancuso P (2006) Delayed post-traumatic frontal sinus mucopyocoele presenting with meningitis. J Craniomaxillofac Surg 34:502–504\nPark CM, Stoffella E, Gile J, Roberts J, Herford AS (2012) Osteoplasty flap technique for repair of latent (30-year) post-traumatic frontal sinus mucocele: case report and review of the literature. J Oral Maxillofac Surg 70:2092–2096\nFreeman JL, Winston KR (2015) Breach of posterior wall of frontal sinus: management with preservation of the sinus. World Neurosurg 83:1080–1089\nKoudstaal MJ, van der Wal KG, Bijvoet HW, Bijvoet HW, Vincent AJ, Poublon RM (2004) Post-trauma mucocele formation in the frontal sinus; a rationale of follow-up. Int J Oral Maxillofac Surg 33:751–754\nWeber R, Draf W, Keerl R, Kahle G, Schinzel S, Thomann S, Lawson W (2000) Osteoplastic frontal sinus surgery with fat obliteration: technique and long-term results using magnetic resonance imaging in 82 operations. Laryngoscope 110:1037–1044\nDonald PJ (1982) Frontal sinus ablation by cranialization: report of 21 cases. Arch Otolaryngol 108:142–146\nWynn R, Vaughan WC (2006) Treatment of failed frontal sinus obliteration. Oper Tech Otolayngol Head Neck Surg 17:13–18\nMoeller CW, Petruzzelli GJ, Stankiewicz JA (2010) Hydroxyapatite-based frontal sinus obliteration. Oper Tech Otolaryngol-Head Neck Surg 21:147–149\nSmith TL, Han JK, Loehrl TA, Rhee JS (2002) Endoscopic management of the frontal recess in frontal sinus fractures: a shift in the paradigm? Laryngoscope 112:784–790\nYoo MH, Kim JS, Song HM, Lee BJ, Jang YJ (2008) Endoscopic transnasal reduction of an anterior table frontal sinus fracture: technical note. Int J Oral Maxillofac Surg 37:573–575\nLim JH, Sardesai MG, Ferreira M Jr, Moe KS (2012) Transorbital neuroendoscopic management of sinogenic complications involving the frontal sinus, orbit, and anterior cranial fossa. J Neurol Surg B Skull Base 73:394–400\nChaaban MR, Conger B, Riley KO, Woodworth BA (2012) Transnasal endoscopic repair of posterior table fractures. Otolaryngol Head Neck Surg 147:1142–1147\nBhavana K, Kumar R, Keshri A, Aggarwal S (2014) Minimally invasive technique for repairing CSF leaks due to defects of posterior table of frontal sinus. J Neurol Surg B Skull Base 75:183–186\nStrong EB (2009) Endoscopic repair of anterior table frontal sinus fractures. Facial Plast Surg 25:43–48\nNoury M, Dunn RM, Lalikos JF, Fudem GM, Rothkopf DM (2011) Frontal sinus repair through a frontalis rhytid approach. Ann Plast Surg 66:457–459\nMontovani JC, Nogueira EA, Ferreira FD, Lima Neto AC, Nakajima V (2006) Surgery of frontal sinus fractures: epidemiologic study and evaluation of techniques. Braz J Otorhinolaryngol 72:204–209\nBande CR, Goel M, Dombre SS, Kurawar K, Maheshkar A (2021) Utility of esthetic eyebrow incision in the management of anterior table fracture of frontal bone: our experience. Oral Maxillofac Surg 25:257–262\nKim J, Choi H (2016) A review of subbrow approach in the management of non-complicated anterior table frontal sinus fracture. Arch Craniofac Surg 17:186–189",{"EN":233},"Frontal sinus injuries are relatively rare among facial bone traumas. Without proper treatment, they can lead to fatal intracranial complications, including meningitis or brain abscesses, as well as aesthetic and functional sequelae. The management of frontal sinus injuries remains controversial, with various treatment methods and outcomes being reported. This article describes the clinical characteristics, surgical methods, and outcomes among 17 patients who underwent surgery for frontal sinus injury and related complications. We retrospectively included 17 patients who underwent surgery for frontal sinus injury and its related complications at the Kangwon National University Hospital between July 2010 and September 2021. Among them, six underwent simple open reduction and fixation of the anterior wall, eight underwent sinus obliteration, and three underwent cranialization. Two patients who underwent sinus obliteration died due to infection-related complications. The patient who underwent cranialization reported experiencing chronic headache and expressed dissatisfaction regarding the esthetic outcomes of the forehead. Except for these three patients, the other patients achieved satisfactory esthetic and functional recovery. Active surgical management of frontal sinus injuries is often required owing to the various complications caused by these injuries; however, several factors, including the fracture type, clinical presentation, related craniomaxillofacial injury, and medical history, should be considered while formulating the treatment plan. Surgical treatment through the opening of the frontal sinus should be actively considered in patients with severely damaged posterior wall fractures and those at risk of developing infection.",{"EN":235},"Management of frontal sinus trauma: a retrospective study of surgical interventions and complications",{"VOID":237},"10.1186\u002Fs40902-024-00414-z","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-024-00414-z",[240,256,271,288,303],{"id":241,"sortIndex":242,"researcher":18,"roles":243,"affiliations":244,"properties":253},"7bdd846a-5c63-4098-b520-5f403e5a9157",3,[161],[245],{"id":18,"sortIndex":19,"affiliation":246,"properties":18},{"id":247,"createTime":248,"updateTime":248,"relativeEntities":249,"slug":18,"properties":250,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"6778d20f-4bb8-43e2-b642-839761b80fc2","2024-01-19T03:44:31.374+00:00",[],{"title":251},{"VI":252},"Department of Neurosurgery, School of Medicine, Kangwon National University, Chuncheon, Korea",{"title":254},{"VI":255},"Seung Jin Lee",{"id":257,"sortIndex":102,"researcher":18,"roles":258,"affiliations":259,"properties":268},"5b4010ab-63f4-4168-8687-8ded358d241e",[161],[260],{"id":18,"sortIndex":19,"affiliation":261,"properties":18},{"id":262,"createTime":263,"updateTime":263,"relativeEntities":264,"slug":18,"properties":265,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"22a29c28-c80b-42c8-b7d9-00adff3081ef","2024-01-16T10:22:52.209+00:00",[],{"title":266},{"VI":267},"Department of Otolaryngology, School of Medicine, Kangwon National University, Chuncheon, Korea",{"title":269},{"VI":270},"Eui-Cheol Nam",{"id":272,"sortIndex":19,"researcher":18,"roles":273,"affiliations":274,"properties":285},"132cb35e-1b14-42a9-9507-2f5a996b2300",[161],[275],{"id":18,"sortIndex":19,"affiliation":276,"properties":18},{"id":277,"createTime":278,"updateTime":279,"relativeEntities":280,"slug":281,"properties":282,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"09bf2878-e093-4a01-bbe9-23da4d96fbe5","2024-01-19T03:44:31.335+00:00","2025-06-11T22:40:48.499+00:00",[],"Department-of-Neurosurgery-Kangwon-National-University-Hospital-Chuncheon-Korea",{"title":283},{"VI":284},"Department of Neurosurgery, Kangwon National University Hospital, Chuncheon, Korea",{"title":286},{"VI":287},"InKyeong