Varghese Babu, Rajan Vinayakrishnan, Van Leeuwen Ton G, Steenbergen Wiendelt
University of Twente, Institute for Biomedical Technology BMTI, Biophysical Engineering Group, Faculty of Science and Technology, P.O. Box 217, 7500 AE Enschede, The Netherlands.
J Biomed Opt. 2007 Nov-Dec;12(6):060508. doi: 10.1117/1.2823141.
We report the first path-length-resolved perfusion measurements on human skin measured with a phase-modulated low-coherence Mach-Zehnder interferometer with spatially separated fibers for illumination and detection. Optical path lengths of Doppler shifted and unshifted light and path-length-dependent Doppler broadening of multiply scattered light from skin are measured from the Doppler broadened interference peaks appearing in the power spectrum. Perfusion and its variations during occlusion are measured in real time for a given optical path length, and the results are compared with the perfusion signal obtained with a conventional laser Doppler perfusion monitor.
我们报告了首次使用具有空间分离光纤用于照明和检测的相位调制低相干马赫曾德尔干涉仪对人体皮肤进行的路径长度分辨灌注测量。从功率谱中出现的多普勒加宽干涉峰测量了皮肤中多普勒频移和未频移光的光程长度以及多次散射光的与路径长度相关的多普勒加宽。对于给定的光程长度,实时测量了闭塞期间的灌注及其变化,并将结果与传统激光多普勒灌注监测仪获得的灌注信号进行了比较。