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Quantification of transhumeral prosthetic socket residual limb interface movement using motion capture and a slip detection sensor.

机译:使用运动捕捉和滑动检测传感器对肱骨假体窝残肢界面运动进行量化。

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摘要

Current literature focusing on the prosthetic socket is limited by measurement techniques and modeling assumptions, leading to a limited understanding of the forces and motions occurring between the residual limb and prosthesis and how they can be used to influence socket design and fitting. Prosthetic socket fitting and prescription would benefit from an elegant method for comparing socket designs. This dissertation focuses on the development and implementation of a 3D motion capture model and a Slip Detection Sensor to quantify rotations and translations at the prosthetic socket-residual limb interface. The 3D motion capture model defines the residual limb bone position inside the prosthetic socket which allows for measurement of the movement occurring at the prosthetic socket interface. The Slip Detection Sensor is an optoelectronic sensor embedded into the prosthetic socket wall to measure the amount of socket slip occurring between the socket wall and the residual limb skin surface. The motion capture model and Slip Detection Sensor were used to measure motion at the socket interface of transhumeral amputees during activities of daily living. Data were collected on six transhumeral amputees in the University of South Florida's (USF) motion analysis laboratory. One of the participants completed the collection procedures twice using two different suspension systems (pin locking versus no pin locking) within the same socket. An eight camera Vicon (Oxord, UK) motion capture system was used to collect kinematic data for each participant during the repetition of a series of range of motion (RoM) and activities of daily living (ADL). The RoM tasks included shoulder flexion/extension, shoulder abduction/adduction, shoulder rotation, and elbow flexion. The ADL tasks included a bilateral and unilateral lifting task at various weight increments, modified box and blocks test, folding a towel, and walk and carry a gallon jug of water. The impact of donning the prosthesis on the participant's RoM and the amount of socket movement during the ADL tasks was analyzed. The results show that the participant's shoulder RoM significantly decreased while wearing their prosthesis compared to when they were not wearing their prosthesis. The anterior-posterior tilt, medial-lateral tilt, and socket vertical translation were more directly correlated with the amount of residual limb movement than with the force acting on the prosthetic hand. Socket slip was most directly correlated with the force acting on the prosthetic hand. The results also show that the amount of translation was reduced when the pin locking suspension was used compared to when it wasn't for the individual participant who used both suspension systems within the same socket. The motion capture data were used to determine the amount of socket movement during activities of daily living while avoiding many of the limitations of other socket interface studies. The Slip Detection Sensor provided experimental data on the amount of slip occurring between the residual limb skin surface and socket wall. This method seems to be a useful tool for evaluating socket performance in terms of movement. Ultimately, socket interface movement data can be used to providing clinicians with quantitative results of a good socket fit to aid in the socket fitting and prescription process and incorporated into adjustable interfaces. Collection of data on more participants with various socket types is needed to make more general conclusions.
机译:当前关于假牙窝的文献受到测量技术和建模假设的限制,导致对残肢和假肢之间发生的力和运动以及如何使用它们来影响牙窝设计和安装的了解有限。修复性的承窝配件和处方将受益于比较承窝设计的优雅方法。本论文着重于3D运动捕捉模型和滑动检测传感器的开发与实现,以量化假牙窝-残肢界面的旋转和平移。 3D运动捕获模型定义了假牙窝内部的残留肢体骨骼位置,从而可以测量假牙窝界面处发生的运动。滑移检测传感器是一种光电传感器,嵌入到假体窝壁中,用于测量在窝壁和四肢残余皮肤表面之间发生的窝滑量。运动捕获模型和滑动检测传感器用于在日常生活活动期间测量经肱骨截​​肢者插口接口处的运动。数据是在南佛罗里达大学(USF)运动分析实验室中收集的六个经肱骨截肢者的数据。一位参与者在同一插座内使用两个不同的悬挂系统(销钉锁定与无销钉锁定)完成了两次收集程序。在重复一系列运动范围(RoM)和日常生活活动(ADL)的过程中,使用了八个摄像头的Vicon(英国Oxord)运动捕捉系统收集每个参与者的运动学数据。 RoM的任务包括肩屈/伸展,肩外展/内收,肩旋转和肘屈。 ADL任务包括以不同的重量增量进行双边和单方面的举升任务,改进的箱盒测试,折叠毛巾以及行走和携带一加仑水罐。分析了在ADL任务过程中戴上假体对参与者的RoM和插槽移动量的影响。结果显示,与不佩戴假体的参与者相比,佩戴假体的参与者的肩部RoM显着下降。前-后倾斜,内侧-外侧倾斜和承窝垂直平移与残余肢体运动的量更直接相关,而不是与假手作用的力相关。承窝滑移与假肢上的作用力最直接相关。结果还显示,与不使用在同一插座中同时使用两个悬架系统的单个参与者相比,使用销钉锁定悬架时的平移量有所减少。运动捕捉数据用于确定日常生活活动期间的插座移动量,同时避免了其他插座接口研究的许多限制。滑移检测传感器提供了有关肢体剩余皮肤表面和窝壁之间发生的滑移量的实验数据。该方法似乎是用于评估插槽性能的有用工具。最终,承窝接口移动数据可用于为临床医生提供良好承窝配合的定量结果,以帮助承窝配合和处方过程并将其并入可调接口中。需要收集更多有关具有各种套接字类型的参与者的数据,以得出更一般的结论。

著录项

  • 作者

    Wernke, Matthew Michael.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Engineering Biomedical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:56

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