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A Framework for Measuring the Time-Varying Shape and Full-Field Deformation of Residual Limbs Using 3-D Digital Image Correlation

机译:使用3D数字图像相关性测量残肢的时变形状和全场变形的框架

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Effective prosthetic socket design following lower limb amputation depends upon the accurate characterization of the shape of the residual limb as well as its volume and shape fluctuations. Objective: This study proposes a novel framework for the measurement and analysis of residual limb shape and deformation, using a high-resolution and low-cost system. Methods: A multi-camera system was designed to capture sets of simultaneous images of the entire residuum surface. The images were analyzed using a specially developed open-source three-dimensional digital image correlation (3D-DIC) toolbox, to obtain the accurate time-varying shapes as well as the full-field deformation and strain maps on the residuum skin surface. Measurements on a transtibial amputee residuum were obtained during knee flexions, muscle contractions, and swelling upon socket removal. Results: It was demonstrated that 3D-DIC can be employed to quantify with high resolution time-varying residuum shapes, deformations, and strains. Additionally, the enclosed volumes and cross-sectional areas were computed and analyzed. Conclusion: This novel low-cost framework provides a promising solution for the in vivo evaluation of residuum shapes and strains, as well as has the potential for characterizing the mechanical properties of the underlying soft tissues. Significance: These data may be used to inform data-driven computational algorithms for the design of prosthetic sockets, as well as of other wearable technologies mechanically interfacing with the skin.
机译:下肢截肢后有效的假体承窝设计取决于残肢形状及其体积和形状波动的准确表征。目的:本研究提出了一种高分辨率和低成本系统,用于测量和分析残肢形状和变形的新框架。方法:设计了多摄像头系统来捕获整个残留表面的同时图像集。使用专门开发的开源三维数字图像相关(3D-DIC)工具箱对图像进行分析,以获得准确的随时间变化的形状以及残留皮肤表面上的全场变形和应变图。在膝关节屈曲,肌肉收缩和拔除窝后肿胀期间获得对胫骨截肢者残骨的测量。结果:证明了3D-DIC可用于定量分析随时间变化的残留物形状,变形和应变。另外,对封闭的体积和横截面积进行了计算和分析。结论:这种新颖的低成本框架为体内评估残渣的形状和应变提供了一个有前途的解决方案,并且具有表征潜在软组织机械特性的潜力。启示:这些数据可用于告知数据驱动的计算算法,以设计假牙套以及与皮肤机械连接的其他可穿戴技术。

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