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小腿假肢接受腔适配:澳大利亚假肢技师对主要挑战、管理策略以及工作流程和技术创新机会的看法。

Transtibial prosthetic socket fitting: Australian prosthetist perspectives on primary challenges, management strategies, and opportunities for workflow and technological innovation.

机构信息

School of Mechanical, Materials and Mechatronic Engineering, University of Wollongong, Wollongong, New South Wales, Australia.

School of Health Sciences, University of New South Wales, Sydney, New South Wales, Australia.

出版信息

Prosthet Orthot Int. 2023 Apr 1;47(2):194-203. doi: 10.1097/PXR.0000000000000174. Epub 2022 Sep 15.

Abstract

BACKGROUND

Following transtibial amputation, a custom-built socket is the most common interface between the prosthesis and residual limb. Desire from both prosthetists and prosthesis users for improved socket fitting processes have been well documented. However, there is currently limited information available about prosthetists' experiences of how prosthetic manufacturing workflow can contribute to socket fit problems.

OBJECTIVES

This study aims to determine how socket fit problems are currently detected and managed by prosthetists and to identify challenges, management strategies, and opportunities for workflow and technological innovation during prosthesis manufacture and socket fitting.

STUDY DESIGN

Mixed-method (quantitative and qualitative) survey.

METHODS

An online survey was developed and piloted in consultation with members of the Australian Orthotic Prosthetic Association. The final 25-question survey was distributed through their membership database. Mixed methods were used to analyze survey items. Qualitative items were grouped and coded under themes relating to challenges, management strategies, and opportunities. Quantitative data were analyzed using nonparametric descriptive methods.

RESULTS

Twenty-three respondents with a range of experience completed the survey. Seven of eight major Australian states/territories were represented. Primary workflow stages presenting challenges with limited strategies/solutions available to the prosthetists were roll-on liner selection, mold or cast modifications, communication with the client, and check socket fitting. Suggested solutions included improved socket-limb interface monitoring technology.

CONCLUSIONS

This study provides the first insights into prosthetist-identified challenges and limitations at different stages of the socket workflow and presents a starting point for more targeted research into innovation that may assist in these processes.

摘要

背景

在经过胫骨截肢手术后,定制的接受腔是假肢与残肢之间最常见的接口。假肢技师和假肢使用者都希望改进接受腔适配流程,这一点已经得到了充分的证明。然而,目前关于假肢制造流程如何影响接受腔适配问题,可供参考的信息十分有限。

目的

本研究旨在确定假肢技师目前如何发现和处理接受腔适配问题,并确定在假肢制造和接受腔适配过程中,工作流程和技术创新的挑战、管理策略和机会。

研究设计

混合方法(定量和定性)调查。

方法

与澳大利亚矫形假肢协会的成员协商后,开发并试点了在线调查。最终的 25 个问题调查通过他们的会员数据库进行分发。采用混合方法分析调查项目。定性项目根据与挑战、管理策略和机会相关的主题进行分组和编码。使用非参数描述性方法分析定量数据。

结果

23 名具有不同经验的受访者完成了调查。来自澳大利亚 8 个主要州/地区中的 7 个。在接受腔工作流程的主要阶段中,存在着一些挑战,而假肢技师可用的策略/解决方案有限,这些阶段包括滚压式衬里的选择、模具或铸型的修改、与客户的沟通以及检查接受腔适配。建议的解决方案包括改进接受腔-肢体界面监测技术。

结论

本研究首次提供了假肢技师在接受腔工作流程不同阶段识别出的挑战和限制的见解,并为更有针对性地研究可能有助于这些流程的创新提供了一个起点。

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