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Laser speckle imaging reveals multiple aspects of cerebral vascular responses to whole body mild hypothermia in rats

机译:激光散斑成像揭示大鼠脑对全身轻度低温的反应的多个方面

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In this paper, we present a novel method to study the effect of induced mild hypothermia on cerebral vascular responses. To measure cerebral vascular responses, a minimally invasive imaging method, temporal laser speckle imaging, was developed and adapted for induced-hypothermia rat model. Experiments were carried out in rats under anesthesia. Laser speckle images were acquired at different temperature points, normothermia (37 °Q and mild therapeutic hypothermia (34 °Q. We extracted multiple hemodynamic responses simultaneously from the images, including blood flow, vessel size and deoxy-hemoglobin saturation. A wide-field view of the cerebral vascular response distribution was studied, which showed an inhomogeneous response map across the region of interest. A comparison between responses in arterioles and venules was carried out (blood flow decreased by 58 ± 9 % vs. 27 ± 8 %). The global decrease of blood flow, dilatation in arterioles and decrease of deoxy-hemoglobin saturation in veins at mild hypothermia suggests a beneficial role of circulatory and oxygenation changes in therapeutic hypothermia. The results reported provide a circulatory explanation for the hypothermia therapeutic effects and mechanism.
机译:在本文中,我们提出了一种新的方法来研究诱导性亚低温对脑血管反应的影响。为了测量脑血管反应,开发了一种微创成像方法,临时性激光散斑成像,并适用于诱发体温过低的大鼠模型。在麻醉下在大鼠中进行实验。激光散斑图像是在不同温度点(常温(37°Q)和温和的低温治疗(34°Q)下获得的。我们同时从图像中提取了多种血液动力学响应,包括血流量,血管大小和脱氧血红蛋白饱和度。研究了大脑血管反应分布的视图,该图显示了整个感兴趣区域的反应图不均匀,并比较了小动脉和小静脉的反应(血流减少了58±9%,而血流减少了27±8%)。轻度体温过低时,全球血流量减少,小动脉扩张以及静脉中的脱氧血红蛋白饱和度降低,提示循环性和氧合性改变在治疗性体温过低中起着有益的作用,报道的结果为循环体温过低的治疗效果和机制提供了循环解释。

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