Biology Reference
In-Depth Information
7. Hossmann V, Hossmann KA, Takagi S (1980)
Effect of intravascular platelet aggregation on
blood recirculation following prolonged isch-
emia of the cat brain. J Neurol 222:159-170
8. Obrenovitch TP, Hallenbeck JM (1985)
Platelet accumulation in regions of low blood
fl ow during the postischemic period. Stroke
16:224-234
9. Sehba FA, Mostafa G, Knopman J, Friedrich V
Jr, Bederson JB (2004) Acute alterations in
microvascular basal lamina after subarachnoid
hemorrhage. J Neurosurg 101(4):633-640
10. Ayer RE, Zhang JH (2008) Oxidative stress in
subarachnoid haemorrhage: signifi cance in
acute brain injury and vasospasm. Acta
Neurochir Suppl 104:33-41
11. Sehba FA, Bederson JB (2006) Mechanisms of
acute brain injury after subarachnoid hemor-
rhage. Neurol Res 28(4):381-398
12. Grote E, Hassler W (1988) The critical fi rst
minutes after subarachnoid hemorrhage.
Neurosurgery 22(4):654-661
13. Jakubowski J, Bell BA, Symon L, Zawirski MB,
Francis DM (1982) A primate model of suba-
rachnoid hemorrhage: change in regional cere-
bral blood fl ow, autoregulation carbon dioxide
reactivity, and central conduction time. Stroke
13(5):601-611
14. Fischer EG, Ames A 3rd (1979) Lorenzo AV.
Cerebral blood fl ow immediately following
brief circulatory stasis, Stroke
15. Hekmatpanah J (1973) Cerebral blood fl ow
dynamics in hypotension and cardiac arrest.
Neurology 23(2):174-180
16. Sehba FA, Mostafa G, Knopman J, Friedrich V
Jr, Bederson JB (2004) Acute alterations in
microvascular basal lamina after subarachnoid
hemorrhage. J Neurosurg 101(4):633-640
17. Friedrich V, Flores R, Muller A, Sehba FA
(2010) Escape of intraluminal platelets into
brain parenchyma after subarachnoid hemor-
rhage. Neuroscience 165(3):968-975, Epub
2009 Oct 25
18. Bavbek M, Polin R, Kwan AL, Arthur AS,
Kassell NF, Lee KS (1998) Monoclonal anti-
bodies against ICAM-1 and CD18 attenuate
cerebral vasospasm after experimental suba-
rachnoid hemorrhage in rabbits. Stroke 29(9):
1930-1935
19. Hamann GF, Okada Y, Fitridge R, del Zoppo
GJ (1995) Microvascular basal lamina antigens
disappear during cerebral ischemia and reperfu-
sion. Stroke 26(11):2120-2126
20. Claassen J, Carhuapoma JR, Kreiter KT, Du
EY, Connolly ES, Mayer SA (2002) Global
cerebral edema after subarachnoid hemorrhage:
frequency, predictors, and impact on outcome.
Stroke 33(5):1225-1232
21. Sasaki T, Kassell NF, Zuccarello M et al (1986)
Barrier disruption in the major cerebral arteries
during the acute stage after experimental suba-
rachnoid hemorrhage. Neurosurgery 19(2):
177-184
22. Haring H-P, Berg EL, Tsurushita N, Tagaya
M, del Zoppo GJ, Eppihimer MJ (1996)
E-selectin appears in nonischemic tissue during
experimental focal cerebral ischemia. Stroke
27:1386-1392
23. Mao Y, Yang G, Zhou L (2000) Temporary
and permanent focal cerebral ischemia in the
mouse: assessment of cerebral blood fl ow, brain
damage and blood-brain barrier permeability.
Chin Med J (Engl) 113:361-366
24. DiNapoli VA, Huber JD, Houser K, Li X,
Rosen CL (2008) Early disruptions of the
blood-brain barrier may contribute to exacer-
bated neuronal damage and prolonged func-
tional recovery following stroke in aged rats.
Neurobiol Aging 29(5):753-764
25. Tait MJ, Saadoun S, Bell BA, Verkman AS,
Papadopoulos MC (2010) Increased brain
edema in aqp4-null mice in an experimental
model
of
subarachnoid
hemorrhage.
Neuroscience 167(1):60-67
26. Hartings JA, Watanabe T, Dreier JP, Major S,
Vendelbo L, Fabricius M (2009) Recovery of
slow potentials in AC-coupled electrocorticog-
raphy: application to spreading depolarizations
in rat and human cerebral cortex. J Neurophysiol
102(4):2563-2575
27. Park S, Yamaguchi M, Zhou C, Calvert JW, Tang
J, Zhang JH (2004) Neurovascular protection
reduces early brain injury after subarachnoid
hemorrhage. Stroke 35(10):2412-2417
28. Zubkov AY, Rollins KS, McGehee B, Parent
AD, Zhang JH (2001) Relaxant effect of
U0126 in hemolysate-, oxyhemoglobin-,
and bloody cerebrospinal fl uid-induced con-
traction in rabbit basilar artery. Stroke 32(1):
154-161
29. Gaetani P, Pasqualin A, Rodriguez y Baena R,
Borasio E, Marzatico F (1998) Oxidative stress
in the human brain after subarachnoid hemor-
rhage. J Neurosurg 89(5):748-754
30. Marzatico F, Gaetani P, Cafe C, Spanu G,
Rodriguez y Baena R (1993) Antioxidan-
tenzymatic activities after experimental suba-
rachnoid hemorrhage in rats. Acta Neurol
Scand 87(1):62-66
31. Fiskum G, Rosenthal RE, Vereczki V, Martin E,
Hoffman GE, Chinopoulos C, Kowaltowski A
(2004) Protection against ischemic brain injury
by inhibition of mitochondrial oxidative stress.
J Bioenerg Biomembr 36(4): 347-352
32. Lewen A, Matz P, Chan PH (2000) Free radi-
cal pathways in CNS injury. J Neurotrauma
17(10):871-890
Search WWH ::




Custom Search