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Cardiac Tissue Structure Properties and Performance: A Materials Science Perspective

机译:心脏组织的结构性质和性能:材料科学的观点

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摘要

From an engineering perspective, many forms of heart disease can be thought of as a reduction in biomaterial performance, in which the biomaterial is the tissue comprising the ventricular wall. In materials science, the structure and properties of a material are recognized to be interconnected with performance. In addition, for most measurements of structure, properties, and performance, some processing is required. Here, we review the current state of knowledge regarding cardiac tissue structure, properties, and performance as well as the processing steps taken to acquire those measurements. Understanding the impact of these factors and their interactions may enhance our understanding of heart function and heart failure. We also review design considerations for cardiac tissue property and performance measurements because, to date, most data on cardiac tissue has been obtained under non-physiological loading conditions. Novel measurement systems that account for these design considerations may improve future experiments and lead to greater insight into cardiac tissue structure, properties, and ultimately performance.
机译:从工程学的角度来看,许多形式的心脏病都可以被认为是生物材料性能的下降,其中生物材料是构成心室壁的组织。在材料科学中,材料的结构和特性被认为与性能相互关联。另外,对于大多数结构,性能和性能的测量,需要进行一些处理。在这里,我们回顾了有关心脏组织结构,特性和性能以及获取这些测量值所采取的处理步骤的当前知识状态。了解这些因素及其相互作用的影响可能会增强我们对心脏功能和心力衰竭的理解。我们还回顾了心脏组织特性和性能测量的设计注意事项,因为迄今为止,有关心脏组织的大多数数据都是在非生理负荷条件下获得的。考虑到这些设计考虑因素的新型测量系统可能会改善未来的实验,并使您对心脏组织的结构,性质以及最终的性能有更深入的了解。

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