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Random access multiphoton (RAMP) microscopy for investigation of cerebral blood flow regulation mechanisms

机译:随机访问多光子(RAMP)显微镜用于研究脑血流调节机制

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The processes by which blood flow is regulated at the capillary network level in the brain has been a source of continual debate. It is generally accepted that cerebral blood flow regulation occurs primarily at the arteriolar level. It has been recently suggested, however, that the capillary network is likewise under dynamic regulation. The exact mechanisms of capillary regulation remain unknown. Previously, the limiting factor in determining how the cerebrovascular network is regulated has been the speed at which multiphoton images of large (~200μm~2) capillary and arteriole systems can be acquired. Conventional laser scanning microscopy systems are temporally limited in two dimensions. We have developed a Random Access Multiphoton (RAMP) microscope, which operates on the principles of Acousto-optic beam scanning and therefore lias no moving parts, specifically for the purpose of imaging blood flow virtually simultaneously throughout the capillary network. We demonstrate the ability to survey blood flow simultaneously in 100 capillaries.
机译:在大脑的毛细血管网络水平上调节血流的过程一直是争论的焦点。通常认为,脑血流调节主要发生在小动脉水平。然而,最近提出,毛细管网络同样处于动态调节之下。毛细管调节的确切机制仍然未知。以前,决定如何调节脑血管网络的限制因素一直是获取大(〜200μm〜2)毛细血管和小动脉系统的多光子图像的速度。常规的激光扫描显微镜系统在二维上在时间上受到限制。我们已经开发了一种随机访问多光子(RAMP)显微镜,该显微镜根据声光束扫描原理工作,因此没有移动部件,特别是为了在整个毛细管网络中几乎同时成像的血流。我们展示了同时测量100个毛细管中的血流的能力。

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