Chacko Susamma, Kumar D, Singh Megha
Biomedical Engineering Division, Indian Institute of Technology, Madras 600 036, India.
Indian J Exp Biol. 2003 Jan;41(1):26-32.
A procedure for non-invasive imaging of the optical attenuation coefficient variation of in vivo thick organs/tissues is developed. The laser back-scattered surface profiles at various locations of human forearm, by multi-probe reflectometer, are measured. These profiles are matched by iterative procedure, with that as obtained by Monte Carlo simulation and the corresponding values of attenuation coefficient (equal to the sum of absorption and reduced scattering coefficients) are determined. By interpolation of this data a 100 x 100 grid is constructed and after median filtering of this data a color-coded image of the variability of the optical attenuation coefficient of the forearm is obtained. These images in different subjects show variation due to change in overall tissue composition and blood pooling. This non-invasive imaging procedure may help in identifying the diseased affected regions in healthy tissues and in application of photodynamic therapy.
开发了一种用于体内厚器官/组织光学衰减系数变化的无创成像程序。通过多探头反射仪测量人体前臂不同位置的激光背向散射表面轮廓。这些轮廓通过迭代程序与蒙特卡罗模拟获得的轮廓进行匹配,并确定相应的衰减系数值(等于吸收系数和约化散射系数之和)。通过对该数据进行插值构建一个100×100的网格,并对该数据进行中值滤波后,获得前臂光学衰减系数变化的彩色编码图像。不同受试者的这些图像显示出由于整体组织组成变化和血液淤积而产生的差异。这种无创成像程序可能有助于识别健康组织中的患病区域以及光动力疗法的应用。