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用于心脏瓣膜假体叶片仪器模型自动生成和评估的算法。

An Algorithm for Automatic Generation and Evaluation of Leaflet Apparatus Models for Heart Valve Prostheses.

机构信息

Junior Researcher, Laboratory of New Biomaterials, Department of Experimental Medicine; Research Institute for Complex Issues of Cardiovascular Diseases, 6 Sosnovy Blvd, Kemerovo, 650002, Russia.

Researcher, Laboratory of New Biomaterials, Department of Experimental Medicine; Research Institute for Complex Issues of Cardiovascular Diseases, 6 Sosnovy Blvd, Kemerovo, 650002, Russia.

出版信息

Sovrem Tekhnologii Med. 2022;14(4):6-14. doi: 10.17691/stm2022.14.4.01. Epub 2022 Jul 29.

Abstract

UNLABELLED

is to develop and verify an algorithm for automatic generation of leaflet apparatus models for prosthetic heart valves, to optimize the basic parameters of the models in order to minimize the stress-strain state and maximize the geometric area of the orifice.

MATERIALS AND METHODS

The suggested algorithm consists of three blocks: "Generator", "Modeling", "Analysis". The first block creates a three-dimensional model of the leaflet apparatus using the specified parameters (height, radius, thickness, degree of "sagging", angle of the free edge deviation). Numerical simulation of the apparatus functioning is further performed using the finite element method. Then, the statistical analysis of the von Mises stresses is done and the opening area of the design in question is calculated.Verification was performed by comparing quantitatively the lumen areas of the leaflet apparatus in the open state, obtained from the literature data for the Trifecta bioprosthesis (19, 21, and 23 mm in diameter), with the results of the described algorithm operation.

RESULTS

The verification of the algorithm has demonstrated the following deviations in the lumen area in the open state: 2.85% for 19 mm, 14.81% for 21 mm, and 23.17% for 23 mm models. This difference is due to the choice of the model material (no data could be found on the physical and mechanical properties of the pericardium used for the fabrication of the Trifecta bioprostheses).The generation of a large number of designs (n=1517) without fixation of certain geometry parameters has shown that thickness of the leaflet apparatus makes the greatest contribution to the degree of opening; its dependence on the thickness and arising peak von Mises stresses has been demonstrated. Of the valvular models obtained, 278 showed the opening degree greater than 80% and maximum peak von Mises stresses below 4 MPa for the proposed model of the pericardium, which is 65% below the ultimate strength of the material.Out of 278 leaflet models, 3 "optimal" designs were selected meeting the diameter criteria of 19, 21, and 23 mm. The loss index for them was 0.24, 0.19, 0.20 with the opening degrees of 88.28, 84.48, 88.12%, and maximum peak von Mises stresses of 3.62, 1.21, 1.87 MPa, respectively.

CONCLUSION

The developed algorithm makes it possible to automatically generate three-dimensional models of the leaflet apparatus, numerically simulate the opening process using the finite element method, statistically analyze the results obtained, and calculate the lumen area. The algorithm was verified based on the data for the Trifecta bioprosthesis of three standard sizes. The presented algorithm can be used both for the research and development of various designs and for obtaining "optimal" models of sash devices.

摘要

目的

开发并验证一种用于人工心脏瓣膜叶瓣装置模型自动生成的算法,优化模型的基本参数,以最小化应变速率状态并最大化瓣口的几何面积。

材料和方法

所提出的算法由三个模块组成:“生成器”、“建模”、“分析”。第一个模块使用指定的参数(高度、半径、厚度、“下垂”程度、自由边缘偏差角度)创建叶瓣装置的三维模型。进一步使用有限元法对装置的功能进行数值模拟。然后,对 von Mises 应力进行统计分析,并计算设计的开口面积。通过将从文献中获得的三叶瓣生物假体(直径为 19、21 和 23mm)的叶瓣装置在打开状态下的管腔面积与描述算法操作的结果进行定量比较,对算法进行了验证。

结果

算法验证表明,在打开状态下,管腔面积的偏差为:19mm 模型为 2.85%,21mm 模型为 14.81%,23mm 模型为 23.17%。这种差异是由于模型材料的选择(没有找到用于制造三叶瓣生物假体的心包膜的物理和机械性能数据)造成的。生成大量没有固定特定几何参数的设计(n=1517)表明,叶瓣装置的厚度对开口程度的影响最大;已经证明了它与厚度和产生的 von Mises 峰值应力之间的关系。在所获得的瓣膜模型中,有 278 个模型的开口度大于 80%,且所提出的心包膜模型的最大峰值 von Mises 应力低于 4MPa,低于材料的极限强度。在 278 个叶瓣模型中,选择了 3 个符合 19、21 和 23mm 直径标准的“最佳”设计。它们的损耗指数分别为 0.24、0.19 和 0.20,开口度分别为 88.28%、84.48%和 88.12%,最大峰值 von Mises 应力分别为 3.62MPa、1.21MPa 和 1.87MPa。

结论

所开发的算法可用于自动生成叶瓣装置的三维模型,使用有限元法对打开过程进行数值模拟,对获得的结果进行统计分析,并计算管腔面积。该算法基于三种标准尺寸的三叶瓣生物假体数据进行了验证。所提出的算法既可以用于各种设计的研究和开发,也可以用于获得百叶窗装置的“最佳”模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef5a/10171043/1f2046962366/STM-14-4-01-f1.jpg

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