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采用光分辨光声显微镜评估去甲肾上腺素对单个脑微血管的影响。

Assessing the effects of norepinephrine on single cerebral microvessels using optical-resolution photoacoustic microscope.

机构信息

Huazhong University of Science and Technology, Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, 1037 Luoyu Road, Wuhan 430074, China.

出版信息

J Biomed Opt. 2013 Jul;18(7):76007. doi: 10.1117/1.JBO.18.7.076007.

Abstract

Vasoactive drugs are normally utilized to elevate mean artery pressure and maintain adequate organ perfusion in clinical treatment. During the injection, morphological changes and the subsequent oxygen supply alteration in the brain, e.g., possible hypoxia, are prone to introduce serious damage and even dysfunction to the brain. Therefore, multiparameter monitoring of cerebral microvasculature is necessary during drug injection. An optical-resolution photoacoustic microscopy was used to assess the effects of norepinephrine on microvasculature in the brain cortex of mice. In our experiments, the diameter, total hemoglobin (HbT) and oxygen saturation (SO2) of single cerebral microvessels during tail vein injection of norepinephrine were analyzed. Following the injection, vasoconstriction was observed, and HbT and SO2 were decreased in turn. The vessel diameter and HbT recovered back to the base value without further injection, while the SO2 remained low throughout the observation period. Arterioles showed more acute constriction but a smaller decline in HbT during the injection compared with venules, while SO2 in arterioles increased slightly without further drug injection but not in venules. Our results suggested that photoacoustic microscopy may become a new method for early and comprehensive evaluation of the effect of drugs on microvasculature in brain.

摘要

血管活性药物通常用于在临床治疗中升高平均动脉压和维持足够的器官灌注。在注射过程中,大脑中的形态变化和随后的氧供应改变,例如可能的缺氧,容易对大脑造成严重的损伤甚至功能障碍。因此,在药物注射过程中需要对脑微循环进行多参数监测。本文使用光分辨光声显微镜评估去甲肾上腺素对小鼠大脑皮层微血管的影响。在我们的实验中,分析了尾静脉注射去甲肾上腺素期间单个脑微血管的直径、总血红蛋白 (HbT) 和氧饱和度 (SO2)。注射后,观察到血管收缩,HbT 和 SO2 依次降低。血管直径和 HbT 在没有进一步注射的情况下恢复到基础值,而 SO2 在整个观察期间保持低值。与小静脉相比,动脉在注射期间表现出更急性的收缩,但 HbT 下降幅度较小,而在没有进一步药物注射的情况下,动脉中的 SO2 略有增加,但在小静脉中则没有。我们的结果表明,光声显微镜可能成为一种新的方法,用于早期和全面评估药物对脑微循环的影响。

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