Showing results (1601-1610 of 1,622) with videos related to
Sort By:
Pageof 163
Brain : a Journal of Neurology|February 11, 2020
Cerebellar ataxia, neuropathy, vestibular areflexia syndrome due to RFC1 repeat expansionAndrea Cortese, Stefano Tozza, Wai Yan Yau, et al.Annals of Neurology|May 10, 2019
A multicenter retrospective study of charcot-marie-tooth disease type 4B (CMT4B) associated with mutations in myotubularin-related proteins (MTMRs)Davide Pareyson, Tanya Stojkovic, Mary M Reilly, et al.Experimental Neurology|October 2, 2024
The GENESIS database and tools: A decade of discovery in Mendelian genomicsMatt C Danzi, Eric Powell, Adriana P Rebelo, et al.American Journal of Human Genetics|January 22, 2026
MDGA2 homozygous loss-of-function variants cause developmental and epileptic encephalopathyHeba Morsy, Hyeonho Kim, Gyubin Jang, et al.Chronic Respiratory Disease|September 6, 2022
The Exeter Activity Unlimited statement on physical activity and exercise for cystic fibrosis: methodology and results of an international, multidisciplinary, evidence-driven expert consensusCraig A Williams, Alan R Barker, Sarah Denford, et al.Medrxiv : the Preprint Server for Health Sciences|November 24, 2025
Gene-Pseudogene Inversions as a Hidden Source of Missing HeritabilityIlaria Quartesan, Stefano Facchini, Arianna Manini, et al.Brain Communications|November 6, 2024
Autosomal recessive <i>VWA1</i>-related disorder: comprehensive analysis of phenotypic variability and genetic mutationsSara Nagy, Alistair T Pagnamenta, Elisa Cali, et al.Nature Genetics|May 28, 2020
Author Correction: Biallelic mutations in SORD cause a common and potentially treatable hereditary neuropathy with implications for diabetesAndrea Cortese, Yi Zhu, Adriana P Rebelo, et al.Nature Genetics|May 6, 2020
Biallelic mutations in SORD cause a common and potentially treatable hereditary neuropathy with implications for diabetesAndrea Cortese, Yi Zhu, Adriana P Rebelo, et al.Brain : a Journal of Neurology|January 9, 2024
Role of the repeat expansion size in predicting age of onset and severity in RFC1 diseaseRiccardo Currò, Natalia Dominik, Stefano Facchini, et al.Pageof 163