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静态双手操作任务中的肢体间和肢体内部力量协调。

Interlimb and within limb force coordination in static bimanual manipulation task.

作者信息

Jaric Slobodan, Collins Jeffrey J, Marwaha Rahul, Russell Elizabeth

机构信息

Department of Health, Nutrition, and Exercise Sciences, Human Performance Lab, University of Delaware, 547 S. College Av., Newark, DE 19716, USA.

出版信息

Exp Brain Res. 2006 Jan;168(1-2):88-97. doi: 10.1007/s00221-005-0070-6. Epub 2005 Aug 3.

Abstract

The aim of the study was to compare the coordination of hand grip (G) and load force (a force that tends to cause slippage of a grasped object; L) in static bimanual manipulation tasks with the same data obtained from the similar dynamic tasks. Based on the previous findings obtained from dynamic tasks, it was hypothesized that an increase in the rate of L change would be predominantly associated with a decrease in the coordination of the within limb forces (coordination of G and L of each hand as assessed through the correlation coefficients), while a decrease in coordination of interlimb forces (between two G and two L) will be less pronounced. Regarding the pattern of modulation of G, the same increase in L frequency was also expected to be associated with a decrease in G gain and an increase in G offset (as assessed by slope and intercept of the regression lines obtained from G to L diagrams, respectively), as well as with an increase in average G/L ratio. Subjects exerted oscillatory isometric L profiles by simultaneous pulling out two handles of an externally fixed device under an exceptionally wide range of L frequencies (0.67-3.33 Hz). The results demonstrated relatively high correlation coefficients between both the interlimb and within limb forces that were only moderately affected under sub-maximal L frequencies. Furthermore, the hypothesized changes in G gain and offset appeared only under the highest L frequency, while the G/L ratio remained unaffected. We conclude that, when compared with the dynamic tasks based on the unconstrained movements of hand-held objects that produce similar pattern of L change, the static manipulation tasks demonstrate a consistent and highly coordinated pattern of bilateral G and L under a wide range of frequencies. However, the neural mechanisms that play a role in the revealed differences need further elucidation.

摘要

本研究的目的是将静态双手操作任务中手握力(G)与负载力(一种倾向于导致被抓握物体滑动的力;L)的协调性,与从类似动态任务中获得的相同数据进行比较。基于先前从动态任务中获得的结果,研究假设L变化率的增加将主要与肢体内力协调性的降低相关(通过相关系数评估每只手的G和L的协调性),而肢体间力(两个G和两个L之间)协调性的降低则不太明显。关于G的调制模式,同样预期L频率的增加也会与G增益的降低和G偏移的增加相关(分别通过从G到L图获得的回归线的斜率和截距评估),以及与平均G/L比值的增加相关。受试者通过同时拉动外部固定装置的两个手柄,在非常宽的L频率范围(0.67 - 3.33 Hz)内施加振荡等长L曲线。结果表明,肢体间力和肢体内力之间的相关系数相对较高,在次最大L频率下仅受到适度影响。此外,假设的G增益和偏移变化仅在最高L频率下出现,而G/L比值保持不变。我们得出结论,与基于手持物体无约束运动产生类似L变化模式的动态任务相比,静态操作任务在广泛的频率范围内表现出一致且高度协调的双侧G和L模式。然而,在揭示的差异中起作用的神经机制需要进一步阐明。

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