Kim",{"id":289,"sortIndex":159,"researcher":18,"roles":290,"affiliations":291,"properties":300},"a726a288-f00e-4304-89bc-fd608c11f771",[161],[292],{"id":18,"sortIndex":19,"affiliation":293,"properties":18},{"id":294,"createTime":295,"updateTime":295,"relativeEntities":296,"slug":18,"properties":297,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"112c7852-4fbe-4bc9-b9f4-b8920ca799da","2024-01-19T03:44:31.347+00:00",[],{"title":298},{"VI":299},"Department of Oral & Maxillofacial Surgery, Kangwon National University Hospital, Chuncheon, Korea",{"title":301},{"VI":302},"Jeong-Mo Kim",{"id":304,"sortIndex":305,"researcher":18,"roles":306,"affiliations":307,"properties":313},"dbe7b6e0-7463-4cee-99df-6920872a903a",2,[161],[308],{"id":18,"sortIndex":19,"affiliation":309,"properties":18},{"id":247,"createTime":248,"updateTime":248,"relativeEntities":310,"slug":18,"properties":311,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":312},{"VI":252},{"title":314},{"VI":315},"Jiha 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K, Kobayashi M (2016) Mixed-reality simulation for orthognathic surgery. Maxillofac Plast Reconstr Surg 38:13\nStokbro K, Aagaard E, Torkov P, Bell RB, Thygesen T (2014) Virtual planning in orthognathic surgery. Int J Oral Maxillofac Surg 43:957–965\nHouston WJ (1983) The analysis of errors in orthodontic measurements. Am J Orthod 83:382–390\nKwon TG (2017) Three-dimensional surgical simulation for facial asymmetry: soft tissue-, skeleton-, and occlusion-based planning. Maxillofac Plast Reconstr Surg 39:36\nGaber RM, Shaheen E, Falter B, Araya S, Politis C, Swennen GRJ et al (2017) A systematic review to uncover a universal protocol for accuracy assessment of 3-dimensional virtually planned orthognathic surgery. J Oral Maxillofac Surg 75:2430–2440\nDe Riu G, Virdis PI, Meloni SM, Lumbau A, Vaira LA (2018) Accuracy of computer-assisted orthognathic surgery. J Craniomaxillofac Surg 46:293–298",{"EN":361},"Accuracy and reliability of three-dimensional computer-assisted planning for orthognathic surgery",{"VOID":363},"10.1186\u002Fs40902-018-0154-4","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-018-0154-4",[366],{"id":367,"sortIndex":19,"researcher":18,"roles":368,"affiliations":369,"properties":378},"615fa10a-39d2-406e-9531-554a32aa4e48",[161],[370],{"id":18,"sortIndex":19,"affiliation":371,"properties":18},{"id":372,"createTime":373,"updateTime":373,"relativeEntities":374,"slug":18,"properties":375,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"8695766e-307a-4047-93dd-2e3e3b6f2929","2023-12-06T18:35:33.659+00:00",[],{"title":376},{"VI":377},"Department of Oral & Maxillofacial Surgery, School of Dentistry, Kyungpook National University, Daegu, South Korea",{"title":379},{"VI":173},{"url":364,"publisher":381,"properties":408},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":382,"slug":10,"properties":383,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":386,"manageAffiliations":387,"indexDatabases":388,"url":90,"thumbnailPath":18,"statistic":403,"gsStatistic":18,"type":132,"analyzePriority":18},[],{"issn":384,"title":385},{"VOID":13},{"EN":15},[],[],[389,396],{"id":53,"indexDatabase":390,"url":68,"indexYears":18,"academicFieldIds":395,"indexDatabaseRanking":18},{"id":55,"createTime":56,"updateTime":57,"relativeEntities":391,"label":392,"description":393,"key":64,"publicationTags":394,"standard":18},[],{"EN":60,"VI":60},{"VI":62,"EN":63},[66,67],[70],{"id":72,"indexDatabase":397,"url":85,"indexYears":86,"academicFieldIds":402,"indexDatabaseRanking":89},{"id":74,"createTime":75,"updateTime":76,"relativeEntities":398,"label":399,"description":400,"key":82,"publicationTags":401,"standard":18},[],{"EN":79,"VI":79},{"EN":79,"VI":81},[84],[88],{"impactFactor":19,"impactFactorByYear":404,"i10Index":101,"i10IndexLast5Year":102,"totalPublication":103,"totalPublicationByYear":405,"totalCitation":112,"totalCitationByYear":406,"totalCitationPerPublication":121,"totalCitationPerPublicationByYear":407,"hindexLast5Year":131,"hindex":131},{"2016":93,"2017":94,"2018":95,"2019":96,"2020":97,"2021":98,"2022":99,"2023":100},{"2015":105,"2016":106,"2017":107,"2018":108,"2019":106,"2020":109,"2021":108,"2022":110,"2023":109,"2024":111},{"2015":114,"2016":115,"2017":116,"2018":117,"2019":118,"2020":107,"2021":119,"2022":120},{"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130},{"volume":409,"pages":411},{"VOID":410},"40",{"VOID":412},"1-2","2018-06-25",2018,{"id":416,"createTime":417,"updateTime":418,"relativeEntities":419,"slug":420,"properties":421,"entityType":152,"verifyStatus":153,"verifyTime":418,"verifyNote":154,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":430,"fullTextUrl":18,"authors":431,"publicationType":186,"publisherRelationship":498,"citationCount":18,"citationInfo":18,"publishDate":531,"publishYear":532,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":222},"080874cb-1f22-420d-a460-b48e43174fb7","2024-01-17T05:12:26.861+00:00","2025-01-29T23:32:19.532+00:00",[],"Changes-in-oncogenic-protein-levels-in-peri-implant-oral-malignancy-a-case-report",{"references":422,"abstract":424,"title":426,"doi":428},{"VOID":423},"Shibuya Y, Hasegawa T, Akashi M et al (2013) Oral squamous cell carcinoma with multiple neck metastases--cases with more than ten pathologically positive lymph nodes in the unilateral side. J Oral Maxillofac Surg 71:793–797\nSuslu N, Hosal AS, Aslan T et al (2013) Carcinoma of the oral tongue: a case series analysis of prognostic factors and surgical outcomes. J Oral Maxillofac Surg 71:1283–1290\nGrimm M (2012) Prognostic value of clinicopathological parameters and outcome in 484 patients with oral squamous cell carcinoma: microvascular invasion (V+) is an independent prognostic factor for OSCC. Clin Transl Oncol 14:870–880\nLiao CT, Wang HM, Ng SH et al (2006) Good tumor control and survivals of squamous cell carcinoma of buccal mucosa treated with radical surgery with or without neck dissection in Taiwan. Oral Oncol 42:800–809\nChen IH, Liao CT, Wang HM et al (2014) Using SCC antigen and CRP levels as prognostic biomarkers in recurrent oral cavity squamous cell carcinoma. PLoS One 9:e103265\nDE Paz D, Young CK, Chien HT et al (2019) Prognostic roles of SCC antigen, CRP and CYFRA 21-2 in oral cavity squamous cell carcinoma. Anticancer Res 39:2025–2033\nKim YS (2015) Protein expression changes induced by cisplatin in an oral cancer cell line as determined by immunoprecipitation-based high performance liquid chromatography. Kor J Oral Maxillofac Pathol 39:567–582\nKim YS, Lee SK (2015) IP-HPLC analysis of human salivary protein complexes. Kor J Oral Maxillofac Pathol 39:615–622\nKim SM, Jeong D, Kim MK et al (2017) Two different protein expression profiles of oral squamous cell carcinoma analyzed by immunoprecipitation high-performance liquid chromatography. World J Surg Oncol 15:151\nHashimoto H, Kitagawa K, Hougaku H et al (2011) C-reactive protein is an independent predictor of the rate of increase in early carotid atherosclerosis. Circulation 104:63–67\nChen HH, Chen IH, Liao CT et al (2011) Preoperative circulating C-reactive protein levels predict pathological aggressiveness in oral squamous cell carcinoma: a retrospective clinical study. Clin Otolaryngol 36:147–153\nvan der Waal I (2009) Potentially