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Functional photoacoustic micro-imaging of cerebral hemodynamic changes in single blood vessels after photo-induced brain stroke

机译:光诱导性脑卒中后单个血管中脑血流动力学变化的功能性光声显微成像

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Studying the functional hemodynamic roles of individual cerebral cortical arterioles in maintaining both the structure and function of cortical regions during and after brain stroke in small animals is an important issue. Recently, functional photoacoustic microscopy (fPAM) has been proved as a reliable imaging technique to probe the total hemoglobin concentration (HbT), cerebral blood volume (CBV) and hemoglobin oxygen saturation (SO_2) in single cerebral blood vessels of rats. Here, we report the application of fPAM associated with electrophysiology recordings to investigating functional hemodynamic changes in single cortical arterioles of rats with electrical forepaw stimulation after photo-induced ischemic stroke. Because of the weak optical focusing nature of our fPAM system, photo-induced ischemic stroke targeting single cortical arterioles can be easily conducted with simple adaptation. Functional HbT, CBV and SO_2 changes associated with the induced stroke in selected arterioles from the anterior cerebral artery system were imaged with 36 × 65-μm spatial resolution. Experimental results showed that after photo-occlusion of a single arteriole, the functional changes of nearby arterioles in cerebral cortex only can be observed immediately after the stroke. After a few minutes of stroke onset, there are no significant functional changes under the forepaw stimulation, suggesting that alternate blood flow routes are not actively recruited. The fPAM with electrophysiology recordings complements existing imaging techniques and has the potential to offer a favorable tool for explicitly studying cerebral hemodynamics in small animal models of photo-indcued ischemic stroke.
机译:研究单个脑皮质小动脉在小动物脑卒中期间和之后维持皮质区域的结构和功能中的功能性血流动力学作用是一个重要的问题。最近,功能光声显微镜(fPAM)已被证明是一种可靠的成像技术,可用于探测大鼠单条脑血管中的总血红蛋白浓度(HbT),脑血容量(CBV)和血红蛋白氧饱和度(SO_2)。在这里,我们报告与电生理记录相关联的fPAM的应用,以调查光诱发的缺血性中风后电前爪刺激大鼠的单个皮质小动脉的功能性血流动力学变化。由于我们的fPAM系统的光学聚焦特性较弱,可以轻松地通过简单的调整轻松进行针对单个皮质小动脉的光诱导性缺血性中风。以36×65μm的空间分辨率对与脑前动脉系统中选定小动脉中诱发的中风相关的功能性HbT,CBV和SO_2变化进行成像。实验结果表明,光阻塞单个小动脉后,仅在卒中后立即观察到大脑皮层附近小动脉的功能变化。中风发作几分钟后,在前爪刺激下没有明显的功能变化,这表明未积极招募其他血流途径。具有电生理学记录的fPAM补充了现有的成像技术,并有可能为明确研究光诱发的缺血性中风的小动物模型中的脑血流动力学提供有利的工具。

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