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颈部肌肉振动改变与基于本体感觉任务的运动技能习得相关的小脑处理过程。

Neck Muscle Vibration Alters Cerebellar Processing Associated with Motor Skill Acquisition of a Proprioceptive-Based Task.

作者信息

Tabbert Hailey, Ambalavanar Ushani, Murphy Bernadette

机构信息

Faculty of Health Sciences, Ontario Tech University, Oshawa, ON L1G 0C5, Canada.

出版信息

Brain Sci. 2023 Oct 4;13(10):1412. doi: 10.3390/brainsci13101412.

Abstract

Experimentally induced neck fatigue and neck pain have been shown to impact cortico-cerebellar processing and sensorimotor integration, assessed using a motor learning paradigm. Vibration specifically impacts muscle spindle feedback, yet it is unknown whether transient alterations in neck sensory input from vibration impact these neural processing changes following the acquisition of a proprioceptive-based task. Twenty-five right-handed participants had electrical stimulation over the right median nerve to elicit short- and middle-latency somatosensory evoked potentials (SEPs) pre- and post-acquisition of a force matching tracking task. Following the pre-acquisition phase, controls (CONT, = 13, 6 F) received 10 min of rest and the vibration group (VIB, = 12, 6 F) received 10 min of 60 Hz vibration on the right sternocleidomastoid and left cervical extensors. Task performance was measured 24 h later to assess retention. Significant time by group interactions occurred for the N18 SEP peak, 21.77% decrease in VIB compared to 58.74% increase in CONT (F = 6.475, = 0.018, n = 0.220), and the N24 SEP peak, 16.31% increase in VIB compared to 14.05% decrease in CONT (F = 5.787, = 0.025, n = 0.201). Both groups demonstrated improvements in motor performance post-acquisition (F = 52.812, < 0.001, n = 0.697) and at retention (F = 35.546, < 0.001, n = 0.607). Group-dependent changes in the SEP peaks associated with cerebellar input (N18) and cerebellar processing (N24) suggests that an altered proprioceptive input from neck vibration impacts cerebellar pathways.

摘要

实验性诱发的颈部疲劳和颈部疼痛已被证明会影响皮质-小脑处理和感觉运动整合,这是通过运动学习范式进行评估的。振动特别会影响肌梭反馈,但尚不清楚来自振动的颈部感觉输入的短暂变化是否会影响基于本体感觉任务习得后的这些神经处理变化。25名右利手参与者在获取力匹配跟踪任务之前和之后,接受右侧正中神经的电刺激以引出短潜伏期和中潜伏期体感诱发电位(SEP)。在获取前阶段之后,对照组(CONT,n = 13,6名女性)休息10分钟,振动组(VIB,n = 12,6名女性)在右侧胸锁乳突肌和左侧颈伸肌上接受10分钟的60赫兹振动。24小时后测量任务表现以评估记忆保持情况。对于N18 SEP波峰,出现了显著的组间时间交互作用,VIB组下降了21.77%,而CONT组增加了58.74%(F = 6.475,p = 0.018,η² = 0.220);对于N24 SEP波峰,VIB组增加了16.31%,而CONT组下降了14.05%(F = 5.787,p = 0.025,η² = 0.201)。两组在获取后(F = 52.812,p < 0.001,η² = 0.697)和记忆保持时(F = 35.546,p < 0.001,η² = 0.607)的运动表现均有改善。与小脑输入(N18)和小脑处理(N24)相关的SEP波峰的组依赖性变化表明,来自颈部振动的改变的本体感觉输入会影响小脑通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac5/10605749/f7cefa80415d/brainsci-13-01412-g001.jpg

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