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Telerehabilitation and recovery of motor function: a systematic review and meta-analysis. J Telemed Telecare. 2015;21(4):202–213.\nAl Amer HS, Sabbahi MA, Alrowayeh HN, Bryan WJ, Olson SL. Electromyographic activity of quadriceps muscle during sit-to-stand in patients with unilateral knee osteoarthritis. BMC Res Notes. 2018;11(1):356.\nAnesi GL. Coronavirus disease 2019 (COVID-19): Critical care and airway management issues. In: Post TW, ed. UpToDate. Waltham, MA: UpToDate Inc. Available at https:\u002F\u002Fwww.uptodate.com\u002Fcontents\u002Fcoronavirus-disease-2019-covid-19-critical-care-and-airway-management-issues. Accessed May 29, 2020.\nBorg G. Psychophysical bases of perceived exertion. Med Sci Sports Exerc. 1982;14(5):377–381.\nCalton B, Abedini N, Fratkin M. Telemedicine in the time of coronavirus [published online ahead of print, 2020 Mar 31]. J Pain Symptom Manage. 2020;60(1):e12-e14. doi:https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jpainsymman.2020.03.019\nCaputo ND, Strayer RJ, Levitan R. Early self-proning in awake, non-intubated patients in the emergency department: a single ED’s experience during the COVID-19 pandemic. Acad Emerg Med. 2020;27(5):375–378. doi:https:\u002F\u002Fdoi.org\u002F10.1111\u002Facem.13994\nCeravolo MG, De Sire A, Andrenelli E, Negrini F, Negrini S. Systematic rapid “living” review on rehabilitation needs due to COVID-19: update to March 31, 2020 [published online ahead of print, 2020 Apr 22]. Eur J Phys Rehabil Med. 2020; https:\u002F\u002Fdoi.org\u002F10.23736\u002FS1973-9087.20.06329-7.\nChou E, Hsieh YL, Wolfshohl J, Green F, Bhakta T. Onsite telemedicine strategy for coronavirus (COVID-19) screening to limit exposure in ED [published online ahead of print, 2020 May 3]. Emerg Med J. 2020;37(6):335-337. doi:https:\u002F\u002Fdoi.org\u002F10.1136\u002Femermed-2020-209645\nCottrell MA, Galea OA, O’Leary SP, Hill AJ, Russell TG. Real-time telerehabilitation for the treatment of musculoskeletal conditions is effective and comparable to standard practice: a systematic review and meta-analysis. Clin Rehabil. 2017;31(5):625-638.\nEnergy conservation techniques. 2006. Available at https:\u002F\u002Fmynyp.org\u002Fpdf\u002Fenergy_conserve.pdf. Accessed May 28, 2020.\nFisher C, Biehl E, Titmuss MP, Schwartz R, Gantha CS. HSS@Home, physical therapist-led telehealth care navigation for arthroplasty patients: a retrospective case series. HSS J. 2019;15(3):226-233.\nHall C. Energy conservation and your OT patient. 2017. Available at https:\u002F\u002Fwww.ottoolkit.com\u002Fblog\u002Fenergy-conservation-and-your-ot-patient\u002F. Accessed May 15, 2020.\nHanlon P, Daines L, Campbell C, McKinstry B, Weller D, Pinnock H. Telehealth interventions to support self-management of long-term conditions: a systematic metareview of diabetes, heart failure, asthma, chronic obstructive pulmonary disease, and cancer. J Med Internet Res. 2017;19(5):e172.\nHillegass E. Essentials of cardiopulmonary physical therapy. 4th ed. St Louis, MO: Elsevier\u002FSaunders; 2016.\nHillegass E. Post-Acute Covid-19 Exercise and Rehabilitation (PACER) project. Lecture presented online: APTA; April 7, 2020. Available at https:\u002F\u002Flearningcenter.apta.org\u002Fstudent\u002Fmycourse.aspx?id=f4b7ebc7-bdbd-4808-814c-c875c8aee805. Accessed June 22, 2020.\nHirschmann MT, Hart A, Henckel J, Sadoghi P, Seil R, Mouton C. COVID-19 coronavirus: recommended personal protective equipment for the orthopaedic and trauma surgeon [published correction appears in Knee Surg Sports Traumatol Arthrosc. 2020 Jun 12]. Knee Surg Sports Traumatol Arthrosc. 2020;28(6):1690–1698. doi:https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00167-020-06022-4\nKendrick KR, Baxi SC, Smith RM. Usefulness of the modified 0-10 Borg scale in assessing the degree of dyspnea in patients with COPD and asthma. J Emerg Nurs. 2000;26(3):216–222.\nKim DH, Jang SH. Effects of an upper-limb exercise program for improving muscular strength and range of movement on respiratory function of stroke patients. J Phys Ther Sci. 2016;28(10):2785–2788.\nMann DM, Chen J, Chunara R, Testa PA, Nov O. COVID-19 transforms health care through telemedicine: evidence from the field [published online ahead of print, 2020 Apr 23]. J Am Med Inform Assoc. 