malignant disorders of the oral and oropharyngeal mucosa; terminology, classification and present concepts of management. Oral Oncol 45:317–323\nBerglundh T, Zitzmann NU, Donati M (2011) Are peri-implantitis lesions different from periodontitis lesions? J Clin Periodontol 38:188–202\nKaplan I, Hirshberg A, Shlomi B et al (2015) The importance of histopathological diagnosis in the management of lesions presenting as peri-implantitis. Clin Implant Dent Relat Res 17:e126–e133\nBoudrieau RJ, McCarthy RJ, Sisson RD Jr (2005) Sarcoma of the proximal portion of the tibia in a dog 5.5 years after tibial plateau leveling osteotomy. J Am Vet Med Assoc 227:1613–1617\nCoen N, Kadhim MA, Wright EG et al (2003) Particulate debris from a titanium metal prosthesis induces genomic instability in primary human fibroblast cells. Br J Cancer 88:548–552\nMatsumoto M, Filho HN, Ferrari R et al (2014) Genotoxicity of endosseous implants using two cellular lineages in vitro. J Oral Implantol 40:25–29\nKaplan I, Zeevi I, Rosenfeld E et al (2017) Clinicopathological evaluation of malignancy adjacent to dental implants. Oral Surg Oral Med Oral Pathol Oral Radiol 123:103–112\nLessing AAD, Joseph AM, Lindgren BR et al (2017) Association of oral cavity and oropharyngeal cancer biomarkers in surgical drain fluid with patient outcomes. JAMA Otolaryngol Head Neck Surg 143:670–678\nAgha-Hosseini F, Mirzaii-Dizgah I, Miri-Zarandi NS (2015) Unstimulated salivary p53 in patients with oral lichen planus and squamous cell carcinoma. Acta Med Iran 53:439–443\nMaeda M, Johnson KR, Wheelock MJ (2005) Cadherin switching: essential for behavioral but not morphological changes during and epithelium-to-mesenchyme transition. J Cell Sci 118:873–887\nUkpo DC, Thorstad WL, Zhang Q et al (2012) Lack of association of cadherin expression and histopathologic type, metastasis, or patient outcome in oropharyngeal squamous cell carcinoma: a tissue microarray study. Head Neck Pathol 6:38–47\nIwai S, Yonekawa A, Harada C et al (2010) Involvement of the Wnt-β-catenin pathway in invasion and migration of oral squamous carcinoma cells. Int J Oncol 37:1095–1103\nSinevici N, O’Sullivan J (2016) Oral cancer: deregulated molecular events and their use as biomarkers. Oral Oncol 16:12–18\nBrusevold IJ, Søland TM, Khuu C et al (2010) Nuclear and cytoplasmic expression of Met in oral squamous cell carcinoma and in an organotypic oral cancer model. Eur J Oral Sci 118:342–349\nCho YA, Kim EK, Heo SJ et al (2016) Alteration status and prognostic value of MET in head and neck squamous cell carcinoma. J Cancer 7:2197–2206\nMurugan AK, Munirajan AK, Tsuchida N (2012) Ras oncogenes in oral cancer: the past 20 years. Oral Oncol 48:383–392\nChen Z, Yan B, van Waves C (2008) The role of the NF-kappa B transcriptome and proteome as biomarkers in human head and neck squamous cell carcinomas. Biomark Med 2:409–426",{"EN":425},"Oral squamous cell carcinoma (OSCC) constitutes a group of tumors that exhibit heterogeneous biology, histopathology, and clinical behaviors. A 73-year-old male had a whitish leukoplakia-like lesion around inflamed peri-implant area (#42, #43, and #44), and this lesion had transformed to OSCC within 3 years. He underwent mass resection, selective neck dissection, and reconstructive surgery. To detect any carcinogenesis progression, we examined the removed tumor tissue as well as the patient’s preoperative and postoperative sera to identify causative oncogenic proteins using immunoprecipitation high-performance liquid chromatography (IP-HPLC). The protein expression levels of p53, E-cadherin, β-catenin, MMP-10, HER2, NRAS, Met, HER2, and ERb were significantly lower in the serum collected on postoperative day 10 than in the preoperative serum, and if these proteins are consistently not elevated in the serum 3 months after surgery compared with the preoperative serum, these proteins can be potential oncogenic proteins. However, we also found that the serum extracted 3 months after the operation had elevated levels of oncogenic proteins compared with that of the preoperative and 10-day postoperative serum indicating the possibility of tumor recurrence. At postoperative follow-up period, ipsilateral neck metastasis and second primary lesion were found and additional surgery was performed to the patient. IP-HPLC using the patient’s serum shows the possibility of oncogenic protein detection. However, follow-up IP-HPLC data is needed to find out patient-specific prognostic factors.",{"EN":427},"Changes in oncogenic protein levels in peri-implant oral malignancy: a case report",{"VOID":429},"10.1186\u002Fs40902-019-0235-z","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-019-0235-z",[432,447,462,474,486],{"id":433,"sortIndex":159,"researcher":18,"roles":434,"affiliations":435,"properties":444},"7333d866-2b8e-4f15-80f3-1789ba8d012e",[161],[436],{"id":18,"sortIndex":19,"affiliation":437,"properties":18},{"id":438,"createTime":439,"updateTime":439,"relativeEntities":440,"slug":18,"properties":441,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"2caf15c3-d37c-41b5-86cd-e504962a6030","2023-12-01T05:17:20.510+00:00",[],{"title":442},{"VI":443},"Department of Oral and Maxillofacial Surgery, Dental Research Institute, School of Dentistry, Seoul National 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SD, Cooper L, Craddock H, Hyde TP, Nattress B, Pavitt SH, Seymour DW (2017) Removable partial dentures: the clinical need for innovation. J Prosthet Dent 118(3):273–280. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.prosdent.2017.01.008\nSikkerimath BC, Dandagi S, Gudi SS, Jayapalan D (2012) Comparison of vestibular sulcus depth in vestibuloplasty using standard Clark’s technique with and without amnion as graft material. Ann Maxillofac Surg 2:30\nAhmed S, Patel MAR, Haneef M (2020) Comparison between two surgical techniques for vestibuloplasty–a retrospective study. J Oral Med Oral Surgery, Oral Pathol Oral Radiol 6:199–204\nChoukroun J, Adda F, Schoeffler C, Vervelle A (2001) Une opportunité en paro-implantologie: le PRF. Implantodontie 42:e62\nBorie E, Oliví DG, Orsi IA et al (2015) Platelet-rich fibrin application in dentistry: a literature review. Int J Clin Exp Med 8:7922\nZhang Y, Ruan Z, Shen M, Tan L, Huang W, Wang L, Huang Y (2018) Clinical effect of platelet-rich fibrin on the preservation of the alveolar ridge following tooth extraction. Exp Ther Med 15(3):2277–2286. https:\u002F\u002Fdoi.org\u002F10.3892\u002Fetm.2018.5696\nvon Arx T, Kurt B (1999) Implant placement and simultaneous ridge augmentation using autogenous bone and a micro titanium mesh: a prospective clinical study with 20 implants. Clin Oral Implants Res 10(1):24–33. https:\u002F\u002Fdoi.org\u002F10.1034\u002Fj.1600-0501.1999.100104.x\nMaqbool T, Binhammer A, Binhammer P, Antonyshyn M (2018) Risk factors for titanium mesh implant exposure following cranioplasty. J Craniofac Surg 29(5):1181–1186. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSCS.0000000000004479\nBahammam MA (2018) Effect of platelet-rich fibrin palatal bandage on pain scores and wound healing after free gingival graft: a randomized controlled clinical trial. Clin Oral Investig 22(9):3179–3188. