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Influence of fixation conditions on the performance of glutaraldehyde-treated porcine aortic valves: towards a more scientific basis.

机译:固定条件对戊二醛处理的猪主动脉瓣膜性能的影响:具有更科学的基础。

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摘要

To maintain optimum mechanical properties in glutaraldehyde-treated heart-valve tissue the full collagen crimp geometry originally present in the relaxed fresh tissue should be retained. By varying the pressure at which glutaraldehyde fixation is carried out, considerable alterations to this crimp geometry can be achieved. The mechanical stiffness of the preserved tissue is consequently affected, and this in turn has a striking influence on both the opening behaviour of the valve and the degree of strain localisation in the leaflet tissue. A pressure of 100 mmHg eliminated the collagen crimp geometry entirely, and this resulted in the formation of sites of local strain or kinks in the valve leaflets during opening. It is expected that this strain localisation phenomenon will influence the long-term fatigue durability of the treated tissue. Pressures even as low as 4 mmHg result in significant reductions of crimp geometry. Fresh valves should therefore be fixed under a positive head of pressure sufficient only to ensure that the leaflets seal along their coapting free margins. A pressure of less than 1 mmHg was sufficient to achieve this. Leaflets of the commercially available Hancock valve show features similar to valves fixed in glutaraldehyde at about 100 mmHg pressure.
机译:为了在戊二醛处理过的心脏瓣膜组织中保持最佳机械性能,应保留最初存在于松弛的新鲜组织中的全部胶原蛋白卷曲几何形状。通过改变进行戊二醛固定的压力,可以实现对该卷曲几何形状的相当大的改变。保留的组织的机械刚度因此受到影响,这继而对瓣膜的打开行为和小叶组织中的应变局部化程度都产生了显着影响。 100 mmHg的压力完全消除了胶原卷曲的几何形状,这导致瓣膜小叶在打开过程中形成局部应变或扭结。预期该应变局部化现象将影响被处理组织的长期疲劳耐久性。甚至低至4 mmHg的压力也可以显着减少压接几何形状。因此,应将新鲜瓣膜固定在足以确保小叶沿其接合自由边缘密封的正压头下。小于1mmHg的压力足以实现这一点。可商购的汉考克瓣膜的小叶显示出与固定在戊二醛中,压力约为100 mmHg的瓣膜相似的特征。

著录项

  • 期刊名称 Thorax
  • 作者

    N D Broom; F J Thomson;

  • 作者单位
  • 年(卷),期 1979(34),2
  • 年度 1979
  • 页码 166–176
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类 呼吸生理学;
  • 关键词

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