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啮齿动物光血栓形成模型中脑血管变化的实时高分辨率激光散斑成像

Real-time high resolution laser speckle imaging of cerebral vascular changes in a rodent photothrombosis model.

作者信息

Liu Qi, Li Yao, Lu Hongyang, Tong Shanbao

机构信息

School of Biomedical Engineering and Med-X Research Institute, Shanghai Jiao Tong University, 1954, Huashan Road, Shanghai, 200030, China.

出版信息

Biomed Opt Express. 2014 Apr 11;5(5):1483-93. doi: 10.1364/BOE.5.001483. eCollection 2014 May 1.

Abstract

The study of hemodynamic and vascular changes following ischemic stroke is of great importance in the understanding of physiological and pathological processes during the thrombus formation. The photothrombosis model is preferred by researchers in stroke study for its minimal invasiveness, controllable infarct volume and lesion location. Nevertheless, there is a lack in high spatiotemporal resolution techniques for real time monitoring of cerebral blood flow (CBF) changes in 2D-profile. In this study, we implemented a microscopic laser speckle imaging (LSI) system to detect CBF and other vascular changes in the rodent model of photothrombotic stroke. Using a high resolution and high speed CCD (640 × 480 pixels, 60 fps), online image registration technique, and automatic parabolic curve fitting, we obtained real time CBF and blood velocity profile (BVP) changes in cortical vessels. Real time CBF and BVP monitoring has been shown to reveal details of vascular disturbances and the stages of blood coagulation in photothrombotic stroke. Moreover, LSI also provides information on additional parameters including vessel morphologic size, blood flow centerline velocity and CBF spatiotemporal fluctuations, which are very important for understanding the physiology and neurovascular pathology in the photothrombosis model.

摘要

研究缺血性中风后的血流动力学和血管变化,对于理解血栓形成过程中的生理和病理过程具有重要意义。光血栓形成模型因其微创性、可控的梗死体积和病变位置,在中风研究中受到研究人员的青睐。然而,缺乏高时空分辨率技术来实时监测二维剖面中脑血流量(CBF)的变化。在本研究中,我们实施了一种显微激光散斑成像(LSI)系统,以检测光血栓性中风啮齿动物模型中的CBF和其他血管变化。使用高分辨率和高速CCD(640×480像素,60帧/秒)、在线图像配准技术和自动抛物线曲线拟合,我们获得了皮质血管中实时CBF和血流速度剖面(BVP)变化。实时CBF和BVP监测已被证明可揭示光血栓性中风中血管紊乱的细节和血液凝固阶段。此外,LSI还提供有关其他参数的信息,包括血管形态大小、血流中心线速度和CBF时空波动,这些对于理解光血栓形成模型中的生理学和神经血管病理学非常重要。

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