Mutation‐related magnetization‐transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra‐strong …

C Casella, M Chamberland, PL Laguna… - Human Brain …, 2022 - Wiley Online Library
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease‐pathophysiology remains unknown. We assessed WM changes in …

Mutation‐related magnetization‐transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra‐strong …

C Casella, M Chamberland, PL Laguna… - Human Brain …, 2022 - search.ebscohost.com
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease‐pathophysiology remains unknown. We assessed WM changes in …

Mutation-related magnetization-transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra-strong …

C Casella, M Chamberland, PL Laguna… - Human Brain …, 2022 - kclpure.kcl.ac.uk
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease-pathophysiology remains unknown. We assessed WM changes in …

Mutation‐related magnetization‐transfer, not axon density, drives white matter differences in premanifest huntington disease: Evidence from in vivo ultra‐strong …

C Casella, M Chamberland, PL Laguna… - Human Brain …, 2022 - psycnet.apa.org
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease‐pathophysiology remains unknown. We assessed WM changes in …

Mutation-related magnetization-transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra-strong …

C Casella, M Chamberland, PL Laguna… - Human brain …, 2022 - pubmed.ncbi.nlm.nih.gov
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease-pathophysiology remains unknown. We assessed WM changes in …

Mutation-related magnetization-transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra-strong …

C Casella, M Chamberland, PL Laguna… - Human Brain …, 2022 - research.tue.nl
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease-pathophysiology remains unknown. We assessed WM changes in …

Mutation-related magnetization-transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra-strong …

C Casella, M Chamberland… - Human Brain …, 2022 - research-information.bris.ac.uk
White matter (WM) alterations have been observed in Huntington's disease (HD) but their
role in the disease-pathophysiology remains unknown. We assessed WM changes in …

[HTML][HTML] Mutation‐related magnetization‐transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra …

C Casella, M Chamberland, PL Laguna… - Human Brain …, 2022 - ncbi.nlm.nih.gov
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease‐pathophysiology remains unknown. We assessed WM changes in …

Mutation-related magnetization-transfer, not axon density, drives white matter differences in premanifest Huntington's disease: Evidence from in vivo ultra-strong …

C Casella, M Chamberland, P Luque Laguna… - Human Brain …, 2022 - orca.cardiff.ac.uk
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease-pathophysiology remains unknown. We assessed WM changes in …

[PDF][PDF] Mutation-related magnetization-transfer, not axon density, drives white matter differences in premanifest Huntington disease: Evidence from in vivo ultra-strong …

C Casella, M Chamberland, P Laguna, G Parker… - 2022 - repository.ubn.ru.nl
White matter (WM) alterations have been observed in Huntington disease (HD) but their role
in the disease-pathophysiology remains unknown. We assessed WM changes in …