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Scoring Algorithm-Based Genomic Testing in Dystonia: A Prospective Validation Study

delete2021-05-05
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OA
AI
M
Michael Zech *
R
Robert Jech
S
Sylvia Boesch
M
Matěj Škorvánek
J
Ján Necpál
M
Matias Wagner
A
Ariane Sadr‐Nabavi
F
Felix Distelmaier
M
Martin Krenn
T
Tereza Serranová
I
Irena Rektorová
P
Petra Havránková
I
Iva Příhodová
K
Kristína Kulcsárová
O
Olga Ulmanová
M
Miriam Ostrožovičová
V
Vladimír Haň
J
Joaquim Ribeiro Ventosa
T
Theresa Brunet
R
Riccardo Berutti
M
Mohammad Shariati
A
Ali Shoeibi
S
Susanne A. Schneider
A
Alice Kuster
M
Matthias Baumann
D
David Weise
W
Wibke G. Janzarik
M
Matthias Eckenweiler
V
Volker Mall
B
Bernhard Haslinger
S
Steffen Berweck
J
Juliane Winkelmann
K
Konrad Oexle
DOI:10.1002/mds.28614delete
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Abstract

Abstract

En 中文
Background Despite the established value of genomic testing strategies, practice guidelines for their use do not exist in many indications. Objectives We sought to validate a recently introduced scoring algorithm for dystonia, predicting the diagnostic utility of whole-exome sequencing (WES) based on individual phenotypic aspects (age-at-onset, body distribution, presenting comorbidity). Methods We prospectively enrolled a set of 209 dystonia-affected families and obtained summary scores (0-5 points) according to the algorithm. Singleton (N = 146), duo (N = 11), and trio (N = 52) WES data were generated to identify genetic diagnoses. Results Diagnostic yield was highest (51%) among individuals with a summary score of 5, corresponding to a manifestation of early-onset segmental or generalized dystonia with coexisting non-movement disorder-related neurological symptoms. Sensitivity and specificity at the previously suggested threshold for implementation of WES (3 points) was 96% and 52%, with area under the curve of 0.81. Conclusions The algorithm is a useful predictive tool and could be integrated into dystonia routine diagnostic protocols. (c) 2021 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson Movement Disorder Society
Keywords:
exome sequencing
diagnostic yield
dystonia
prediction
scoring algorithm
rare disease

Journal

Movement Disorders cover
Movement Disorders
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nantes universite
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