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Stimulating circle of Willis nerve fibers preserves the diffusion-perfusion mismatch in experimental stroke

机译:刺激Willis神经纤维圈保留了实验性中风的扩散 - 灌注不匹配

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摘要

BACKGROUND AND PURPOSE: Stimulation of the nerves traversing the ethmoidal foramen (including postsynaptic, parasympathetic projections from the sphenopalatine ganglion [SPG], henceforth referred to as \u22SPG-stimulation\u22) has been shown to elevate cerebral blood flow (CBF) and to be neuroprotective after permanent, middle cerebral artery occlusion (pMCAO).METHODS: Employing diffusion (DWI)- and perfusion (PWI) weighted MRI, the effect of SPG-stimulation (started at 60 minutes post-MCAO) on the spatiotemporal evolution of ischemia during and after pMCAO was investigated. In an additional experiment, regional CBF changes were investigated in the nonischemic brain.RESULTS: In the nonischemic brain, SPG stimulation significantly elevated CBF predominantly within areas supplied by the anterior cerebral artery (by 0.64 mL/g/min relative to baseline). In the ischemic brain, CBF only marginally increased within the penumbra and core (by up to 0.08 and 0.15 mL/g/min relative to prestimulation, respectively). However, the threshold-derived CBF lesion volume did not change significantly. Penumbral apparent diffusion coefficient (ADC)-values improved to almost baseline values and the threshold derived ADC/CBF-mismatch was preserved up to 180 minutes after MCAO. TTC-derived lesion volumes were significantly smaller in stimulated versus nonstimulated animals (120.4+/-74.1 mm(3) versus 239.3+/-68.5 mm(3), respectively).CONCLUSIONS: This study demonstrates that unilateral SPG-stimulation increases CBF bilaterally within the normal brain, acutely preserves the CBF/ADC mismatch largely independent of altering cerebral blood flow, and reduces infarct size in the rat permanent suture model.
机译:背景与目的:穿过筛孔的神经刺激(包括来自蝶ala神经节[SPG]的突触后交感神经投射,此后被称为\ u22SPG-刺激\ u22)可提高脑血流量(CBF)并促进方法:采用弥散(DWI)和灌注(PWI)加权MRI,SPG刺激(MCAO后60分钟开始)对缺血时空演变的影响在pMCAO期间和之后进行了调查。在另一个实验中,研究了非缺血性脑的区域CBF变化。结果:在非缺血性脑中,SPG刺激显着升高了脑前动脉供应区域内的CBF(相对于基线,升高了0.64 mL / g / min)。在缺血性脑中,CBF仅在半影和核内少量增加(相对于预刺激分别增加0.08和0.15 mL / g / min)。但是,阈值衍生的CBF病变体积没有明显变化。半影的表观扩散系数(ADC)值提高到几乎基线值,并且阈值得出的ADC / CBF不匹配在MCAO后长达180分钟得以保留。结论:这项研究表明,单侧SPG刺激可增加两侧的CBF,而受刺激的动物与未受刺激的动物相比,TTC引起的病变体积要小得多(分别为120.4 +/- 74.1 mm(3)和239.3 +/- 68.5 mm(3))。在正常大脑中,CBF / ADC的急性失配在很大程度上与大脑血流的改变无关,并能在大鼠永久性缝合模型中减小梗塞面积。

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