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研制一种混合微波-光学组织氧探头,测量深层组织的热响应。

Development of a hybrid microwave-optical tissue oxygenation probe to measure thermal response in the deep tissue.

机构信息

Department of Electronic and Electrical Engineering, University College London, London, UK.

, 137 Kiln Place, London, NW5 4AP, UK.

出版信息

Adv Exp Med Biol. 2013;789:371-377. doi: 10.1007/978-1-4614-7411-1_49.

Abstract

The design of a new non-invasive hybrid microwave-optical tissue oxygenation probe is presented, which consists of a microwave biocompatible antenna and an optical probe. The microwave antenna is capable of inducing localised heat in the deep tissue, causing tissue blood flow and therefore tissue oxygenation to change. These changes or thermal responses are measured by the optical probe using near-infrared spectroscopy. Thermal responses provide important information on thermoregulation in human tissue. The first prototype of the biocompatible antenna was developed and placed on the human calf for in vivo experiments. The measured results include oxy-, deoxy- and total haemoglobin concentration changes (ΔHbO2/ΔHHb/ΔHbT), tissue oxygenation index and the normalised tissue haemoglobin index for two human subjects. Both ΔHbO2 and ΔHbT show an increase during 5 min of microwave exposure. The thermal response, defined as the ratio of the increase in ΔHbT to the time duration, is 7.7 μM/s for subject 1 (fat thickness = 6.8 mm) and 18.9 μM/s for subject 2 (fat thickness = 5.0 mm), which may be influenced by the fat thicknesses. In both subjects, ΔHbO2 and ΔHbT continued to increase for approximately another 70 s after the microwave antenna was switched off.

摘要

提出了一种新的非侵入式微波-光学混合组织氧探头的设计,它由微波生物相容性天线和光学探头组成。微波天线能够在深部组织中产生局部热,导致组织血流和组织氧合发生变化。这些变化或热响应通过光学探头使用近红外光谱法进行测量。热响应提供了关于人体组织热调节的重要信息。已经开发出了第一个生物相容性天线的原型,并将其放置在人体小腿上进行体内实验。测量结果包括两个人体对象的氧合血红蛋白、脱氧血红蛋白和总血红蛋白浓度变化 (ΔHbO2/ΔHHb/ΔHbT)、组织氧合指数和归一化组织血红蛋白指数。在 5 分钟的微波暴露期间,ΔHbO2 和 ΔHbT 均显示出增加。热响应定义为 ΔHbT 增加与时间持续时间的比值,对于受试者 1(脂肪厚度=6.8mm)为 7.7 μM/s,对于受试者 2(脂肪厚度=5.0mm)为 18.9 μM/s,这可能受到脂肪厚度的影响。在两个受试者中,微波天线关闭后,ΔHbO2 和 ΔHbT 又继续增加了大约 70 秒。

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