首页> 外文会议>ASME summer bioengineering conference;SBC2012 >EVALUATION OF PLATELET ACTIVATION MODELS WITH DYNAMIC SHEAR STRESS IN VITRO EXPERIMENTS
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EVALUATION OF PLATELET ACTIVATION MODELS WITH DYNAMIC SHEAR STRESS IN VITRO EXPERIMENTS

机译:实验中动态剪切应力的血小板活化模型评价

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摘要

Blood recirculating devices, which include ventricular assist devices and prosthetic heart valves, are necessary for some patients suffering from end-stage heart failure and valvular diseases. However, disturbed flow patterns in these devices cause shear-induced platelet activation and aggregation. Thromboembolic complications resulting from this platelet behavior necessitates lifelong anticoagulant therapy for patients implanted with such devices. In addition, blood recirculating device manufacturers mostly test and optimize their products for hemolysis, which occurs at shear stresses ten-fold higher than required for platelet activation. The relative paucity of optimization for flow-induced thrombogenicity is further exacerbated by the fact that there are few predictive shear-induced platelet activation models.
机译:血液循环装置,包括心室辅助装置和人工心脏瓣膜,对于某些患有末期心力衰竭和瓣膜疾病的患者来说是必需的。但是,这些设备中的流动模式受干扰会导致剪切诱导的血小板活化和聚集。由这种血小板行为引起的血栓栓塞并发症需要对植入这种装置的患者进行终生抗凝治疗。此外,血液循环设备制造商大多会测试和优化他们的产品以进行溶血,溶血的剪切应力比血小板活化所需的剪切应力高十倍。由于几乎没有预测性的剪切诱导的血小板活化模型,这一事实进一步加剧了流动诱导的血栓形成性优化的相对稀缺性。

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