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使用单罩测量系统观察反应性充血期间皮肤热惯性分布

Observation of skin thermal inertia distribution during reactive hyperaemia using a single-hood measurement system.

作者信息

Hassan M, Togawa T

机构信息

Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, Japan.

出版信息

Physiol Meas. 2001 Feb;22(1):187-200. doi: 10.1088/0967-3334/22/1/322.

Abstract

An attempt was made to image the thermal inertia (defined as the square root of the product of thermal conductivity, specific heat and density) of the skin to observe the distribution of blood in the skin during post-occlusive reactive hyperaemia in normal healthy volunteers. The method was based on the ability to calculate thermal inertia by successive thermographic measurements of the skin after stepwise change in ambient radiation temperature surrounding the skin area. The stepwise change was achieved within 0.1 s through a single hood. Experimentation on the undisturbed volar forearm of normal subjects at the same site showed that the measurements thus achieved were reproducible. The thermal inertia values of forearm skin in normal subjects were scattered throughout the range 1.1 x 10(3) to 1.7 x 10(3) W s(1/2) m(-2) K(-1). Experiments on forearm skin subjected to arterial cuff occlusion indicated that thermal inertia can be detected at a low level of blood perfusion. A linear relationship was observed between thermal inertia and blood perfusion measured by laser Doppler imager before and during blood flow occlusion. During reactive hyperaemia, the thermal inertia image exhibited a non-uniform island-shaped pattern of distribution over the forearm, suggesting that, after release from occlusion, recovery of blood flow is non-uniform.

摘要

研究人员尝试对皮肤的热惯性(定义为热导率、比热容和密度乘积的平方根)进行成像,以观察正常健康志愿者在阻断后反应性充血期间皮肤内血液的分布情况。该方法基于通过对皮肤周围环境辐射温度进行逐步变化后,连续进行皮肤热成像测量来计算热惯性的能力。通过单个头罩在0.1秒内实现了逐步变化。在正常受试者未受干扰的掌侧前臂同一部位进行的实验表明,这样获得的测量结果具有可重复性。正常受试者前臂皮肤的热惯性值分布在1.1×10³至1.7×10³W s¹/² m⁻² K⁻¹的范围内。对接受动脉袖带阻断的前臂皮肤进行的实验表明,在低水平血液灌注时也能检测到热惯性。在血流阻断前和阻断期间,通过激光多普勒成像仪测量发现热惯性与血液灌注之间存在线性关系。在反应性充血期间,热惯性图像在前臂上呈现出不均匀的岛状分布模式,这表明阻断解除后,血流恢复是不均匀的。

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