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定制矫形器设计,集成 3D 扫描和特定于主体的有限元建模工作流程。

Custom orthotic design by integrating 3D scanning and subject-specific FE modelling workflow.

机构信息

CAS Key Laboratory of Human-Machine Intelligence-Synergy Systems, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, China.

Department of Biomedical Engineering, Faculty of Engineering, Hong Kong Polytechnic University, Hong Kong, 999077, SAR, China.

出版信息

Med Biol Eng Comput. 2024 Jul;62(7):2059-2071. doi: 10.1007/s11517-024-03067-2. Epub 2024 Mar 6.

Abstract

The finite element (FE) foot model can help estimate pathomechanics and improve the customized foot orthoses design. However, the procedure of developing FE models can be time-consuming and costly. This study aimed to develop a subject-specific scaled foot modelling workflow for the foot orthoses design based on the scanned foot surface data. Six participants (twelve feet) were collected for the foot finite element modelling. The subject-specific surface-based finite element model (SFEM) was established by incorporating the scanned foot surface and scaled foot bone geometries. The geometric deviations between the scaled and the scanned foot surfaces were calculated. The SFEM model was adopted to predict barefoot and foot-orthosis interface pressures. The averaged distances between the scaled and scanned foot surfaces were 0.23 ± 0.09 mm. There was no significant difference for the hallux, medial forefoot, middle forefoot, midfoot, medial hindfoot, and lateral hindfoot, except for the lateral forefoot region (p = 0.045). The SFEM model evaluated slightly higher foot-orthoses interface pressure values than measured, with a maximum deviation of 7.1%. These results indicated that the SFEM technique could predict the barefoot and foot-orthoses interface pressure, which has the potential to expedite the process of orthotic design and optimization.

摘要

有限元(FE)足部模型有助于评估病理力学并改进定制足部矫形器的设计。然而,开发 FE 模型的过程可能既耗时又昂贵。本研究旨在基于扫描的足部表面数据,为足部矫形器设计开发一种基于特定个体的足部比例建模工作流程。本研究共纳入 6 名参与者(12 只脚)进行足部有限元建模。通过结合扫描的足部表面和比例化的足部骨骼几何形状,建立基于特定个体的表面有限元模型(SFEM)。计算了比例化和扫描的足部表面之间的几何偏差。采用 SFEM 模型预测赤脚和足部矫形器界面压力。比例化和扫描的足部表面之间的平均距离为 0.23 ± 0.09 毫米。除了前外侧足部区域(p=0.045)外,拇趾、内侧前足部、中间前足部、中足部、内侧后足部和外侧后足部之间没有显著差异。SFEM 模型评估的足部矫形器界面压力值略高于实测值,最大偏差为 7.1%。这些结果表明,SFEM 技术可以预测赤脚和足部矫形器界面压力,这有可能加速矫形器设计和优化的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6de/11189969/8d6abb848e10/11517_2024_3067_Fig1_HTML.jpg

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