Lee V S, Tarassenko L, Bellhouse B J
Department of Engineering Science, Oxford University, UK.
J Biomed Eng. 1992 Jan;14(1):27-32. doi: 10.1016/0141-5425(92)90032-g.
An optical method to assess platelet viability in platelet transfusion concentrates has been developed which is based on the observation that healthy, discoid platelets transmit more light in shear flow than aged, spherical cells. Using a specially designed glass channel, the rise in transmission of light through platelet samples with agitation is referenced against a measurement of transmission without flow. Referencing the measurements may minimize the effects of red blood cell contamination, as well as other variations among platelet packs such as plasma characteristics and plastic container variability. At an optimal frequency of agitation, the ratio of the transmission of light with agitation to that of the sample at rest is found to correlate highly with the concentration of discoid platelets, r = 0.92 to 0.95 (P less than 0.001), for light sources including a HeNe laser and two LEDs. Using this index, the discoid platelet counts of twelve platelet packs are estimated and compared with manual counts. The mean difference between the two methods was 0.009 x 10(9) discoid platelets ml-1 with a standard deviation of 0.11 x 10(9) cells ml-1. We conclude that the method may be applied to the development of a non-invasive device to monitor the concentration of viable, discoid platelets in storage.
已开发出一种评估血小板输注浓缩物中血小板活力的光学方法,该方法基于以下观察结果:健康的盘状血小板在剪切流中比老化的球形细胞透射更多的光。使用专门设计的玻璃通道,通过搅拌使血小板样品的光透射率升高,并与无流动时的透射率测量值进行对照。对照测量值可将红细胞污染的影响以及血小板包之间的其他差异(如血浆特性和塑料容器变异性)降至最低。在最佳搅拌频率下,发现搅拌时的光透射率与静止样品的光透射率之比与盘状血小板的浓度高度相关,对于包括氦氖激光器和两个发光二极管在内的光源,相关系数r = 0.92至0.95(P小于0.001)。使用该指标,估计了十二个血小板包的盘状血小板计数,并与手工计数进行了比较。两种方法之间的平均差异为0.009×10⁹个盘状血小板/毫升,标准差为0.11×10⁹个细胞/毫升。我们得出结论,该方法可应用于开发一种非侵入性装置,以监测储存中存活的盘状血小板的浓度。