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00784-018-2397-y\nOzcan M, Ucak O, Alkaya B, Keceli S, Seydaoglu G, Haytac M (2017) Effects of platelet-rich fibrin on palatal wound healing after free gingival graft harvesting: a comparative randomized controlled clinical trial. Int J Periodontics Restorative Dent 37(5):e270–e278. https:\u002F\u002Fdoi.org\u002F10.11607\u002Fprd.3226\nEdwards JA, LoCascio SJ, Campbell JA (2017) The use of stereolithographic models for optimal surgical stent fabrication in complex pre-prosthetic vestibuloplasty and dental implant placement: a case report. J Oral Maxillofac Surg 75(10):e400–e401. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.joms.2017.07.127\nSousa F, Machado V, Botelho J et al (2020) Effect of A-PRF application on palatal wound healing after free gingival graft harvesting: a prospective randomized study. Eur J Dent 14:63",{"EN":543},"The potential application of platelet-rich fibrin (PRF) in vestibuloplasty",{"VOID":545},"10.1186\u002Fs40902-021-00308-4","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-021-00308-4",[548,565,580],{"id":549,"sortIndex":19,"researcher":18,"roles":550,"affiliations":551,"properties":562},"2fd228a9-1ae5-455c-ab79-7e12c95bfecb",[161],[552],{"id":18,"sortIndex":19,"affiliation":553,"properties":18},{"id":554,"createTime":555,"updateTime":556,"relativeEntities":557,"slug":558,"properties":559,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"4af243fe-4074-4d06-b242-62d4a10f55f9","2023-12-17T20:47:56.912+00:00","2024-10-16T04:30:25.587+00:00",[],"Student-Research-Committee-Shiraz-University-of-Medical-Sciences-Shiraz-Iran",{"title":560},{"VI":561},"Student Research Committee, Shiraz University of Medical Sciences, Shiraz, Iran",{"title":563},{"VI":564},"Mohammad Amin Amiri",{"id":566,"sortIndex":305,"researcher":18,"roles":567,"affiliations":568,"properties":577},"3b2baf61-b2f1-441a-ad67-f70c89ed929f",[161],[569],{"id":18,"sortIndex":19,"affiliation":570,"properties":18},{"id":571,"createTime":572,"updateTime":572,"relativeEntities":573,"slug":18,"properties":574,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"3633322a-c545-4e92-80ec-77045fcfb929","2023-12-19T07:59:38.313+00:00",[],{"title":575},{"VI":576},"Oral and Dental Disease Research Center, School of Dentistry, Shiraz University of Medical Sciences, Shiraz, Iran",{"title":578},{"VI":579},"Shahram Hamedani",{"id":581,"sortIndex":159,"researcher":18,"roles":582,"affiliations":583,"properties":589},"68da16dd-a16c-48fb-9995-ae06f67c3177",[161],[584],{"id":18,"sortIndex":19,"affiliation":585,"properties":18},{"id":554,"createTime":555,"updateTime":556,"relativeEntities":586,"slug":558,"properties":587,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":588},{"VI":561},{"title":590},{"VI":591},"Nima Farshidfar",{"url":546,"publisher":593,"properties":620},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":594,"slug":10,"properties":595,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":598,"manageAffiliations":599,"indexDatabases":600,"url":90,"thumbnailPath":18,"statistic":615,"gsStatistic":18,"type":132,"analyzePriority":18},[],{"issn":596,"title":597},{"VOID":13},{"EN":15},[],[],[601,608],{"id":53,"indexDatabase":602,"url":68,"indexYears":18,"academicFieldIds":607,"indexDatabaseRanking":18},{"id":55,"createTime":56,"updateTime":57,"relativeEntities":603,"label":604,"description":605,"key":64,"publicationTags":606,"standard":18},[],{"EN":60,"VI":60},{"VI":62,"EN":63},[66,67],[70],{"id":72,"indexDatabase":609,"url":85,"indexYears":86,"academicFieldIds":614,"indexDatabaseRanking":89},{"id":74,"createTime":75,"updateTime":76,"relativeEntities":610,"label":611,"description":612,"key":82,"publicationTags":613,"standard":18},[],{"EN":79,"VI":79},{"EN":79,"VI":81},[84],[88],{"impactFactor":19,"impactFactorByYear":616,"i10Index":101,"i10IndexLast5Year":102,"totalPublication":103,"totalPublicationByYear":617,"totalCitation":112,"totalCitationByYear":618,"totalCitationPerPublication":121,"totalCitationPerPublicationByYear":619,"hindexLast5Year":131,"hindex":131},{"2016":93,"2017":94,"2018":95,"2019":96,"2020":97,"2021":98,"2022":99,"2023":100},{"2015":105,"2016":106,"2017":107,"2018":108,"2019":106,"2020":109,"2021":108,"2022":110,"2023":109,"2024":111},{"2015":114,"2016":115,"2017":116,"2018":117,"2019":118,"2020":107,"2021":119,"2022":120},{"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130},{"volume":621,"pages":623},{"VOID":622},"43",{"VOID":412},"2021-07-01",2021,{"id":627,"createTime":628,"updateTime":628,"relativeEntities":629,"slug":630,"properties":631,"entityType":152,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":642,"translateLanguages":18,"viewCount":19,"primaryUrl":644,"fullTextUrl":18,"authors":645,"publicationType":186,"publisherRelationship":646,"citationCount":19,"citationInfo":678,"publishDate":680,"publishYear":414,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":681,"isForceReanalyzing":222},"6fad5679-4302-448b-b68c-79e1d39c8c98","2024-04-18T23:23:56.472+00:00",[],"Prof-Mi%C5%A1o-Mihajlo-Virag-MD-PhD-FRCS-a-guiding-light-faded-away-9-07-1946-16-08-2018-",{"mag":632,"keywords":634,"openalex":635,"abstract":637,"title":638,"doi":640},{"VOID":633},"3166391374",{},{"VOID":636},"W3166391374",{},{"EN":639},"Prof. Mišo Mihajlo Virag, MD, PhD, FRCS - 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Laryngoscope 127:2770–2776\nZhu W, Lan T, Liang P, Liu X, Tao Q (2018) Role of salivary duct morphology in the etiology of chronic obstructive Parotitis: statistical analysis of Sialographic features and computational fluid dynamics analysis of salivary flow. J Oral Maxillofac Surg 77:740–747\nAntoniades D, Harrison JD, Epivatianos A, Papanayotou P (2004) Treatment of chronic sialadenitis by intraductal penicillin or saline. J Oral Maxillofac Surg 62:431–434\nCapaccio P, Cuccarini V, Ottaviani F, Minorati D, Sambataro G, Cornalba P, Pignataro L (2008) Comparative ultrasonographic, magnetic resonance sialographic, and videoendoscopic assessment of salivary duct disorders. Ann Otol Rhinol Laryngol 117:245–252\nKatz P, Fritsch MH (2003) Salivary stones: innovative techniques in diagnosis and treatment. Curr Opin Otolaryngol Head Neck Surg 11:173–178\nKoch M, Zenk J, Bozzato A, Bumm K, Iro H (2005) Sialoscopy in cases of unclear swelling of the major salivary glands. Otolaryngol Head Neck Surg 133:863–868\nPace CG, Hwang KG, Papadaki M, Troulis MJ (2014) Interventional sialoendoscopy for treatment of obstructive sialadenitis. J Oral Maxillofac Surg 72:2157–2166\nKang YH, Byun JH, Choi MJ, Park BW (2014) Successful localization of intraoral foreign body with C-arm fluoroscopy. Maxillofac Plast Reconstr Surg 36:219–223\nKoch M, Iro H (2017) Salivary duct stenosis: diagnosis and treatment. Acta Otorhinolaryngol Ital 37:132–141\nJung SW, Kim YK, Cha YH, Koh YW, Nam W (2017) Robot-assisted submandibular gland excision via modified facelift incision. Maxillofac Plast Reconstr Surg 39:25\nKroll