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bicuculline/инсульт

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Страница 1 от 29 полученные результаты

Hemodynamic responses to paraventricular nucleus disinhibition with bicuculline in conscious rats.

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The present study was undertaken to determine the hemodynamic responses associated with stimulation of the hypothalamic paraventricular nucleus (PVN). Male Sprague-Dawley rats (n = 21) were instrumented with guide cannulas directed bilaterally at the PVN, with an electromagnetic flow probe placed on

[Afobazole effect on cerebral circulation under hemorrhagic stroke model conditions].

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Narcotized rats under hemorrhagic stroke model conditions exhibit a significant decrease in the cerebral flow in the region of contralateral cerebral hemisphere symmetric to the zone of lesion. Under these conditions, afobazole produced a significant increase in the local circulation in cerebral

Cytoprotection does not preserve brain functionality in rats during the acute post-stroke phase despite evidence of non-infarction provided by MRI.

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In animal models of stroke the promise of a therapy is commonly judged from infarct size measurements, assuming that a reduction in infarct size results in reduction of the functional deficits. We have evaluated the validity of the concept that structural integrity translates into functional

Mechanisms of protection against stroke in stroke-prone spontaneously hypertensive rats.

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The purpose of this study was to examine mechanisms by which sympathetic nerves protect against cerebral hemorrhage and ischemic infarction (i.e., "stroke") in stroke-prone spontaneously hypertensive rats (SHRSP). When unilateral superior cervical ganglionectomy was performed in SHRSP at 1 mo of

Effect of zinc in ischemic brain injury in an embolic model of stroke in rats.

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Zinc is prevalent in the mammalian central nervous system and its role in ischemic brain injury is still controversial. In the present study, the effect of zinc in ischemic brain injury was examined in an embolic model of stroke in rats. Furthermore, the effect of zinc in combination with

Low-Level Inhibition of GABAergic Synapses Enhances Gene Expressions Crucial for Neuronal Plasticity in the Hippocampus After Ischemic Stroke

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Objective: Pharmacological inhibition of GABAergic synapses could represent a potent neuromodulation strategy to activate hippocampal neurons and increase neurotrophic factor gene expression, thus exerting a beneficial effect on

Mechanisms Underlying Neuroprotection by the NSAID Mefenamic Acid in an Experimental Model of Stroke.

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Stroke is a devastating neurological event with limited treatment opportunities. Recent advances in understanding the underlying pathogenesis of cerebral ischemia support the involvement of multiple biochemical pathways in the development of the ischemic damage. Fenamates are classical non-steroidal

Exercise plus pharmacological neuromodulation of synaptic inhibition enhance motor function recovery after ischemic stroke.

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OBJECTIVES
The objective of this study was to examine the interactive effects of exercise and low-level inhibition of GABAA receptors on the recovery of motor function and BDNF expression in the primary motor cortex (M1) of a stroke rat

Cardiovascular effects of overexpression of endothelial nitric oxide synthase in the rostral ventrolateral medulla in stroke-prone spontaneously hypertensive rats.

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We have previously demonstrated that the overexpression of endothelial NO synthase (eNOS) in the rostral ventrolateral medulla (RVLM) decreases blood pressure, heart rate, and sympathetic nerve activity via an increase in gamma-amino butyric acid release in normotensive Wistar-Kyoto rats (WKY).

Failure and rescue of preconditioning-induced neuroprotection in severe stroke-like insults.

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Preconditioning is a well established neuroprotective modality. However, the mechanism and relative efficacy of neuroprotection between diverse preconditioners is poorly defined. Cultured neurons were preconditioned by 4-aminopyridine and bicuculline (4-AP/bic), rendering neurons tolerant to

Neuroprotective efficacy of AR-A008055, a clomethiazole analogue, in a global model of acute ischaemic stroke and its effect on ischaemia-induced glutamate and GABA efflux in vitro.

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We have investigated the neuroprotective properties of AR-A008055 [(+/-)-1-(4-methyl-5-thiazolyl-1-phenyl-methylamine], a novel compound structurally related to clomethiazole. Administration (i.p.) of (+/-)-AR-A008055 60 min after 5 min of global cerebral ischaemia in gerbils produced a

Effect of gamma-aminobutyric acid modulation on neuronal ischemia in rabbits.

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OBJECTIVE Antagonists of excitatory neurotransmitters are effective in limiting ischemic damage to the brain and spinal cord, but use in clinical stroke may be limited by side effects. Agonists of inhibitory neurotransmitters, such as gamma-aminobutyric acid (GABA), may provide similar

Epileptic seizures increase circulating endothelial cells in peripheral blood as early indicators of cerebral vascular damage.

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Circulating endothelial cells (CECs) are nonhematopoetic mononuclear cells in peripheral blood that are dislodged from injured vessels during cardiovascular disease, systemic vascular disease, and inflammation. Their occurrence during cerebrovascular insults has not been previously described.

Reduced expression of IA channels is associated with post-ischemic seizures.

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Post-stroke seizures are considered as a major cause of epilepsy in adults. The pathophysiologic mechanisms resulting in post-stroke seizures are not fully understood. The present study attempted to reveal a new mechanism underlying neuronal hyperexcitability responsible to the seizure development

Comparative pharmacokinetics and bioavailability of four alkaloids in different formulations from Corydalis decumbens.

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BACKGROUND Corydalis decumbens, a Traditional Chinese Medicine listed in Chinese Pharmacopoeia, is clinically used for the treatment of paralytic stroke, headache, rheumatic arthritis and sciatica in China. OBJECTIVE This study was aimed to compare the pharmacokinetics and bioavailability of
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