Department of Integrative Physiology, University of Colorado, Boulder, CO 80309-0354, USA.
Gait Posture. 2011 Jun;34(2):265-9. doi: 10.1016/j.gaitpost.2011.05.011. Epub 2011 Jun 12.
Walker-assisted gait is reported to be ∼200% more metabolically expensive than normal bipedal walking. However, previous studies compared different walking speeds. Here, we compared the metabolic power consumption and basic stride temporal-spatial parameters for 10 young, healthy adults walking without assistance and using 2-wheeled (2W), 4-wheeled (4W) and 4-footed (4F) walker devices, all at the same speed, 0.30m/s. We also measured the metabolic power demand for walking without any assistive device using a step-to gait at 0.30m/s, walking normally at 1.25m/s, and for repeated lifting of the 4F walker mimicking the lifting pattern used during 4F walker-assisted gait. Similar to previous studies, we found that the cost per distance walked was 217% greater with a 4F walker at 0.30m/s compared to unassisted, bipedal walking at 1.25m/s. Compared at the same speed, 0.30m/s, using a 4F walker was still 82%, 74%, and 55% energetically more expensive than walking unassisted, with a 4W walker and a 2W walker respectively. The sum of the metabolic cost of step-to walking plus the cost of lifting itself was equivalent to the cost of walking with a 4F walker. Thus, we deduce that the high cost of 4F walker assisted gait is due to three factors: the slow walking speed, the step-to gait pattern and the repeated lifting of the walker.
助行器辅助行走比正常的双足行走代谢消耗高出约 200%。然而,之前的研究比较了不同的行走速度。在这里,我们比较了 10 名年轻健康成年人在相同速度(0.30m/s)下无辅助、使用两轮(2W)、四轮(4W)和四足(4F)助行器行走以及无任何辅助设备的步行动作行走的代谢功率消耗和基本步幅时空参数,速度为 0.30m/s。我们还测量了无任何辅助设备的情况下以 0.30m/s 的步速行走、以 1.25m/s 的正常速度行走以及模拟 4F 助行器辅助行走时使用的提起模式重复提起 4F 助行器的代谢功率需求。与之前的研究类似,我们发现以 0.30m/s 使用 4F 助行器与以 1.25m/s 无辅助双足行走相比,每走一步的成本增加了 217%。在相同速度(0.30m/s)下,与无辅助行走相比,使用 4F 助行器仍然分别增加了 82%、74%和 55%的能量消耗,而使用 4W 助行器和 2W 助行器。步行动作加提起本身的代谢成本总和与使用 4F 助行器行走的成本相当。因此,我们推断 4F 助行器辅助行走的高成本是由于三个因素:行走速度慢、步行动作模式和助行器的重复提起。