Suchbegriffe: CEREBROVASCULAR DISORDERS, . Treffer: 13
Abdellatif, M; Bugger, H; Kroemer, G; Sedej, S
NAD+ and Vascular Dysfunction: From Mechanisms to Therapeutic Opportunities.
J Lipid Atheroscler. 2022; 11(2): 111-132.
Doi: 10.12997/jla.2022.11.2.111
[OPEN ACCESS]
PubMed
FullText
FullText_MUG
Bernegger, A; Mikšová, D; Posekany, A; Krebs, S; Ferrari, J; Greisenegger, S; Gattringer, T; Lang, W; Kiechl, S; Sykora, M, , Austrian, Stroke, Unit, Registry, Collaborators
Time trends in stroke severity in the years 2005 to 2020: results from the Austrian Stroke Unit Registry.
J Neurol. 2022; 269(8): 4396-4403.
Doi: 10.1007/s00415-022-11079-x
Web of Science
PubMed
FullText
FullText_MUG
Fazekas, F; Gattringer, T; Enzinger, C
Cerebrovascular disorders.
Curr Opin Neurol. 2018; 31(4):345-353
Doi: 10.1097/WCO.0000000000000566
Web of Science
PubMed
FullText
FullText_MUG
Verhaaren, BF; Debette, S; Bis, JC; Smith, JA; Ikram, MK; Adams, HH; Beecham, AH; Rajan, KB; Lopez, LM; Barral, S; van Buchem, MA; van der Grond, J; Smith, AV; Hegenscheid, K; Aggarwal, NT; de Andrade, M; Atkinson, EJ; Beekman, M; Beiser, AS; Blanton, SH; Boerwinkle, E; Brickman, AM; Bryan, RN; Chauhan, G; Chen, CP; Chouraki, V; de Craen, AJ; Crivello, F; Deary, IJ; Deelen, J; De Jager, PL; Dufouil, C; Elkind, MS; Evans, DA; Freudenberger, P; Gottesman, RF; Guðnason, V; Habes, M; Heckbert, SR; Heiss, G; Hilal, S; Hofer, E; Hofman, A; Ibrahim-Verbaas, CA; Knopman, DS; Lewis, CE; Liao, J; Liewald, DC; Luciano, M; van der Lugt, A; Martinez, OO; Mayeux, R; Mazoyer, B; Nalls, M; Nauck, M; Niessen, WJ; Oostra, BA; Psaty, BM; Rice, KM; Rotter, JI; von Sarnowski, B; Schmidt, H; Schreiner, PJ; Schuur, M; Sidney, SS; Sigurdsson, S; Slagboom, PE; Stott, DJ; van Swieten, JC; Teumer, A; Töglhofer, AM; Traylor, M; Trompet, S; Turner, ST; Tzourio, C; Uh, HW; Uitterlinden, AG; Vernooij, MW; Wang, JJ; Wong, TY; Wardlaw, JM; Windham, BG; Wittfeld, K; Wolf, C; Wright, CB; Yang, Q; Zhao, W; Zijdenbos, A; Jukema, JW; Sacco, RL; Kardia, SL; Amouyel, P; Mosley, TH; Longstreth, WT; DeCarli, CC; van Duijn, CM; Schmidt, R; Launer, LJ; Grabe, HJ; Seshadri, SS; Ikram, MA; Fornage, M
Multiethnic genome-wide association study of cerebral white matter hyperintensities on MRI.
Circ Cardiovasc Genet. 2015; 8(2):398-409
Doi: 10.1161/CIRCGENETICS.114.000858
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Blaber, AP; Zuj, KA; Goswami, N
Cerebrovascular autoregulation: lessons learned from spaceflight research.
Eur J Appl Physiol. 2013; 113(8):1909-1917
Doi: 10.1007/s00421-012-2539-x
Web of Science
PubMed
FullText
FullText_MUG
Reishofer, G; Koschutnig, K; Enzinger, C; Ischebeck, A; Keeling, S; Stollberger, R; Ebner, F
Automated macrovessel artifact correction in dynamic susceptibility contrast magnetic resonance imaging using independent component analysis.
Magn Reson Med. 2011; 65(3): 848-857.
Doi: 10.1002/mrm.22660
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
van Straaten, EC; Fazekas, F; Rostrup, E; Scheltens, P; Schmidt, R; Pantoni, L; Inzitari, D; Waldemar, G; Erkinjuntti, T; Mäntylä, R; Wahlund, LO; Barkhof, F; LADIS Group
Impact of white matter hyperintensities scoring method on correlations with clinical data: the LADIS study.
Stroke. 2006; 37(3):836-840
Doi: 10.1161/01.STR.0000202585.26325.74
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Google Scholar
Markus, HS; Hunt, B; Palmer, K; Enzinger, C; Schmidt, H; Schmidt, R
Markers of endothelial and hemostatic activation and progression of cerebral white matter hyperintensities: longitudinal results of the Austrian Stroke Prevention Study.
Stroke. 2005; 36(7): 1410-1414.
Doi: 10.1161/01.STR.0000169924.60783.d4
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Google Scholar
Jürgens, G; Taddei-Peters, WC; Költringer, P; Petek, W; Chen, Q; Greilberger, J; Macomber, PF; Butman, BT; Stead, AG; Ransom, JH
Lipoprotein(a) serum concentration and apolipoprotein(a) phenotype correlate with severity and presence of ischemic cerebrovascular disease.
Stroke. 1995; 26(10):1841-1848
Doi: 10.1161/01.STR.26.10.1841
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Koltringer, P; Langsteger, W; Pierer, G; Reisecker, F; Eber, O
Influence of Application Time of a 6-Percent Hydroxyethyl Starch (200.000/0.6-0.66) on the Hemorheologic Effect on Patients with Cerebrovascular-Disease
CLIN HEMORHEOL 1992 12: 9-15.
Web of Science
Lechner, H; Niederkorn, K; Suzuki, H
Hemorheologic parameters in correlation to extracranial carotid artery disease in patients with acute cerebrovascular disorders.
Eur Neurol. 1987; 27(3):139-141
Doi: 10.1159/000116146
Web of Science
PubMed
FullText
FullText_MUG
Google Scholar
Pfurtscheller, G; Auer, L; Oberbauer, R
The influence of skull defects and reperfusion after extra-intracranial arterial bypass surgery on the sensorimotor EEG rhythm.
J Neurol Neurosurg Psychiatry. 1982; 45(12):1106-1112
Doi: 10.1136/jnnp.45.12.1106
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Pfurtscheller, G; Sager, W; Wege, W
Correlations between CT scan and sensorimotor EEG rhythms in patients with cerebrovascular disorders.
Electroencephalogr Clin Neurophysiol. 1981; 52(5):473-485
Doi: 10.1016/0013-4694(81)90032-8
Web of Science
PubMed
FullText
FullText_MUG