Aplicaciones frecuentes de la ecotomografía Doppler color en dermatología que permiten ayudar al diagnóstico y manejo

Revista Médica Clínica Las Condes - Tập 34 - Trang 137-148 - 2023
Ximena Wortsman1,2,3
1Instituto de Investigación y Diagnóstico por Imágenes en Piel y Tejido Blandos (IDIEP). Santiago, Chile
2Departamento de Dermatología, Universidad de Chile, Santiago, Chile
3Departamento de Dermatología, Pontificia Universidad Católica de Chile. Santiago, Chile

Tài liệu tham khảo

Alfageme, 2021, European Federation of Societies for Ultrasound in Medicine and Biology (EFSUMB) Position Statement on Dermatologic Ultrasound, Ultraschall Med., 42, 39, 10.1055/a-1161-8872

Almuhanna, 2021, Overview of Ultrasound Imaging Applications in Dermatology [Formula: see text], J Cutan Med Surg., 25, 521, 10.1177/1203475421999326

Wortsman, 2016, Guidelines for Performing Dermatologic Ultrasound Examinations by the DERMUS Group, J Ultrasound Med., 35, 577, 10.7863/ultra.15.06046

Wortsman X. Textbook of Dermatologic Ultrasound. 1st ed: Springer; 2022.

Ait Ichou, 2021, Ultra-high-frequency ultrasound of superficial and musculoskeletal structures in the pediatric population, Pediatr Radiol., 51, 1748, 10.1007/s00247-021-04978-0

Catalano, 2019, Skin cancer: findings and role of high-resolution ultrasound, J Ultrasound., 22, 423, 10.1007/s40477-019-00379-0

Wortsman, 2020, Seventy-MHz Ultrasound Detection of Early Signs Linked to the Severity. Patterns of Keratin Fragmentation, and Mechanisms of Generation of Collections and Tunnels in Hidradenitis Suppurativa, J Ultrasound Med., 39, 845, 10.1002/jum.15164

Bader, 2022, Bioeffects Committee of the American Institute of Ultrasound in Medicine. Ultrasound for Aesthetic Applications: A Review of Biophysical Mechanisms and Safety, J Ultrasound Med., 41, 1597, 10.1002/jum.15856

Barcaui Ede, 2014, High-frequency ultrasound associated with dermoscopy in pre-operative evaluation of basal cell carcinoma, An Bras Dermatol., 89, 828, 10.1590/abd1806-4841.20143176

Burkes, 2015, Skin imaging modalities quantify progression and stage of infantile haemangiomas, Br J Dermatol., 173, 838, 10.1111/bjd.13905

Caposiena Caro, 2018, Power Doppler ultrasound assessment of vascularization in hidradenitis suppurativa lesions, J Eur Acad Dermatol Venereol., 32, 1360, 10.1111/jdv.14745

Crisan, 2013, Ultrasonographic staging of cutaneous malignant tumors: an ultrasonographic depth index, Arch Dermatol Res., 305, 305, 10.1007/s00403-013-1321-1

Fernández, 2018, Ultrasonographic Criteria for Diagnosing Unilateral and Bilateral Retronychia, J Ultrasound Med., 37, 1201, 10.1002/jum.14464

Lyons, 2019, Preoperative Ultrasound for Evaluation of Hidradenitis Suppurativa, Dermatol Surg., 45, 294, 10.1097/DSS.0000000000001696

Rotter, 2017, Ultrasonography as an objective tool for assessment of infantile hemangioma treatment with propranolol, Int J Dermatol., 56, 190, 10.1111/ijd.13442

Wortsman, 2012, Common applications of dermatologic sonography, J Ultrasound Med., 31, 97, 10.7863/jum.2012.31.1.97

Wortsman, 2018, Diagnosis and Treatment of Hidradenitis Suppurativa, JAMA., 319, 1617, 10.1001/jama.2018.0814

Wortsman, 2019, Why, how, and when to use color Doppler ultrasound for improving precision in the diagnosis, assessment of severity and activity in morphea, J Scleroderma Relat Disord., 4, 28, 10.1177/2397198318799244

Wortsman, 2020, Color Doppler ultrasound: a standard of care in hidradenitis suppurativa, J Eur Acad Dermatol Venereol., 34, e616, 10.1111/jdv.16496

Wortsman, 2021, Concepts, Role, and Advances on Nail Imaging, Dermatol Clin., 39, 337, 10.1016/j.det.2020.12.010

Wortsman X. Top Advances in Dermatologic Ultrasound. J Ultrasound Med. 2022. doi: 10.1002/jum.16000.

