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用于冷诱导血管收缩和血管舒张监测的混合式光声超声成像系统。

Hybrid Photoacoustic Ultrasound Imaging System for Cold-Induced Vasoconstriction and Vasodilation Monitoring.

出版信息

IEEE Trans Biomed Eng. 2024 Feb;71(2):712-716. doi: 10.1109/TBME.2023.3301013. Epub 2024 Jan 19.

Abstract

Lewis hunting reaction refers to the alternating cold-induced vasoconstriction and dilation in extremities, whose underlying mechanism is complex. While numerous studies reported this intriguing phenomenon by measuring cutaneous temperature fluctuation under cold exposure, few of them tracked peripheral vascular responses in real-time, lacking a non-invasive and quantitative imaging tool. To better monitor hunting reaction and diagnose relevant diseases, we developed a hybrid photoacoustic ultrasound (PAUS) tomography system to monitor finger vessels' dynamic response to cold, together with simultaneous temperature measurement. We also came out a standard workflow for image analysis with self-defined indices. In the small cohort observational study, vascular changes in the first cycle of hunting reaction were successfully captured by the image series and quantified. Time difference between vasodilation and temperature recovery was noticed and reported for the first time, thanks to the unique capability of the PAUS imaging system in real-time and continuous vascular monitoring. The developed imaging system and indices enabled more objective and quantitative monitoring of peripheral vascular activities, indicating its great potential in numerous clinical applications.

摘要

刘易斯狩猎反应是指四肢在寒冷刺激下出现的交替性冷收缩和扩张,其潜在机制较为复杂。尽管有许多研究通过测量寒冷暴露下的皮肤温度波动来报告这一有趣的现象,但很少有研究实时跟踪外周血管反应,缺乏非侵入性和定量的成像工具。为了更好地监测狩猎反应和诊断相关疾病,我们开发了一种混合光声超声(PAUS)层析成像系统,以监测手指血管对寒冷的动态反应,同时进行温度测量。我们还提出了一种带有自定义指标的图像分析标准工作流程。在小型观察队列研究中,成功地通过图像序列捕获到了狩猎反应第一周期的血管变化,并进行了量化。由于 PAUS 成像系统具有实时和连续的血管监测的独特能力,首次注意到并报告了血管扩张和温度恢复之间的时间差异。所开发的成像系统和指标能够更客观、更定量地监测外周血管活动,表明其在许多临床应用中具有巨大的潜力。

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