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通过导数近红外光谱法无创测定犬血红蛋白饱和度

Noninvasive determination of hemoglobin saturation in dogs by derivative near-infrared spectroscopy.

作者信息

Ferrari M, Wilson D A, Hanley D F, Hartmann J F, Rogers M C, Traystman R J

机构信息

Department of Anesthesiology, Johns Hopkins Medical Institutions, Baltimore, Maryland 21205.

出版信息

Am J Physiol. 1989 May;256(5 Pt 2):H1493-9. doi: 10.1152/ajpheart.1989.256.5.H1493.

Abstract

An in vivo method utilizing derivative near-infrared spectroscopy was developed to noninvasively determine cerebral venous hemoglobin O2 saturation (SVO2). The method was tested on eight pentobarbital-anesthetized dogs ventilated with differing inspired O2 mixtures to force changes in SVO2 over a wide range. Spectral data obtained by transilluminating the tissues surrounding the superior sagittal sinus (SS) were transformed into first derivative units for correlation with SVO2 data measured from the SS. Linear regression analysis was applied to data obtained from five dogs and used to build a three-wavelength algorithm for predicting brain SVO2. In three dogs, SVO2 was varied to test this equation ability to predict SVO2. The standard deviation of differences between measured SVO2 and SVO2 predicted from 31 separate spectra was 3.2%. These predicted values, when regressed against the sampled SVO2, yielded an r value of 0.97. The results demonstrate that during hypoxic hypoxia (HH) it is possible to noninvasively quantify SVO2 with the use of infrared spectroscopy.

摘要

一种利用导数近红外光谱的体内方法被开发出来,用于无创测定脑静脉血红蛋白氧饱和度(SVO2)。该方法在八只戊巴比妥麻醉的狗身上进行了测试,这些狗用不同的吸入氧气混合物进行通气,以在很宽的范围内强制改变SVO2。通过对矢状窦(SS)周围组织进行透照获得的光谱数据被转换为一阶导数单位,以便与从SS测量的SVO2数据进行相关性分析。对从五只狗获得的数据进行线性回归分析,并用于构建一种用于预测脑SVO2的三波长算法。在三只狗中,改变SVO2以测试该方程预测SVO2的能力。从31个单独光谱预测的SVO2与测量的SVO2之间差异的标准差为3.2%。这些预测值与采样的SVO2进行回归分析时,得到的r值为0.97。结果表明,在低氧性缺氧(HH)期间,利用红外光谱可以无创地定量SVO2。

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