首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Customized Power Wheelchair Joysticks Made by Three-Dimensional Printing Technology: A Pilot Study on the Environmental Adaptation Effects for Severe Quadriplegia
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Customized Power Wheelchair Joysticks Made by Three-Dimensional Printing Technology: A Pilot Study on the Environmental Adaptation Effects for Severe Quadriplegia

机译:三维印刷技术制造的定制电源轮椅操纵杆:对严重四折痛的环境适应效应的试验研究

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摘要

Background: Power wheelchair joysticks are often available as standardized ready-made products for patients with severe hand dysfunction. However, standardized joysticks have limitations in accommodating the individualized features of hand dysfunctions. Three-dimensional (3D) printing technology has facilitated active research on the development of joysticks that can overcome such limitations. Methods: Four subjects participated in the study to evaluate driving abilities and satisfaction after using the customized joystick for two weeks. Modified power-mobility indoor driving assessment (PIDA), National Aeronautics and Space Administration task load index (NASA-TLX), and psychosocial impact of assistive devices scale (PIADS; Korean version) were employed for evaluation. Results: In patients 1–3, the modified PIDA scores had the highest values in the pre-test and post-test. In patient 4, the modified PIDA score had a higher value in the post-test (mean value = 4) compared to the pre-test (mean value = 3.33). In all patients, the modified PIDA time was lower in the post-test compared to the pre-test. The NASA-TLX and PIADS values indicate that greater satisfaction was achieved through the usage of customized joysticks in the post-test. Conclusions: All patients can improve their power wheelchair driving abilities and achieve greater satisfaction. Clinical Relevance: Three-dimensional printed customized power wheelchair joysticks can offer enhanced driving abilities and satisfaction to patients with limited hand function owing to severe spinal cord injury.
机译:背景:动力轮椅操纵杆通常可用作标准化现成的产品,适用于患有严重手动功能障碍的患者。然而,标准化的操纵杆具有适应手动功能功能的个性化功能的局限性。三维(3D)印刷技术对可以克服此类限制的操纵杆的发展有助于积极研究。方法:在使用定制操纵杆两周后,四项科目参与了研究以评估驾驶能力和满意度。改进的动力移动室内驾驶评估(PIDA),美国国家航空航天局任务负荷指数(NASA-TLX),以及辅助设备规模的心理社会影响(PIADS;韩国版)进行评估。结果:在患者1-3中,改良的PIDA分数具有预测试和后测试中的最高值。与预测试相比(平均值= 3.33)相比,在患者4中,修饰的PIDA评分在后测试后(平均值= 4)具有更高的值。在所有患者中,与预测试相比,测试后的修饰PIDA时间较低。 NASA-TLX和PIADS值表明通过使用后测试中的定制操纵杆来实现更大的满足感。结论:所有患者都可以提高其动力轮椅驾驶能力,实现更大的满足感。临床意义:三维印刷定制电源轮椅操纵杆可以为由于严重的脊髓损伤提供有限的手动功能的患者提供增强的推动能力和满足感。

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