Suchbegriffe: WHITE MATTER - PATHOLOGY, . Treffer: 21
Gelpi, E; Klotz, S; Beyerle, M; Wischnewski, S; Harter, V; Kirschner, H; Stolz, K; Reisinger, C; Lindeck-Pozza, E; Zoufaly, A; Leoni, M; Gorkiewicz, G; Zacharias, M; Haberler, C; Hainfellner, J; Woehrer, A; Hametner, S; Roetzer, T; Voigtländer, T; Ricken, G; Endmayr, V; Haider, C; Ludwig, J; Polt, A; Wilk, G; Schmid, S; Erben, I; Nguyen, A; Lang, S; Simonitsch-Klupp, I; Kornauth, C; Nackenhorst, M; Kläger, J; Kain, R; Chott, A; Wasicky, R; Krause, R; Weiss, G; Löffler-Rag, J; Berger, T; Moser, P; Soleiman, A; Asslaber, M; Sedivy, R; Klupp, N; Klimpfinger, M; Risser, D; Budka, H; Schirmer, L; Pröbstel, AK; Höftberger, R
Multifactorial White Matter Damage in the Acute Phase and Pre-Existing Conditions May Drive Cognitive Dysfunction after SARS-CoV-2 Infection: Neuropathology-Based Evidence.
Viruses. 2023; 15(4):
Doi: 10.3390/v15040908
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Bonkhoff, AK; Hong, S; Bretzner, M; Schirmer, MD; Regenhardt, RW; Arsava, EM; Donahue, K; Nardin, M; Dalca, A; Giese, AK; Etherton, MR; Hancock, BL; Mocking, SJT; McIntosh, E; Attia, J; Benavente, O; Cole, JW; Donatti, A; Griessenauer, C; Heitsch, L; Holmegaard, L; Jood, K; Jimenez-Conde, J; Kittner, S; Lemmens, R; Levi, C; McDonough, CW; Meschia, J; Phuah, CL; Rolfs, A; Ropele, S; Rosand, J; Roquer, J; Rundek, T; Sacco, RL; Schmidt, R; Sharma, P; Slowik, A; Soederholm, M; Sousa, A; Stanne, TM; Strbian, D; Tatlisumak, T; Thijs, V; Vagal, A; Wasselius, J; Woo, D; Zand, R; McArdle, P; Worrall, BB; Jern, C; Lindgren, AG; Maguire, J; Golland, P; Bzdok, D; Wu, O; Rost, NS
Association of Stroke Lesion Pattern and White Matter Hyperintensity Burden With Stroke Severity and Outcome.
Neurology. 2022; 99(13): e1364-e1379.
Doi: 10.1212/WNL.0000000000200926
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Pirpamer, L; Kincses, B; Kincses, ZT; Kiss, C; Damulina, A; Khalil, M; Stollberger, R; Schmidt, R; Enzinger, C; Ropele, S
Periventricular magnetisation transfer abnormalities in early multiple sclerosis.
Neuroimage Clin. 2022; 34: 103012
Doi: 10.1016/j.nicl.2022.103012
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Höftberger, R; Guo, Y; Flanagan, EP; Lopez-Chiriboga, AS; Endmayr, V; Hochmeister, S; Joldic, D; Pittock, SJ; Tillema, JM; Gorman, M; Lassmann, H; Lucchinetti, CF
The pathology of central nervous system inflammatory demyelinating disease accompanying myelin oligodendrocyte glycoprotein autoantibody.
Acta Neuropathol. 2020; 139(5):875-892
Doi: 10.1007/s00401-020-02132-y
(- Case Report)
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Borsodi, F; Culea, V; Langkammer, C; Khalil, M; Pirpamer, L; Quasthoff, S; Enzinger, C; Schmidt, R; Fazekas, F; Ropele, S
Multimodal assessment of white matter tracts in amyotrophic lateral sclerosis.
