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In vivo imaging and analysis of cerebrovascular hemodynamic responses and tissue oxygenation in the mouse brain.

机译:小鼠脑中脑血管血流动力学反应及组织氧合的体内成像及分析。

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摘要

Cerebrovascular dysfunction has an important role in the pathogenesis of multiple brain disorders. Measurement of hemodynamic responses in vivo can be challenging, particularly as techniques are often not described in sufficient detail and vary between laboratories. We present a set of standardized in vivo protocols that describe high-resolution two-photon microscopy and intrinsic optical signal (IOS) imaging to evaluate capillary and arteriolar responses to a stimulus, regional hemodynamic responses, and oxygen delivery to the brain. The protocol also describes how to measure intrinsic NADH fluorescence to understand how blood O_(2)supply meets the metabolic demands of activated brain tissue, and to perform resting-state absolute oxygen partial pressure (pO_(2)) measurements of brain tissue. These methods can detect cerebrovascular changes at far higher resolution than MRI techniques, although the optical nature of these techniques limits their achievable imaging depths. Each individual procedure requires 1-2 h to complete, with two to three procedures typically performed per animal at a time. These protocols are broadly applicable in studies of cerebrovascular function in healthy and diseased brain in any of the existing mouse models of neurological and vascular disorders. All these procedures can be accomplished by a competent graduate student or experienced technician, except the two-photon measurement of absolute pO_(2)level, which is better suited to a more experienced, postdoctoral-level researcher.
机译:脑血管功能障碍在多种脑疾病发病机制中具有重要作用。体内血流动力学反应的测量可能是具有挑战性的,特别是由于技术通常没有以充分的细节描述并且在实验室之间变化。我们在体内协议中展示了一组标准化,所述体内方案描述了高分辨率二光子显微镜和本征光信号(iOS)成像,以评估对刺激,区域血液动力学反应和氧的氧气输送的毛细管和动脉轴反应。该协议还描述了如何测量内在的NADH荧光,以了解血液O_(2)供应如何满足活性脑组织的代谢需求,并且执行脑组织的静态绝对氧分压(PO_(2))测量。这些方法可以以高于MRI技术检测远远高分辨率的脑血管变化,尽管这些技术的光学性质限制了其可实现的成像深度。每种手术需要1-2小时才能完成,每次动物通常每只动物进行两到三个程序。这些方案广泛适用于在任何现有的神经和血管障碍的任何药物模型中健康和患病脑中的脑血管功能的研究。所有这些程序都可以由主管的研究生或经验丰富的技术人员完成,除了绝对PO_(2)水平的双重光子测量,这更适合经验丰富的博士后研究员。

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    Department of Physiology and Neuroscience and the Zilkha Neurogenetic Institute Keck School of Medicine of the University of Southern California Los Angeles California USA;

    Department of Physiology and Neuroscience and the Zilkha Neurogenetic Institute Keck School of Medicine of the University of Southern California Los Angeles California USA;

    Department of Physiology and Neuroscience and the Zilkha Neurogenetic Institute Keck School of Medicine of the University of Southern California Los Angeles California USA;

    Department of Biochemistry and Biophysics University of Pennsylvania Philadelphia Pennsylvania USA;

    Department of Biochemistry and Biophysics University of Pennsylvania Philadelphia Pennsylvania USA;

    Department of Biochemistry and Biophysics University of Pennsylvania Philadelphia Pennsylvania USA;

    Optics Division MGH/HMS/MIT Athinoula A. Martinos Center for Biomedical Imaging Department of Radiology Massachusetts General Hospital and Harvard Medical School Charlestown Massachusetts USA;

    Optics Division MGH/HMS/MIT Athinoula A. Martinos Center for Biomedical Imaging Department of Radiology Massachusetts General Hospital and Harvard Medical School Charlestown Massachusetts USA;

    Department of Physiology and Neuroscience and the Zilkha Neurogenetic Institute Keck School of Medicine of the University of Southern California Los Angeles California USA;

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  • 正文语种 eng
  • 中图分类 生物科学;
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