2020;ocaa072. https:\u002F\u002Fdoi.org\u002F10.1093\u002Fjamia\u002Focaa072\nMiddleton A, Simpson KN, Bettger JP, Bowden MG. COVID-19 pandemic and beyond: considerations and costs of telehealth exercise programs for older adults with functional impairments living at home-lessons learned from a pilot case study [published online ahead of print, 2020 May 5]. Phys Ther. 2020;pzaa089. https:\u002F\u002Fdoi.org\u002F10.1093\u002Fptj\u002Fpzaa089\nRichmond T, Peterson C, Cason J, et al. American telemedicine association's principles for delivering telerehabilitation services. Int J Telerehabil. 2017;9(2):63–68.\nRodriguez-Morales AJ, Cardona-Ospina JA, Gutiérrez-Ocampo E, et al. Clinical, laboratory and imaging features of COVID-19: a systematic review and meta-analysis. Travel Med Infect Dis. 2020;34:101623. doi:https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.tmaid.2020.101623\nThomas P, Baldwin C, Bissett B, et al. Physiotherapy management for COVID-19 in the acute hospital setting: clinical practice recommendations. J Physiother. 2020;66(2):73–82. doi:https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jphys.2020.03.011\nToya K, Sasano K, Takasoh T, et al. Ankle positions and exercise intervals effect on the blood flow velocity in the common femoral vein during ankle pumping exercises. J Phys Ther Sci. 2016;28(2):685–688.\nWilson J, Ferris E, Heckler A, Maitland L, Taylor C. A structured review of the role of gluteus maximus in rehabilitation. NZ J Physiother. 2004;33:95–100.\nYu P, Wei Q, He C. Early rehabilitation for critically ill patients with COVID-19: more benefits than risks. Am J Phys Med Rehabil. 2020;99(6):468–469. doi:https:\u002F\u002Fdoi.org\u002F10.1097\u002FPHM.0000000000001445\nZhao HM, Xie YX, Wang C. Recommendations for respiratory rehabilitation in adults with COVID-19 [published online ahead of print, 2020 Apr 9]. Chin Med J (Engl). 2020. https:\u002F\u002Fdoi.org\u002F10.1097\u002FCM9.0000000000000848",{"EN":278},"Guidelines for physical therapy management of patients hospitalized with COVID-19 recommend limiting physical therapists’ contact with patients when possible. Telehealth has been viewed as “electronic personal protective equipment” during the COVID-19 pandemic; although telerehabilitation has been shown to be effective with outpatients, it is unknown whether it is a viable option for hospitalized patients. Our facility developed an algorithm for the use of a physical therapy telerehabilitation program for inpatients with COVID-19. We sought to investigate the safety and viability of the program. We conducted a retrospective chart review of patients admitted with a diagnosis of COVID-19 who received either telerehabilitation only or a combination of telerehabilitation and in-person rehabilitation. Based on the algorithm, COVID-19 inpatients were selected to receive telerehabilitation if they could ambulate independently, could use technology, had stable vital signs, required minimal supplemental oxygen, and were cognitively intact. We analyzed data of inpatients who received telerehabilitation only, which included patient education, therapeutic exercises, and breathing techniques. Of 33 COVID-19 inpatients who received telerehabilitation, in-person rehabilitation, or a combination of the two, 12 patients received telerehabilitation only (age range, 33 to 65 years; all but one male). They demonstrated independence with their individualized home exercise programs in one to two sessions, did not require an in-person rehabilitation consultation, did not require increased oxygen, experienced no exacerbation of symptoms, and were discharged home. Inpatient telerehabilitation appears to be a viable option for selected hospitalized patients with COVID-19 and may be a safe way of delivering inpatient rehabilitation to isolated or at-risk populations. At our hospital, the use of inpatient telerehabilitation reduced staff exposure while providing important education and services to patients. To our knowledge, no studies have investigated the use of telerehabilitation for hospitalized patients, including those with COVID-19. Our findings suggest that this innovative approach warrants further study.",{"EN":280},"Delivering Telerehabilitation to COVID-19 Inpatients:A Retrospective Chart Review Suggests It Is a Viable