Assessment of 3D printed mechanical metamaterials for prosthetic liners.

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine Pub Date : 2024-03-01 Epub Date: 2024-01-27 DOI:10.1177/09544119231225529
Kirstie M Devin, Jinghua Tang, Andrew R Hamilton, David Moser, Liudi Jiang
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Abstract

This study focuses on novel design and evaluation of Elastic 50A (EL50) mechanical metamaterials with open-cell patterns for its potential application to lower limb residuum/socket interfaces, specifically that of a transtibial (TT) amputee. Mechanical characteristics, that is, effective Young's modulus (E), was tuned by altering metamaterial porosity, which was experimentally verified. Specifically, pore radius of the unit cell was varied to achieve a range of E-values (0.05-1.71 MPa) for these 3D printed metamaterials. Finite Element Analysis (FEA) was conducted to evaluate pressure distribution across key load-bearing anatomical sites of a TT residuum. Using designed metamaterials for homogeneous liners, pressure profiles were studied and compared with a silicone liner case. Additionally, a custom metamaterial liner was designed by assigning appropriate metamaterials to four load-sensitive and tolerant anatomical sites of the TT residuum. The results suggest that lowest pressure variation (PV), as a measure of pressure distribution levels and potential comfort for amputees, was achieved by the custom metamaterial liner compared to any of the homogeneous liners included in this study. It is envisaged that this work may aid future design and development of custom liners using now commonly available 3D printing technologies and available elastomer materials to maximise comfort, tissue safety and overall rehabilitation outcomes for lower limb amputees.

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评估用于假体衬垫的 3D 打印机械超材料。
本研究的重点是设计和评估具有开孔模式的弹性 50A (EL50) 机械超材料,以将其潜在应用于下肢残端/插座界面,特别是经胫 (TT) 截肢者的界面。机械特性,即有效杨氏模量(E),是通过改变超材料的孔隙率来调整的,这一点已得到实验验证。具体来说,改变单元格的孔隙半径可使这些三维打印超材料达到一定范围的 E 值(0.05-1.71 兆帕)。有限元分析(FEA)用于评估 TT 残基关键承重解剖部位的压力分布。利用设计的超材料均质衬垫,研究了压力曲线,并与硅胶衬垫进行了比较。此外,通过将适当的超材料分配到 TT 残基的四个负荷敏感和耐受解剖部位,还设计了一种定制超材料衬垫。研究结果表明,与本研究中的任何一种均质衬垫相比,定制超材料衬垫可实现最低的压力变化(PV),这是压力分布水平和截肢者潜在舒适度的一种衡量标准。预计这项工作将有助于未来利用现在常见的 3D 打印技术和现有的弹性体材料设计和开发定制衬垫,从而最大限度地提高下肢截肢者的舒适度、组织安全性和整体康复效果。
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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
122
审稿时长
6 months
期刊介绍: The Journal of Engineering in Medicine is an interdisciplinary journal encompassing all aspects of engineering in medicine. The Journal is a vital tool for maintaining an understanding of the newest techniques and research in medical engineering.
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