1
|
Chikuda H: Response: RE: Ischemic stroke
after cervical spine injury: Analysis of 11,005 patients using the
Japanese Diagnosis Procedure Combination database. Spine J.
15:2593–2594. 2015. View Article : Google Scholar : PubMed/NCBI
|
2
|
Arauz A, Romano JG, Ruiz-Franco A, Shang
T, Dong C, Rundek T, Koch S, Hernández-Curiel B, Pacheco J, Rojas
P, et al: Differences in lipid profiles in two Hispanic ischemic
stroke populations. Int J Stroke. 9:394–399. 2014. View Article : Google Scholar : PubMed/NCBI
|
3
|
Behrouz R: The risk of ischemic stroke in
major rheumatic disorders. J Neuroimmunol. 277:1–5. 2014.
View Article : Google Scholar : PubMed/NCBI
|
4
|
Liu NN, Dong ZL and Han LL: MicroRNA-410
inhibition of the TIMP2-dependent MAPK pathway confers
neuroprotection against oxidative stress-induced apoptosis after
ischemic stroke in mice. Brain Res Bull. 143:45–57. 2018.
View Article : Google Scholar : PubMed/NCBI
|
5
|
Tuo QZ, Liuyang ZY, Lei P, Yan X, Shentu
YP, Liang JW, Zhou H, Pei L, Xiong Y, Hou TY, et al: Zinc induces
CDK5 activation and neuronal death through CDK5-Tyr15
phosphorylation in ischemic stroke. Cell Death Dis. 9:8702018.
View Article : Google Scholar : PubMed/NCBI
|
6
|
Ní Chróinín D, Asplund K, Åsberg S,
Callaly E, Cuadrado-Godia E, Díez-Tejedor E, Di Napoli M, Engelter
ST, Furie KL, Giannopoulos S, et al: Statin therapy and outcome
after ischemic stroke: Systematic review and meta-analysis of
observational studies and randomized trials. Stroke. 44:448–456.
2013. View Article : Google Scholar : PubMed/NCBI
|
7
|
Dmitrieva VG, Povarova OV, Skvortsova VI,
Limborska SA, Myasoedov NF and Dergunova LV: Semax and Pro-Gly-Pro
activate the transcription of neurotrophins and their receptor
genes after cerebral ischemia. Cell Mol Neurobiol. 30:71–79. 2010.
View Article : Google Scholar : PubMed/NCBI
|
8
|
Terent A and Ronquist G: Cerebrospinal
fluid markers of disturbed brain cell metabolism in patients with
stroke and global cerebral ischemia. Acta Neurol Scand. 62:327–335.
1980. View Article : Google Scholar : PubMed/NCBI
|
9
|
Wang M, Zhang Y, Feng L, Zheng J, Fan S,
Liu J, Yang N, Liu Y and Zuo P: Compound porcine cerebroside and
ganglioside injection attenuates cerebral ischemia-reperfusion
injury in rats by targeting multiple cellular processes.
Neuropsychiatr Dis Treat. 13:927–935. 2017. View Article : Google Scholar : PubMed/NCBI
|
10
|
Doronin II, Vishnyakova PA, Kholodenko IV,
Ponomarev ED, Ryazantsev DY, Molotkovskaya IM and Kholodenko RV:
Ganglioside GD2 in reception and transduction of cell death signal
in tumor cells. BMC Cancer. 14:2952014. View Article : Google Scholar : PubMed/NCBI
|
11
|
Novak A, Režić Mužinić N, Cikeš Čulić V,
Božić J, Tičinović Kurir T, Ferhatović L, Puljak L and Markotić A:
Renal distribution of ganglioside GM3 in rat models of types 1 and
2 diabetes. J Physiol Biochem. 69:727–735. 2013. View Article : Google Scholar : PubMed/NCBI
|
12
|
Dostal P, Schreiberova J, Dostalova V,
Dostalova V Jr, Tyll T, Paral J, Abdo I, Cihlo M, Astapenko D and
Turek Z: Effects of hypertonic saline and mannitol on cortical
cerebral microcirculation in a rabbit craniotomy model. BMC
Anesthesiol. 15:882015. View Article : Google Scholar : PubMed/NCBI
|
13
|
Morikawa T, Kajimura M, Nakamura T,
Hishiki T, Nakanishi T, Yukutake Y, Nagahata Y, Ishikawa M, Hattori
K, Takenouchi T, et al: Hypoxic regulation of the cerebral
microcirculation is mediated by a carbon monoxide-sensitive
hydrogen sulfide pathway. Proc Natl Acad Sci USA. 109:1293–1298.
