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指尖耦合纺锤体信号不有助于减少轻触下的姿势晃动。

Fingertip-Coupled Spindle Signaling Does Not Contribute to Reduce Postural Sway Under Light Touch.

作者信息

Silva Cristiano Rocha, Magalhães Fernando Henrique, Kohn André Fabio

机构信息

Biomedical Engineering Laboratory, Universidade de São Paulo, EPUSP, São Paulo, Brazil.

Neuroscience Program, Universidade de São Paulo, São Paulo, Brazil.

出版信息

Front Physiol. 2019 Aug 22;10:1072. doi: 10.3389/fphys.2019.01072. eCollection 2019.

Abstract

The details of how light touch (LT) of a stable surface reduces postural sway are still not well known. We hypothesized that removal of feedback provided by muscle afferents of the touching fingertip would increase postural sway in standing subjects. Eleven participants stood upright on a force plate with eyes closed and on an unstable surface. The experimental conditions involved two different finger positions: with partial muscle afferents (PMA), which includes sensory information from the fingertip flexor muscles, and no muscle afferents (NMA), without information from either fingertip flexor or extensor muscles. In the control condition, the participants kept the same posture, but with no finger touch (NT). Postural sway in both anteroposterior (AP) and mediolateral (ML) axes were recorded. Results showed that LT decreased all sway quantifiers as compared with the NT condition. The withdrawal of information from the touch finger muscle afferents (NMA condition) did not increase postural sway. Actually, there was a small, albeit statistically significant, decrease in the variability of center of pressure displacement in the AP direction. These results indicate that in some cases, muscle afferent input may either not contribute or even worsen the overall quality of sensory feedback from a given body segment, leading to no improvement or even a slightly decreased performance of the motor control system (evaluated by means of levels of postural sway in the present investigation). The results suggest that non-spindle fingertip afferents provide the bulk of the sensory feedback associated with the fingertip that is touching a ground-referenced object during quiet standing under LT.

摘要

稳定表面的轻触觉(LT)如何减少姿势晃动的细节仍不清楚。我们假设,去除触摸指尖的肌肉传入神经提供的反馈会增加站立受试者的姿势晃动。11名参与者闭着眼睛站在测力板上的不稳定表面上。实验条件包括两种不同的手指位置:有部分肌肉传入神经(PMA),其中包括来自指尖屈肌的感觉信息,以及无肌肉传入神经(NMA),即没有来自指尖屈肌或伸肌的信息。在对照条件下,参与者保持相同姿势,但不进行手指触摸(NT)。记录前后(AP)和内外侧(ML)轴上的姿势晃动。结果表明,与NT条件相比,LT降低了所有晃动量化指标。去除触摸手指肌肉传入神经的信息(NMA条件)并没有增加姿势晃动。实际上,AP方向上压力中心位移的变异性虽小,但在统计学上有显著降低。这些结果表明,在某些情况下,肌肉传入神经输入可能对给定身体节段的整体感觉反馈没有贡献,甚至会使其恶化,导致运动控制系统的性能没有改善甚至略有下降(在本研究中通过姿势晃动水平进行评估)。结果表明,在LT下安静站立时,非梭形指尖传入神经提供了与触摸地面参考物体的指尖相关的大部分感觉反馈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdba/6713998/788b4f6af163/fphys-10-01072-g001.jpg

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