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APAs Constraints to Voluntary Movements: The Case for Limb Movements Coupling

机译:APA对自愿运动的限制:肢体运动耦合的情况

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When rhythmically moving two limbs in either the same or in opposite directions, one coupling mode meets constraints that are absent in the other mode. Isodirectional (ISO) flexion-extensions of the ipsilateral hand and foot can be easily performed with either the hand prone or supine. Instead, antidirectional (ANTI) movements require attentive effort and irresistibly tend to reverse into ISO when frequency increases. Experimental evidence indicates that the direction dependent easy-difficult dichotomy is caused by interference of the anticipatory postural commands associated to movements of one limb with voluntary commands to the other limb. Excitability of the resting wrist muscles is subliminally modulated at the period of ipsilateral foot oscillations, being phase-opposite in the antagonists and distributed so as to facilitate ISO and obstacle ANTI coupling of the hand (either prone or supine) with the foot. Modulation is driven by cortical signals dispatched to the forearm simultaneously with the voluntary commands moving the foot. If right foot oscillations are performed when standing on the left foot with the right hand touching a fixed support, the subliminal excitability modulation is replaced by overt contractions of forearm muscles conforming the APAs features. This suggests that during hand-foot ANTI coupling the voluntary commands to forearm muscles are contrasted by APAs commands of opposite sign linked to foot oscillations. Correlation between the easy-difficult dichotomy and the APAs distribution is also found in coupled adduction-abduction of the arms or hands in the transverse plane and in coupled flexion-extension of the arms in the parasagittal plane. In all these movements, APAs commands linked to the movement of each limb reach the motor pathways to the contralateral muscles homologous to the prime movers and can interfere during coupling with their voluntary activation. APAs are also generated in postural muscles of trunk and lower limbs and size-increase when the movement frequency is incremented. The related increase in postural effort apparently contributes in destabilizing the difficult coupling mode. Motor learning may rely upon more effective APAs. APAs and focal contraction are entangled within the same voluntary action. Yet, neural diseases may selectively impair APAs, which represent a potential target for rehabilitation.
机译:当有节奏地沿相同或相反方向移动两个肢体时,一种耦合模式会遇到另一种模式所不存在的约束。同侧手和脚的同向(ISO)屈伸可以通过俯卧或仰卧轻松进行。取而代之的是,方向性(ANTI)运动需要认真努力,并且当频率增加时,不可避免地会趋向于反转为ISO。实验证据表明,与方向相关的难易二分法是由与一个肢体的运动相关的预期姿势命令的干扰与对另一肢体的自愿命令的干扰引起的。在同侧足部振荡期间,对腕部静息肌的兴奋性进行了潜移默化的调节,在拮抗剂中相位相反,并且分布均匀,以便于手(俯卧或仰卧)与脚的ISO和障碍物ANTI耦合。调制由发送到前臂的皮层信号驱动,同时自愿命令移动脚。如果站立时左脚站立,右手接触固定支撑物时发生右脚振动,则前臂下兴奋性调节将被符合APAs功能的前臂肌肉明显收缩所取代。这表明在手-脚ANTI耦合过程中,将自愿命令与前臂肌肉进行对比的是与足部振动相关的相反符号的APA命令。容易困难的二分法与APAs分布之间也存在相关关系,这在臂或手在横向平面中的耦合内收-内收和在矢状旁平面中臂的耦合屈伸中也发现。在所有这些运动中,与每个肢体运动相关的APA命令到达与原动力同源的对侧肌肉的运动路径,并且在其主动激活的耦合过程中可能会发生干扰。在运动频率增加时,躯干和下肢的姿势肌肉中也会产生APA,并且APA也会增加。姿势努力的相关增加显然有助于使困难的耦合模式不稳定。运动学习可能依赖更有效的APA。 APA和局部收缩缠绕在同一自愿动作中。然而,神经疾病可能会选择性地损害APA,这代表了康复的潜在目标。

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