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拮抗肌对持续振动期间及之后会发生关节位置觉的短期适应。

Short-Term Adaptation of Joint Position Sense Occurs during and after Sustained Vibration of Antagonistic Muscle Pairs.

作者信息

Gonzales Tomas I, Goble Daniel J

机构信息

School of Exercise and Nutritional Sciences, San Diego State University , San Diego, CA , USA ; Motor Control Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, MI , USA.

School of Exercise and Nutritional Sciences, San Diego State University , San Diego, CA , USA.

出版信息

Front Hum Neurosci. 2014 Nov 4;8:896. doi: 10.3389/fnhum.2014.00896. eCollection 2014.

Abstract

Proprioception is critical for the control of many goal-directed activities of daily living. While contributions from skin and joint receptors exist, the muscle spindle is thought to play an important role in allowing accurate judgments of limb position and movement to occur. The discharges elicited from muscle spindles can be degraded by simultaneous agonist-antagonist tendon vibration, causing proprioception to be distorted. Despite this, changes in limb perception that may result from sensory adaptation to this stimulus remain misunderstood. The purpose of this study was, therefore, to investigate short-term proprioceptive adaptation resulting from vibration of antagonistic muscle pairs. We measured elbow joint position sense in 21 healthy young adults while 80 Hz vibration was applied simultaneously to the distal tendons of the elbow flexor and extensor muscles. Matching errors were then analyzed during early and late adaptation phases to assess short-term adaptation to the vibration stimuli. Participants committed significant undershoot errors during the early adaptation phase, but were comparable to baseline measurements during the late adaptation phase. When we removed the vibration stimuli and conducted a second joint position matching task, matching variability increased significantly, and participants committed overshoot errors. These results bring into question the efficacy of simultaneous agonist-antagonist tendon vibration to degrade proprioceptive acuity.

摘要

本体感觉对于控制许多日常生活中的目标导向活动至关重要。虽然皮肤和关节感受器也有贡献,但肌梭被认为在使准确判断肢体位置和运动得以发生方面起着重要作用。同时进行的主动肌-拮抗肌肌腱振动会使从肌梭引出的放电减弱,导致本体感觉失真。尽管如此,因对该刺激的感觉适应可能导致的肢体感知变化仍未得到充分理解。因此,本研究的目的是调查拮抗肌对振动引起的短期本体感觉适应情况。我们在21名健康年轻成年人中测量了肘关节位置觉,同时对肘屈肌和伸肌的远端肌腱施加80赫兹的振动。然后分析早期和晚期适应阶段的匹配误差,以评估对振动刺激的短期适应情况。参与者在早期适应阶段出现了显著的下冲误差,但在晚期适应阶段与基线测量值相当。当我们去除振动刺激并进行第二项关节位置匹配任务时,匹配变异性显著增加,参与者出现了上冲误差。这些结果对同时进行主动肌-拮抗肌肌腱振动降低本体感觉敏锐度的效果提出了质疑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46af/4220122/5f1eee6e361f/fnhum-08-00896-g001.jpg

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