Identifying Referent Control Variables Underlying Goal-Directed Arm Movements.

IF 0.9 4区 医学 Q4 NEUROSCIENCES Motor Control Pub Date : 2023-05-24 Print Date: 2023-10-01 DOI:10.1123/mc.2023-0014
Marie-Reine El-Hage, Alexandra Wendling, Mindy F Levin, Anatol G Feldman
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引用次数: 1

Abstract

The referent control theory (RCT) for action and perception is an advanced formulation of the equilibrium-point hypothesis. The RCT suggests that rather than directly specifying the desired motor outcome, the nervous system controls action and perception indirectly by setting the values of parameters of physical and physiological laws. This is done independently of values of kinematic and kinetic variables including electromyographic patterns describing the motor outcome. One such parameter-the threshold muscle length, λ, at which motoneurons of a given muscle begin to be recruited, has been identified experimentally. In RCT, a similar parameter, the referent arm position, R, has been defined for multiple arm muscles as the threshold arm position at which arm muscles can be quiescent but activated depending on the deflection of the actual arm position, Q, from R. Changes in R result in reciprocal changes in the activity of opposing muscle groups. We advanced the explanatory power of RCT by combining the usual biomechanical descriptions of motor actions with the identification of the timing of R underlying arm movements made with reversals in three directions and to three different extents. We found that in all movements, periods of minimization of the activity of multiple muscles could be identified at ∼61%-86% of the reaching extent in each direction. These electromyographic minimization periods reflect the spatial coordinates at which the R and Q overlap during the production of movements with reversals. The findings support the concept of the production of arm movement by shifting R.

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确定目标导向手臂运动的参考控制变量。
动作和感知的指称控制理论是平衡点假说的一个高级公式。随机对照试验表明,神经系统不是直接指定所需的运动结果,而是通过设置物理和生理规律的参数值来间接控制动作和感知。这与运动学和动力学变量的值无关,包括描述运动结果的肌电图模式。一个这样的参数——阈值肌肉长度λ,已经通过实验确定,在该参数下,给定肌肉的运动神经元开始被募集。在RCT中,一个类似的参数,参考手臂位置R,已被定义为多个手臂肌肉的阈值手臂位置,在该位置,手臂肌肉可以静止,但取决于实际手臂位置Q相对于R的偏转而被激活。R的变化导致相对肌群的活动发生相互变化。我们通过将运动动作的常见生物力学描述与识别R在三个方向和三个不同程度上逆转的潜在手臂运动的时间相结合,提高了RCT的解释力。我们发现,在所有运动中,多块肌肉活动最小化的时间段可以确定为各个方向达到范围的~61%-86%。这些肌电图最小化周期反映了在产生具有反转的运动过程中R和Q重叠的空间坐标。这些发现支持了通过移位R来产生手臂运动的概念。
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来源期刊
Motor Control
Motor Control 医学-神经科学
CiteScore
1.80
自引率
9.10%
发文量
48
审稿时长
>12 weeks
期刊介绍: Motor Control (MC), a peer-reviewed journal, provides a multidisciplinary examination of human movement across the lifespan. To keep you abreast of current developments in the field of motor control, it offers timely coverage of important topics, including issues related to motor disorders. This international journal publishes many types of research papers, from clinical experimental to modeling and theoretical studies. These papers come from such varied disciplines as biomechanics, kinesiology, neurophysiology, neuroscience, psychology, physical medicine, and rehabilitation. Motor Control, the official journal of the International Society of Motor Control, is designed to provide a multidisciplinary forum for the exchange of scientific information on the control of human movement across the lifespan, including issues related to motor disorders. Motor Control encourages submission of papers from a variety of disciplines including, but not limited to, biomechanics, kinesiology, neurophysiology, neuroscience, psychology, physical medicine, and rehabilitation. This peer-reviewed journal publishes a wide variety of types of research papers including clinical experimental, modeling, and theoretical studies. To be considered for publication, papers should clearly demonstrate a contribution to the understanding of control of movement. In addition to publishing research papers, Motor Control publishes review articles, quick communications, commentaries, target articles, and book reviews. When warranted, an entire issue may be devoted to a specific topic within the area of motor control.
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