Items where authors include "Robberecht, W."

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Number of items: 16.

Article

Al Khleifat, A., Iacoangeli, A., Jones, A.R. et al. (42 more authors) (2022) Telomere length analysis in amyotrophic lateral sclerosis using large-scale whole genome sequence data. Frontiers in Cellular Neuroscience, 16. 1050596. ISSN 1662-5102

Opie-Martin, S., Iacoangeli, A., Topp, S.D. et al. (46 more authors) (2022) The SOD1-mediated ALS phenotype shows a decoupling between age of symptom onset and disease duration. Nature Communications, 13 (1). 6901. ISSN 2041-1723

Al Khleifat, A., Iacoangeli, A., van Vugt, J.J.F.A. et al. (44 more authors) (2022) Structural variation analysis of 6,500 whole genome sequences in amyotrophic lateral sclerosis. npj Genomic Medicine, 7 (1). 8.

Moisse, M., Zwamborn, R.A.J., Vugt, J. et al. (33 more authors) (2021) The effect of SMN gene dosage on ALS risk and disease severity. Annals of Neurology, 89 (4). pp. 686-697. ISSN 0364-5134

Tazelaar, G.H.P., Boeynaems, S., De Decker, M. et al. (35 more authors) (2020) ATXN1 repeat expansions confer risk for amyotrophic lateral sclerosis and contribute to TDP-43 mislocalization. Brain Communications, 2 (2). fcaa064. ISSN 2632-1297

Cooper-Knock, J., Moll, T., Ramesh, T. et al. (26 more authors) (2019) Mutations in the glycosyltransferase domain of GLT8D1 are associated with familial amyotrophic lateral sclerosis. Cell Reports, 26 (9). 2298-2306.e5. ISSN 2211-1247

Van Der Spek, R.A., Van Rheenen, W., Pulit, S.L. et al. (34 more authors) (2018) Reconsidering the causality of TIA1 mutations in ALS. Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration , 19 (1-2). pp. 1-3. ISSN 2167-8421

Project, M.A.S.C., van Rheenen, W., Pulit, S.L. et al. (36 more authors) (2018) Project MinE: study design and pilot analyses of a large-scale whole-genome sequencing study in amyotrophic lateral sclerosis. European Journal of Human Genetics, 26 (10). pp. 1537-1546. ISSN 1018-4813

Tazelaar, G.H.P., Dekker, A.M., van Vugt, J.J.F.A. et al. (28 more authors) (2018) Association of NIPA1 repeat expansions with amyotrophic lateral sclerosis in a large international cohort. Neurobiology of Aging. ISSN 0197-4580

Consortium, P.M.A.L.S.S., Veldink, J.H., Shaw, P.J. et al. (32 more authors) (2018) CHCHD10 variants in amyotrophic lateral sclerosis: where Is the evidence? Annals of Neurology , 84 (1). pp. 110-116. ISSN 0364-5134

Hardiman, O., Al-Chalabi, A., Chio, A. et al. (6 more authors) (2017) Amyotrophic lateral sclerosis. Nature Reviews Disease Primers, 3. 17071.

McLaughlin, R.L., Schijven, D., van Rheenen, W. et al. (433 more authors) (2017) Genetic correlation between amyotrophic lateral sclerosis and schizophrenia. Nature Communications, 8. 14774.

Rooney, J., Fogh, I., Westeneng, H.J. et al. (17 more authors) (2016) C9orf72 expansion differentially affects males with spinal onset amyotrophic lateral sclerosis. Journal of Neurology, Neurosurgery and Psychiatry. ISSN 0022-3050

Kenna, K.P., van Doormaal, P.T.C., Dekker, A.M. et al. (92 more authors) (2016) NEK1 variants confer susceptibility to amyotrophic lateral sclerosis. Nature Genetics, 48 (9). pp. 1037-1042. ISSN 1061-4036

Fogh, I., Lin, K., Tiloca, C. et al. (46 more authors) (2016) Association of a Locus in the CAMTA1 Gene With Survival in Patients With Sporadic Amyotrophic Lateral Sclerosis. JAMA Neurology, 73 (7). pp. 812-820. ISSN 2168-6149

Oeckl, P., Jardel, C., Salachas, F. et al. (32 more authors) (2016) Multicenter validation of CSF neurofilaments as diagnostic biomarkers for ALS. Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration. pp. 1-10. ISSN 2167-8421

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