Option",{"VOID":282},"10.1007\u002Fs11420-020-09774-4","http:\u002F\u002Fjournals.sagepub.com\u002Fdoi\u002F10.1007\u002Fs11420-020-09774-4",[285,300,312,324],{"id":286,"sortIndex":109,"researcher":20,"roles":287,"affiliations":288,"properties":297},"4187d080-d59b-4d17-9c12-7f0a29dbe948",[142],[289],{"id":20,"sortIndex":21,"affiliation":290,"properties":20},{"id":291,"createTime":292,"updateTime":292,"relativeEntities":293,"slug":20,"properties":294,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"c0a7cb81-0f33-49af-aa77-8e137722eac6","2024-01-20T07:25:09.714+00:00",[],{"title":295},{"VI":296},"Rehabilitation Department, Hospital for Special Surgery, New York, USA",{"title":298},{"VI":299},"Cecelia Lawrence",{"id":301,"sortIndex":184,"researcher":20,"roles":302,"affiliations":303,"properties":309},"76203688-472a-487d-9a94-6259d6961497",[142],[304],{"id":20,"sortIndex":21,"affiliation":305,"properties":20},{"id":291,"createTime":292,"updateTime":292,"relativeEntities":306,"slug":20,"properties":307,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":308},{"VI":296},{"title":310},{"VI":311},"Brianne Mooney",{"id":313,"sortIndex":21,"researcher":20,"roles":314,"affiliations":315,"properties":321},"8d9876c4-27c3-41f5-8500-700aa14ff355",[142],[316],{"id":20,"sortIndex":21,"affiliation":317,"properties":20},{"id":291,"createTime":292,"updateTime":292,"relativeEntities":318,"slug":20,"properties":319,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":320},{"VI":296},{"title":322},{"VI":323},"Kelsey Rosen",{"id":325,"sortIndex":108,"researcher":20,"roles":326,"affiliations":327,"properties":333},"74ece409-4954-4c5f-b8cf-6d4569beeb14",[142],[328],{"id":20,"sortIndex":21,"affiliation":329,"properties":20},{"id":291,"createTime":292,"updateTime":292,"relativeEntities":330,"slug":20,"properties":331,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":332},{"VI":296},{"title":334},{"VI":335},"Monika Patel",{"url":283,"publisher":337,"properties":365},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":338,"slug":10,"properties":339,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":343,"manageAffiliations":344,"indexDatabases":345,"url":104,"thumbnailPath":20,"statistic":360,"gsStatistic":20,"type":112,"analyzePriority":20},[],{"issn":340,"eissn":341,"title":342},{"VOID":13},{"VOID":15},{"EN":17},[],[],[346,353],{"id":65,"indexDatabase":347,"url":80,"indexYears":20,"academicFieldIds":352,"indexDatabaseRanking":20},{"id":67,"createTime":68,"updateTime":69,"relativeEntities":348,"label":349,"description":350,"key":76,"publicationTags":351,"standard":20},[],{"EN":72,"VI":72},{"VI":74,"EN":75},[78,79],[82,83],{"id":85,"indexDatabase":354,"url":98,"indexYears":99,"academicFieldIds":359,"indexDatabaseRanking":103},{"id":87,"createTime":88,"updateTime":89,"relativeEntities":355,"label":356,"description":357,"key":95,"publicationTags":358,"standard":20},[],{"EN":92,"VI":92},{"EN":92,"VI":94},[97],[101,102],{"impactFactor":21,"impactFactorByYear":361,"i10Index":21,"i10IndexLast5Year":21,"totalPublication":61,"totalPublicationByYear":362,"totalCitation":21,"totalCitationByYear":363,"totalCitationPerPublication":21,"totalCitationPerPublicationByYear":364,"hindexLast5Year":21,"hindex":21},{},{"2009":108,"2011":108,"2019":109,"2020":108},{},{},{"volume":366,"pages":368},{"VOID":367},"16",{"VOID":369},"64-70","2020-07-16",2020,{"id":373,"createTime":374,"updateTime":375,"relativeEntities":376,"slug":377,"properties":378,"entityType":133,"verifyStatus":134,"verifyTime":375,"verifyNote":136,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":108,"primaryUrl":387,"fullTextUrl":20,"authors":388,"publicationType":235,"publisherRelationship":440,"citationCount":20,"citationInfo":20,"publishDate":474,"publishYear":475,"citationAnalyzeStatus":19,"lastCitationAnalyze":20,"indexDatabases":20,"openAccess":20,"references":20,"isForceReanalyzing":267},"fc7f2cf3-5fd3-417f-81fc-d073a60743a9","2024-01-10T15:59:51.244+00:00","2024-09-24T23:57:45.955+00:00",[],"Effect-of-Pelvic-Osteotomy-in-the-Skeletally-Immature-on-Acetabular-Coverage",{"references":379,"abstract":381,"title":383,"doi":385},{"VOID":380},"Allen DJ, Beaule PE, Ramadan O, Doucette S. Prevalence of associated deformities and hip pain in patients with cam type femoroacetabular impingement. J Bone Joint Surg. 2009;91B:589-594.