Spectrophotometric measurements of haemoglobin saturation and concentration in skin during the tuberculin reaction in normal human subjects.

D K Harrison, S D Evans, N C Abbot, J S Beck, P T McCollum
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引用次数: 80

Abstract

A non-invasive technique employing light-guide spectrophotometry is described for the measurement of haemoglobin concentration and oxygenation in human skin. Measurements were carried out in the visible wavelength range (500-620 nm) and a series of experiments were carried out in vitro and in vivo in order to calibrate the system. Indices were derived for the measurement of relative haemoglobin concentration and absolute oxygen saturation. The technique was applied to measure the changes in these parameters occurring during the course of the tuberculin reaction in human skin. The results are compared with those from laser Doppler flowmetry and transcutaneous oxygen measurements which were carried out concurrently. Divergence between the intracapillary and tissue oxygenation during the course of the reaction provides evidence for the existence of increased diffusion resistance for oxygen; a model is proposed. The study demonstrates the potential clinical usefulness of light-guide spectrophotometry for the non-invasive investigation of tissue oxygen supply.

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结核菌素反应期间正常人皮肤血红蛋白饱和度和浓度的分光光度测定。
介绍了一种采用光导分光光度法测量人体皮肤血红蛋白浓度和氧合的非侵入性技术。在可见波长范围内(500-620 nm)进行测量,并进行了一系列体外和体内实验,以校准系统。得出了测量相对血红蛋白浓度和绝对氧饱和度的指标。该技术被用于测量结核杆菌素在人体皮肤反应过程中发生的这些参数的变化。并与激光多普勒血流仪和经皮氧测量同时进行的结果进行了比较。在反应过程中,毛细血管内氧合和组织氧合的分化为氧的扩散阻力增加提供了证据;提出了一种模型。该研究证明了光导分光光度法在无创组织供氧调查中的潜在临床应用价值。
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