Laser Speckle Contrast Imaging for Measuring Cerebral Blood Flow Changes Caused by Electrical Sensory Stimulation

Q Physics and Astronomy
Ahra Cho, Chanmi Yeon, Donghyeon Kim, Euiheon Chung
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引用次数: 9

Abstract

Recently laser speckle contrast (LSC) imaging has become a widely used optical method for in vivo assessment of blood flow in the animal brain. LSC imaging is useful for monitoring brain hemodynamics with relatively high spatio-temporal resolution. A speckle contrast imaging system has been implemented with electrical sensory stimulation apparatus. LSC imaging is combined with optical intrinsic signal imaging in order to measure changes in cerebral blood flow as well as neural activity in response to electrical sensory stimulation applied to the hindlimb region of the mouse brain. We found that blood flow and oxygen consumption are correlated and both sides of hindlimb activation regions are symmetrically located. This apparatus could be used to monitor spatial or temporal responses of cerebral blood flow in animal disease models such as ischemic stroke or cortical spreading depression.
激光散斑对比成像测量电刺激引起的脑血流变化
近年来,激光散斑对比成像(LSC)已成为一种广泛应用于动物脑血流评估的光学方法。LSC成像具有较高的时空分辨率,可用于监测脑血流动力学。利用电感官刺激装置实现了一种散斑对比成像系统。LSC成像与光学固有信号成像相结合,以测量脑血流的变化以及对小鼠大脑后肢区域施加电感觉刺激的神经活动。我们发现血流量和耗氧量是相关的,后肢两侧的激活区是对称的。该装置可用于监测缺血性中风或皮质扩张性抑郁等动物疾病模型中脑血流的空间或时间反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
0
审稿时长
2.3 months
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