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Shock-Absorbing Effects of Various Padding Conditions in Improving Efficacy of Wrist Guards

机译:各种填充条件对提高护腕效能的减震效果

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摘要

The use of wrist guards has limited efficacy in preventing wrist injuries during falling in many sports activities. The objectives of this study were to measure the ground reaction force of the hand under simulated impact of the forearm and hand complex with different padding conditions of wrist guards and to analyze their impact force attenuation and maximum energy absorption for improved functional efficiency. A total of 15 subjects, wearing a commercial wrist guard, participated in a cable-released hand impact experiment to test four different conditions on the volar aspect of the hand, which include a wrist guard without a volar splint (bare hand), with a volar splint (normal use), with a volar splint and additional viscoelastic polymeric padding, and a volar splint and additional air cell padding. The ground reaction force and acceleration of the hand were measured using a force platform mounted on an anti-vibration table and a miniature accelerometer, respectively. Additional padding on the bare hand could substantially improve the maximum energy absorption by more than 39%, with no differences with each other. However, only the air cell padding could simultaneously improve the impact force attenuation by 32% compared with the bare hand impact without compromising the maximum energy absorption. It is recommended that common wrist guard design should provide more compliant padding in the volar aspect to improve the impact force attenuation through optimal material selection and design.Key Points class="unordered" style="list-style-type:disc">The controversial efficacy of wrist guards in preventing wrist injuries during falling was tested through investigation of their impact force attenuation and maximum energy absorption from the measured ground reaction force of the hand under simulated impact of the forearm and hand complex with four different padding conditions of wrist guards: a wrist guard without a volar splint (bare hand), with a volar splint (normal use), with a volar splint and additional viscoelastic polymeric padding, and a volar splint and additional air cell padding.In general, padding on the bare hand could improve the maximum energy absorption by more than 39%, while only the air cell padding could simultaneously attenuate the peak impact force by 32% without compromising the maximum energy absorption.Common wrist guard design requires more compliant padding in the volar aspect to improve the impact force attenuation, which should be done through optimal material selection and design.
机译:在许多体育活动中,护腕的使用在预防摔倒时手腕受伤方面的功效有限。这项研究的目的是测量在前臂和手部配合物在不同护腕条件下的模拟冲击下手的地面反作用力,并分析其冲击力衰减和最大能量吸收以提高功能效率。共有15位戴着商业护腕的受试者参加了电缆释放的手部冲击实验,以测试手掌侧方面的四种不同状况,其中包括没有手掌夹板(裸手)的护腕。掌骨夹板(正常使用),具有掌骨夹板和附加的粘弹性聚合物填充物,以及掌骨夹板和附加的气室填充物。地面反作用力和手的加速度分别使用安装在防振台和微型加速度计上的测力平台进行测量。裸手上的额外填充可将最大能量吸收率提高39%以上,并且彼此之间没有差异。但是,与裸手冲击相比,只有气囊垫可以同时将冲击力衰减提高32%,而不会影响最大的能量吸收。建议常见的护腕设计应在手掌方面提供更柔顺的填充物,以通过最佳的材料选择和设计来改善冲击力衰减。要点 class =“ unordered” style =“ list-style-type:disc” > <!-list-behavior = unordered prefix-word = mark-type = disc max-label-size = 0-> 通过研究护腕在跌倒过程中防止手腕受伤的争议性功效腕带的四种不同填充条件下,在模拟的前臂和手部复合物的撞击下,从测得的手的地面反作用力中获得的冲击力衰减和最大能量吸收:无手掌夹板(裸手)和手掌夹板的护腕(正常使用),带有手掌夹板和附加的粘弹性聚合物填充物,以及手掌夹板和附加的气室填充物。 通常,裸手填充物可以将最大能量吸收提高39倍以上%,而 常见的护腕设计在手掌方面需要更顺从的衬垫,以改善冲击力的衰减,这应该使气囊的衬垫能同时将峰值冲击力降低32%,而不会损害最大能量吸收。通过最佳的材料选择和设计来完成。

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