Singh M, Kumaravel M
Biomedical Engineering Division, Indian Institute of Technology, Madras.
Comput Biomed Res. 1994 Oct;27(5):325-36. doi: 10.1006/cbmr.1994.1024.
Aggregation of erythrocytes at hematocrit 5% in plasma, placed in a glass chamber, is analyzed under dynamic conditions by transmission of He-Ne laser light. The transmitted intensity (TI) signal which contains mean intensity superimposed with fluctuations caused by the movement of erythrocytes and formed aggregates, is detected by photodiode-amplifier assembly mounted on a stepper motor. The alignment of this detector for the maximum TI is achieved by a dedicated software. The TI data after A/D conversion is stored in a PC-AT for further processing. The parameters, aggregate size index, aggregate sedimentation time index, total time taken for completion of the process, process onset time index, total number of fluctuations, and asymmetry index are calculated sequentially for the entire data. A comparison of these parameters in blood samples obtained from healthy and diabetic subjects show the significance of these parameters.
将置于玻璃腔室中、血细胞比容为5%的血浆中的红细胞聚集情况,在动态条件下通过氦氖激光透射进行分析。包含由红细胞和形成的聚集体运动引起的波动叠加的平均强度的透射强度(TI)信号,由安装在步进电机上的光电二极管 - 放大器组件检测。通过专用软件实现该检测器对最大TI的对准。A/D转换后的TI数据存储在PC - AT中以便进一步处理。针对整个数据依次计算聚集体大小指数、聚集体沉降时间指数、过程完成所需的总时间、过程开始时间指数、波动总数和不对称指数等参数。对从健康和糖尿病受试者获得的血液样本中的这些参数进行比较,显示了这些参数的重要性。