\nAmstutz HC, Thomas BJ, Jinnah R, Kim W, Grogan T, Yale C. Treatment of primary osteoarthritis of the hip. A comparison of total joint and surface replacement arthroplasty. J Bone Joint Surg Am. 1984;66:228-241.\nBeck M, Kalhor M, Leunig M, Ganz R. Hip morphology influences the pattern of damage to the acetabular cartilage: femoroacetabular impingement as a cause of early osteoarthritis of the hip. J Bone Joint Surg. 2005;87B:1012-1018.\nBellamy N, Buchanan WW, Goldsmith CH. Validation study of WOMAC: a health status instrument for measuring clinically important patient relevant outcomes following total or knee arthroplasty in osteoarthritis. J Orthop Rheumatol. 1988;1:95-108.\nBellamy N, Buchanan WW, Goldsmith CH, Campbell J, Stitt LW. Validation study of WOMAC: a health status instrument for measuring clinically important patient relevant outcomes to antirheumatic drug therapy in patients with osteoarthritis of the hip or knee. J Rheumatol. 1988;15:1833-1840.\nBohm P, Brzuske A. Salter innominate osteotomy for the treatment of developmental dysplasia of the hip in children: results of seventy-three consecutive osteotomies after twenty-six to thirty-five years of follow-up. J Bone Joint Surg Am 2002 84-A: 178-186.\nClohisy JC, Nunley RM, Carlisle JC, Schoenecker PE. Incidence and characteristics of femoral deformities in the dysplastic hip. Clin Orthop Relat Res. 2009;467:128-134.\nCobb J, Logishetty K, Davda K, Iranpour F. Cams and pincer impingement are distinct, not mixed: the acetabular pathomorphology of femoroacetabular impingement. Clin Orthop Relat Res. 2010;468:2143-2151.\nDora C, Mascard E, Mladenov K, Seringe R. Retroversion of the acetabular dome after Salter and triple pelvic osteotomy for congenital dislocation of the hip. J Pediatr Orthop B. 2002;11:34-40.\nGiori NJ, Trousdale RT. Acetabular Retroversion is associated with osteoarthritis of the hip. Clin Orthop. 2003;417:263-269.\nGrudziak JS, Ward WT. Dega osteotomy for the treatment of congenital dysplasia of the hip. J Bone Joint Surg Am. 2001;83-A: 845-854.\nHaidar RK, Jones RS, Vergroesen DA, Evans GA. Simultaneous open reduction and Salter innominate osteotomy for developmental dysplasia of the hip. J Bone Joint Surg Br. 1996;78:471-476.\nHuang SC, Wang JH. A comparative study of nonoperative versus operative treatment of developmental dysplasia of the hip in patients of walking age. J Pediatr Orthop. 1997;17:181-188.\nIto H, Ooura H, Kobayashi M, Matsuno T. Middle-term results of Salter innominate osteotomy. Clin Orthop Relat Res. 2001;156-164.\nJamali AA, Maldenov K, Meyer DC, Martinez A, Beck M, Ganz R, Leunig M. Anteroposterior pelvic radiographs to assess acetabular retroversion: high validity of the \"cross-over-sign\". J Orthop Res. 2007;25:758-765.\nKalberer F, Sierra RJ, Madan SS, Ganz R, Leunig M. Ischial spine projection into the pelvis : a new sign for acetabular retroversion. Clin Orthop Rel Res. 2008;466:677-683.\nKim WY, Hutchinson CE, Andrew JG, Allen PD. The relationship between acetabular retroversion and osteoarthritis of the hip. J Bone Joint Surg Br. 2006;88:727-729.\nLamontagne M, Kennedy MJ, Beaule PE. The Effect of Cam FAI on Hip and Pelvic Motion during Maximum Squat. Clin Orthop Rel Res. 2009;467:645-650.\nLeBel ME, Gallien R. The surgical treatment of teratologic dislocation of the hip. J Pediatr Orthop B. 2005;14:331-336.\nLeunig M, Beaule PE, Ganz R. The concept of femoroacetabular impingement: current status and future perspectives. Clin Orthop Rel Res. 2009;467:616-622.\nLi PL, Ganz R. The morphology of congenital acetabular dysplasia. One in six is retroverted. Clin Orthop Rel Res 2003 416: 245-253.\nMarx RG, Stump TJ, Jones EC, Wickiewicz TL, Warren RF. Development and evaluation of an activity rating scale for disorders of the knee. Am J Sports Med. 2001;29:213-218.\nMast JW, Brunner RL, Zebrack J. Recognizing acetabular version in the radiographic presentation of hip dysplasia. Clin Orthop Rel Res. 2004;418:48-53.\nMayo KA, Trumble SJ, Mast JW. Results of periacetabular osteotomy in patients with previous surgery for hip dysplasia. Clin Orthop Rel Res. 1999;363:73-80.\nMurphy SB, Ganz R, Muller ME. The prognosis in untreated dysplasia of the hip. A study of radiographic factors that predict the outcome. J Bone Joint Surg. 1995;77A:985-989.