2012. View Article : Google Scholar : PubMed/NCBI
|
14
|
Chen Y, Li Q, Tang J, Feng H and Zhang JH:
The evolving roles of pericyte in early brain injury after
subarachnoid hemorrhage. Brain Res. 1623:110–122. 2015. View Article : Google Scholar : PubMed/NCBI
|
15
|
Bragin DE, Bush RC and Nemoto EM: Effect
of cerebral perfusion pressure on cerebral cortical microvascular
shunting at high intracranial pressure in rats. Stroke. 44:177–181.
2013. View Article : Google Scholar : PubMed/NCBI
|
16
|
Engelhardt B and Liebner S: Novel insights
into the development and maintenance of the blood-brain barrier.
Cell Tissue Res. 355:687–699. 2014. View Article : Google Scholar : PubMed/NCBI
|
17
|
Zhao H, Wang J, Gao L, Wang R, Liu X, Gao
Z, Tao Z, Xu C, Song J, Ji X and Luo Y: MiRNA-424 protects against
permanent focal cerebral ischemia injury in mice involving
suppressing microglia activation. Stroke. 44:1706–1713. 2013.
View Article : Google Scholar : PubMed/NCBI
|
18
|
Zhang L, Niu W, He Z, Zhang Q, Wu Y, Jiang
C, Tang C, Hu Y and Jia J: Autophagy suppression by exercise
pretreatment and p38 inhibition is neuroprotective in cerebral
ischemia. Brain Res. 1587:127–132. 2014. View Article : Google Scholar : PubMed/NCBI
|
19
|
Hao HF, Liu LM, Liu YY, Liu J, Yan L, Pan
CS, Wang MX, Wang CS, Fan JY, Gao YS and Han JY: Inhibitory effect
of rhynchophylline on contraction of cerebral arterioles to
endothelin 1: Role of rho kinase. J Ethnopharmacol. 155:147–153.
2014. View Article : Google Scholar : PubMed/NCBI
|
20
|
Lapi D, Scuri R and Colantuoni A:
Trigeminal cardiac reflex and cerebral blood flow regulation. Front
Neurosci. 10:4702016. View Article : Google Scholar : PubMed/NCBI
|
21
|
Chen H, Wu B, Zhu G, Wintermark M, Wu X,
Su Z, Xu X, Tian C, Ma L, Zhang W and Lou X: Permeability imaging
as a biomarker of leptomeningeal collateral flow in patients with
intracranial arterial stenosis. Cell Biochem Biophys. 71:1273–1279.
2015. View Article : Google Scholar : PubMed/NCBI
|
22
|
Gong P, Zhao S, Wang J, Yang Z, Qian J, Wu
X, Cahoon J and Tang W: Mild hypothermia preserves cerebral cortex
microcirculation after resuscitation in a rat model of cardiac
arrest. Resuscitation. 97:109–114. 2015. View Article : Google Scholar : PubMed/NCBI
|
23
|
Cabrales P, Zanini GM, Meays D, Frangos JA
and Carvalho LJ: Nitric oxide protection against murine cerebral
malaria is associated with improved cerebral microcirculatory
physiology. J Infect Dis. 203:1454–1463. 2011. View Article : Google Scholar : PubMed/NCBI
|
24
|
Kim KJ and Filosa JA: Advanced in vitro
approach to study neurovascular coupling mechanisms in the brain
microcirculation. J Physiol. 590:1757–1770. 2012. View Article : Google Scholar : PubMed/NCBI
|
25
|
Wu Q, Qi L, Li H, Mao L, Yang M, Xie R,
Yang X, Wang J, Zhang Z, Kong J and Sun B: Roflumilast reduces
cerebral inflammation in a rat model of experimental subarachnoid
hemorrhage. Inflammation. 40:1245–1253. 2017. View Article : Google Scholar : PubMed/NCBI
|
26
|
Chen HJ, Shen YC, Shiao YJ, Liou KT, Hsu
WH, Hsieh PH, Lee CY, Chen YR and Lin YL: Multiplex brain proteomic
analysis revealed the molecular therapeutic effects of Buyang
Huanwu decoction on cerebral ischemic stroke mice. PLoS One.
