Department of Neurology, University of Kansas Medical Centre, Kansas City, KS, USA.
Neurobiol Learn Mem. 2010 May;93(4):532-9. doi: 10.1016/j.nlm.2010.01.011. Epub 2010 Feb 2.
Somatosensation is thought to play an important role in skilled motor learning. The present study investigated how healthy adults learn a continuous implicit motor task when somatosensation is altered by 1 Hz repetitive transcranial magnetic stimulation (rTMS) delivered over the primary somatosensory cortex (S1). Twenty-seven right-handed participants enrolled in a two-part experiment. In Experiment 1, we verified that 20 min of 1 Hz rTMS over S1 disrupted cutaneous somatosensation (indexed by two-point discrimination) in the wrist/hand; the impact of 1 Hz rTMS on wrist proprioception (tested by limb-position matching) was variable. Sham rTMS had no effect on either measure. We exploited these effects in Experiment 2 by pairing either 1 Hz or sham rTMS with practice of a continuous tracking task over two separate sessions on different days. Implicit motor learning was indexed on a third, separate retention test day when no rTMS was delivered. Across practice in Experiment 2, both the 1 Hz and sham rTMS groups showed improved tracking performance; however, 1 Hz rTMS was associated with less accurate tracking and smaller improvements in performance. Importantly, at the no rTMS retention test the effects of altering sensation with stimulation over S1 were still evident in the persistently less accurate tracking behavior of the 1 Hz rTMS group. The current study shows that disruption of somatosensation during task practice impairs the magnitude of change associated with motor learning, perhaps through the development of an inaccurate internal model.
躯体感觉被认为在熟练的运动学习中起着重要作用。本研究调查了健康成年人在躯体感觉通过初级躯体感觉皮层(S1)上的 1Hz 重复经颅磁刺激(rTMS)改变时如何学习连续的内隐运动任务。27 名右利手参与者参加了两部分实验。在实验 1 中,我们验证了 20 分钟的 1Hz rTMS 可破坏手腕/手的皮肤躯体感觉(以两点辨别为指标);1Hz rTMS 对腕部本体感觉(通过肢体位置匹配测试)的影响是可变的。假 rTMS 对这两种测量均无影响。在实验 2 中,我们利用这些效应通过在两天的两个不同会话上练习连续跟踪任务,将 1Hz 或假 rTMS 与练习配对。在没有 rTMS 传递的第三天的单独保留测试日,评估内隐运动学习。在实验 2 的练习过程中,1Hz 和假 rTMS 组都表现出了更好的跟踪表现;然而,1Hz rTMS 与准确性较差的跟踪和较小的表现改善相关。重要的是,在没有 rTMS 的保留测试中,改变 S1 上刺激的感觉对跟踪行为的影响在 1Hz rTMS 组中仍然存在,表现为持续的跟踪行为准确性较低。本研究表明,在任务练习期间躯体感觉的破坏会损害与运动学习相关的变化幅度,这可能是通过不准确的内部模型的发展来实现的。