Pai Y C, Iqbal K
Programs in Physical Therapy, Northwestern University Medical School, Chicago, IL 60611-2814, USA.
J Biomech. 1999 Aug;32(8):779-86. doi: 10.1016/s0021-9290(99)00074-3.
Slipping during various kinds of movement often leads to potentially dangerous incidents of falling. The purpose of this study was to determine whether there was evidence to support the theory that movement strategies could be used by individuals to regain stability during an episode of slipping and whether forced sliding from a moving platform accurately simulated the effect of slipping on stability and balance. A single-link-plus-foot biomechanical model was used to mathematically simulate base of support (BOS) translation and body segment rotation during movement termination in sagittal plane. An optimization routine was used to determine region of stability [defined at given COM locations as the feasible range of horizontal velocities of the center of mass (COM) of human subject that can be reduced to zero with respect to the BOS while still allowing the COM to traverse within the BOS limits]. We found some 30% overlap in the region of stability for slipping and non-slipping conditions. This finding supports the theory that movement strategies can be sought for restoring stability and balance even if slipping unexpectedly occurs. We also found that forced sliding produces effects on stability that are similar to those of slipping, indicated by over 50% overlap in the regions of stability for the two conditions. In addition, forced sliding has distinctive effects on stability, including a "shift" of the region of stability extended beyond the BOS in the direction of sliding. These findings may provide quantifiable guidance for balance training aimed at reducing fall incidents under uncertain floor surface conditions.
在各种运动过程中滑倒往往会导致潜在的危险摔倒事件。本研究的目的是确定是否有证据支持这样一种理论,即个体可以运用运动策略在滑倒过程中重新获得稳定性,以及从移动平台上强制滑动是否能准确模拟滑倒对稳定性和平衡的影响。使用单连杆加足部生物力学模型在矢状面内对运动终止过程中的支撑面(BOS)平移和身体节段旋转进行数学模拟。采用优化程序来确定稳定区域[在给定的质心(COM)位置定义为人体受试者质心水平速度的可行范围,该范围相对于支撑面可减小至零,同时仍允许质心在支撑面限制范围内移动]。我们发现滑倒和未滑倒条件下的稳定区域有大约30%的重叠。这一发现支持了这样一种理论,即即使意外发生滑倒,也可以寻求运动策略来恢复稳定性和平衡。我们还发现,强制滑动对稳定性产生的影响与滑倒相似,这两种条件下稳定区域的重叠超过50%表明了这一点。此外,强制滑动对稳定性有独特的影响,包括稳定区域在滑动方向上超出支撑面的“偏移”。这些发现可能为旨在减少不确定地面条件下摔倒事件的平衡训练提供可量化的指导。