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使用激光多普勒血流仪评估大鼠脑血流自动调节功能。

Evaluation of Cerebral Blood Flow Autoregulation in the Rat Using Laser Doppler Flowmetry.

作者信息

Allen Linda A, Terashvili Maia, Gifford Alison, Lombard Julian H

机构信息

Department of Physiology, Medical College of Wisconsin.

Department of Physiology, Medical College of Wisconsin;

出版信息

J Vis Exp. 2020 Jan 19(155). doi: 10.3791/60540.

Abstract

When investigating the body's mechanisms for regulating cerebral blood flow, a relative measurement of microcirculatory blood flow can be obtained using laser Doppler flowmetry (LDF). This paper demonstrates a closed skull preparation that allows cerebral blood flow to be assessed without penetrating the skull or installing a chamber or cerebral window. To evaluate autoregulatory mechanisms, a model of controlled blood pressure reduction via graded hemorrhage can be utilized while simultaneously employing LDF. This enables the real time tracking of the relative changes in the blood flow in response to reductions in arterial blood pressure produced by the withdrawal of circulating blood volume. This paradigm is a valuable approach to study cerebral blood flow autoregulation during reductions in arterial blood pressure and, with minor modifications in the protocol, is also valuable as an experimental model of hemorrhagic shock. In addition to evaluating autoregulatory responses, LDF can be used to monitor the cortical blood flow when investigating metabolic, myogenic, endothelial, humoral, or neural mechanisms that regulate cerebral blood flow and the impact of various experimental interventions and pathological conditions on cerebral blood flow.

摘要

在研究机体调节脑血流的机制时,可使用激光多普勒血流仪(LDF)获得微循环血流的相对测量值。本文展示了一种闭合颅骨制备方法,该方法可在不穿透颅骨或安装腔室或脑窗的情况下评估脑血流。为了评估自身调节机制,可采用通过分级出血控制血压降低的模型,同时使用LDF。这能够实时追踪因循环血容量减少导致动脉血压降低时血流的相对变化。这种范式是研究动脉血压降低期间脑血流自身调节的一种有价值的方法,并且在方案上稍作修改后,作为失血性休克的实验模型也很有价值。除了评估自身调节反应外,在研究调节脑血流的代谢、肌源性、内皮、体液或神经机制以及各种实验干预和病理状况对脑血流的影响时,LDF还可用于监测皮质血流。

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