Wortsman, 2016, Proposal for an Assessment Training Program in Dermatologic Ultrasound by the DERMUS Group, J Ultrasound Med., 35, 2305, 10.7863/ultra.15.10068

Wortsman, 2006, Ultrasound imaging of nails, Dermatol Clin., 24, 323, 10.1016/j.det.2006.03.014

Wortsman X, Wortsman J. Sonographic outcomes of cosmetic procedures. AJR Am J Roentgenol. 2011; 197(5):W910-W918. doi: 10.2214/AJR.11.6719.

Wortsman, 2012, Sonography in pathologies of scalp and hair, Br J Radiol., 85, 647, 10.1259/bjr/22636640

Huang, 2011, Epidermal cysts in the superficial soft tissue: sonographic features with an emphasis on the pseudotestis pattern, J Ultrasound Med., 30, 11, 10.7863/jum.2011.30.1.11

Yuan, 2012, Differences in sonographic features of ruptured and unruptured epidermal cysts, J Ultrasound Med., 31, 265, 10.7863/jum.2012.31.2.265

Huang, 2011, Epidermal cysts in the superficial soft tissue: sonographic features with an emphasis on the pseudotestis pattern, J Ultrasound Med., 30, 11, 10.7863/jum.2011.30.1.11

Hwang, 2005, The common ultrasonographic features of pilomatricoma, J Ultrasound Med., 24, 1397, 10.7863/jum.2005.24.10.1397

Lin, 2018, Calcifying epithelioma of malherbe (Pilomatrixoma): Clinical and sonographic features, J Clin Ultrasound., 46, 3, 10.1002/jcu.22517

Roche, 2010, Pilomatricoma in children: common but often misdiagnosed, Acta Chir Belg., 110, 250, 10.1080/00015458.2010.11680612

Solivetti, 2010, Epithelioma of Malherbe: new ultrasound patterns, J Exp Clin Cancer Res., 29, 42, 10.1186/1756-9966-29-42

Wortsman, 2010, Clinical usefulness of variable-frequency ultrasound in localized lesions of the skin, J Am Acad Dermatol., 62, 247, 10.1016/j.jaad.2009.06.016

Belfiore, 2021, Usefulness of High-Frequency Ultrasonography in the Diagnosis of Melanoma: Mini Review, Front Oncol., 11, 673026, 10.3389/fonc.2021.673026

Bezugly, 2021, The use of high frequency skin ultrasound in non-melanoma skin cancer, J Contemp Brachytherapy., 13, 483, 10.5114/jcb.2021.108603

Bobadilla, 2008, Pre-surgical high resolution ultrasound of facial basal cell carcinoma: correlation with histology, Cancer Imaging., 8, 163, 10.1102/1470-7330.2008.0026

Catalano, 2011, Critical analysis of the ultrasonographic criteria for diagnosing lymph node metastasis in patients with cutaneous melanoma: a systematic review, J Ultrasound Med., 30, 547, 10.7863/jum.2011.30.4.547

Catalano, 2010, Locoregional spread of cutaneous melanoma: sonography findings, AJR Am J Roentgenol., 194, 735, 10.2214/AJR.09.2422

Catalano, 2010, Sonography for locoregional staging and follow-up of cutaneous melanoma: how we do it, J Ultrasound Med., 29, 791, 10.7863/jum.2010.29.5.791

Dinnes, 2018, Cochrane Skin Cancer Diagnostic Test Accuracy Group, High-frequency ultrasound for diagnosing skin cancer in adults. Cochrane Database Syst Rev., 12, CD013188

