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《点数字 II:棘轮假肢手指的机械设计与测试》

The Point Digit II: Mechanical Design and Testing of a Ratcheting Prosthetic Finger.

机构信息

Engineering Plus Program, University of Colorado Boulder, Boulder, CO 80309, USA.

Point Designs LLC, Lafayette, CO 80026, USA.

出版信息

Mil Med. 2021 Jan 25;186(Suppl 1):674-680. doi: 10.1093/milmed/usaa258.

Abstract

INTRODUCTION

People with partial hand loss represent the largest population of upper limb amputees by a factor of 10. The available prosthetic componentry for people with digit loss provide various methods of control, kinematic designs, and functional abilities. Here, the Point Digit II is empirically tested and a discussion is provided comparing the Point Digit II with the existing commercially available prosthetic fingers.

MATERIALS AND METHODS

Benchtop mechanical tests were performed using prototype Point Digit II prosthetic fingers. The battery of tests included a static load test, a static mounting tear-out test, a dynamic load test, and a dynamic cycle test. These tests were implemented to study the mechanisms within the digit and the ability of the device to withstand heavy-duty use once out in the field.

RESULTS

The Point Digit II met or exceeded all geometric and mechanical specifications. The device can withstand over 300 lbs of force applied to the distal phalange and was cycled over 250,000 times without an adverse event representing 3 years of use. Multiple prototypes were utilized across all tests to confirm the ability to reproduce the device in a reliable manner.

CONCLUSIONS

The Point Digit II presents novel and exciting features to help those with partial hand amputation return to work and regain ability. The use of additive manufacturing, unique mechanism design, and clinically relevant design features provides both the patient and clinician with a prosthetic digit, which improves upon the existing devices available.

摘要

简介

部分手部缺失的人群是上肢截肢人群中数量最多的,其比例是其他手部缺失人群的 10 倍。针对手指缺失人群,现有的假肢组件提供了各种控制方法、运动设计和功能能力。本文通过实证研究对 Point Digit II 假肢进行了测试,并对其与现有的商业假肢手指进行了比较。

材料与方法

使用 Point Digit II 假肢原型进行了台式机械测试。该测试包括静态负载测试、静态安装撕裂测试、动态负载测试和动态循环测试。这些测试旨在研究手指内部的机制以及设备在实际应用中承受重载的能力。

结果

Point Digit II 达到或超过了所有的几何和机械规格。该设备能够承受施加在远节指骨上超过 300 磅的力,并且可以循环使用超过 25 万次,没有任何不良事件,代表着 3 年的使用时间。在所有测试中都使用了多个原型,以确认以可靠的方式复制设备的能力。

结论

Point Digit II 具有新颖而令人兴奋的特点,可以帮助部分手部截肢的患者重返工作岗位并恢复能力。增材制造、独特的机械设计和临床相关的设计特点,为患者和临床医生提供了一种假肢手指,其在现有设备的基础上有所改进。

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本文引用的文献

1
Impact of silicone prosthesis on hand function, grip power and grip-force tracking ability after finger amputation.
Prosthet Orthot Int. 2016 Dec;40(6):744-750. doi: 10.1177/0309364615596064. Epub 2015 Aug 4.
3
Consumer design priorities for upper limb prosthetics.
Disabil Rehabil Assist Technol. 2007 Nov;2(6):346-57. doi: 10.1080/17483100701714733.
4
Estimating the prevalence of limb loss in the United States: 2005 to 2050.
Arch Phys Med Rehabil. 2008 Mar;89(3):422-9. doi: 10.1016/j.apmr.2007.11.005.
5
Partial hand amputation and work.
Disabil Rehabil. 2007 Sep 15;29(17):1317-21. doi: 10.1080/09638280701320763.
7
Psycho-social transitions: comparison between reactions to loss of a limb and loss of a spouse.
Br J Psychiatry. 1975 Sep;127:204-10. doi: 10.1192/bjp.127.3.204.

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