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通过激光多普勒光谱法连续测量组织血流。

Continuous measurement of tissue blood flow by laser-Doppler spectroscopy.

作者信息

Stern M D, Lappe D L, Bowen P D, Chimosky J E, Holloway G A, Keiser H R, Bowman R L

出版信息

Am J Physiol. 1977 Apr;232(4):H441-8. doi: 10.1152/ajpheart.1977.232.4.H441.

Abstract

Laser light scattered from tissue in vivo is broadened in line width as a result of the Doppler shift produced by moving red cells in the microcirculation. A feasibility study was carried out to demonstrate use of this effect to measure and monitor tissue blood flow. Light from a helium-neon laser illuminated a 1-mm area of tissue (human skin or rat renal cortex), and the backscattered light was detected with a photomultiplier. The spectrum of the Doppler beat notes was analyzed directly with a digital spectrum analyzer, or processed by analog circuitry to yield a flow parameter based on the root-mean-square Doppler line width. This parameter was compared with 133Xe washout in the skin of volunteers subjected to UV-induced erythema and the skin of volunteers subjected to UV-induced erythema and was found to vary in an approximately linear manner with skin blood flow. The laser instrument provided continuous monitoring of blood flow fluctuations, including the pulsatile component. The instrument was used to monitor flow in the outer cortex of the rat kidney during administration of norepinephrine, angiotensin, hydralazine, dextran, dopamine, nitroprusside, and angiotensin blocked by saralasin. Dynamic and steady-state responses were consistent with known pharmacology and renal physiology, and with the assumption that vasoconstrictor angiotensin II receptors in the kidney are accessible to blood-borne inhibitors. The laser-Doppler method is a promising tool for rapid monitoring of dynamic changes in tissue perfusion.

摘要

由于微循环中移动的红细胞产生的多普勒频移,体内组织散射的激光线宽会变宽。开展了一项可行性研究,以证明利用这种效应来测量和监测组织血流。来自氦氖激光器的光照射1平方毫米的组织区域(人体皮肤或大鼠肾皮质),并用光电倍增管检测后向散射光。多普勒拍频信号的频谱直接用数字频谱分析仪进行分析,或通过模拟电路进行处理,以产生基于均方根多普勒线宽的血流参数。将该参数与紫外线诱发红斑的志愿者皮肤以及紫外线诱发红斑的志愿者皮肤中的133Xe清除率进行比较,发现其与皮肤血流呈近似线性变化。激光仪器可连续监测血流波动,包括脉动成分。该仪器用于监测去甲肾上腺素、血管紧张素、肼屈嗪、右旋糖酐、多巴胺、硝普钠以及被沙拉新阻断的血管紧张素给药期间大鼠肾外层皮质的血流。动态和稳态反应与已知的药理学和肾生理学一致,并且符合肾中血管收缩性血管紧张素II受体可被血源性抑制剂作用的假设。激光多普勒方法是快速监测组织灌注动态变化的一种很有前景的工具。

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