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Monitoring of Blood Flow by Drug Stimulation on Mouse Brain using Non-invasive Photoacoustic Imaging Technology

机译:使用无创光声成像技术通过药物刺激对小鼠大脑的血流监测

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摘要

The highlight of photoacosutic imaging (PAI) is a method that combines ultrasonic resolution with high contrast due to light absorption. Photoacoustic signals carry the information of the light absorption distribution of biological tissue, which is often related to its character of structure, physiological and pathological changes because of different physiology conditions in response to different light absorption coefficients. A non-invasive PAI system was developed and successfully acquired in vivo images of mouse brain. Based on the intrinsic PA signals from the brain, the vascular network and the detailed structures of the mouse cerebral cortex were clearly visualized. The ability of PAI monitoring of cerebral hemodynamics was also demonstrated by mapping of the mouse superficial cortex with and without drug stimulation. The extracted PA signals intensity profiles obviously testified that the cerebral blood flow (CBF) in the mouse brain was changed under the stimulation of acetazolamide (ACZ). The experimental results suggest that PAI can provide non-invasive images of blood flow changes, and has the potential for brain function detection.
机译:光声成像(PAI)的亮点是一种结合了超声分辨率和由于光吸收而产生的高对比度的方法。光声信号携带生物组织的光吸收分布的信息,这通常与其结构,生理和病理变化的特征有关,因为响应于不同的光吸收系数的生理条件不同。开发了一种非侵入式PAI系统,并成功获取了小鼠大脑的体内图像。基于来自大脑的固有PA信号,可以清楚地看到小鼠大脑皮层的血管网络和详细结构。 PAI监测脑血流动力学的能力还通过对有或没有药物刺激的小鼠浅表皮层进行作图来证明。提取的PA信号强度分布明显证明,在乙酰唑胺(ACZ)刺激下,小鼠大脑中的脑血流量(CBF)发生了变化。实验结果表明,PAI可以提供血流变化的非侵入性图像,并具有检测脑功能的潜力。

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