Wang Wanyue, Dounskaia Natalia
Kinesiology Program, Arizona State University, Tempe, AZ 85287, United States.
Kinesiology Program, Arizona State University, Tempe, AZ 85287, United States.
Neuroscience. 2016 Dec 17;339:418-432. doi: 10.1016/j.neuroscience.2016.10.009. Epub 2016 Oct 14.
How gravity influences neural control of arm movements remains under debate. We tested three alternative interpretations suggested by previous research: (1) that muscular control includes two components, tonic which compensates for gravity and phasic which produces the movement; (2) that there is a tendency to exploit gravity to reduce muscle effort; and (3) that there is a tendency to use a trailing pattern of joint control during which either the shoulder or elbow is rotated actively and the other joint rotates predominantly passively, and to exploit gravity for control of the passively rotated joint. A free-stroke drawing task was performed that required production of center-out strokes within a circle while selecting stroke directions randomly. The circle was positioned in the horizontal, sagittal, and frontal plane. The arm joints freely rotated in space. In each plane, the distribution of the strokes across directions was non-uniform. Directional histograms were built and their peaks were used to identify preferred movement directions. The directional preferences were especially pronounced in the two vertical planes. The upward directions were most preferred. To test the three interpretations, we used a kinetic analysis that determined the role of gravitational torque in the production of movement in the preferred directions. The results supported the third interpretation and provided evidence against the first and second interpretation. The trailing pattern has been associated with reduced neural effort for joint coordination, and therefore, we conclude that the major tendency with respect to gravity is to exploit it for simplification of joint coordination.
重力如何影响手臂运动的神经控制仍存在争议。我们测试了先前研究所提出的三种不同解释:(1)肌肉控制包括两个部分,即补偿重力的紧张性部分和产生运动的相位性部分;(2)存在利用重力来减少肌肉用力的倾向;(3)存在使用关节控制的尾随模式的倾向,即在该模式下,肩部或肘部主动旋转,而另一个关节主要被动旋转,并利用重力来控制被动旋转的关节。我们进行了一项自由笔触绘画任务,要求在一个圆内随机选择笔触方向并绘制从圆心向外的笔触。该圆分别位于水平、矢状和冠状平面。手臂关节在空间中自由旋转。在每个平面中,笔触在各个方向上的分布都是不均匀的。我们构建了方向直方图,并利用其峰值来确定偏好的运动方向。方向偏好在两个垂直平面中尤为明显。向上的方向是最受偏好的。为了测试这三种解释,我们进行了一项动力学分析,以确定重力矩在偏好方向运动产生中的作用。结果支持了第三种解释,并提供了反对第一种和第二种解释的证据。尾随模式与减少关节协调所需的神经努力有关,因此,我们得出结论,在重力方面的主要倾向是利用它来简化关节协调。