利用血锤原理对心脏支架进行数值建模和分析。

IF 1.4 4区 医学 Q4 ENGINEERING, BIOMEDICAL
Seethalakshmi R, Hariharan S, Hemalatha Karnan, Keerthana V, Akshara V
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引用次数: 0

摘要

背景:动脉粥样硬化是动脉内斑块堆积导致的血流障碍。在连续斑块盛行的情况下,会出现血锤原理:无穷小区域产生的压力和剪切应力是支架建模的控制方程。前阶压力为设计具有确定尺寸的心脏支架奠定了基础:方法:通过 ANSYS 静态和瞬态结构模拟验证将设计的支架封装在卷曲器中,从而得出支架的总变形、等效应变和应力。材料评估选择了五种不同的生物材料:不锈钢 316、钴、铬、铂和聚乳酸:结果:对带卷边器和不带卷边器的支架分别进行了 1 秒和 10 秒的静态和瞬态结构分析。结果:对带卷边器和不带卷边器的支架进行了 1 秒和 10 秒的静态和瞬态结构分析,分析了材料在总变形、等效应力和应变方面的性能:本文设想了动脉粥样硬化中血锤的动态变化,提供了压力和凝血过程的变化。它显示了支架在不同压力下的行为结果,为今后改进支架设计和材料选择提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical modeling and analysis of cardiac stent using blood hammer principle.

Background: Atherosclerosis is a condition which disrupts blood flow due to plaque build-up inside the arteries. Under conditions where consecutive plaques are prevailing blood hammer principle is exhibited.

Objective: The pressure and shear stress produced at an infinitesimal area act as the governing equation for stent modeling. The leading order pressure lays the foundation for the design of cardiac stents with definite dimensions.

Method: The designed stent was encapsulated inside a crimper validated through ANSYS-static and transient structural simulation to derive the total deformation, equivalent strain, and stress exerted on the stent. Five different biomaterials stainless steel 316, cobalt, chromium, platinum, and Poly lactic acid were selected for the material assessment.

Result: Static and Transient structural analysis for a period of 1 and 10 secs was implemented for a stent with and without a crimper. The material performance in terms of total deformation, equivalent stress, and strain are analyzed.

Conclusion: The paper envisions the dynamics of blood hammer in atherosclerosis that provides the changes in the pressure and clotting process. It shows the promising results of the stent behavior in varied forces which gives valuable insights for future improvement in stent design and material selection.

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来源期刊
Technology and Health Care
Technology and Health Care HEALTH CARE SCIENCES & SERVICES-ENGINEERING, BIOMEDICAL
CiteScore
2.10
自引率
6.20%
发文量
282
审稿时长
>12 weeks
期刊介绍: Technology and Health Care is intended to serve as a forum for the presentation of original articles and technical notes, observing rigorous scientific standards. Furthermore, upon invitation, reviews, tutorials, discussion papers and minisymposia are featured. The main focus of THC is related to the overlapping areas of engineering and medicine. The following types of contributions are considered: 1.Original articles: New concepts, procedures and devices associated with the use of technology in medical research and clinical practice are presented to a readership with a widespread background in engineering and/or medicine. In particular, the clinical benefit deriving from the application of engineering methods and devices in clinical medicine should be demonstrated. Typically, full length original contributions have a length of 4000 words, thereby taking duly into account figures and tables. 2.Technical Notes and Short Communications: Technical Notes relate to novel technical developments with relevance for clinical medicine. In Short Communications, clinical applications are shortly described. 3.Both Technical Notes and Short Communications typically have a length of 1500 words. Reviews and Tutorials (upon invitation only): Tutorial and educational articles for persons with a primarily medical background on principles of engineering with particular significance for biomedical applications and vice versa are presented. The Editorial Board is responsible for the selection of topics. 4.Minisymposia (upon invitation only): Under the leadership of a Special Editor, controversial or important issues relating to health care are highlighted and discussed by various authors. 5.Letters to the Editors: Discussions or short statements (not indexed).
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