T, Finkensieper M, Sharma SJ, Guntinas-Lichius O, Wittekindt C (2013) Short-term outcome and patient satisfaction after sialendoscopy. Eur Arch Otorhinolaryngol 270:2939–2945\nAubin-Pouliot A, Delagnes EA, Chang JL, Ryan WR (2016) Sialendoscopy-assisted surgery and the chronic obstructive sialadenitis symptoms questionnaire: a prospective study. Laryngoscope 126:1343–1348\nQuinn JH, Graham R (1973) Recurrent suppurative parotitis treated by intraductal antibiotics. J Oral Surg 31:36–39\nChoi JS, Hong SB, Hyun IY, Lim JY, Kim YM (2015) Effects of salivary secretion stimulation on the treatment of chronic radioactive iodine-induced Sialadenitis. Thyroid 25:839–845\nKim YM, Choi JS, Hong SB, Hyun IY, Lim JY (2016) Salivary gland function after sialendoscopy for treatment of chronic radioiodine-induced sialadenitis. Head Neck 38:51–58",{"EN":690},"Conventionally, indirect radiography has been used to diagnose salivary gland diseases. However, with the development of sialendoscopy, diagnosis and treatment of salivary gland diseases have become more effective. Herein, we report a case of sialolithotomy treated with sialendoscopy and compare it with the existing methods through a literature review. Two patients with a foreign body sensation under the tongue and dry mouth visited the Anam Hospital, Korea University. Radiographic examination revealed salivary stones inside the right Wharton duct, and the patients underwent sialolithotomy under local or general anaesthesia. The stones were totally removed, and there were no postoperative complications such as bleeding or pain. The development of sialendoscopy has enabled better definitive diagnosis of salivary gland diseases compared with the conventional methods; better treatment outcomes can be obtained when sialendoscopy is used in appropriate cases.",{"EN":692},"Sialolithotomy of the submandibular duct using sialendoscopy",{"VOID":694},"10.1186\u002Fs40902-019-0207-3","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-019-0207-3",[697,713,725,737,749,761],{"id":698,"sortIndex":699,"researcher":18,"roles":700,"affiliations":701,"properties":710},"d4c813f5-1c9a-4b80-b317-f7d11494cfd3",5,[161],[702],{"id":18,"sortIndex":19,"affiliation":703,"properties":18},{"id":704,"createTime":705,"updateTime":705,"relativeEntities":706,"slug":18,"properties":707,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"ced4d414-caa8-4629-a73e-bd38e48b3f38","2024-02-12T23:18:54.593+00:00",[],{"title":708},{"VI":709},"Department of Oral and Maxillofacial Surgery, Korea University Anam Hospital, Seoul, Republic of Korea",{"title":711},{"VI":712},"Sang-Ho Jun",{"id":714,"sortIndex":102,"researcher":18,"roles":715,"affiliations":716,"properties":722},"921862d3-22fc-40b3-bff1-765fded4e28e",[161],[717],{"id":18,"sortIndex":19,"affiliation":718,"properties":18},{"id":704,"createTime":705,"updateTime":705,"relativeEntities":719,"slug":18,"properties":720,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":721},{"VI":709},{"title":723},{"VI":724},"In-Seok Song",{"id":726,"sortIndex":305,"researcher":18,"roles":727,"affiliations":728,"properties":734},"941d772d-ed57-4bdf-be57-af061cdb6381",[161],[729],{"id":18,"sortIndex":19,"affiliation":730,"properties":18},{"id":704,"createTime":705,"updateTime":705,"relativeEntities":731,"slug":18,"properties":732,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":733},{"VI":709},{"title":735},{"VI":736},"Chang-Woo Kim",{"id":738,"sortIndex":159,"researcher":18,"roles":739,"affiliations":740,"properties":746},"18f80718-0d26-4062-862d-294920947e17",[161],[741],{"id":18,"sortIndex":19,"affiliation":742,"properties":18},{"id":704,"createTime":705,"updateTime":705,"relativeEntities":743,"slug":18,"properties":744,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":745},{"VI":709},{"title":747},{"VI":748},"Euy-Hyun Kim",{"id":750,"sortIndex":19,"researcher":18,"roles":751,"affiliations":752,"properties":758},"88e30acf-1ade-4579-8c85-dbe6a2ce6bc8",[161],[753],{"id":18,"sortIndex":19,"affiliation":754,"properties":18},{"id":704,"createTime":705,"updateTime":705,"relativeEntities":755,"slug":18,"properties":756,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":757},{"VI":709},{"title":759},{"VI":760},"Dong-Keon Lee",{"id":762,"sortIndex":242,"researcher":18,"roles":763,"affiliations":764,"properties":770},"0fbcaa1f-1179-49d7-b2f4-ad09866eb8a1",[161],[765],{"id":18,"sortIndex":19,"affiliation":766,"properties":18},{"id":704,"createTime":705,"updateTime":705,"relativeEntities":767,"slug":18,"properties":768,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":769},{"VI":709},{"title":771},{"VI":772},"Mong-Hun Kang",{"url":695,"publisher":774,"properties":801},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":775,"slug":10,"properties":776,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":779,"manageAffiliations":780,"indexDatabases":781,"url":90,"thumbnailPath":18,"statistic":796,"gsStatistic":18,"type":132,"analyzePriority":18},[],{"issn":777,"title":778},{"VOID":13},{"EN":15},[],[],[782,789],{"id":53,"indexDatabase":783,"url":68,"indexYears":18,"academicFieldIds":788,"indexDatabaseRanking":18},{"id":55,"createTime":56,"updateTime":57,"relativeEntities":784,"label":785,"description":786,"key":64,"publicationTags":787,"standard":18},[],{"EN":60,"VI":60},{"VI":62,"EN":63},[66,67],[70],{"id":72,"indexDatabase":790,"url":85,"indexYears":86,"academicFieldIds":795,"indexDatabaseRanking":89},{"id":74,"createTime":75,"updateTime":76,"relativeEntities":791,"label":792,"description":793,"key":82,"publicationTags":794,"standard":18},[],{"EN":79,"VI":79},{"EN":79,"VI":81},[84],[88],{"impactFactor":19,"impactFactorByYear":797,"i10Index":101,"i10IndexLast5Year":102,"totalPublication":103,"totalPublicationByYear":798,"totalCitation":112,"totalCitationByYear":799,"totalCitationPerPublication":121,"totalCitationPerPublicationByYear":800,"hindexLast5Year":131,"hindex":131},{"2016":93,"2017":94,"2018":95,"2019":96,"2020":97,"2021":98,"2022":99,"2023":100},{"2015":105,"2016":106,"2017":107,"2018":108,"2019":106,"2020":109,"2021":108,"2022":110,"2023":109,"2024":111},{"2015":114,"2016":115,"2017":116,"2018":117,"2019":118,"2020":107,"2021":119,"2022":120},{"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130},{"volume":802,"pages":803},{"VOID":528},{"VOID":804},"1-5","2019-06-24",{"id":807,"createTime":808,"updateTime":809,"relativeEntities":810,"slug":811,"properties":812,"entityType":152,"verifyStatus":153,"verifyTime":809,"verifyNote":154,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":821,"fullTextUrl":18,"authors":822,"publicationType":186,"publisherRelationship":862,"citationCount":18,"citationInfo":18,"publishDate":894,"publishYear":895,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":222},"27ff0b21-00c9-49e2-896b-e5424b4d84f9","2024-01-30T05:54:02.751+00:00","2024-12-15T23:18:20.014+00:00",[],"Kissing-molars-class-III-detected-at-a-young-age",{"references":813,"abstract":815,"title":817,"doi":819},{"VOID":814},"Hiroyasu N, Yuzuru K (1991) Difficult tooth extraction; clinical of tooth extraction, 1st edn. Medical and