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Functional and oxygen-metabolic photoacoustic microscopy of the awake mouse brain

机译:清醒小鼠脑的功能和氧代谢光声显微镜

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摘要

A long-standing challenge in optical neuroimaging has been the assessment of hemodynamics and oxygen metabolism in the awake rodent brain at the microscopic level. Here, we report first-of-a-kind head-restrained photoacoustic microscopy (PAM), which enables simultaneous imaging of the cerebrovascular anatomy, total concentration and oxygen saturation of hemoglobin, and blood flow in awake mice. Combining these hemodynamic measurements allows us to derive two key metabolic parameters oxygen extraction fraction (OEF) and the cerebral metabolic rate of oxygen (CMRO2). This enabling technology offers the first opportunity to comprehensively and quantitatively characterize the hemodynamic and oxygen-metabolic responses of the mouse brain to isoflurane, a general anesthetic widely used in preclinical research and clinical practice. Side-by side comparison of the awake and anesthetized brains reveals that isoflurane induces diameter-dependent arterial dilation, elevated blood flow, and reduced OEF in a dose-dependent manner. As a result of the combined effects, CMRO2 is significantly reduced in the anesthetized brain under both normoxia and hypoxia, which suggests a mechanism for anesthetic neuroprotection. The head-restrained functional and metabolic PAM opens a new avenue for basic and translational research on neurovascular coupling without the strong influence of anesthesia and on the neuroprotective effects of various interventions, including but not limited to volatile anesthetics, against cerebral hypoxia and ischemia.
机译:光学神经影像中的长期挑战一直是在微观级别的清醒啮齿动物脑中的血流动力学和氧代谢的评估。在这里,我们报告了一流的头枕光声显微镜(PAM),其能够同时成像脑血管解剖,血红蛋白的总浓度和氧饱和度,以及清醒小鼠中的血流。组合这些血流动力学测量允许我们推导出两个关键代谢参数氧气提取级分(OEF)和氧气代谢率(CMRO2)。这项能源技术提供了综合性和定量表征小鼠脑对异氟烷的血流动力学和氧代谢反应的第一个机会,这是临床前研究和临床实践的一般麻醉剂。遮光瓶和麻醉大脑的并排比较揭示了异氟烷诱导直径依赖性动脉扩张,升高的血液流动,并以剂量​​依赖性方式减少OEF。作为的组合效应的结果,CMRO2被显著在麻醉脑两者常氧和缺氧,其中建议了麻醉剂的神经保护机制在减压。头部受限制的功能和代谢庞德为神经血管偶联的基本和翻译研究开辟了新的途径,而没有麻醉的强烈影响以及各种干预的神经保护作用,包括但不限于挥发性麻醉剂,对抗脑缺氧和缺血。

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