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Mechanical Properties of Abnormal Human Aortic and Mitral Valves

机译:异常人体主动脉和二尖瓣的机械性能

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Details about custom built experimental set up to perform uniaxial and biaxial tests on planar soft tissues are presented. This displacement controlled set up can apply and measure loads ranging up to 100 N. The surface deformation is determined from tracking markers in 3D space using 2 CCD cameras. Discarded valve tissue from patients undergoing valve replacement surgery were collected and stored at 4 deg C in normal saline and experiments were completed within 24 hours from harvest. Uniaxial tests on aortic valve leaflets and biaxial tests on mitral valve leaflets were conducted. Results show that the deformation of these tissues is not homogeneous. The principal stretches in the plane orthogonal to the direction of stretching in the uniaxial stretch experiment are not the same but the principal directions do not change much with loading. Further, the results show that both the valve leaflets are compressible. The loading and unloading path is nearly the same and is not sensitive to the rate of displacement when it is varied between 200(mu)m/s and 800(mu)m/s. These results have implications in the development of constitutive models for these tissues.
机译:提出了有关定制建立实验组的详细信息,以在平面软组织上进行单轴和双轴试验。该位移控制的设置可以施加和测量高达100n的负载。通过使用2个CCD摄像头的3D空间中的跟踪标记确定表面变形。收集来自接受瓣膜置换手术的患者的丢弃阀组织并在正常盐水中储存在4℃,并且在收获后24小时内完成实验。进行了对二尖瓣小叶主动脉瓣叶和双轴试验的单轴试验。结果表明,这些组织的变形不是均匀的。在单轴拉伸实验中垂直于拉伸方向的平面中的主体延伸不相同,但主要方向不会随装载而变化。此外,结果表明阀门叶片都是可压缩的。装载和卸载路径几乎是相同的,并且当它在200(mu)m / s和800(mu)m / s之间变化时,对位移速率不敏感。这些结果对这些组织的本构模型的发展有影响。

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