Kwasniak, 2011, Basal cell carcinoma: evidence-based medicine and review of treatment modalities, Int J Dermatol., 50, 645, 10.1111/j.1365-4632.2010.04826.x

Lear, 2007, Basal cell carcinoma: review of epidemiology, pathogenesis, and associated risk factors, J Cutan Med Surg., 11, 19, 10.2310/7750.2007.00011

MacFarlane, 2017, The role of imaging in the management of patients with nonmelanoma skin cancer: Diagnostic modalities and applications, J Am Acad Dermatol., 76, 579, 10.1016/j.jaad.2015.10.010

Barcaui, 2021, High-frequency (22-MHz) ultrasound for assessing the depth of basal cell carcinoma invasion, Skin Res Technol., 27, 676, 10.1111/srt.12999

Chen, 2022, High-frequency ultrasound for differentiation between high-risk basal cell carcinoma and cutaneous squamous cell carcinoma, Skin Res Technol., 28, 410, 10.1111/srt.13121

Lassau, 1997, Value of high-frequency US for preoperative assessment of skin tumors, Radiographics., 17, 1559, 10.1148/radiographics.17.6.9397463

Sechi, 2020, Ultrasound features of the subungual glomus tumor and squamous cell carcinomas, Skin Res Technol., 26, 867, 10.1111/srt.12888

Wortsman, 2013, Sonography of facial cutaneous basal cell carcinoma: a first-line imaging technique, J Ultrasound Med., 32, 567, 10.7863/jum.2013.32.4.567

Wortsman, 2019, Ultrasound Diagnosis of Infiltrative Versus Noninfiltrative Subtypes of Cutaneous Basal Cell Carcinoma, J Ultrasound Med., 38, 3083, 10.1002/jum.14994

Wortsman, 2015, Ultrasound as predictor of histologic subtypes linked to recurrence in basal cell carcinoma of the skin, J Eur Acad Dermatol Venereol., 29, 702, 10.1111/jdv.12660

Ruiz, 2017, The positive impact of radiologic imaging on high-stage cutaneous squamous cell carcinoma management, J Am Acad Dermatol., 76, 217, 10.1016/j.jaad.2016.08.051

Fernández Canedo, 2013, Preoperative 15-MHz ultrasound assessment of tumor thickness in malignant melanoma, Actas Dermosifiliogr., 104, 227, 10.1016/j.ad.2012.06.007

Tokez, 2022, Assessment of the Diagnostic Accuracy of Baseline Clinical Examination and Ultrasonographic Imaging for the Detection of Lymph Node Metastasis in Patients With High-risk Cutaneous Squamous Cell Carcinoma of the Head and Neck, JAMA Dermatol., 158, 151, 10.1001/jamadermatol.2021.4990

Kutz, 2015, Color Doppler Ultrasound Follow-Up of Infantile Hemangiomas and Peripheral Vascularity in Patients Treated with Propranolol, Pediatr Dermatol., 32, 468, 10.1111/pde.12596

Rodríguez Bandera, 2020, Cutaneous ultrasound and its utility in Pediatric Dermatology: Part II-Developmental anomalies and vascular lesions, Pediatr Dermatol., 37, 40, 10.1111/pde.13897

McNab, 2021, Subclinical Ultrasound Characteristics of Infantile Hemangiomas That May Potentially Affect Involution, J Ultrasound Med., 40, 1125, 10.1002/jum.15489

Ding, 2019, Role of ultrasound in diagnosis and differential diagnosis of deep infantile hemangioma and venous malformation, J Vasc Surg Venous Lymphat Disord., 7, 715, 10.1016/j.jvsv.2019.01.065

Elluru, 2013, Cutaneous vascular lesions, Facial Plast Surg Clin North Am., 21, 111, 10.1016/j.fsc.2012.11.001

Wortsman, 2017, Sonography of Dermatologic Emergencies, J Ultrasound Med., 36, 1905, 10.1002/jum.14211

