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四种人心瓣膜机械性能的定量比较。

Quantification and comparison of the mechanical properties of four human cardiac valves.

机构信息

Tissue Mechanics Laboratory, The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, United States.

Tissue Mechanics Laboratory, The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, United States.

出版信息

Acta Biomater. 2017 May;54:345-355. doi: 10.1016/j.actbio.2017.03.026. Epub 2017 Mar 21.

Abstract

OBJECTIVE

Although having the same ability to permit unidirectional flow within the heart, the four main valves-the mitral valve (MV), aortic (AV), tricuspid (TV) and pulmonary (PV) valves-experience different loading conditions; thus, they exhibit different structural integrity from one another. Most research on heart valve mechanics have been conducted mainly on MV and AV or an individual valve, but none quantify and compare the mechanical and structural properties among the four valves from the same aged patient population whose death was unrelated to cardiovascular disease.

METHODS

A total of 114 valve leaflet samples were excised from 12 human cadavers whose death was unrelated to cardiovascular disease (70.1±3.7years old). Tissue mechanical and structural properties were characterized by planar biaxial mechanical testing and histological methods. The experimental data were then fitted with a Fung-type constitutive model.

RESULTS

The four valves differed substantially in thickness, degree of anisotropy, and stiffness. The leaflets of the left heart (the AV leaflets and the anterior mitral leaflets, AML) were significantly stiffer and less compliant than their counterparts in the right heart. TV leaflets were the most extensible and isotropic, while AML and AV leaflets were the least extensible and the most anisotropic. Age plays a significant role in the reduction of leaflet stiffness and extensibility with nearly straightened collagen fibers observed in the leaflet samples from elderly groups (65years and older).

CONCLUSIONS

Results from 114 human leaflet samples not only provided a baseline quantification of the mechanical properties of aged human cardiac valves, but also offered a better understanding of the age-dependent differences among the four valves. It is hoped that the experimental data collected and the associated constitutive models in this study can facilitate future studies of valve diseases, treatments and the development of interventional devices.

STATEMENT OF SIGNIFICANCE

Most research on heart valve mechanics have been conducted mainly on mitral and aortic valves or an individual valve, but none quantify and compare the mechanical and structural properties among the four valves from the same relatively healthy elderly patient population. In this study, the mechanical and microstructural properties of 114 leaflets of aortic, mitral, pulmonary and tricuspid valves from 12 human cadaver hearts were mechanically tested, analyzed and compared. Our results not only provided a baseline quantification of the mechanical properties of aged human valves, but a age range between patients (51-87years) also offers a better understanding of the age-dependent differences among the four valves. It is hoped that the obtained experimental data and associated constitutive parameters can facilitate studies of valve diseases, treatments and the development of interventional devices.

摘要

目的

尽管在心脏内具有相同的单向导通能力,但四个主要瓣膜——二尖瓣(MV)、主动脉瓣(AV)、三尖瓣(TV)和肺动脉瓣(PV)——经历不同的载荷条件;因此,它们彼此之间具有不同的结构完整性。大多数心脏瓣膜力学研究主要集中在 MV 和 AV 或单个瓣膜上,但没有从与心血管疾病无关的同一年龄患者人群中定量和比较四个瓣膜的力学和结构特性。

方法

从 12 具与心血管疾病无关的人体尸体(70.1±3.7 岁)中取出总共 114 个瓣叶样本。通过平面双向力学测试和组织学方法来描述组织力学和结构特性。然后,将实验数据拟合到 Fung 型本构模型中。

结果

四个瓣膜在厚度、各向异性程度和刚度方面有很大差异。左心(AV 瓣和前二尖瓣瓣叶,AML)的瓣叶明显比右心的瓣叶硬且顺应性差。TV 瓣叶的伸展性和各向同性最大,而 AML 和 AV 瓣叶的伸展性和各向异性最小。年龄对瓣叶刚度和伸展性的降低有显著影响,在老年组(65 岁及以上)的瓣叶样本中观察到几乎伸直的胶原纤维。

结论

114 个人体瓣叶样本的结果不仅提供了老年人心脏瓣膜机械性能的基准量化,而且更好地理解了四个瓣膜之间的年龄相关差异。希望本研究中收集的实验数据和相关本构模型能够促进瓣膜疾病、治疗和介入装置的发展。

意义陈述

大多数心脏瓣膜力学研究主要集中在二尖瓣和主动脉瓣或单个瓣膜上,但没有从与心血管疾病无关的同一相对健康的老年患者人群中定量和比较四个瓣膜的力学和结构特性。在这项研究中,对 12 具人体尸体心脏的 114 个主动脉瓣、二尖瓣、肺动脉瓣和三尖瓣瓣叶的机械和微观结构特性进行了机械测试、分析和比较。我们的结果不仅提供了老年人心脏瓣膜机械性能的基准量化,而且还为四个瓣膜之间的年龄相关性差异提供了更好的理解。希望获得的实验数据和相关本构参数能够促进瓣膜疾病、治疗和介入装置的发展。

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