Dental Publishing Co Ltd, Tokyo, p 118\nHanke D (1978) Unusual displacements of the lower molars. Stomatol DDR 28:478–480\nBoffano P, Gallesio C (2009) Kissing molars. J Craniofac Surg 20:1269–1270\nNakamura T, Miwa K, Kanda S, Nonaka K, Anan H, Beppu K (1992) Rosette formation of impacted molar teeth in mucopolysaccharidoses and related disorders. Dentomaxillofac Radiol 21:45–49\nNedjat-Shokouhi B, Webb RM (2014) Bilateral kissing molars involving a dentigerous cyst: report of a case and discussion of terminology. Oral Surg 7:107–110\nGulses A, Varol A, Sencimen M, Dumlu A (2012) A study of impacted love: kissing molars. Oral Health Dent Manag 11:185–188\nGüven O, Akbulut N, Kurşun Ş, Öztaş B (2013) Kissing molars: report of four cases and review of literature. Turk Klin J Dent Sci 19:193–198\nKiran HY, Bharani KSNS, Kamath RA, Manimangalath G, Madhushankar GS (2014) Kissing molars and hyperplastic dental follicles: report of a case and literature review. Chin J Dent Res 17:57–63\nAnubhav AJ, Siva BKSN, Vivek GK, Veena GC, Kamath R (2014) Missing molars caught kissing. J Dent Med Sci 13:51–54\nBarros SE, Janson G, Chiqueto K, Ferreira E, Rösing C (2018) Expanding torque possibilities: a skeletally anchored torqued cantilever for uprighting “kissing molars.” Am J Orthod Dentofacial Orthop 153:588–598\nVan Hoof RF (1973) Four kissing molars. Oral Surg Oral Med Oral Pathol 35:284\nMenditti D, Laino L, Ciccìu M, Mezzogiorno A, Perillo L, Menditti M et al (2015) Kissing molars: report of three cases and new prospective on aetiopathogenetic theories. Int J Clin Exp Pathol 8:15708–15718\nMason C, Azam N, Holt RD, Rule DC (2000) A retrospective study of unerupted maxillary incisors associated with supernumerary teeth. Br J Oral Maxillofac Surg 38:62–65\nMitchell L, Bennett TG (1992) Supernumerary teeth causing delayed eruption - a retrospective study. Br J Orthod 19:41–46\nDe Oliveira GC, Drummond SN, Jham BC, Abdo EN, Mesquita RA (2008) A survey of 460 supernumerary teeth in Brazilian children and adolescents. Int J Paediatr Dent 18:98–106\nMercuri E, Cassetta M, Cavallini C, Vicari D, Leonardi R, Barbato E (2013) Dental anomalies and clinical features in patients with maxillary canine impaction. Angle Orthod 83:22–28\nSolares R, Romero MI (2004) Supernumerary premolars: a literature review. Pediatr Dent 26:450–458\nWen C, Jiang R, Zhang Z-Q, Lei B, Yan Y-Z, Zhong Y-Q, Tang L (2022) Vertical direction impaction of kissing molars: a case report. World J Clin Cases 10:3959–3965\nShahista P, Mascarenhas R, Shetty S, Husain A (2013) Kissing molars: an unusual unexpected impaction. Arch Med Health Sci 1:52–53\nHimi N, Kurihara Y, Chikuda J, Takamatsu K, Sasama Y, Shirota T (2020) A case in which an impacted supernumerary tooth migrated to the coronoid process. Jpn J Oral Maxillofac Surg 66:411–415\nKaoru E, Shigeo I, Kazuyuki Y, Kenichirou K, Hideyuki Y, Mitsuyoshi I (2019) A case of kissing molars of class III. Jpn J Oral Maxillofac Surg 65:539–544",{"EN":816},"Kissing molars (KMs) is defined as a state in which the apex of two impacted molars face opposite directions and the occlusal surfaces touch each other and the crown is in one follicle. Class III KMs have been reported previously; however, reports on class III KMs in young people (\u003C 18 years of age) are limited. Here, we present the case of KMs class III confirmed at an early age, supported by a review of the literature. The patient was a 16-year-old female and experienced discomfort in the left molar of the lower jaw and visited in our department. We diagnosed KMs based on an impacted teeth on the buccal side, near the lower jaw wisdom teeth, and a cyst-like low-density area observed around the crown of both teeth, as revealed by computed tomography. We decide to extract the tooth and enucleate the cyst under local anesthesia as the patient experienced discomfort due to occlusion. Furthermore, the cyst-like structure removal and tooth extraction including tooth root were necessary as the patient had KM class III, possibly inducing complicated malocclusion. Although no previous reports recommended timing for KMs tooth extraction, we propose that extraction at an early stage is important regardless of age especially in class III cases. We report a case of KM class III detected at an early age.",{"EN":818},"Kissing molars class III detected at a young age",{"VOID":820},"10.1186\u002Fs40902-023-00388-4","https:\u002F\u002Fjkamprs.springeropen.com\u002Farticles\u002F10.1186\u002Fs40902-023-00388-4",[823,838,850],{"id":824,"sortIndex":19,"researcher":18,"roles":825,"affiliations":826,"properties":835},"4a3ee153-a7d8-45a6-99f5-956154136fd2",[161],[827],{"id":18,"sortIndex":19,"affiliation":828,"properties":18},{"id":829,"createTime":830,"updateTime":830,"relativeEntities":831,"slug":18,"properties":832,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"6cb4f102-e591-404f-9415-3dbd97a28d64","2023-12-20T11:29:43.585+00:00",[],{"title":833},{"VI":834},"Department of Oral Pathobiological Science and Surgery, Tokyo Dental College, Tokyo, Japan",{"title":836},{"VI":837},"Teruhide Hoshino",{"id":839,"sortIndex":305,"researcher":18,"roles":840,"affiliations":841,"properties":847},"73316f80-5861-43a6-bbc0-453e3591642a",[161],[842],{"id":18,"sortIndex":19,"affiliation":843,"properties":18},{"id":829,"createTime":830,"updateTime":830,"relativeEntities":844,"slug":18,"properties":845,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":846},{"VI":834},{"title":848},{"VI":849},"Akira Katakura",{"id":851,"sortIndex":159,"researcher":18,"roles":852,"affiliations":853,"properties":859},"beb20d1d-ae26-4dfe-904f-f9bae1cd51d4",[161],[854],{"id":18,"sortIndex":19,"affiliation":855,"properties":18},{"id":829,"createTime":830,"updateTime":830,"relativeEntities":856,"slug":18,"properties":857,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":858},{"VI":834},{"title":860},{"VI":861},"Yu Koyama",{"url":821,"publisher":863,"properties":890},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":864,"slug":10,"properties":865,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":868,"manageAffiliations":869,"indexDatabases":870,"url":90,"thumbnailPath":18,"statistic":885,"gsStatistic":18,"type":132,"analyzePriority":18},[],{"issn":866,"title":867},{"VOID":13},{"EN":15},[],[],[871,878],{"id":53,"indexDatabase":872,"url":68,"indexYears":18,"academicFieldIds":877,"indexDatabaseRanking":18},{"id":55,"createTime":56,"updateTime":57,"relativeEntities":873,"label":874,"description":875,"key":64,"publicationTags":876,"standard":18},[],{"EN":60,"VI":60},{"VI":62,"EN":63},[66,67],[70],{"id":72,"indexDatabase":879,"url":85,"indexYears":86,"academicFieldIds":884,"indexDatabaseRanking":89},{"id":74,"createTime":75,"updateTime":76,"relativeEntities":880,"label":881,"description":882,"key":82,"publicationTags":883,"standard":18},[],{"EN":79,"VI":79},{"EN":79,"VI":81},[84],[88],{"impactFactor":19,"impactFactorByYear":886,"i10Index":101,"i10IndexLast5Year":102,"totalPublication":103,"totalPublicationByYear":887,"totalCitation":112,"totalCitationByYear":888,"totalCitationPerPublication":121,"totalCitationPerPublicationByYear":889,"hindexLast5Year":131,"hindex":131},{"2016":93,"2017":94,"2018":95,"2019":96,"2020":97,"2021":98,"2022":99,"2023":100},{"2015":105,"2016":106,"2017":107,"2018":108,"2019":106,"2020":109,"2021":108,"2022":110,"2023":109,"2024":111},{"2015":114,"2016":115,"2017":116,"2018":117,"2019":118,"2020":107,"2021":119,"2022":120},{"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130},{"volume":891,"pages":893},{"VOID":892},"45",{"VOID":804},"2023-05-23",2023,{"id":897,"createTime":898,"updateTime":899,"relativeEntities":900,"slug":901,"properties":902,"entityType":152,"verifyStatus":153,"verifyTime":899,"verifyNote":154,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":911,"fullTextUrl":18,"authors":912,"publicationType":186,"publisherRelationship":1054,"citationCount":18,"citationInfo":18,"publishDate":1086,"publishYear":221,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":222},"2fba1711-c368-461a-928f-b983f9a1595e","2024-02-20T14:35:27.812+00:00","2024-12-30T23:17:07.946+00:00",[],"Long-term-Stability-after-Reduction-of-Mandible-Fracture-by-Keyhole-Plate-Evaluation-at-the-Time-of-Plate-Removal",{"references":903,"abstract":905,"title":907,"doi":909},{"VOID":904},"Hyde N, Manisali M, Aghabeigi B, Sneddon K, Newman L (2002) The role of open reduction and internal fixation in unilateral fractures of the mandibular condyle: a prospective study. Br J Oral Maxillofac Surg 40(1):19–22\nHackenberg B, Lee C, Caterson EJ (2014) Management of subcondylar mandible fractures in the adult patient. J Craniofac Surg 25:166–171\nChoi KY, Yang JD, Chung HY, Cho BC (2012) Current concepts in the mandibular condyle fracture management part I: overview of condylar fracture. Arch Plast Surg 39:291–300\nHernigou P, Pariat J (2017) History of internal fixation (part 1): early developments with wires and plates before World War II. Int Orthop 41(6):1273–1283\nAn W, Ainiwaer A, Wusiman P, Ali G, Moming A (2018) Surgical management of mandibular angle fractures. J Craniofac Surg 29(7):1702–1708\nLuhr HG (1968) On the stable osteosynthesis in mandibular fractures. Dtsch Zahnarztl Z. 23(7):754\nMukerji R, Mukerji G, McGurk M (2006) Mandibular fractures: historical perspective. Br J Oral Maxillofac Surg 44(3):222–228\nMarentette L (1995) Miniplate osteosynthesis of mandible fractures. Operative Techniques in Otolaryngology-Head and Neck Surgery 6(2):86–88\nChampy M, Loddé JP, Schmitt R, Jaeger JH, Muster D. (1978) Mandibular osteosynthesis by miniature screwed plates via a buccal approach. J Maxillofac Surg .614–21.\nRodriguez ED, Adamo AK, Anastassov GE (1997) Open reduction of subcondylar fractures via an anterior parotid approach. J Craniomaxillofac Trauma 3(2):28–34\nLi H, Zhang G, Cui J, Liu W, Dilxat D, Liu L (2016) A modified preauricular approach for treating intracapsular condylar fractures to prevent facial nerve injury: the supratemporalis approach. J Oral Maxillofac Surg 74:1013–1022\nWoo IH, Kim JW, Kim JY, Yang BE (2017) A new method of fixation with the Yang’s Keyhole Plate System for the treatment of mandible fractures. J Craniofac Surg 28(2):508–512\nHanba C, Svider PF, Chen FS, Carron MA, Folbe AJ, Eloy JA et al (2016) Race and sex differences in adult facial fracture risk. JAMA Facial Plast Surg 18(6):441–448\nEllis E 3rd, Moos KF, el-Attar A (1985) A. Ten years of mandibular fractures: an analysis of 2,137 cases. Oral Surg Oral Med Oral Pathol. 59(2):120–129\nMorris C, Bebeau NP, Brockhoff H, Tandon R, Tiwana P (2015) Mandibular fractures: an analysis of the epidemiology and patterns of injury in 4,143 fractures. J Oral Maxillofac Surg. 73:951.e1-e12.\nKim JW, Park KN, Lee CH, Kim YS, Kim YH, Yang BE (2018) Finite element stress analysis of Keyhole Plate System in sagittal split ramus osteotomy. Sci Rep 8(1):8971",{"EN":906},"Various types of miniplates have been developed and used for the reduction of facial bone fractures. We introduced Yang’s Keyhole (YK) plate, and reported on its short-term stability. The purpose of this study was to evaluate the long-term stability of the YK plate, as a follow-up study, by examining the patients who had used the YK plate among the patients with the reduction of mandible fractures and who visited for plate removal. We reviewed the medical records of 16 patients who underwent mandibular fracture fixation using a YK plate (group I) and 17 patients who underwent mandibular fracture fixation using a conventional plate (group II). Assessment was then made on malunion, occlusal stability, discomfort during the application, and clinical symptoms. From January 2015 to December 2017, a total of 36 patients underwent mandibular fracture surgery using a YK plate. A total of 16 patients received plate removal. Among them, 15 were male and 1 female. The average age was 26 years. The applied surgical sites were the 12 on mandibular angle, 4 on mandibular symphysis, and 2 on subcondyle. The application period of YK plate was an average of 335 days. During the same period, 45 people underwent surgery on the conventional plate. A total of 17 patients received plate removal. Among them, 15 were male and 2 females. The average age was 36 years. The applied surgical sites were the 8 on mandibular angle, 4 on mandibular symphysis, and 2 on subcondyle. The application period of the conventional plate was an average of 349 days. No malocclusion occurred at the time of removal, and occlusion was stable. No patient complained of joint disease or discomfort. The YK plate system, in which the screw was first inserted and the plate was applied, for clinical convenience did not cause any particular problem and no significant difference from the conventional plate.",{"EN":908},"Long-term Stability after Reduction of Mandible Fracture by Keyhole Plate: Evaluation at the Time of Plate 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I, Khansa L, Pearson GD (2015) Patient satisfaction after rhinoplasty: a social media analysis. Aesthet Surg J 36(1):NP1–NP5 10.1093\u002Fasj\u002Fsjv095\nLalezari S, Daar D, Mathew P et al (2018) Trends in Rhinoplasty Research: A 20-Year Bibliometric Analysis. Aesthet Plast Surg 42(4):1071–1084. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00266-018-1130-1\nUhm KI, Shin KS, Lee YH, Lew JD (1987) Nostril sill augmentation in secondary cleft lip. Ann Plast Surg 19(5):391–399. https:\u002F\u002Fdoi.org\u002F10.1097\u002F00000637-198711000-00001\nFoda HMT (2007) Nasal base narrowing: the combined alar base excision technique. Arch Facial Plast Surg 9(1):30–34. https:\u002F\u002Fdoi.org\u002F10.1001\u002Farchfaci.9.1.30\nOhba N, Ohba M (2016) Preservation of nostril morphology in nasal base reduction. Aesthet Plast Surg 40(5):680–684. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00266-016-0676-z\nKridel RWH, Castellano RD (2005) A simplified approach to alar base reduction: a review of 124 patients over 20 years. Arch Facial Plast Surg 7(2):81–93. https:\u002F\u002Fdoi.org\u002F10.1001\u002Farchfaci.7.2.81\nTucker KR (1981) Reconstruction of the ala and nostril sill using proximate composite grafts. Plast Reconstr Surg 68:148–150\nFarkas LG, Hreczko TA, Deutsch CK (1983) Objective assessment of standard nostril types--a morphometric study. Ann Plast Surg 11(5):381–389. https:\u002F\u002Fdoi.org\u002F10.1097\u002F00000637-198311000-00004\nChang LS, Son Y, Baek R-M, Kim B-K (2017) Anatomical Reconstruction of the Nasal Floor in Complete Unilateral Cleft Lip Repair. Ann Plast Surg 79(4):365–371. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSAP.0000000000001093\nWei J, Herrler T, Xu H, Li Q, Dai C (2017) Double composite tissue Z-plasty technique for anatomical restoration of severe nasal deformity in secondary unilateral cleft lip. Ann Plast Surg 79(4):359–364. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSAP.0000000000001160\nGuillemin F, Bombardier C, Beaton D (1993) Cross-cultural adaptation of health-related quality of life measures: Literature review and proposed guidelines. J Clin Epidemiol 46(12):1417–1432. https:\u002F\u002Fdoi.org\u002F10.1016\u002F0895-4356(93)90142-n\nIzu SC, Kosugi EM, Brandão KV, Lopes AS, Garcia LBS, Suguri VM, Gregório LC (2012) Normal values for the Rhinoplasty Outcome Evaluation (ROE) questionnaire. Braz J Otorhinolaryngol 78(4):76–79. https:\u002F\u002Fdoi.org\u002F10.1590\u002FS1808-86942012000400015\nJiang C, Ma H, Yin N (2018) Nostril sill repair by muscle tension line group reconstruction in patients with cleft lip. JAMA Facial Plast Surg 20(2):168–169. https:\u002F\u002Fdoi.org\u002F10.1001\u002Fjamafacial.2017.1657\nWang H, Fan F, You J, Wang S (2012) Correction of unilateral cleft lip nose deformity using nasal alar rim flap. J Craniofac Surg 23(5):1378–1381. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSCS.0b013e318252fd09\nKim MC, Choi DH, Bae SG, Cho BC (2017) Correction of minor-form and microform cleft lip using modified muscle overlapping with a minimal skin incision. Arch Plast Surg 44(3):210–216. https:\u002F\u002Fdoi.org\u002F10.5999\u002Faps.2017.44.3.210\nAranmolate S, Aranmolate SO, Zeri RS, Gbeneol T, Ajani AO (2016) Upper triangular flap in unilateral cleft lip repair. J Craniofac Surg 27(3):756–759. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSCS.0000000000002448\nYin N, Song T, Wu J, Chen B, Ma H, Zhao Z, Wang Y, Li H, Wu D (2015) Unilateral microform cleft lip repair: application of muscle tension line group theory. J Craniofac Surg 26(2):343–346. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSCS.0000000000001460\nAgarwal R, Bhatnagar SK, Pandey SD, Singh AK, Chandra R (1998) Nasal sill augmentation in adult incomplete cleft lip nose deformity using superiorly based turn over orbicularis oris muscle flap: an anatomic approach. Plast Reconstr Surg 102(5):1350–1359. https:\u002F\u002Fdoi.org\u002F10.1097\u002F00006534-199810000-00005\nKim SW, Park SO, Choi TH, Hai DT (2012) Change in upper lip height and nostril sill after alveolar bone grafting in unilateral cleft lip alveolus patients. J Plast Reconstr Aesthet Surg 65(5):558–563. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.bjps.2011.11.046\nFriedman HI, Stonerock C, Brill A (2003) Composite earlobe grafts to reconstruct the lateral nasal ala and sill. Ann Plast Surg 50(3):275–281; discussion 281. https:\u002F\u002Fdoi.org\u002F10.1097\u002F01.sap.0000046782.74684.4b\nAyhan M, Gorgu M, Erdogan B, Aytug Z, Aksungur E, Sy´ly´strely´ O, Oztan Y (2006) Various applications of chondrocutaneous composite grafts in secondary cleft lip nose patients. J Craniofac Surg 17(6):1065–1071. https:\u002F\u002Fdoi.org\u002F10.1097\u002F01.scs.0000231628.10511.bb\nLu T-C, Lam WL, Chang C-S, Kuo-Ting Chen P (2012) Primary correction of nasal deformity in unilateral incomplete cleft lip: a comparative study between three techniques. J Plast Reconstr Aesthet Surg 65(4):456–463. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.bjps.2011.11.006\nChang L, Wang J, Yu L, Zhang B, Zhu C (2012) Closure of nasal floor by mucosal flaps on the upper lip margin in wide unilateral complete cleft lip. J Craniofac Surg 23(3):866–868. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSCS.0b013e31824ddc43\nPark Y-W, Kwon K-J, Kim M-K (2015) Double-layered reconstruction of the nasal floor in complete cleft deformity of the primary palate using superfluous lip tissue. Maxillofac Plast Reconstr Surg 37(1):35. https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs40902-015-0035-z\nJayarajan R (2015) Total columella reconstruction using nasocheek flap and septal cartilage graft. Plast Reconstr Surg Glob Open 3(11):e559–e559. https:\u002F\u002Fdoi.org\u002F10.1097\u002FGOX.0000000000000538\nYim E, Tinklepaugh AJ, Libby TJ, Ciocon DH (2020) Reconstruction of a deep cutaneous lip defect involving the nasal sill. Dermatologic Surg Off Publ Am Soc Dermatologic Surg [et al] 46(1):123–125. https:\u002F\u002Fdoi.org\u002F10.1097\u002FDSS.0000000000001656\nVecchione TR (1980) Reconstruction of the ala and nostril sill using proximate composite grafts. Ann Plast Surg 5(2):148–150. https:\u002F\u002Fdoi.org\u002F10.1097\u002F00000637-198008000-00011\nWatanabe T, Matsuo K (1996) Augmentation with cartilage grafts around the pyriform aperture to improve the midface and profile in binder’s syndrome. Ann Plast Surg 36(2):206–211. https:\u002F\u002Fdoi.org\u002F10.1097\u002F00000637-199602000-00020\nDaniel RK, Palhazi P, Gerbault O, Kosins AM (2014) Rhinoplasty: the lateral crura–alar ring. Aesthet Surg J 34(4):526–537. https:\u002F\u002Fdoi.org\u002F10.1177\u002F1090820X14528464\nDaniel RK, Glasz T, Molnar G, Palhazi P, Saban Y, Journel B (2013) The lower nasal base: an anatomical study. Aesthet Surg J 33(2):222–232. https:\u002F\u002Fdoi.org\u002F10.1177\u002F1090820X12472695\nOh M, Lee D, Choi T, Kim S (2010) Anatomic study of the nostril sill classification and histologic findings. Ann Plast Surg 65(1):56–59. https:\u002F\u002Fdoi.org\u002F10.1097\u002FSAP.0b013e3181bb49d9\nIrwin MS, Milling MAP (1995) The morphology of the nostril sill. Eur J Plast Surg 18(6):276–280. https:\u002F\u002Fdoi.org\u002F10.1007\u002FBF00178539",{"EN":1097},"Nasal sill is one of the components of the alar ring, affecting the esthetic outcomes of rhinoplasty; accordingly, we developed a novel technique to adjust defects in this area and compared it with the available techniques. Our technique was based on creating a tunnel access to the nasal sill area through an incision made in the lower third of the columella using the open approach or through a nostril base incision in patients, who underwent alar base reduction, followed by insertion of a cartilaginous graft into the marked defect area. A total number of 54 patients with a defect in the nasal sill area were included in this study. Thirty-one patients underwent open rhinoplasty with the sill approach from the lower third of the columella, while 23 patients underwent rhinoplasty with a nostril base approach for nasal sill augmentation procedure. There were no reports of patient dissatisfaction, infection, bleeding, sensory dysfunction, or remaining asymmetry of the sill area. 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