\nMyers SR, Eijer H, Ganz R. Anterior femoroacetabular impingement after periacetabular osteotomy. Clin Orthop Rel Res. 1999;363:93–99.\nNehme A, Oakes D, Perry MJ, Hawatmeth SI, Trousdale RT. Acetabular morphology in bladder exstrophy complex. Clin Orthop Relat Res. 2007;458:125-130.\nPEMBERTON PA. PERICAPSULAR OSTEOTOMY OF THE ILIUM FOR TREATMENT OF CONGENITAL SUBLUXATION AND DISLOCATION OF THE HIP. J Bone Joint Surg Am. 1965;47:65-86.\nReynolds D, Lucas J, Klaue K. Retroversion of the acetabulum. A cause of hip pain. J Bone Joint Surg. 1999;81B:281-288.\nRobb CA, Datta A, Nayeemuddin M, Bache CE. Assessment of acetabular retroversion following long term review of Salter’s osteotomy. Hip International. 2009;19:8-12.\nSalter RB. Role of innominate osteotomy in the treatment of congenital dislocation and subluxation of the hip in the older child. J Bone Joint Surg Am. 1966;48:1413-1439.\nSalter RB. Innominate osteotomy in the treatment of congenital dislocation of the hip. J Bone Joint Surg. 1961;43B:518-539.\nSankar WN, Flynn JM. The development of acetabular retroversion in children with Legg-Calvé-Perthes disease. J Pediatr Orthop. 2008;28:440-443.\nSiebenrock KA, Kalbermatten DF, Ganz R. Effect of pelvic tilt on acetabular retroversion: a study of pelves from cadavers. Clin Orthop Rel Res. 2003;407:241-248.\nSteel HH. Triple osteotomy of the innominate bone. J Bone Joint Surg. 1973;55A:343-350.\nSutherland DH, Greenfield R. Double innominate osteotomy. J Bone Joint Surg Am. 1977;59:1082-1091.\nThomas SR, Wedge JH, Salter RB. Outcome at forty-five years after open reduction and innominate osteotomy for late-presenting developmental dislocation of the hip. J Bone Joint Surg Am. 2007;89:2341-2350.\nTonnis D. Normal Values of the hip of the Hip Joint for the evaluation of x-rays in children and adults. Clin Orthop. 1976;119:39-47.\nTonnis D, Heinecke A. Acetabular and femoral anteversion: relationship with osteoarthritis of the hip. J Bone Joint Surg. 1999;81A:1747-1770.\nvan Bergayk AB, Garbuz DS. Quality of life and sports-specific outcomes after Bernese periacetabular osteotomy. J Bone Joint Surg. 2002;84B:339-343.\nWare JE, Snow KK, Kosinski M, Gandek B. SF-36 Health Survey: Manual and Interpretation Guide. 1993;\nWiberg G. Studies on dysplastic acetabula and congenital subluxation of the hip joint: with special reference to teh complication of osteoarthritis. Acta Chir Scand. 1939;83:\nYasunaga Y, Yamasaki T, Matsuo T, Ishikawa M, Adachi N, Ochi M. Crossover sign after rotational acetabular osteotomy for dysplasia of the hip. J Orthop Sci. 2010;15:463-469.",{"EN":382},"Although pelvic osteotomy in children has been effective in re-establishing containment of the hip joint, its impact on hip joint development with respect to acetabular coverage is ill defined. The purpose of this study is to determine the prevalence of acetabular overcoverage in patients who had pelvic osteotomy during childhood and its impact on patient function. Between 1980 and 2008, all patients who had a pelvic osteotomy done at our institution for non-neuropathic hip dysplasia (DDH) or secondary to Legg–Calvé–Perthes disease (LCP) prior to skeletal maturity were reviewed. A clinical assessment and the WOMAC, UCLA Activity Score, Marx activity score, and SF-36 quality-of-life questionnaires were completed. A standardized AP pelvic X-ray was performed to determine the acetabular coverage, signs of retroversion, and degenerative changes. Twenty-eight patients (32 hips) were identified, of which 14 (9 DDH, 5 LCP) agreed to participate. Impingement sign was positive in eight patients (six DDH, two LCP). Crossover and ischial spine signs were each present in ten hips. Tonnis grades were: 0 in 1 hip, 1 in 10 hips, 2 in 2 hips, and 3 in 1 hip. The mean Tonnis angle was 11.6 ± 8.6°. The mean CE angle was 24.0 ± 15.9° with six hips having a CE angle \u003C20° and one hip with a CE angle >40°. There was no correlation between crossover sign or ischial sign and Tonnis grade (p = 0.739), hip pain (p = 0.520), or impingement sign (p = 1.00). Acetabular overcoverage is common in patients who underwent pelvic osteotomy during childhood. No correlation was identified between retroversion and hip pain in our patient cohort.",{"EN":384},"Effect of Pelvic Osteotomy in the Skeletally Immature on Acetabular