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新型三维鞋内足底应变测量系统:STAMPS3D的开发与评估

Development and evaluation of a novel 3D in-shoe plantar strain measurement system: STAMPS3D.

作者信息

Sairally Francesca, Turnbull Rory P, Siddle Heidi J, Russell David A, Brockett Claire, Culmer Peter R

机构信息

School of Mechanical Engineering, University of Leeds, Leeds, West Yorkshire, UK.

Leeds Institute of Rheumatic and Musculoskeletal Medicine, University of Leeds, Leeds, West Yorkshire, UK.

出版信息

Proc Inst Mech Eng H. 2025 May;239(5):472-484. doi: 10.1177/09544119251330738. Epub 2025 Apr 12.

Abstract

The formation of diabetic foot ulcers (DFU) is consequential of peripheral neuropathy, peripheral arterial disease and foot deformity, leading to altered foot biomechanics and plantar loads. Plantar load comprises of normal pressure and shear stress, however, there are currently no in-shoe devices capable of measuring both components. The STrain Analysis and Mapping of the Plantar Surface (STAMPS) system, developed at the University of Leeds, utilises Digital Image Correlation (DIC) to measure the strain captured by a plastically deformable insole, as a method to understand plantar load during gait. A 2D DIC software was used to capture cumulative plantar strain and displacement pointwise data, however this method was limited to the analysis of planar surfaces. To address this, 3D instrumentation and DIC methods have been developed and implemented into the STAMPS3D system, used as a tool to capture data that is representative of the non-planar nature of plantar surfaces of the foot. A case-study is used to demonstrate how STAMPS3D can measure multi-dimensional strain, bringing potential to improve clinical screening of DFU risk.

摘要

糖尿病足溃疡(DFU)的形成是由周围神经病变、外周动脉疾病和足部畸形导致的,会引起足部生物力学和足底负荷的改变。足底负荷包括常压和剪切应力,然而,目前尚无能够同时测量这两个组成部分的鞋内装置。利兹大学研发的足底表面应变分析与映射(STAMPS)系统利用数字图像相关技术(DIC)来测量由可塑性变形鞋垫捕获的应变,以此作为了解步态期间足底负荷的一种方法。使用二维DIC软件逐点捕获累积足底应变和位移数据,但该方法仅限于平面表面的分析。为解决这一问题,已开发出三维仪器和DIC方法并将其应用于STAMPS3D系统,该系统用作一种工具来捕获代表足部足底表面非平面性质的数据。通过一个案例研究来展示STAMPS3D如何测量多维应变,这为改善DFU风险的临床筛查带来了潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ca/12075883/76de2bfe46da/10.1177_09544119251330738-img2.jpg

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