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首页> 外文期刊>NeuroImage >Dynamic in vivo imaging of cerebral blood flow and blood-brain barrier permeability.
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Dynamic in vivo imaging of cerebral blood flow and blood-brain barrier permeability.

机译:脑血流和血脑屏障通透性的动态体内成像。

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The brain is characterized by an extremely rich blood supply, regulated by changes in blood vessel diameter and blood flow, depending on metabolic demands. The blood-brain barrier (BBB)-a functional and structural barrier separating the intravascular and neuropil compartments-characterizes the brain's vascular bed and is essential for normal brain functions. Disruptions to the regional cerebral blood supply, to blood drainage and to BBB properties have been described in most common neurological disorders, but there is a lack of quantitative methods for assessing blood flow dynamics and BBB permeability in small blood vessels under both physiological and pathological conditions. Here, we present a quantitative image analysis approach that allows the characterization of relative changes in the regional cerebral blood flow (rCBF) and BBB properties in small surface cortical vessels. In experiments conducted using the open window technique in rats, a fluorescent tracer was injected into the tail vein, and images of the small vessels at the surface of the cortex were taken using a fast CCD camera. Pixel-based image analysis included registration and characterization of the changes in fluorescent intensity, followed by cluster analysis. This analysis enabled the characterization of rCBF in small arterioles and venules and changes in BBB permeability. The method was implemented successfully under experimental conditions, including increased rCBF induced by neural stimulation, bile salt-induced BBB breakdown, and photothrombosis-mediated local ischemia. The new approach may be used to study changes in rCBF, neurovascular coupling and BBB permeability under normal and pathological brain conditions.
机译:大脑的特点是血液供应极为丰富,取决于代谢需求,血管直径和血流量的变化可调节大脑的血液供应。血脑屏障(BBB)是一种将血管内和神经纤维腔分隔开的功能性和结构性屏障,具有大脑血管床的功能,对于正常的大脑功能至关重要。在大多数常见的神经系统疾病中,已经描述了局部大脑血液供应,血液引流和BBB特性的中断,但是缺乏定量方法来评估生理和病理条件下小血管的血流动力学和BBB通透性。在这里,我们提出了一种定量图像分析方法,该方法可以表征小皮层皮质血管中局部脑血流(rCBF)和BBB特性的相对变化。在大鼠中使用开窗技术进行的实验中,将荧光示踪剂注入尾静脉,并使用快速CCD相机拍摄皮质表面小血管的图像。基于像素的图像分析包括荧光强度变化的记录和表征,然后进行聚类分析。这项分析使得能够表征小动脉和小静脉中的rCBF以及BBB通透性的变化。该方法在实验条件下成功实施,包括神经刺激引起的rCBF升高,胆盐引起的BBB分解和光血栓介导的局部缺血。该新方法可用于研究正常和病理性脑部条件下rCBF,神经血管偶联和BBB通透性的变化。

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