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Rapid monitoring of cerebral ischemia dynamics using laser-based optical imaging of blood oxygenation and flow

机译:使用基于激光的血液氧合和血流光学成像快速监测脑缺血动态

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摘要

Abstract: Imaging blood flow or oxygenation changes using optical techniques is useful for monitoring cortical activity in healthy subjects as well as in diseased states such as stroke or epilepsy. However, in order to gain a better understanding of hemodynamics in conscious, freely moving animals, these techniques must be implemented in a small scale, portable design that is adaptable to a wearable format. We demonstrate a novel system which combines the two techniques of laser speckle contrast imaging and intrinsic optical signal imaging simultaneously, using compact laser sources, to monitor induced cortical ischemia in a full field format with high temporal acquisition rates. We further demonstrate the advantages of using combined measurements of speckle contrast and oxygenation to establish absolute flow velocities, as well as to statistically distinguish between veins and arteries. We accomplish this system using coherence reduction techniques applied to Vertical Cavity Surface Emitting Lasers (VCSELs) operating at 680, 795 and 850 nm. This system uses minimal optical components and can easily be adapted into a portable format for continuous monitoring of cortical hemodynamics.
机译:摘要:使用光学技术对血流或氧合变化进行成像,对于监测健康受试者以及中风或癫痫等疾病状态的皮层活动非常有用。然而,为了更好地了解有意识的,自由运动的动物的血液动力学,这些技术必须以适用于可穿戴形式的小型便携式设计来实现。我们展示了一个新颖的系统,该系统结合了激光散斑对比成像和内在光信号成像这两种技术,同时使用紧凑型激光源,以高时空采集率以全场格式监测诱发的皮层缺血。我们进一步证明了结合使用斑点对比度和氧合测量来建立绝对流速以及统计上区分静脉和动脉的优势。我们使用应用于680、795和850 nm的垂直腔表面发射激光器(VCSEL)的相干减少技术来完成该系统。该系统使用最少的光学组件,可以轻松地调整为便携式形式,以连续监测皮层血流动力学。

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