Coverage",{"VOID":386},"10.1007\u002Fs11420-012-9286-8","https:\u002F\u002Fjournals.sagepub.com\u002Fdoi\u002F10.1007\u002Fs11420-012-9286-8",[389,406,428],{"id":390,"sortIndex":108,"researcher":20,"roles":391,"affiliations":392,"properties":403},"9202480b-1a3f-48f1-9273-6808ee8126f5",[142],[393],{"id":20,"sortIndex":21,"affiliation":394,"properties":20},{"id":395,"createTime":396,"updateTime":397,"relativeEntities":398,"slug":399,"properties":400,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"19a85b36-c60f-418a-ac0f-55384453c2d2","2023-12-25T07:25:48.576+00:00","2025-02-10T22:42:00.361+00:00",[],"University-of-Ottawa-Ottawa-Canada",{"title":401},{"VI":402},"University of Ottawa, Ottawa, Canada",{"title":404},{"VI":405},"Paul Moroz",{"id":407,"sortIndex":109,"researcher":20,"roles":408,"affiliations":409,"properties":425},"f9061ca7-b5b9-49b0-8c48-57dca5f53da7",[142],[410,415],{"id":20,"sortIndex":21,"affiliation":411,"properties":20},{"id":395,"createTime":396,"updateTime":397,"relativeEntities":412,"slug":399,"properties":413,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":414},{"VI":402},{"id":416,"sortIndex":108,"affiliation":417,"properties":424},"c48b5156-813c-465e-9fe4-51fe22541abe",{"id":418,"createTime":419,"updateTime":419,"relativeEntities":420,"slug":20,"properties":421,"entityType":49,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"c3709eab-10f8-43af-8751-16f4396a0a70","2024-01-10T15:59:51.302+00:00",[],{"title":422},{"VI":423},"University of Ottawa, The Ottawa Hospital, Ottawa, Canada",{},{"title":426},{"VI":427},"Paul E. 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Relative role of genetic complement abnormalities in sporadic and familial aHUS and their impact on clinical phenotype. Clin J Am Soc Nephrol. 2010;5(10):1844–1859.",{"doi":806},"10.2215\u002FCJN.02210310",{"id":20,"text":808,"url":20,"identifiers":809},"Park MH, Caselman N, Ulmer S, Weitz IC. Complement-mediated thrombotic microangiopathy associated with lupus nephritis. Blood Adv. 2018;2(16):2090–2094.",{"doi":810},"10.1182\u002Fbloodadvances.2018019596",{"id":20,"text":812,"url":20,"identifiers":813},"Roux T, Debs R, Maisonobe T, et al. Rituximab in chronic inflammatory demyelinating polyradiculoneuropathy with associated diseases. J Peripher Nerv Syst 2018;23(4):235–240.",{"doi":814},"10.1111\u002Fjns.12287",{"id":20,"text":816,"url":20,"identifiers":817},"Schwartz N, Stock AD, Putterman C. Neuropsychiatric lupus: new mechanistic insights and future treatment directions. 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Semin Arthritis Rheum. 2005;35(3):175–184.",{"doi":830},"10.1016\u002Fj.semarthrit.2005.08.008",{"id":20,"text":832,"url":20,"identifiers":833},"Wang S, Wu M, Chiriboga L, Zeck B, Belmont HM. Membrane attack complex (mac) deposition in lupus nephritis is associated with hypertension and poor clinical response to treatment. Semin Arthritis Rheum. 2018;48(2):256–262.",{"doi":834},"10.1016\u002Fj.semarthrit.2018.01.004",{"id":836,"createTime":837,"updateTime":838,"relativeEntities":839,"slug":840,"properties":841,"entityType":133,"verifyStatus":134,"verifyTime":854,"verifyNote":136,"syncStatus":19,"languages":20,"translateLanguages":855,"viewCount":21,"primaryUrl":857,"fullTextUrl":20,"authors":858,"publicationType":235,"publisherRelationship":886,"citationCount":20,"citationInfo":20,"publishDate":920,"publishYear":921,"citationAnalyzeStatus":19,"lastCitationAnalyze":20,"indexDatabases":20,"openAccess":20,"references":20,"isForceReanalyzing":267},"284510bf-d83a-4819-92d7-047b90207ad8","2024-01-18T21:04:48.335+00:00","2025-01-07T23:47:37.895+00:00",[],"Escobar-Syndrome-Multiple-Pterygium-Syndrome-Associated-with-Thoracic-Kyphoscoliosis-Lordoscoliosis-and-Severe-Restrictive-Lung-Disease-A-Case-Report",{"references":842,"abstract":844,"title":847,"doi":850,"keywords":852},{"VOID":843},"J Hall (1997) Arthrogryposis and associated anomalies Emery Rimoins (Eds) Principles and practice of medical genetics EditionNumber3 Churchill Livingstone New York, NY 2905–2907\nGL Di Gennaro ParticleDi T Greggi P Parisini (1996) ArticleTitleScoliosis in Escobar syndrome (multiple pterygium syndrome). Description of two cases Chir Organi Mov 81 IssueID3 317–323 Occurrence Handle9009416\nK Yokochi S Suzuki T Tanaka et al. (1985) ArticleTitleSkeletal muscle involvement in Escobar syndrome Brain Dev 7 