首页> 外国专利> Instrumentation and method for evaluating platelet performance during clotting and dissolution of blood clots and for evaluating erythrocyte flexibility

Instrumentation and method for evaluating platelet performance during clotting and dissolution of blood clots and for evaluating erythrocyte flexibility

机译:用于评估血块凝固和溶解过程中血小板表现以及评估红细胞柔韧性的仪器和方法

摘要

The performance of platelets can be best understood by monitoring both the force development and the elastic modulus of the blood clot during both clotting and dissolution of the blood clot. Intermittent application and removal of a compressive force on a blood sample (8) positioned between a pair of plates (12 and 14) throughout clot formation and dissolution provides a standard for using voltage output from a transducer (22) to determine force and elastic modulus parameters. Force development arises from the internal actions of the platelets during clot retraction. Elastic modulus provides a measure of the stiffness of the clot. Clotting can be measured as an increase in force development and clot elastic modulus. Clot dissolution can be determined by a dramatic decrease in force development and in elastic modulus. Providing the blood sample with a clot dissolving agent such as tPA allows determining the fibrinolytic potential of whole blood and, thus, aids in identifying patients at risk for thrombosis due to a decreased ability to dissolve clots. Clot elastic modulus provides a measure of erythrocyte flexibility.
机译:通过在血凝块和血凝块溶解期间监测血栓的力发展和弹性模量,可以最好地了解血小板的性能。在整个血块形成和溶解过程中,对位于一对板(12和14)之间的血液样品(8)的间歇施加和去除压缩力提供了一个标准,用于使用从换能器(22)输出的电压来确定力和弹性模量参数。在凝块缩回过程中,血小板的内部作用会产生力量。弹性模量提供凝块硬度的量度。凝结可以通过力发展和凝块弹性模量的增加来衡量。凝块溶解可以通过力发展和弹性模量的急剧下降来确定。向血样提供血凝块溶解剂(例如tPA)可以确定全血的血纤维蛋白溶解潜力,因此,有助于鉴定由于溶解血凝块能力降低而有血栓形成风险的患者。凝块弹性模量提供了红细胞柔韧性的量度。

著录项

  • 公开/公告号US5293772A

    专利类型

  • 公开/公告日1994-03-15

    原文格式PDF

  • 申请/专利权人 CENTER FOR INNOVATIVE TECHNOLOGY;

    申请/专利号US19920982652

  • 发明设计人 MARCUS E. CARR JR.;

    申请日1992-12-01

  • 分类号G01N33/48;

  • 国家 US

  • 入库时间 2022-08-22 04:32:07

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