BACKGROUND: The biological basis of gray matter (GM) atrophy in multiple sclerosis is not well understood, but GM damage seems to be the most critical factor leading to permanent disability. OBJECTIVE: To assess to what extent white matter (WM) lesions contribute to regional GM atrophy in multiple sclerosis. DESIGN: Because optic pathway GM atrophy and optic radiation lesions, rather than being related to each other, could be independent results of the disease, we applied a nonaprioristic WM method to analyze the interrelationships of both phenomena. On a voxel-by-voxel basis, we correlated T1 magnetic resonance imaging-derived lesion probability maps of the entire brain with atrophy of the lateral geniculate nuclei and calcarine/pericalcarine cortices. SETTING: Multiple sclerosis center, University of Navarra, Pamplona, Spain. PATIENTS: Sixty-one patients with multiple sclerosis. MAIN OUTCOME MEASURE: Mapping of WM regions contributing to GM atrophy in the optic pathway. RESULTS: Patients with multiple sclerosis had lateral geniculate nucleus atrophy, which correlated with the presence of lesions specifically in the optic radiations but not in the rest of the brain. Optic pathway lesions explained up to 28% of the change of variance in lateral geniculate nucleus atrophy. Patients also had occipital cortex atrophy, which did not correlate with lesions in the optic radiations or any other WM region. CONCLUSIONS: Focal WM damage is associated with upstream GM atrophy, suggesting that retrograde damage of the perikarya from axonal injury in multiple sclerosis plaques is one of the significant factors in the genesis of GM atrophy, although other neurodegenerative processes are probably at work as well.
BACKGROUND: The biological basis of gray matter (GM) atrophy in multiple sclerosis is not well understood, but GM damage seems to be the most critical factor leading to permanent disability. OBJECTIVE: To assess to what extent white matter (WM) lesions contribute to regional GM atrophy in multiple sclerosis. DESIGN: Because optic pathway GM atrophy and optic radiation lesions, rather than being related to each other, could be independent results of the disease, we applied a nonaprioristic WM method to analyze the interrelationships of both phenomena. On a voxel-by-voxel basis, we correlated T1 magnetic resonance imaging-derived lesion probability maps of the entire brain with atrophy of the lateral geniculate nuclei and calcarine/pericalcarine cortices. SETTING:Multiple sclerosis center, University of Navarra, Pamplona, Spain. PATIENTS: Sixty-one patients with multiple sclerosis. MAIN OUTCOME MEASURE: Mapping of WM regions contributing to GM atrophy in the optic pathway. RESULTS:Patients with multiple sclerosis had lateral geniculate nucleus atrophy, which correlated with the presence of lesions specifically in the optic radiations but not in the rest of the brain. Optic pathway lesions explained up to 28% of the change of variance in lateral geniculate nucleus atrophy. Patients also had occipital cortex atrophy, which did not correlate with lesions in the optic radiations or any other WM region. CONCLUSIONS: Focal WM damage is associated with upstream GM atrophy, suggesting that retrograde damage of the perikarya from axonal injury in multiple sclerosis plaques is one of the significant factors in the genesis of GM atrophy, although other neurodegenerative processes are probably at work as well.
Authors: Stuart D Cook; Suhayl Dhib-Jalbut; Peter Dowling; Luca Durelli; Corey Ford; Gavin Giovannoni; June Halper; Colleen Harris; Joseph Herbert; David Li; John A Lincoln; Robert Lisak; Fred D Lublin; Claudia F Lucchinetti; Wayne Moore; Robert T Naismith; Carlos Oehninger; Jack Simon; Maria Pia Sormani Journal: Int J MS Care Date: 2012
Authors: Stefan Ehrlich; Daniel Geisler; Anastasia Yendiki; Patricia Panneck; Veit Roessner; Vince D Calhoun; Vincent A Magnotta; Randy L Gollub; Tonya White Journal: Schizophr Bull Date: 2013-05-09 Impact factor: 9.306
Authors: Athina Papadopoulou; Laura Gaetano; Armanda Pfister; Anna Altermatt; Charidimos Tsagkas; Felix Morency; Alexander U Brandt; Martin Hardmeier; Mallar M Chakravarty; Maxime Descoteaux; Ludwig Kappos; Till Sprenger; Stefano Magon Journal: Neurology Date: 2019-04-10 Impact factor: 9.910
Authors: Martijn D Steenwijk; Marita Daams; Petra J W Pouwels; Lisanne J Balk; Prejaas K Tewarie; Jeroen J G Geurts; Frederik Barkhof; Hugo Vrenken Journal: Hum Brain Mapp Date: 2015-01-27 Impact factor: 5.038
Authors: Michael L Alosco; Mary Beth Spitznagel; Naftali Raz; Ronald Cohen; Lawrence H Sweet; Manfred van Dulmen; Lisa H Colbert; Richard Josephson; Donna Waechter; Joel Hughes; Jim Rosneck; John Gunstad Journal: J Clin Exp Neuropsychol Date: 2011-10-31 Impact factor: 2.475
Authors: E J Lampert; M Andorra; R Torres-Torres; S Ortiz-Pérez; S Llufriu; M Sepúlveda; N Sola; A Saiz; B Sánchez-Dalmau; P Villoslada; Elena H Martínez-Lapiscina Journal: J Neurol Date: 2015-08-11 Impact factor: 4.849