IssueID6 585–589 Occurrence Handle3832948",{"VI":845,"EN":846},"Hội chứng Escobar hay còn được gọi là hội chứng nhiều cánh tay được đặc trưng bởi sự tồn tại của màng giữa các nếp gấp ở mọi khớp gập ở chi, đặc biệt là không gian khoeo chân. Ngoài ra, hội chứng này còn gắn liền với hai dị tật cấu trúc khác: xương bàn chân thẳng đứng và vẹo cột sống bẩm sinh. Chúng tôi trình bày một báo cáo trường hợp của một bệnh nhân bị hội chứng Escobar, người đã được điều trị bảo tồn ban đầu và sau đó đã diễn tiến nặng nề và suy hô hấp nghiêm trọng, cuối cùng yêu cầu can thiệp phẫu thuật. Sau khi đánh giá trước phẫu thuật bởi bác sĩ nhi, bác sĩ phổi và bác sĩ tai mũi họng, bệnh nhân đã trải qua phẫu thuật cố định cột sống cả phía trước và phía sau một lần với dụng cụ, cũng như nhiều phẫu thuật tạo hình xương, cắt bỏ xương sườn và phẫu thuật lấy bỏ đốt sống. Quá trình hậu phẫu của bệnh nhân bị phức tạp bởi hoại tử vết thương cần phải rửa và nạo vét, nhiễm trùng đường tiết niệu và phải mở khí quản do xẹp phổi kéo dài. Bệnh nhân cuối cùng đã hồi phục khỏi tất cả các biến chứng. Không bao giờ xảy ra các triệu chứng thần kinh khu trú. Bệnh nhân đã có sự theo dõi 3 năm với khẳng định duy trì sự chỉnh sửa qua hình ảnh. Sự hợp nhất được đạt được ở cả hai đoạn phía trước và phía sau. Về mặt lâm sàng, bệnh nhân có thể đứng thẳng, tham gia vào các hoạt động chức năng và không cần bất kỳ thuốc giảm đau nào. Sức chứa sống chức năng của bệnh nhân đã cải thiện từ 23% dự đoán trước phẫu thuật lên 60% dự đoán sau phẫu thuật. Những bệnh nhân có độ biến dạng cột sống nặng do hội chứng Escobar có thể được điều trị thành công bằng phẫu thuật. Chúng tôi đề xuất can thiệp phẫu thuật sớm cho nhóm này để ngăn ngừa sự gia tăng độ cong, bệnh phổi hạn chế, và sự cần thiết phải thực hiện các thủ tục cứu trợ phức tạp.","Escobar syndrome or multiple pterygium syndrome is characterized by a web across every flexion crease in the extremities, most notably the popliteal space. In addition, this syndrome is associated with two other structural anomalies: a vertical talus and congenital lordoscoliosis. We present a case report of a patient with Escobar syndrome who was initially managed conservatively and subsequently had severe and debilitating progression and respiratory decompensation ultimately requiring surgical intervention. Case report. After preoperative evaluation by a pediatrician, pulmonologist, and otolaryngologist, the patient underwent one-stage anterior and posterior spinal fusion with instrumentation as well as multiple osteotomies, rib resections, and vertebrectomies. The patient’s postoperative course was complicated by wound necrosis requiring irrigation and debridement, a urinary tract infection, and a tracheostomy for persistent atelectasis. The patient eventually recovered from all complications. There were never any focal neurologic deficits. The patient had a 3-year follow-up with radiographically confirmed maintenance of correction. Fusion was obtained in the anterior and posterior segments. Clinically, the patient is able to stand upright, can participate in functional activities, and has not required any pain medication. The patient’s functional vital capacity improved from 23% predicted preoperatively to 60% predicted postoperatively. Patients with severe spinal deformity secondary to Escobar syndrome can be successfully treated surgically. 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J. Laryngol. Otol. 114:709–11\nRezai K, Kuchipudi S, Chundi V (2004) Kikuchi–Fujimoto disease: hydroxychloroquine as a treatment. Clin. Infect. Dis 39:e124–e126\nLawrence RC, Helmick CG, Arnett FC (1998) Estimates of the prevalence of arthritis and selected musculoskeletal disorders in the United States. Arthritis Rheum. 41:778–799\nJimenez S, Cervera R, Font J (2003) The epidemiology of systemic lupus erythematosus. Clin. Rev. Allergy Immunol. 25:3–12\nEl-Ramahi KM, Karrar A, Ali MA (1994) Kikuchi disease and its association with systemic lupus erythematosus. Lupus 3:409–11\nGoldblatt F, Andrews J, Russell A, Isenberg D (2008) Association of Kikuchi–Fujimoto’s disease with SLE. Rheumatology 47:554–555\nEisner MD, Amory J, Mullaney B (1996) Necrotizing lymphadenitis associated with systemic lupus erythematosus. Semin. Arthritis Rheum. 