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聚氨酯人工心脏瓣膜的流体动力学功能:杨氏模量和瓣叶厚度的影响

Hydrodynamic function of polyurethane prosthetic heart valves: influences of Young's modulus and leaflet thickness.

作者信息

Bernacca Gillian M, O'Connor Bernard, Williams David F, Wheatley David J

机构信息

University Department of Cardiac Surgery, Royal Infirmary, Glasgow, UK.

出版信息

Biomaterials. 2002 Jan;23(1):45-50. doi: 10.1016/s0142-9612(01)00077-1.

Abstract

The development of flexible polyurethane heart valves has been hindered by material degradation in vivo. Low modulus polyurethane leaflets are regarded as desirable to achieve good hydrodynamic function. However, low modulus materials may suffer high strain accumulation, hence poor durability. Higher modulus materials may improve durability, but may have poor hydrodynamic function. This study examines the hydrodynamic behaviour of biostable polyurethane valves, varying Young's modulus from 5 to 63.6 MPa and mean leaflet thickness from 48-238 microm. Parameters studied included mean pressure gradient, energy losses and regurgitation over 5 equivalent cardiac outputs (3.6, 4.9, 6.4, 8.0 and 9.61 min(-1)) At low cardiac output, modulus was not significantly correlated with any parameter of valve opening. At 9.61 min(-1), modulus significantly influenced mean pressure gradient (p = 0.033). Mean leaflet thickness significantly correlated with mean pressure gradient and energy losses during forward flow at all cardiac outputs (p<0.001). This study demonstrates that, over a wide range of moduli, valve hydrodynamic function is not affected significantly by the material modulus. Leaflet thickness is a highly significant factor. Higher modulus elastomers in a range up to 32.5 MPa may be useful in prosthetic heart valve leaflet manufacture, retaining good hydrodynamic function while potentially extending the lifetime of the valve.

摘要

柔性聚氨酯心脏瓣膜的发展一直受到体内材料降解的阻碍。低模量聚氨酯瓣叶被认为有利于实现良好的流体动力学功能。然而,低模量材料可能会积累高应变,因此耐久性较差。较高模量的材料可能会提高耐久性,但流体动力学功能可能较差。本研究考察了生物稳定聚氨酯瓣膜的流体动力学行为,其杨氏模量在5至63.6MPa之间变化,瓣叶平均厚度在48 - 238微米之间。研究的参数包括平均压力梯度、能量损失以及在5个等效心输出量(3.6、4.9、6.4、8.0和9.61min⁻¹)下的反流情况。在低心输出量时,模量与瓣膜开放的任何参数均无显著相关性。在心输出量为9.61min⁻¹时,模量对平均压力梯度有显著影响(p = 0.033)。在所有心输出量下,瓣叶平均厚度与正向流动期间的平均压力梯度和能量损失均显著相关(p<0.001)。本研究表明,在较宽的模量范围内,瓣膜的流体动力学功能不受材料模量显著影响。瓣叶厚度是一个非常重要的因素。高达32.5MPa范围内的较高模量弹性体可能在人工心脏瓣膜瓣叶制造中有用,在保持良好流体动力学功能的同时可能延长瓣膜的使用寿命。

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