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Organization of physiological tremors and coordination solutions to postural pointing on an uneven stance surface

机译:生理性震颤的组织和协调解决方案,以在不平坦的姿势表面上姿势指向

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摘要

The study investigated the destabilization effect on multi-segment physiological tremors and coordinative control for a postural-suprapostural task under different stance conditions. Twenty volunteers executed postural pointing from a level surface and a seesaw balance board; meanwhile, physiological tremors of the whole postural system and fluctuation movements of fingertip/stance surface were recorded. In reference to level stance, seesaw stance led to much fewer tremor increments of the upper limb and less fluctuation movement of the fingertip than tremor increment of the lower limb and rolling movement of the stance surface. Tremor coupling between the adjacent segments organized differentially with stance surface. In reference to level stance, seesaw stance reinforced tremor coupling of the upper limb but enfeebled the coupling in the arm-lumbar and calf-foot complexes. Stance-related differences in physiological tremors could be explained by characteristic changes in the primary and secondary principal components (PC1 and PC2), with relatively high communality with segment tremors of the lower and upper limbs, respectively. Seesaw stance introduced a prominent 4-8. Hz spectral peak in PC1 and potentiated 1-4. Hz and 8-12. Hz spectral peaks of PC2. Structural reorganization of physiological tremors with stance configuration suggests that seesaw stance involves distinct suprapostural and postural synergies for regulating degree of freedom in joint space.
机译:该研究探讨了在不同姿势条件下,姿势-姿势上的任务对多节生理震荡的失稳作用和协调控制。 20名志愿者从水平地面和跷跷板平衡板上进行姿势指点;同时,记录整个姿势系统的生理震颤和指尖/姿势表面的波动。关于水平姿势,跷跷板姿势比下肢的震颤增加和姿势表面的滚动运动导致上肢的震颤增加少得多,指尖的波动运动少。相邻节段之间的震颤耦合与姿态表面不同。关于水平姿势,跷跷板姿势增强了上肢的震颤耦合,但使手臂-腰部和小腿足复合体的耦合减弱。生理性震颤中与姿态相关的差异可以通过主要和次要主要成分(PC1和PC2)的特征性变化来解释,其中下肢和上肢节段性震颤的社区相对较高。跷跷板的姿态引人注目4-8。 PC1中的Hz频谱峰值,增强1-4。 Hz和8-12。 PC2的Hz频谱峰值。具有姿势配置的生理震颤的结构重组表明,跷跷板姿势涉及明显的姿势上和姿势协同作用,以调节关节空间的自由度。

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