Coordinative variability and overuse injury.

Joseph Hamill, Christopher Palmer, Richard E A Van Emmerik
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引用次数: 279

Abstract

Overuse injuries are generally defined as a repetitive micro-trauma to tissue. Many researchers have associated particular biomechanical parameters as an indicator of such injuries. However, while these parameters have been reported in single studies, in many instances, it has been difficult to verify these parameters as causative to the injury. We have investigated overuse injuries, such as patella-femoral pain syndrome, using a dynamical systems approach. Using such methods, the importance of the structure of coordinative variability (i.e. the variability of the interaction between segments or joints) becomes apparent. We view coordinative variability as functionally important to the movement and different from end-point or goal variability. Using concepts derived from the work of Bernstein, we conducted studies using a continuous relative phase and/or modified vector coding approaches to investigate the coordinative variability of overuse injuries. Consistently, we have found that the higher variability state of a coordinative structure is the healthy state while the lower variability state is the unhealthy or pathological state. It is clear that very high coordinative variability could also result in injury and that there must be a window of 'higher variability' in which non-injured athletes function. While this finding that coordinative variability is functional has been shown in several studies, it is still not clear if reduced variability contributes to or results from the injury. Studies are currently underway to determine the potential reasons for the reduced variability in injured athletes. Nevertheless, our laboratory believes that this understanding of how joints interact can be important in understanding overuse injuries.

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协调性变异性和过度使用损伤。
过度使用损伤通常被定义为对组织的重复性微创伤。许多研究人员将特定的生物力学参数作为此类损伤的指标。然而,虽然这些参数已在单一研究中报道,但在许多情况下,很难验证这些参数是否是造成损伤的原因。我们已经研究了过度使用损伤,如髌骨-股痛综合征,使用动力系统的方法。使用这种方法,协调变异性结构(即节段或关节之间相互作用的变异性)的重要性变得明显。我们认为协调变异性对运动具有重要的功能,不同于终点或目标变异性。利用Bernstein的工作概念,我们使用连续相对相位和/或修改的矢量编码方法进行了研究,以调查过度使用损伤的协调变异性。一致地,我们发现协调结构的高变异性状态是健康状态,而低变异性状态是不健康或病态状态。很明显,非常高的协调性变异性也可能导致受伤,必须有一个“更高变异性”的窗口,在这个窗口中,未受伤的运动员可以发挥作用。虽然协调性变异性是功能性的这一发现已在几项研究中得到证实,但尚不清楚减少的变异性是造成损伤的原因还是损伤的结果。目前正在进行研究,以确定受伤运动员变异性降低的潜在原因。然而,我们的实验室认为,对关节如何相互作用的理解对于理解过度使用损伤是重要的。
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