Determination of hemoglobin levels in the finger using near infrared spectroscopy

被引:28
作者
Rendell, M
Anderson, E
Schlueter, W
Mailliard, J
Honigs, D
Rosenthal, R
机构
[1] Creighton Diabet Ctr, Omaha, NE USA
[2] Creighton Canc Ctr, Omaha, NE USA
[3] Futrex Corp, Gaithersburg, MD USA
来源
CLINICAL AND LABORATORY HAEMATOLOGY | 2003年 / 25卷 / 02期
关键词
near-infrared spectrophotometry; hemoglobin; non-invasive measurements of hemoglobin;
D O I
10.1046/j.1365-2257.2003.00493.x
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We previously demonstrated that near-infrared spectroscopy can be used to measure blood flow. The spectrum of blood is dominated by hemoglobin. Therefore, it should be possible to determine the concentration of hemoglobin in tissue using near-infrared transmittance. We attempted to do this in the finger using a unique handheld multiple wavelength spectrophotometer. We took samples from 73 subjects and performed repeat measurements in several subjects. Hemoglobin level was determined at the time of near-infrared measurement. We performed correlation analysis between the hemoglobin values and the absorbance values. There was a strong correlation between hemoglobin levels and the 14 wavelengths (r = 0.738, n = 121, = 1.7). We categorized the patients by hemoglobin level as either normal (12-16 g/dl), mildly anemic (10-12 g/dl), or moderately anemic (<10 g/dl). There were 21 patients in the low hemoglobin group, 29 in the middle range, and 23 in the normal range. The mean hemoglobin levels were 8.4 +/- 0.3 g/dl for the low group, 10.9 +/- 0.1 g/dl for the mildly anemic group, and 13.8 +/- 0.3 g/dl for the group with normal hemoglobin. There was a clear separation of absorbance values among the three groups. The major differences seen were in the midrange of the spectrum. It is encouraging that this first study of hemoglobin measurement yielded data permitting a discrimination of hemoglobin levels. It is hoped that future refinements will lead eventually to a non-invasive technique for the measurement of blood hemoglobin concentration.
引用
收藏
页码:93 / 97
页数:5
相关论文
共 18 条
[1]  
[Anonymous], 1987, CLIN LAB HAEMATOL, V9, P73
[2]   The noninvasive measurement of absolute cerebral deoxyhemoglobin concentration and mean optical path length in the neonatal brain by second derivative near infrared spectroscopy [J].
Cooper, CE ;
ElWell, CE ;
Meek, JH ;
Matcher, SJ ;
Wyatt, JS ;
Cope, M ;
Delpy, DT .
PEDIATRIC RESEARCH, 1996, 39 (01) :32-38
[3]  
FELL A F, 1982, Analytical Proceedings, V19, P28
[4]  
FERRARI M, 1989, J APPL PHYSIOL, V256, pH1493
[5]   A METHOD TO ESTIMATE THE RATIO OF ABSORPTION-COEFFICIENTS OF 2 WAVELENGTHS USING PHASE-MODULATED NEAR-INFRARED LIGHT SPECTROSCOPY [J].
HAIDA, M ;
MIWA, M ;
SHIINO, A ;
CHANCE, B .
ANALYTICAL BIOCHEMISTRY, 1993, 208 (02) :348-351
[6]  
JOBSIS FF, 1977, J APPL PHYSIOL, V43, P858
[7]   NONINVASIVE, INFRARED MONITORING OF CEREBRAL AND MYOCARDIAL OXYGEN SUFFICIENCY AND CIRCULATORY PARAMETERS [J].
JOBSIS, FF .
SCIENCE, 1977, 198 (4323) :1264-1267
[8]   NUMERICAL ERROR ANALYSIS OF DERIVATIVE SPECTROMETRY FOR QUANTITATIVE-ANALYSIS OF MIXTURES [J].
OHAVER, TC ;
GREEN, GL .
ANALYTICAL CHEMISTRY, 1976, 48 (02) :312-318
[9]  
OHAVER TC, 1979, CLIN CHEM, V25, P1548
[10]   Determination of blood flow in the finger using near-infrared spectroscopy [J].
Rendell, M ;
Hovelson, C ;
O'Connor, K ;
Cheung, L ;
Huard, S ;
Kong, TS ;
Catania, A ;
Rosenthal, R .
CLINICAL PHYSIOLOGY, 1998, 18 (05) :426-434