PLoS One. 2017; 12(6):e0178371-e0178371
Doi: 10.1371/journal.pone.0178371
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de Sitter, A; Steenwijk, MD; Ruet, A; Versteeg, A; Liu, Y; van Schijndel, RA; Pouwels, PJW; Kilsdonk, ID; Cover, KS; van Dijk, BW; Ropele, S; Rocca, MA; Yiannakas, M; Wattjes, MP; Damangir, S; Frisoni, GB; Sastre-Garriga, J; Rovira, A; Enzinger, C; Filippi, M; Frederiksen, J; Ciccarelli, O; Kappos, L; Barkhof, F; Vrenken, H; MAGNIMS study group and for neuGRID
Performance of five research-domain automated WM lesion segmentation methods in a multi-center MS study.
Neuroimage. 2017; 163(496):106-114
Doi: 10.1016/j.neuroimage.2017.09.011
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Koini, M; Rombouts, SARB; Veer, IM; Van Buchem, MA; Huijbregts, SCJ
White matter microstructure of patients with neurofibromatosis type 1 and its relation to inhibitory control.
Brain Imaging Behav. 2017; 11(6):1731-1740
Doi: 10.1007/s11682-016-9641-3
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Peyton, C; Yang, E; Msall, ME; Adde, L; Støen, R; Fjørtoft, T; Bos, AF; Einspieler, C; Zhou, Y; Schreiber, MD; Marks, JD; Drobyshevsky, A
White Matter Injury and General Movements in High-Risk Preterm Infants.
AJNR Am J Neuroradiol. 2017; 38(1):162-169
Doi: 10.3174/ajnr.A4955
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Schouten, TM; Koini, M; Vos, F; Seiler, S; Rooij, M; Lechner, A; Schmidt, R; Heuvel, MVD; Grond, JV; Rombouts, SARB
Individual classification of Alzheimer's disease with diffusion magnetic resonance imaging.
Neuroimage. 2017; 152(2):476-481
Doi: 10.1016/j.neuroimage.2017.03.025
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Jouvent, E; Sun, ZY; De Guio, F; Duchesnay, E; Duering, M; Ropele, S; Dichgans, M; Mangin, JF; Chabriat, H
Shape of the Central Sulcus and Disability After Subcortical Stroke: A Motor Reserve Hypothesis.
Stroke. 2016; 47(4):1023-1029
Doi: 10.1161/STROKEAHA.115.012562
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Peyton, C; Yang, E; Kocherginsky, M; Adde, L; Fjørtoft, T; Støen, R; Bos, AF; Einspieler, C; Schreiber, MD; Msall, ME
Relationship between white matter pathology and performance on the General Movement Assessment and the Test of Infant Motor Performance in very preterm infants.
Early Hum Dev. 2016; 95(10):23-27
Doi: 10.1016/j.earlhumdev.2016.01.017
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Schmidt, R; Seiler, S; Loitfelder, M
Longitudinal change of small-vessel disease-related brain abnormalities
J CEREBR BLOOD F MET. 2016; 36(1): 26-39.
Doi: 10.1038/jcbfm.2015.72
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Schouten, TM; Koini, M; de Vos, F; Seiler, S; van der Grond, J; Lechner, A; Hafkemeijer, A; Möller, C; Schmidt, R; de Rooij, M; Rombouts, SA
Combining anatomical, diffusion, and resting state functional magnetic resonance imaging for individual classification of mild and moderate Alzheimer's disease.
Neuroimage Clin. 2016; 11:46-51
Doi: 10.1016/j.nicl.2016.01.002
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De Guio, F; Mangin, JF; Duering, M; Ropele, S; Chabriat, H; Jouvent, E
White matter edema at the early stage of cerebral autosomal-dominant arteriopathy with subcortical infarcts and leukoencephalopathy.
Stroke. 2015; 46(1):258-261
Doi: 10.1161/STROKEAHA.114.007018
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Frederiksen, KS; Verdelho, A; Madureira, S; Bäzner, H; O'Brien, JT; Fazekas, F; Scheltens, P; Schmidt, R; Wallin, A; Wahlund, LO; Erkinjunttii, T; Poggesi, A; Pantoni, L; Inzitari, D; Waldemar, G; LADIS Study
Physical activity in the elderly is associated with improved executive function and processing speed: the LADIS Study.
