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Label-free in vivo optical micro-angiography imaging of cerebral capillary blood flow within meninges and cortex in mice with the skull left intact

机译:颅骨完整的小鼠脑膜和皮质内脑毛细血管血流的无标记体内光学显微血管成像

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摘要

Abnormal microcirculation within meninges is common in many neurological diseases. There is a need for an imaging method that is capable of visualizing functional meningeal microcirculations alone, preferably decoupled from the cortical blood flow. Optical microangiography (OMAG) is a recently developed label-free imaging method capable of producing 3D images of dynamic blood perfusion within micro-circulatory tissue beds at an imaging depth up to ~2 mm, with an unprecedented imaging sensitivity to the blood flow at ~4 μm/s. In this study, we demonstrate the utility of ultra-high sensitive OMAG in imaging the detailed blood flow distributions, at a capillary level resolution, within meninges and cortex in mice with the cranium left intact. The results indicate that OMAG can be a valuable tool for the study of meningeal circulations.
机译:脑膜内微循环异常在许多神经系统疾病中很常见。需要一种成像方法,其能够仅可视化功能性脑膜微循环,优选地与皮层血流分离。光学微血管造影术(OMAG)是最近开发的无标记成像方法,能够在微循环组织床内以〜2 mm的成像深度产生动态血液灌注的3D图像,对〜的血流具有前所未有的成像灵敏度4微米/秒在这项研究中,我们证明了超高灵敏度的OMAG在完整保留颅骨的小鼠的脑膜和皮层内以毛细管水平的分辨率对详细的血流分布进行成像的实用性。结果表明,OMAG可能是研究脑膜循环的有价值的工具。

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