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Development of an automated malaria discriminant factor using VCS technology.

机译:使用VCS技术开发自动识别疟疾的因素。

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Malaria diagnosis presents a challenge to all laboratories. There is a need for rapid, sensitive, and cost-effective screening on all samples, particularly in areas where malaria is endemic. Response to malaria infection involves an increased monocyte count and production of large activated monocytes. These changes can be detected by volume, conductivity, and scatter (VCS) technology on certain automated blood cell counters (Beckman Coulter, Miami, FL). The SD of the volume of lymphocytes and monocytes demonstrates a significant difference from normal when malaria is present. By using a calculation derived from the SD volume of the lymphocytes and monocytes, herein termed the malaria factor, sensitivity of 98% and specificity 94% were demonstrated for the detection of malaria. Based on this derived discriminant, VCS technology should become a useful tool in the detection of malaria. A flag to indicate the potential presence of malaria could then be generated by the instrument if the user or manufacturer chose to do so.
机译:疟疾诊断对所有实验室提出了挑战。需要对所有样品进行快速,灵敏且具有成本效益的筛查,尤其是在疟疾流行地区。对疟疾感染的反应涉及单核细胞计数增加和大量活化的单核细胞产生。这些变化可以通过某些自动血细胞计数器(Beckman Coulter,迈阿密,佛罗里达州)上的体积,电导率和散射(VCS)技术来检测。当存在疟疾时,淋巴细胞和单核细胞的体积SD显示出与正常水平的显着差异。通过使用从淋巴细胞和单核细胞的SD体积得出的计算结果,本文将其称为疟疾因子,检测到疟疾的敏感性为98%,特异性为94%。基于这种判别,VCS技术应成为检测疟疾的有用工具。如果用户或制造商选择这样做,则该仪器可能会生成一个标志,表明可能存在疟疾。

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