Baek, 2010, Subungual tumors: clinicopathologic correlation with US and MR imaging findings, Radiographics., 30, 1621, 10.1148/rg.306105514

Chen, 2020, Diagnosis of Subungual Glomus Tumors with 18MHz Ultrasound and CDFI, Sci Rep., 10, 17848, 10.1038/s41598-020-74774-7

Chiang, 2014, Ultrasonographic appearance of subungual glomus tumors, J Clin Ultrasound., 42, 336, 10.1002/jcu.22138

Wortsman, 2010, Benign tumors and pseudotumors of the nail: a novel application of sonography, J Ultrasound Med., 29, 803, 10.7863/jum.2010.29.5.803

Gam, 2019, Onychomatricoma: Clinical, dermoscopy and ultrasound findings, Indian J Dermatol Venereol Leprol., 85, 190, 10.4103/ijdvl.IJDVL_621_17

Peruilh-Bagolini L, Dossi MT, Wortsman X, Montero T. Pigmented onychomatricoma: A clinical simulator that could not mislead ultrasound. Acta Biomed. 2021; 92(S1):e2021158. doi: 10.23750/abm.v92iS1.9519.

Soto, 2009, Onychomatricoma: clinical and sonographic findings, Arch Dermatol., 145, 1461, 10.1001/archdermatol.2009.312

Alonso-Pacheco, 2016, Retronychia: A Case Report Including Ultrasound Imaging and Surgical Treatment, Actas Dermosifiliogr., 107, e33, 10.1016/j.ad.2015.06.018

Au AS, Leung WY, Tran D. Retronychia: A Literature Review. J Am Podiatr Med Assoc. 2020; 110(3):Article_9. doi: 10.7547/17-155.

Göktay F, Soydan L, Kaynak E, Akpolat ND, Haneke E. A Proposal for Determining a Diagnostic Cutoff Value of a New Ultrasonographic Index of Retronychia Inversely Correlating with Disease Severity. J Am Podiatr Med Assoc. 2020; 110(4):Article_1. doi: 10.7547/17-167.

Pizarro, 2017, Posttraumatic Retronychia of the Foot with Clinical and Ultrasound Correlation, J Am Podiatr Med Assoc., 107, 253, 10.7547/16-076

Wortsman, 2012, Finger retronychias detected early by 3D ultrasound examination, J Eur Acad Dermatol Venereol., 26, 254, 10.1111/j.1468-3083.2011.04068.x

Wortsman, 2010, Anatomical changes in retronychia and onychomadesis detected using ultrasound, Dermatol Surg., 36, 1615, 10.1111/j.1524-4725.2010.01694.x

Jemec, 2012, Clinical practice. Hidradenitis suppurativa, N Engl J Med., 366, 158, 10.1056/NEJMcp1014163

Saunte, 2017, Hidradenitis Suppurativa: Advances in Diagnosis and Treatment, JAMA., 318, 2019, 10.1001/jama.2017.16691

Lacarrubba, 2019, Italian Ultrasound Working Group. Ultrasonography in the pathway to an optimal standard of care of hidradenitis suppurativa: the Italian Ultrasound Working Group experience, J Eur Acad Dermatol Venereol., 33, 10, 10.1111/jdv.15847

Loo, 2018, The clinical, biochemical, and ultrasonographic characteristics of patients with hidradenitis suppurativa in Northern Peninsular Malaysia: a multicenter study, Int J Dermatol., 57, 1454, 10.1111/ijd.14210

Lyons, 2022, Assessment of inter-rater reliability of clinical hidradenitis suppurativa outcome measures using ultrasonography, Clin Exp Dermatol., 47, 319, 10.1111/ced.14889

Marasca, 2020, Ultrasound: an indispensable tool to evaluate the outcome of surgical approaches in patients affected by hidradenitis suppurativa, J Eur Acad Dermatol Venereol., 34, e413, 10.1111/jdv.16361

