The biological effect of contralateral forepaw stimulation in rat focal cerebral ischemia: a multispectral optical imaging study.

Frontiers in neuroenergetics Pub Date : 2010-07-30 eCollection Date: 2010-01-01 DOI:10.3389/fnene.2010.00019
Janos Luckl, Wesley Baker, Zheng-Hui Sun, Turgut Durduran, Arjun G Yodh, Joel H Greenberg
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引用次数: 23

Abstract

Our group has already published the possible neuroprotective effect of contralateral forepaw stimulation in temporary focal ischemia in a study. However, the background is still unclear. In the present study we investigated the possible mechanism by monitoring focal ischemia with multispectral [laser speckle, imaging of intrinsic signals (OIS)] imaging. Sprague-Dawley rats were prepared using 1.2% isoflurane anesthesia. The middle cerebral artery was occluded by photothrombosis (4 mW) and the common carotid artery was ligated permanently. Physiological variables were constantly monitored during the experiment. A 6 x 6 mm area centered 3 mm posterior and 4 mm lateral to Bregma was thinned for laser speckle and OIS imaging. Nine circular regions of interests (0.3 mm in diameter) were evenly spaced on the speckle contrast image for the analysis of peri-infarct flow transients, blood flow, and metabolic changes. Both the sham (n = 7) and forepaw-stimulated animals (n = 7) underwent neurological examinations 24 h after ischemia at which point all animals were sacrificed and the infarct size was determined by triphenyltetrazolium chloride. The physiological variables were in normal range and the experimental protocol did not cause significant differences between groups. Both the neurological scores (sham: 3.6 +/- 1.7, stimulated: 4.3 +/- 1.4) and the infarct volume (sham: 124 +/- 39 mm(3), stimulated: 147 +/- 47 mm(3)) did not show significant differences between groups. The forepaw stimulation did not increase the intra-ischemic flow neither over the penumbral or the peri-ischemic area. However, the hemoglobin transients related metabolic load (CMRO(2)) was significantly lower (p < 0.001) while the averaged number of hyperemic flow transients were significantly (p = 0.013) higher in the forepaw (sham: 3.5 +/- 2.2, stimulated: 7.0 +/- 2.3) stimulated animals.

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对侧前爪刺激对大鼠局灶性脑缺血的生物学效应:多光谱光学成像研究。
我们小组已经在一项研究中发表了对侧前爪刺激在暂时性局灶性缺血中的可能的神经保护作用。然而,背景尚不清楚。在本研究中,我们通过多光谱[激光散斑,本征信号成像(OIS)]成像监测局灶性缺血来探讨可能的机制。sd - dawley大鼠采用1.2%异氟醚麻醉。光血栓(4mw)阻断大脑中动脉,永久结扎颈总动脉。在实验过程中不断监测生理变量。在Bregma后方3mm、外侧4mm处取一个6 × 6mm的区域,对其进行激光散斑和OIS成像。在散斑对比图像上均匀间隔9个圆形兴趣区域(直径0.3 mm),用于分析梗死周围血流瞬态、血流和代谢变化。假手术动物(n = 7)和前爪刺激动物(n = 7)在缺血24小时后进行神经学检查,此时所有动物都被处死,并用三苯四唑测定梗死面积。生理指标均在正常范围内,实验方案未造成组间差异显著。神经学评分(假手术:3.6 +/- 1.7,刺激:4.3 +/- 1.4)和梗死面积(假手术:124 +/- 39 mm(3),刺激:147 +/- 47 mm(3))在两组之间均无显著差异。前爪刺激没有增加缺血内血流,无论是在半影区还是在缺血周围。然而,血红蛋白瞬变相关代谢负荷(CMRO(2))显著降低(p < 0.001),而充血瞬变的平均次数在前爪刺激(假刺激:3.5 +/- 2.2,刺激:7.0 +/- 2.3)动物中显著升高(p = 0.013)。
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