26:1–6\nOhshima K, Karube K, Hamasaki M (2004) Apoptosis- and cell cycle-associated gene expression profiling of histiocytic necrotising lymphadenitis. Eur. J. Haematol. 72:322–9\nKato K, Ohshima K, Anzai K (2001) Elevated serum-soluble Fas ligand in histiocytic necrotizing lymphadenitis. Int. J. Hematol. 73:84–6\nKozyrev SV, Lewén S, Reddy PM (2007) Structural insertion\u002Fdeletion variation in IRF5 is associated with a risk haplotype and defines the precise IRF5 isoforms expressed in systemic lupus erythematosus. Arthritis Rheum 56:1234–41\nNiewold TB, Kelly JA, Flesch MH (2008) Association of the IRF5 risk haplotype with high serum interferon-alpha activity in systemic lupus erythematosus patients. Arthritis Rheum. 58:2481–7\nGraham RR, Kyogoku C, Sigurdsson S, et al. (2007) Three functional variants of IFN regulatory factor 5 (IRF5) define risk and protective haplotypes for human lupus. Proc Natl Acad Sci U S A. 104:6758–6763\nKirou KA, Mavragani CP, Crow MK (2007) Activation of typeI interferon in systemic lupus erythematosus. Expert Rev. Clin. Immunol. 3:579–588\nBarrat FJ, Meeker T, Gregorio J, et al. 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Med. 202:425–435\nShiow LR, Rosen DB, Brdickova N, et al., CD69 acts downstream of interferon-[alpha]\u002F[beta] to inhibit S1P1 and lymphocyte egress from lymphoid organs. 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Acta Orthopaedica. 2014; 85(3): 259-265. doi:10.3109\u002F17453674.2014.913223.\nEngh CA Jr, MacDonald SJ, Sritulanondha S, Thompson A, Naudie D, Engh CA. 2008 John Charnley award: metal ion levels after metal-on-metal total hip arthroplasty: a randomized trial. Clinical Orthopaedics and Related Research. 2009; 467(1): 101-111. doi:10.1007\u002Fs11999-008-0540-9.\nGrammatopolous G, Pandit H, Kwon YM, et al. Hip resurfacings revised for inflammatory pseudotumour have a poor outcome. The Journal of Bone and Joint Surgery British Volume. 2009; 91(8): 1019-1024. doi:10.1302\u002F0301-620x.91b8.22562.\nGruber FW, Bock A, Trattnig S, Lintner F, Ritschl P. Cystic lesion of the groin due to metallosis: a rare long-term complication of metal-on-metal total hip arthroplasty. The Journal of Arthroplasty. 2007; 22(6): 923-927. doi:10.1016\u002Fj.arth.2006.10.002.\nJacobs JJ, Skipor AK, Patterson LM, et al. Metal release in patients who have had a primary total hip arthroplasty. A prospective, controlled, longitudinal study. The Journal of Bone and Joint Surgery American Volume. 1998; 80(10): 1447-1458.\nKim PR, Beaule PE, Dunbar M, et al. Cobalt and chromium levels in blood and urine following hip resurfacing arthroplasty with the Conserve Plus implant. The Journal of Bone and Joint Surgery American Volume. 2011; 93(Suppl 2): 107-117. doi:10.2106\u002FJBJS.J.01721.\nKop AM, Swarts E. Corrosion of a hip stem with a modular neck taper junction: a retrieval study of 16 cases. The Journal of Arthroplasty. 2009; 24(7): 1019-1023. doi:10.1016\u002Fj.arth.2008.09.009.\nLangton DJ, Jameson SS, Joyce TJ, Webb J, Nargol AV. The effect of component size and orientation on the concentrations of metal ions after resurfacing arthroplasty of the hip. The Journal of Bone and Joint Surgery British Volume. 2008; 90(9): 1143-1151. doi:10.1302\u002F0301-620x.90b9.20785.\nLiu F, Gross TP. A safe zone for acetabular component position in metal-on-metal hip resurfacing arthroplasty: winner of the 2012 HAP PAUL award. The Journal of Arthroplasty. 2013; 28(7): 1224-1230. doi:10.1016\u002Fj.arth.2013.02.033.\nMahendra G, Pandit H, Kliskey K, Murray D, Gill HS, Athanasou N. Necrotic and inflammatory changes in metal-on-metal resurfacing hip arthroplasties. Acta Orthopaedica. 2009; 80(6): 653-659. doi:10.3109\u002F17453670903473016.\nMatthies AK, Skinner JA, Osmani H, Henckel J, Hart AJ. Pseudotumors are common in well-positioned low-wearing metal-on-metal hips. Clinical Orthopaedics and Related Research. 2012; 470(7): 1895-1906. doi:10.1007\u002Fs11999-011-2201-7.\nPandit H, Glyn-Jones S, McLardy-Smith P, et al. Pseudotumours associated with metal-on-metal hip resurfacings. The Journal of Bone and Joint Surgery British Volume. 2008; 90(7): 847-851. doi:10.1302\u002F0301-620x.90b7.20213.\nSvensson O, Mathiesen EB, Reinholt FP, Blomgren G. Formation of a fulminant soft-tissue pseudotumor after uncemented hip arthroplasty. A case report. 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