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首页> 外文期刊>Annals of Biomedical Engineering >From In vitro Blood Rheology to Useful Bedside Instrumentation for Cardiovascular Diseases: History and Challenges
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From In vitro Blood Rheology to Useful Bedside Instrumentation for Cardiovascular Diseases: History and Challenges

机译:从体外血液流变学到有用的心血管疾病床头仪器:历史与挑战

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I present an historical overview beginning with Prof. Harry L. Goldsmith, my first summer research supervisor in 1963 in microrheology, evolving years later to introduction into my laboratories at McGill University of the coaxial cylinder couette flow device for dynamic, real-time measurements of platelet aggregation in platelet suspensions sheared up to 8000/s, analyzed with a flow cytometer, and finally to a technology transfer of this rheological approach toward the marketplace. I and collaborators observed the shear-dependent roles of different adhesive receptors in mediating human platelet aggregation, and the importance of shear in evaluating efficacy of antiplatelet drugs, in contrast to studies with a classical aggregometer. I outline the well-published rationale for using flow devices, such as the coaxial cylinder couette, to assist clinicians and health managers assess the drug and clinical outcome efficacy of antithrombotic drugs in cardiovascular diseases, as well as their future applications.
机译:从1963年我的第一位夏季流变学研究主管Harry L. Goldsmith教授开始,我将介绍其历史概况。几年后,我逐渐发展成为我在麦吉尔大学实验室中用于动态,实时测量同轴圆柱体Couette流动装置的实验室。剪切速率高达8000 / s的血小板悬浮液中的血小板聚集,用流式细胞仪进行分析,最后将这种流变方法向市场转移。与传统的凝集仪相比,我和合作者观察了不同粘附受体在介导人血小板聚集中的剪切依赖性作用,以及剪切在评估抗血小板药物疗效中的重要性。我概述了使用流量设备(例如同轴圆柱体couette)的广为人知的原理,以协助临床医生和健康管理人员评估抗栓剂在心血管疾病中的药物和临床疗效,以及它们的未来应用。

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