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IN VIVO IMAGING OF MICROVASCULATURE DURING ANESTHESIAWITH HIGH-RESOLUTION PHOTOACOUSTIC MICROSCOPY

机译:在麻醉期间微血管结构的体内成像,高分辨率光声显微镜

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摘要

Anesthesia monitoring is extremely important in improving the quality of anesthesia and ensuring the safety of patients in operation. Photoacoustic microscopy (PAM) is proposed to in vivo image the skin microvasculature of 10 nude mice undergoing general anesthesia by using the isoflurane gas with a concentration of 3%. Benefiting from strong optical absorption of hemoglobin, PAM has good contrast and high resolution in mapping of microvasculature. A series of high quality images can clearly reveal the subtle changes of capillaries in morphology over time. Two indices, vessel intensity and vessel density, are extracted from these images to measure the microvasculature quantitatively. The imaging results show that the vessel intensity and density are increased over time. After 65 min, the vessel intensity increased 42.7 +/- 8.6% and the density increased 28.6 +/- 12.2%. These indices extracted from photoacoustic images accurately reflect the greater blood perfusion undergoing general anesthesia. Additionally, abnormal reductions of vessel intensity and density are also observed as overtime anesthesia. This preclinical study suggests that PAM holds potential to monitor anesthesia by imaging the skin microvasculature. (E-mail: taochao@nju.edu.cn) (c) 2018 World Federation for Ultrasound in Medicine & Biology. All rights reserved.
机译:麻醉监测对于提高麻醉质量并确保患者的安全性非常重要。光声显微镜(PAM)被提出在体内图像中,通过使用浓度为3%的异氟醚气体进行全身麻醉的10个裸鼠的皮肤微血管。受益于血红蛋白的强光学吸收,PAM在微血管系统的映射方面具有良好的对比度和高分辨率。一系列高质量的图像可以清楚地揭示毛细血管在形态上的微妙变化。从这些图像中提取两个索引,血管强度和血管密度,以定量地测量微血管。成像结果表明,随着时间的推移,血管强度和密度增加。 65分钟后,血管强度增加42.7 +/- 8.6%,密度增加28.6 +/- 12.2%。这些指数从光声图像中提取精确地反映了经历过全身麻醉的血液灌注。另外,也观察到血管强度和密度的异常减少作为加班麻醉。这种临床前研究表明,PAM通过成像皮肤微血管结构来阻止麻醉。 (电子邮件:Taochao@nju.edu.cn)(c)2018年世界超声联合会在医学与生物学中。版权所有。

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