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Do Postures of Distal Effectors Affect the Control of Actions of Other Distal Effectors? Evidence for a System of Interactions between Hand and Mouth

机译:远端效应器的姿势会影响其他远端效应器的动作控制吗?手和口之间相互作用系统的证据

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摘要

The present study aimed at determining whether, in healthy humans, postures assumed by distal effectors affect the control of the successive grasp executed with other distal effectors. In experiments 1 and 2, participants reached different objects with their head and grasped them with their mouth, after assuming different hand postures. The postures could be implicitly associated with interactions with large or small objects. The kinematics of lip shaping during grasp varied congruently with the hand posture, i.e. it was larger or smaller when it could be associated with the grasping of large or small objects, respectively. In experiments 3 and 4, participants reached and grasped different objects with their hand, after assuming the postures of mouth aperture or closure (experiment 3) and the postures of toe extension or flexion (experiment 4). The mouth postures affected the kinematics of finger shaping during grasp, that is larger finger shaping corresponded with opened mouth and smaller finger shaping with closed mouth. In contrast, the foot postures did not influence the hand grasp kinematics. Finally, in experiment 5 participants reached-grasped different objects with their hand while pronouncing opened and closed vowels, as verified by the analysis of their vocal spectra. Open and closed vowels induced larger and smaller finger shaping, respectively. In all experiments postures of the distal effectors induced no effect, or only unspecific effects on the kinematics of the reach proximal/axial component. The data from the present study support the hypothesis that there exists a system involved in establishing interactions between movements and postures of hand and mouth. This system might have been used to transfer a repertoire of hand gestures to mouth articulation postures during language evolution and, in modern humans, it may have evolved a system controlling the interactions existing between speech and gestures.
机译:本研究旨在确定在健康人中,远端效应器采取的姿势是否会影响对其他远端效应器执行的连续抓握的控制。在实验1和2中,参与者在采取不同的手势之后,用头碰到不同的对象并用嘴抓住它们。姿势可能与与大型或小型对象的交互隐式关联。抓握过程中嘴唇塑形的运动学与手的姿势一致,即当分别与抓握大或小物体有关时,它的大小会变大或变小。在实验3和4中,参与者假设嘴巴张开或闭合的姿势(实验3)和脚趾伸展或屈曲的姿势(实验4)后,用手抓住并抓住了不同的对象。嘴部姿势会影响抓握过程中手指塑形的运动学,即较大的手指塑形对应于张开的嘴,而较小的手指塑形对应于闭口。相反,脚的姿势不影响手握运动。最终,在实验中,有5名参与者用双手抓住了不同的物体,同时发出了打开和关闭的元音,这通过对他们的声谱分析进行了验证。打开和关闭的元音分别引起较大和较小的手指变形。在所有实验中,远端效应器的姿势对触及近端/轴向组件的运动学均无影响,或仅引起非特异性影响。来自本研究的数据支持以下假设:存在一种建立手和口的动作与姿势之间的相互作用的系统。在语言发展过程中,该系统可能已被用来将手势库转换为口部发音姿势,并且在现代人类中,它可能已发展为控制语音和手势之间存在的交互作用的系统。

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