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Exploring the Use of Non-Image-Based Ultrasound to Detect the Position of the Residual Femur within a Stump

机译:探索使用非基于图像的超声波来检测残端内股骨的位置

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摘要

A satisfactorily fitted socket interacts dynamically with the stump in order to support body weight, transmit load effectively, enhance dynamic stability, and enable the control and stabilization of the residual limb. The internal dynamics occurring within a socket is important in determining optimal fit. Many measurement and imaging techniques, such as X-rays, have been utilized to investigate the movement of the residual femur within the stump during gait. However, due to associated health risks and costs, none of the current techniques have been extended to clinical prosthetics. The use of B-mode ultrasound has been suggested as a safe and cheap alternative, and has been utilized in previous studies to monitor the motion of the femur. However, the need to create a duplicate socket and time-consuming analysis of the images were obstacles to the system being applied clinically. This study aims to gauge the effectiveness of a non-image based ultrasound system. Here, we determined errors expected from the measurements. Accuracy errors of 2.9 mm to 8.4 mm and reproducibility measurements within a standard deviation of 3.9 mm are reported. We also estimated errors up to 14.4 mm in in-vivo measurements. We think there is potential in developing this technique, and we hope to reduce some technical difficulties such that it can, one day, be easily incorporated into prosthetic fitting.
机译:令人满意地安装的承窝与残肢动态相互作用,以支撑体重,有效地传递负荷,增强动力稳定性并能够控制和稳定残肢。插座内部发生的内部动力学对于确定最佳配合至关重要。许多测量和成像技术(例如X射线)已被用于研究步态期间残肢内残股骨的运动。然而,由于相关的健康风险和成本,当前的技术都没有扩展到临床修复术。 B型超声的使用已被建议作为一种安全且便宜的替代方法,并且在先前的研究中已被用于监测股骨的运动。但是,创建重复的套接字和对图像进行费时的分析的需求阻碍了该系统在临床上的应用。这项研究旨在评估非基于图像的超声系统的有效性。在这里,我们确定了预期的测量误差。报告了2.9 mm至8.4 mm的精度误差和3.9 mm标准偏差内的重现性测量结果。我们还估计了体内测量误差高达14.4毫米。我们认为这种技术有发展的潜力,我们希望减少一些技术上的困难,以便有一天可以轻松地将其整合到假体中。

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  • 作者

    Sook-Yee Chong; Oliver Röhrle;

  • 作者单位
  • 年(卷),期 -1(11),10
  • 年度 -1
  • 页码 e0164583
  • 总页数 22
  • 原文格式 PDF
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