Feather J W, Hajizadeh-Saffar M, Leslie G, Dawson J B
Department of Medical Physics, General Infirmary, Leeds, UK.
Phys Med Biol. 1989 Jul;34(7):807-20. doi: 10.1088/0031-9155/34/7/002.
A portable rapid scan reflectance spectrometer (400-700 nm in 2.8 s) has been developed for the measurement of cutaneous pigments. The instrument incorporates a tungsten halogen lamp light source, light transmission by fibre optics and wavelength selection by a circular variable wavelength interference filter. A microcomputer controls the instrument and processes the data. The performance of the instrument was evaluated by undertaking in vitro measurements of the reflectance spectra of blood. An index of the haemoglobin content of the sample based on the gradients of the log inverse reflectance spectrum between isobestic points at 527.5, 544 and 573 nm was devised and shown to be independent of the oxygenation of the haemoglobin. The haemoglobin index was combined with measurements at 558.5 nm, a wavelength at which absorbance is sensitive to the oxygenation of haemoglobin, to give a measure of oxygen saturation. The parameter was validated by determining the oxygen dissociation curve of red cells in plasma in vitro at pH 7.33, 37 degrees C and under a partial pressure of 40 mmHg of CO2.
已开发出一种便携式快速扫描反射光谱仪(2.8秒内扫描400 - 700纳米)用于测量皮肤色素。该仪器采用钨卤灯光源,通过光纤进行光传输,并由圆形可变波长干涉滤光片进行波长选择。一台微型计算机控制该仪器并处理数据。通过对血液反射光谱进行体外测量来评估该仪器的性能。基于527.5、544和573纳米等吸收点之间对数反反射光谱的梯度,设计了一个样本血红蛋白含量指数,并证明该指数与血红蛋白的氧合状态无关。将血红蛋白指数与在558.5纳米处的测量结果相结合,558.5纳米是吸光度对血红蛋白氧合敏感的波长,以得出氧饱和度的测量值。通过在体外pH值为7.33、37摄氏度和二氧化碳分压为40毫米汞柱的条件下测定血浆中红细胞的氧解离曲线,对该参数进行了验证。