首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Variability in bimanual wheelchair propulsion: consistency of two instrumented wheels during handrim wheelchair propulsion on a motor driven treadmill
【24h】

Variability in bimanual wheelchair propulsion: consistency of two instrumented wheels during handrim wheelchair propulsion on a motor driven treadmill

机译:双向轮椅推进的可变性:在电动跑步机上的手轮椅推进过程中,两个仪表轮的一致性

获取原文
           

摘要

Background Handrim wheelchair propulsion is a complex bimanual motor task. The bimanually applied forces on the rims determine the speed and direction of locomotion. Measurements of forces and torques on the handrim are important to study status and change of propulsion technique (and consequently mechanical strain) due to processes of learning, training or the wheelchair configuration. The purpose of this study was to compare the simultaneous outcomes of two different measurement-wheels attached to the different sides of the wheelchair, to determine measurement consistency within and between these wheels given the expected inter- and intra-limb variability as a consequence of motor control. Methods Nine able-bodied subjects received a three-week low-intensity handrim wheelchair practice intervention. They then performed three four-minute trials of wheelchair propulsion in an instrumented hand rim wheelchair on a motor-driven treadmill at a fixed belt speed. The two measurement-wheels on each side of the wheelchair measured forces and torques of one of the two upper limbs, which simultaneously perform the push action over time. The resulting data were compared as direct output using cross-correlation on the torque around the wheel-axle. Calculated push characteristics such as power production and speed were compared using an intra-class correlation. Results Measured torque around the wheel axle of the two measurement-wheels had a high average cross-correlation of 0.98 (std=0.01). Unilateral mean power output over a minute was found to have an intra-class correlation of 0.89 between the wheels. Although the difference over the pushes between left and right power output had a high variability, the mean difference between the measurement-wheels was low at 0.03 W (std=1.60). Other push characteristics showed even higher ICC’s (>0.9). Conclusions A good agreement between both measurement-wheels was found at the level of the power output. This indicates a high comparability of the measurement-wheels for the different propulsion parameters. Data from both wheels seem suitable to be used together or interchangeably in experiments on motor control and wheelchair propulsion performance. A high variability in forces and timing between the left and right side were found during the execution of this bimanual task, reflecting the human motor control process.
机译:背景技术Handrim轮椅推进是一项复杂的双手运动任务。轮缘上的双向作用力决定运动的速度和方向。测量扶手上的力和扭矩对于研究由于学习,训练或轮椅配置过程而引起的状态和推进技术的变化(以及随之而来的机械应变)非常重要。这项研究的目的是比较两个安装在轮椅两侧的不同测量轮的同时测量结果,在给定的预期肢体间和运动内肢体可变性的情况下,确定两个轮子之间和之间的测量一致性。控制。方法9名身体健康的受试者接受了为期三周的低强度手圈轮椅练习干预。然后,他们以固定的皮带速度在电动跑步机上的带工具手圈轮椅上进行了三个四分钟的轮椅推进试验。轮椅两​​侧的两个测量轮测量了两个上肢之一的力和扭矩,它们随时间同时执行推力动作。使用围绕轮轴的扭矩的互相关,将所得数据作为直接输出进行比较。使用类内相关性比较了计算的推力特性,例如功率产生和速度。结果在两个测量轮的轮轴周围测得的转矩具有0.98的高平均互相关(std = 0.01)。发现一分钟内单侧平均功率输出在车轮之间具有0.89的类内相关性。尽管左右功率输出之间的推压差具有较大的可变性,但测量轮之间的平均差仍很低,仅为0.03 W(std = 1.60)。其他推送特性则显示出更高的ICC(> 0.9)。结论在功率输出水平上,两个测量轮之间有很好的一致性。这表明测量轮对于不同的推进参数具有很高的可比性。来自两个车轮的数据似乎适合在电动机控制和轮椅推进性能的实验中一起使用或互换使用。在执行此双向任务期间,发现左侧和右侧之间的力和时序有很大差异,这反映了人的运动控制过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号