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"Chang-Seok Ki"

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"Chang-Seok Ki"

Case Reports
Ullrich Congenital Muscular Dystrophy Possibly Related With COL6A1 p.Gly302Arg Variant
Yoonhong Park, Myung Seok Park, Duk Hyun Sung, Ji Yeon Sohn, Chang-Seok Ki, Du-Hwan Kim
Ann Rehabil Med 2014;38(2):292-296.   Published online April 29, 2014
DOI: https://doi.org/10.5535/arm.2014.38.2.292

Ullrich congenital muscular dystrophy (UCMD) is characterized by congenital weakness, proximal joint contractures, and hyperlaxity of distal joints. UCMD is basically due to a defect in extra cellular matrix protein, collagen type VI. A 37-year-old woman who cannot walk independently visited our outpatient clinic. She had orthopedic deformities (scoliosis, joint contractures, and distal joint hyperlaxity), difficulty of respiration, and many skin keloids. Her hip computed tomography showed diffuse fatty infiltration and the 'central shadow' sign in thigh muscles. From the clinical information suggesting collagen type VI related muscle disorder, UCMD was highly considered. COL6A1 gene sequencing confirmed this patient as UCMD with novel c.904G>A (p.Gly302Arg) variant. If musculoskeletal and dermatologic manifestations and radiologic findings imply abnormalities in collagen type VI network, COL6A related congenital muscular dystrophy was to be suspected.

Citations

Citations to this article as recorded by  
  • A Novel Splice Site Variant in COL6A1 Causes Ullrich Congenital Muscular Dystrophy in a Consanguineous Malian Family
    Alassane Baneye Maiga, Ibrahim Pamanta, Salia Bamba, Lassana Cissé, Salimata Diarra, Sidi Touré, Abdoulaye Yalcouyé, Seydou Diallo, Salimata Diallo, Fousseyni Kané, Seybou Hassane Diallo, Hamidou Oumar Ba, Cheick Oumar Guinto, Kenneth Fischbeck, Guida Lan
    Molecular Genetics & Genomic Medicine.2024;[Epub]     CrossRef
  • A novel variant in the COL6A1 gene causing Ullrich congenital muscular dystrophy in a consanguineous family: a case report
    Nirmala Dushyanthi Sirisena, U. M. Jayami Eshana Samaranayake, Osorio Lopes Abath Neto, A. Reghan Foley, B. A. P. Sajeewani Pathirana, Nilaksha Neththikumara, C. Sampath Paththinige, Pyara Rathnayake, Sandra Donkervoort, Carsten G. Bönnemann, Vajira H. W.
    BMC Neurology.2021;[Epub]     CrossRef
  • Collagen VI disorders: Insights on form and function in the extracellular matrix and beyond
    Shireen R. Lamandé, John F. Bateman
    Matrix Biology.2018; 71-72: 348.     CrossRef
  • Anesthetic implications of muscular dystrophies
    Piedad Cecilia Echeverry-Marín, Ángela María Bustamante-Vega
    Colombian Journal of Anesthesiology.2018; 46(3): 228.     CrossRef
  • Clinical, Pathologic, and Genetic Features of Collagen VI-Related Myopathy in Korea
    Jung Hwan Lee, Ha Young Shin, Hyung Jun Park, Se Hoon Kim, Seung Min Kim, Young-Chul Choi
    Journal of Clinical Neurology.2017; 13(4): 331.     CrossRef
  • Abnormalities of Skin and Cutaneous Appendages in Neuromuscular Disorders
    Josef Finsterer, Salma Wakil
    Pediatric Neurology.2015; 53(4): 301.     CrossRef
  • 7,071 View
  • 46 Download
  • 5 Web of Science
  • 6 Crossref
Upper Thoracic Myelopathy Caused by Delayed Neck Extensor Weakness in Myotonic Dystrophy
Han Kyeong Son, Young Sun Cha, Hwi Suh, Chang-Seok Ki, Yong Beom Shin
Ann Rehabil Med 2012;36(4):569-572.   Published online August 27, 2012
DOI: https://doi.org/10.5535/arm.2012.36.4.569

Myotonic dystrophy is the most common autosomal dominant myopathy in adults. Our patient, a 41 year-old female suffering from myotonic muscular dystrophy, developed upper thoracic myelopathy due to hypertrophy of the ligamentum flavum and the posterior longitudinal ligament. She had a typical hatchet face and ptosis with "head hanging forward" appearance caused by neck weakness. Motor weakness, sensory changes and severe pain below T4 level, along with urinary incontinence began 3 months ago. Genetic and electrodiagnostic studies revealed myotonic dystrophy type 1. Magnetic resonance imaging of the spine showed loss of cervical lordosis and spinal cord compression due to hypertrophied ligamentum flavum and posterior longitudinal ligament at T1 to T3 level. We concluded that her upper thoracic myelopathy was likely related to the thickness of the ligamentum flavum and posterior longitudinal ligament due to repetitive mechanical stress on her neck caused by neck muscle weakness with myotonic dystrophy.

Citations

Citations to this article as recorded by  
  • Intergenerational Influence of Gender and the DM1 Phenotype of the Transmitting Parent in Korean Myotonic Dystrophy Type 1
    Ji Yoon Han, Woori Jang, Joonhong Park
    Genes.2022; 13(8): 1465.     CrossRef
  • Peripheral neuropathy in patients with myotonic dystrophy type 2
    L. Leonardis
    Acta Neurologica Scandinavica.2017; 135(5): 568.     CrossRef
  • 5,303 View
  • 25 Download
  • 2 Crossref
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