Soller B R, Micheels R H, Coen J, Parikh B, Chu L, Hsi C
Center for Advanced Clinical Technology, University of Massachusetts Medical Center, Worcester 01655, USA.
J Clin Monit. 1996 Sep;12(5):387-95. doi: 10.1007/BF02077636.
Tissue pH measurement has a number of clinical applications, including the monitoring of both muscle pH and organ pH as an indicator of compromised blood flow and anaerobic metabolism. The objective of this work was to demonstrate the feasibility of a noninvasive measurement of deep tissue pH using near-infrared reflectance spectroscopy and multivariate calibration techniques.
Six studies were done on five New Zealand white rabbits. Two pH electrodes were implanted in the teres major muscle and a vascular clamp placed across the single artery feeding the muscle. Reflected light was collected through the skin from a site between the two electrodes as the pH was lowered by closing the clamp and raised by opening the clamp. Partial least squares analysis with cross-validation techniques was used to relate pH to light absorption at 201 evenly spaced wavelengths between 700 and 1100 nm.
On average, the tissue pH started at 7.13 +/- 0.09 and decreased to 6.74 +/- 0.09, returning to 7.13 +/- 0.09 after reperfusion. Calibration models fit for each rabbit had an average of nine factors with an R2 of 0.98 and a prediction error of 0.016 +/- 0.002 pH units.
We believe this to be the first in vivo demonstration of a non-invasive method for measuring tissue pH in skin-covered muscle using near-infrared reflectance spectroscopy and multivariate calibration techniques.
组织pH测量有许多临床应用,包括监测肌肉pH和器官pH,以此作为血流受损和无氧代谢的指标。本研究的目的是证明使用近红外反射光谱和多元校准技术无创测量深部组织pH的可行性。
对5只新西兰白兔进行了6项研究。在大圆肌中植入两个pH电极,并在为该肌肉供血的单根动脉上放置血管夹。通过关闭血管夹降低pH,并通过打开血管夹升高pH,同时从两个电极之间的皮肤部位收集反射光。采用具有交叉验证技术的偏最小二乘法分析,将pH与700至1100nm之间201个等间距波长处的光吸收相关联。
平均而言,组织pH起始值为7.13±0.09,随后降至6.74±0.09,再灌注后恢复至7.13±0.09。为每只兔子建立的校准模型平均有9个因子,R2为0.98,预测误差为0.016±0.002pH单位。
我们认为这是首次在体内证明使用近红外反射光谱和多元校准技术无创测量覆盖皮肤的肌肉组织pH的方法。