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猪肺动脉瓣和主动脉瓣:在生理应变率下的拉伸粘弹性特性比较。

Porcine pulmonary and aortic valves: a comparison of their tensile viscoelastic properties at physiological strain rates.

作者信息

Leeson-Dietrich J, Boughner D, Vesely I

机构信息

Robarts Research Institute, London, Ontario, Canada.

出版信息

J Heart Valve Dis. 1995 Jan;4(1):88-94.

PMID:7742995
Abstract

Pulmonary valve autografts and allografts have been recently reported as being clinically effective for the replacement of the diseased aortic valve. While the biomechanics of the aortic valve have been widely studied, there is little information available about the mechanical properties of the pulmonary valve. We felt that it was necessary to investigate the mechanical properties of the pulmonary valve to determine if it is mechanically suitable as a long term replacement for the aortic valve. We employed physiological strain rate tensile testing to investigate the stress-strain and stress relaxation behaviour of 44 aortic and 40 pulmonary valve cusp strips cut in the radial and circumferential directions, in fresh and glutaraldehyde fixed states. Stress-strain and stress relaxation tests were performed on each test strip at extension rates of 40 mm/s, 4 mm/s and 0.4 mm/s. In all but one mechanical parameter, we found no difference between aortic and pulmonary valve tissues. The extensibilities and relaxation rates were similar, but the aortic valve tissue had a greater average modulus (p = 0.0005) than the pulmonary valve tissue (i.e. 7.41 MPa vs. 5.86 MPa respectively). Since bioprostheses are often constructed from materials with mechanical properties very different from those of the aortic valve, like pericardium, the slight difference between aortic and pulmonary valves is unlikely to affect the operation of the pulmonary valve in the aortic position. The pulmonary valve could therefore be considered mechanically acceptable as a replacement for the aortic valve.

摘要

近期有报道称,肺动脉瓣自体移植和同种异体移植在临床上可有效替代病变的主动脉瓣。虽然主动脉瓣的生物力学已得到广泛研究,但关于肺动脉瓣力学特性的信息却很少。我们认为有必要研究肺动脉瓣的力学特性,以确定其在力学上是否适合长期替代主动脉瓣。我们采用生理应变率拉伸试验,研究了44个主动脉瓣和40个肺动脉瓣瓣叶条带在新鲜和戊二醛固定状态下,沿径向和周向切割后的应力 - 应变及应力松弛行为。对每个测试条带分别以40 mm/s、4 mm/s和0.4 mm/s的拉伸速率进行应力 - 应变和应力松弛试验。除了一个力学参数外,我们发现主动脉瓣和肺动脉瓣组织之间没有差异。二者的伸长率和松弛率相似,但主动脉瓣组织的平均模量(p = 0.0005)大于肺动脉瓣组织(分别为7.41 MPa和5.86 MPa)。由于生物假体通常由力学特性与主动脉瓣非常不同的材料制成,如心包,主动脉瓣和肺动脉瓣之间的细微差异不太可能影响肺动脉瓣在主动脉位置的运作。因此,肺动脉瓣在力学上可被认为是可接受的主动脉瓣替代物。

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