Department of Applied Mechanics, Budapest University of Technology and Economics, Budapest, Hungary.
MTA-BME Lendület Human Balancing Research Group, Budapest, Hungary.
J R Soc Interface. 2021 Mar;18(176):20200956. doi: 10.1098/rsif.2020.0956. Epub 2021 Mar 31.
The relation between balancing performance and reaction time is investigated for human subjects balancing on rolling balance board of adjustable physical parameters: adjustable rolling radius and adjustable board elevation . A well-defined measure of balancing performance is whether a subject can or cannot balance on balance board with a given geometry (, ). The balancing ability is linked to the stabilizability of the underlying two-degree-of-freedom mechanical model subject to a delayed proportional-derivative feedback control. Although different sensory perceptions involve different reaction times at different hierarchical feedback loops, their effect is modelled as a single lumped reaction time delay. Stabilizability is investigated in terms of the time delay in the mechanical model: if the delay is larger than a critical value (critical delay), then no stabilizing feedback control exists. Series of balancing trials by 15 human subjects show that it is more difficult to balance on balance board configuration associated with smaller critical delay, than on balance boards associated with larger critical delay. Experiments verify the feature of the mechanical model that a change in the rolling radius results in larger change in the difficulty of the task than the same change in the board elevation does. The rolling balance board characterized by the two well-defined parameters and can therefore be a useful device to assess human balancing skill and to estimate the corresponding lumped reaction time delay.
可调节滚动半径 和可调节板倾斜度 。平衡性能的一个明确度量标准是主体是否能够在给定几何形状的平衡板上平衡(,)。平衡能力与受延迟比例微分反馈控制的基础两自由度机械模型的稳定性有关。尽管不同的感觉感知在不同的分层反馈回路中涉及不同的反应时间,但它们的影响被建模为单个集中的反应时间延迟。通过机械模型中的时间延迟来研究稳定性:如果延迟大于临界值(临界延迟),则不存在稳定的反馈控制。15 名人类受试者的一系列平衡试验表明,与具有较大临界延迟的平衡板相比,与具有较小临界延迟的平衡板相比,平衡更困难。实验验证了机械模型的一个特征,即滚动半径 的变化比板倾斜度 的相同变化导致任务难度的变化更大。因此,具有两个明确定义参数 和 的滚动平衡板可以成为评估人体平衡技能和估计相应集中反应时间延迟的有用设备。