Int J Geriatr Psychiatry. 2015; 30(7):744-750
Doi: 10.1002/gps.4220
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Hofer, E; Cavalieri, M; Bis, JC; DeCarli, C; Fornage, M; Sigurdsson, S; Srikanth, V; Trompet, S; Verhaaren, BF; Wolf, C; Yang, Q; Adams, HH; Amouyel, P; Beiser, A; Buckley, BM; Callisaya, M; Chauhan, G; de Craen, AJ; Dufouil, C; van Duijn, CM; Ford, I; Freudenberger, P; Gottesman, RF; Gudnason, V; Heiss, G; Hofman, A; Lumley, T; Martinez, O; Mazoyer, B; Moran, C; Niessen, WJ; Phan, T; Psaty, BM; Satizabal, CL; Sattar, N; Schilling, S; Shibata, DK; Slagboom, PE; Smith, A; Stott, DJ; Taylor, KD; Thomson, R; Töglhofer, AM; Tzourio, C; van Buchem, M; Wang, J; Westendorp, RG; Windham, BG; Vernooij, MW; Zijdenbos, A; Beare, R; Debette, S; Ikram, MA; Jukema, JW; Launer, LJ; Longstreth, WT; Mosley, TH; Seshadri, S; Schmidt, H; Schmidt, R; Cohorts for Heart and Aging Research in Genomic Epidemiology Consortium
White Matter Lesion Progression: Genome-Wide Search for Genetic Influences.
Stroke. 2015; 46(11):3048-3057
Doi: 10.1161/STROKEAHA.115.009252
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Lopez, LM; Hill, WD; Harris, SE; Valdes Hernandez, M; Munoz Maniega, S; Bastin, ME; Bailey, E; Smith, C; McBride, M; McClure, J; Graham, D; Dominiczak, A; Yang, Q; Fornage, M; Ikram, MA; Debette, S; Launer, L; Bis, JC; Schmidt, R; Seshadri, S; Porteous, DJ; Starr, J; Deary, IJ; Wardlaw, JM
Genes from a translational analysis support a multifactorial nature of white matter hyperintensities.
Stroke. 2015; 46(2):341-347
Doi: 10.1161/STROKEAHA.114.007649
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Matthews, L; Enzinger, C; Fazekas, F; Rovira, A; Ciccarelli, O; Dotti, MT; Filippi, M; Frederiksen, JL; Giorgio, A; Küker, W; Lukas, C; Rocca, MA; De Stefano, N; Toosy, A; Yousry, T; Palace, J; MAGNIMS Network
MRI in Leber's hereditary optic neuropathy: the relationship to multiple sclerosis.
J Neurol Neurosurg Psychiatry. 2015; 86(5):537-542
Doi: 10.1136/jnnp-2014-308186
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Gattringer, T; Fazekas, F
[The clinical implication of cerebral white matter hyperintensities on magnetic resonance imaging].
Fortschr Neurol Psychiatr. 2014; 82(8):471-482
Doi: 10.1055/s-0034-1366703
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Gebeily, S; Fares, Y; Kordahi, M; Khodeir, P; Labaki, G; Fazekas, F
Cerebral white matter hyperintensities (WMH): an analysis of cerebrovascular risk factors in Lebanon.
Int J Neurosci. 2014; 124(11):799-805
Doi: 10.3109/00207454.2014.884087
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Xiong, Y; Wong, A; Cavalieri, M; Schmidt, R; Chu, WW; Liu, X; Wong, KS; Mok, V
Prestroke statins, progression of white matter hyperintensities, and cognitive decline in stroke patients with confluent white matter hyperintensities.
Neurotherapeutics. 2014; 11(3):606-611
Doi: 10.1007/s13311-014-0270-5
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