10:e01408232015. View Article : Google Scholar : PubMed/NCBI
|
27
|
Belayev L, Alonso OF, Busto R, Zhao W and
Ginsberg MD: Middle cerebral artery occlusion in the rat by
intraluminal suture. Neurological and pathological evaluation of an
improved model. Stroke. 27:1616–1623. 1996. View Article : Google Scholar : PubMed/NCBI
|
28
|
Bederson JB, Pitts LH, Tsuji M, Nishimura
MC, Davis RL and Bartkowski H: Rat middle cerebral artery
occlusion: Evaluation of the model and development of a neurologic
examination. Stroke. 17:472–476. 1986. View Article : Google Scholar : PubMed/NCBI
|
29
|
De Ryck M, Van Reempts J, Borgers M,
Wauquier A and Janssen PA: Photochemical stroke model: Flunarizine
prevents sensorimotor deficits after neocortical infarcts in rats.
Stroke. 20:1383–1390. 1989. View Article : Google Scholar : PubMed/NCBI
|
30
|
Zhang JB, Jü XH, Wang J, Sun HR and Li F:
Serum cystatin C and cerebral microbleeds in patients with acute
cerebral stroke. J Clin Neurosci. 21:268–273. 2014. View Article : Google Scholar : PubMed/NCBI
|
31
|
Sakr SA, El-Rasheedy WA, Ramadan MM,
El-Menshawy I, Mahfouz E and Bayoumi M: Association between left
atrial appendage morphology evaluated by trans-esophageal
echocardiography and ischemic cerebral stroke in patients with
atrial fibrillation. Int Heart J. 56:329–334. 2015. View Article : Google Scholar : PubMed/NCBI
|
32
|
Liutkiene G, Stropus R, Dabuzinskiene A
and Pilmane M: Structural changes of the human superior cervical
ganglion following ischemic stroke. Medicina (Kaunas). 43:390–398.
2007. View Article : Google Scholar : PubMed/NCBI
|
33
|
Chin Y, Kishi M, Sekino M, Nakajo F, Abe
Y, Terazono Y, Hiroyuki O, Kato F, Koizumi S, Gachet C and
Hisatsune T: Involvement of glial P2Y(1) receptors in cognitive
deficit after focal cerebral stroke in a rodent model. J
Neuroinflammation. 10:952013. View Article : Google Scholar : PubMed/NCBI
|
34
|
Pavlidis E, Spagnoli C, Duca M, Ormitti F,
Magnani C and Pisani F: Neonatal forearm compartment syndrome: Look
for cerebral stroke. J Pediatr. 164:427.e12014. View Article : Google Scholar : PubMed/NCBI
|
35
|
Tamiya S, Yoshida Y, Harada S, Nakamoto K
and Tokuyama S: Establishment of a central post-stroke pain model
using global cerebral ischaemic mice. J Pharm Pharmacol.
65:615–620. 2013. View Article : Google Scholar : PubMed/NCBI
|
36
|
Yu Q, Chu M, Wang H, Lu S, Gao H, Li P,
Gan Y, Shi H, Liang W, Chen J and Gao Y: Sevoflurane
preconditioning protects blood-brain-barrier against brain
ischemia. Front Biosci (Elite Ed). 3:978–988. 2011.PubMed/NCBI
|
37
|
Lapi D, Vagnani S, Sapio D, Mastantuono T,
Sabatino L, Paterni M and Colantuoni A: Long-term remodeling of rat
pial microcirculation after transient middle cerebral artery
occlusion and reperfusion. J Vasc Res. 50:332–345. 2013. View Article : Google Scholar : PubMed/NCBI
|
38
|
Pazhohan A, Amidi F, Akbari-Asbagh F,
Seyedrezazadeh E, Farzadi L, Khodarahmin M, Mehdinejadiani S and
Sobhani A: The Wnt/β-catenin signaling in endometriosis, the
expression of total and active forms of β-catenin, total and
inactive forms of glycogen synthase kinase-3β, WNT7a and
DICKKOPF-1. Eur J Obstet Gynecol Reprod Biol. 220:1–5. 2018.
View Article : Google Scholar : PubMed/NCBI
|
39
|
Katoh Y and Katoh M: Comparative
integromics on Angiopoietin family members. Int J Mol Med.
17:1145–1149. 2006.PubMed/NCBI
|