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The effects of bileaflet prosthesis pivot geometry on turbulence and blood damage potential.

机译:胆管假体枢轴几何形状对湍流和血液损害潜能的影响。

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摘要

Bileaflet mechanical heart valves are often chosen for replacement of diseased heart valves due to the minimal resistance that they impose to forward flow and their superior durability. However, patients bearing these prostheses are prone to thromboembolic disorders, and must undergo lifelong anticoagulation therapy. The turbulence generated by leakage flow through the pivots of bileaflet mechanical valves could cause disruption or activation of blood corpuscles, and is a therefore a potential means of thrombosis initiation.;These studies tested the hypotheses that bileaflet valve pivot geometry influences blood damage and that the turbulence created by forward flow through a common bileaflet prosthesis, the St. Jude Medical design, has a greater potential to initiate blood damage than Reynolds stresses created by leakage flow through the valve. To test these hypotheses, sensitive biochemical markers of valve induced blood damage were identified. These markers were used to test the effects of pivot design, pivot gap width, and valve size on damage to whole human blood within a steady leakage flow circuit. Preliminary tests were performed in a more physiologic pulsatile flow circuit. Forward and leakage flow turbulence through St. Jude Medical aortic valves were quantified both experimentally and analytically. This turbulence was related to blood damage potential by mathematical models and magnitude thresholds developed by previous researchers.
机译:Bileaflet机械心脏瓣膜通常被选择用于替换患病的心脏瓣膜,因为它们对正向流动施加的阻力极小,并且具有出色的耐用性。但是,带有这些假体的患者容易出现血栓栓塞性疾病,必须接受终生抗凝治疗。流经双叶机械瓣膜枢轴的泄漏流所产生的湍流可能引起血球的破坏或激活,因此是潜在的血栓形成手段。这些研究检验了双叶瓣膜枢轴几何形状影响血液损害的假设。通过普通的双叶假体向前流动而产生的湍流,圣裘德医学设计,比通过瓣膜渗漏产生的雷诺应力具有更大的引发血液损害的潜力。为了检验这些假设,确定了瓣膜诱发的血液损伤的敏感生化标记。这些标记物用于测试枢轴设计,枢轴间隙宽度和阀门尺寸对稳定泄漏流回路中全人类血液损害的影响。在更生理的脉动流回路中进行了初步测试。通过实验和分析对通过St.Jude Medical主动脉瓣的正向和漏流湍流进行了量化。湍流与先前研究人员开发的数学模型和强度阈值有关,可能与血液损害有关。

著录项

  • 作者

    Travis, Brandon Reed.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 351 p.
  • 总页数 351
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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