Martorell, 2019, Ultrasound as a diagnostic and management tool in hidradenitis suppurativa patients: a multicentre study, J Eur Acad Dermatol Venereol., 33, 2137, 10.1111/jdv.15710

Nguyen, 2021, Hidradenitis suppurativa: an update on epidemiology, phenotypes, diagnosis, pathogenesis, comorbidities and quality of life, J Eur Acad Dermatol Venereol., 35, 50, 10.1111/jdv.16677

Wortsman, 2016, Imaging of Hidradenitis Suppurativa, Dermatol Clin., 34, 59, 10.1016/j.det.2015.08.003

Wortsman, 2016, Color Doppler ultrasound assessment of morphology and types of fistulous tracts in hidradenitis suppurativa (HS), J Am Acad Dermatol., 75, 760, 10.1016/j.jaad.2016.05.009

Wortsman, 2013, Ultrasound in-depth characterization and staging of hidradenitis suppurativa, Dermatol Surg., 39, 1835, 10.1111/dsu.12329

Wortsman, 2016, Ultrasound Diagnosis and Staging in Pediatric Hidradenitis Suppurativa, Pediatr Dermatol., 33, e260, 10.1111/pde.12895

Wortsman, 2015, Ultrasound Detection of Retained Hair Tracts in Hidradenitis Suppurativa, Dermatol Surg., 41, 867, 10.1097/DSS.0000000000000388

Zarchi, 2014, The role of ultrasound in severity assessment in hidradenitis suppurativa, Dermatol Surg., 40, 592, 10.1111/dsu.12437

Zarchi, 2015, Pain and inflammation in hidradenitis suppurativa correspond to morphological changes identified by high-frequency ultrasound, J Eur Acad Dermatol Venereol., 29, 527, 10.1111/jdv.12610

Martorell, 2019, Defining Fistular Patterns in Hidradenitis Suppurativa: Impact on the Management, Dermatol Surg., 45, 1237, 10.1097/DSS.0000000000001916

Wortsman, 2021, Strong validation of ultrasound as an imaging biomarker in hidradenitis suppurativa, Br J Dermatol., 184, 591, 10.1111/bjd.19433

Wortsman, 2011, Activity assessment in morphea using color Doppler ultrasound, J Am Acad Dermatol., 65, 942, 10.1016/j.jaad.2010.08.027

Salgueiro, 2022, Sun Sign in the Ultrasound Diagnosis and Activity Assessment of Morphea, J Ultrasound Med., 41, 1817, 10.1002/jum.15843

Vera-Kellet, 2021, Low effectiveness of methotrexate in the management of localised scleroderma (morphea) based on an ultrasound activity score, Eur J Dermatol., 31, 813, 10.1684/ejd.2021.4189

Schelke, 2020, Nomenclature proposal for the sonographic description and reporting of soft tissue fillers, J Cosmet Dermatol., 19, 282, 10.1111/jocd.13127

Wortsman, 2015, Identification and Complications of Cosmetic Fillers: Sonography First, J Ultrasound Med., 34, 1163, 10.7863/ultra.34.7.1163

Wortsman, 2012, Ultrasound detection and identification of cosmetic fillers in the skin, J Eur Acad Dermatol Venereol., 26, 292, 10.1111/j.1468-3083.2011.04047.x

Kwon, 2017, The Utility of Color Doppler Ultrasound to Explore Vascular Complications After Filler Injection, Dermatol Surg., 43, 1508, 10.1097/DSS.0000000000001173

Schelke, 2023, Early ultrasound for diagnosis and treatment of vascular adverse events with hyaluronic acid fillers, J Am Acad Dermatol., 88, 79, 10.1016/j.jaad.2019.07.032

Mlosek, 2018, High-frequency ultrasound-based differentiation between nodular dermal filler deposits and foreign body granulomas, Skin Res Technol., 24, 417, 10.1111/srt.12444

Wortsman, 2021, Ultrasonographic Subclinical Signs of Inflammation of the Lacrimal. Parotid, and Submandibular Glands in Users of Cosmetic Fillers, J Ultrasound Med., 40, 2377, 10.1002/jum.15621