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本文引用的文献

1
Short-latency afferent inhibition determined by the sensory afferent volley.由感觉传入冲动所决定的短潜伏期传入抑制。
J Neurophysiol. 2016 Aug 1;116(2):637-44. doi: 10.1152/jn.00276.2016. Epub 2016 May 25.
2
Cathodal Transcranial Direct Current Stimulation Over Left Dorsolateral Prefrontal Cortex Area Promotes Implicit Motor Learning in a Golf Putting Task.左背外侧前额叶皮层区阴极经颅直流电刺激促进高尔夫推杆任务中的内隐运动学习。
Brain Stimul. 2015 Jul-Aug;8(4):784-6. doi: 10.1016/j.brs.2015.02.005. Epub 2015 Mar 14.
3
Non-invasive electrical and magnetic stimulation of the brain, spinal cord, roots and peripheral nerves: Basic principles and procedures for routine clinical and research application. An updated report from an I.F.C.N. Committee.经颅磁刺激和电刺激:临床和研究应用的基本原理和操作规范。国际神经电生理学会技术规范委员会更新报告。
Clin Neurophysiol. 2015 Jun;126(6):1071-1107. doi: 10.1016/j.clinph.2015.02.001. Epub 2015 Feb 10.
4
TMS and drugs revisited 2014.经颅磁刺激与药物研究新进展2014年
Clin Neurophysiol. 2015 Oct;126(10):1847-68. doi: 10.1016/j.clinph.2014.08.028. Epub 2014 Dec 4.
5
Two distinct interneuron circuits in human motor cortex are linked to different subsets of physiological and behavioral plasticity.人类运动皮层中有两个不同的中间神经元回路,与不同的生理和行为可塑性子集相关联。
J Neurosci. 2014 Sep 17;34(38):12837-49. doi: 10.1523/JNEUROSCI.1960-14.2014.
6
Short-latency afferent inhibition is a poor predictor of individual susceptibility to rTMS-induced plasticity in the motor cortex of young and older adults.短潜伏期传入抑制是预测年轻和老年成年人运动皮层经 rTMS 诱导可塑性个体易感性的一个较差指标。
Front Aging Neurosci. 2014 Aug 7;6:182. doi: 10.3389/fnagi.2014.00182. eCollection 2014.
7
Modulation of short-latency afferent inhibition depends on digit and task-relevance.短潜伏期传入抑制的调节取决于手指及任务相关性。
PLoS One. 2014 Aug 13;9(8):e104807. doi: 10.1371/journal.pone.0104807. eCollection 2014.
8
What Makes the Muscle Twitch: Motor System Connectivity and TMS-Induced Activity.是什么引发了肌肉抽搐:运动系统连接性与经颅磁刺激诱导的活动。
Cereb Cortex. 2015 Sep;25(9):2346-53. doi: 10.1093/cercor/bhu032. Epub 2014 Mar 7.
9
Visual spatial attention has opposite effects on bidirectional plasticity in the human motor cortex.视觉空间注意对人类运动皮层的双向可塑性有相反的影响。
J Neurosci. 2014 Jan 22;34(4):1475-80. doi: 10.1523/JNEUROSCI.1595-13.2014.
10
A neurocomputational theory of how explicit learning bootstraps early procedural learning.一种关于外显学习如何为早期程序性学习提供支持的神经计算理论。
Front Comput Neurosci. 2013 Dec 18;7:177. doi: 10.3389/fncom.2013.00177. eCollection 2013.

注意力调节经颅磁刺激所募集的特定运动皮层回路。

Attention modulates specific motor cortical circuits recruited by transcranial magnetic stimulation.

作者信息

Mirdamadi J L, Suzuki L Y, Meehan S K

机构信息

Human Sensorimotor Laboratory, School of Kinesiology, University of Michigan, Ann Arbor, MI, USA.

Human Sensorimotor Laboratory, School of Kinesiology, University of Michigan, Ann Arbor, MI, USA.

出版信息

Neuroscience. 2017 Sep 17;359:151-158. doi: 10.1016/j.neuroscience.2017.07.028. Epub 2017 Jul 20.

DOI:10.1016/j.neuroscience.2017.07.028
PMID:28735100
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5572833/
Abstract

Skilled performance and acquisition is dependent upon afferent input to motor cortex. The present study used short-latency afferent inhibition (SAI) to probe how manipulation of sensory afference by attention affects different circuits projecting to pyramidal tract neurons in motor cortex. SAI was assessed in the first dorsal interosseous muscle while participants performed a low or high attention-demanding visual detection task. SAI was evoked by preceding a suprathreshold transcranial magnetic stimulus with electrical stimulation of the median nerve at the wrist. To isolate different afferent intracortical circuits in motor cortex SAI was evoked using either posterior-anterior (PA) or anterior-posterior (PA) monophasic current. In an independent sample, somatosensory processing during the same attention-demanding visual detection tasks was assessed using somatosensory-evoked potentials (SEP) elicited by median nerve stimulation. SAI elicited by AP TMS was reduced under high compared to low visual attention demands. SAI elicited by PA TMS was not affected by visual attention demands. SEPs revealed that the high visual attention load reduced the fronto-central P20-N30 but not the contralateral parietal N20-P25 SEP component. P20-N30 reduction confirmed that the visual attention task altered sensory afference. The current results offer further support that PA and AP TMS recruit different neuronal circuits. AP circuits may be one substrate by which cognitive strategies shape sensorimotor processing during skilled movement by altering sensory processing in premotor areas.

摘要

熟练技能的表现与习得依赖于传入运动皮层的输入。本研究采用短潜伏期传入抑制(SAI)来探究注意力对感觉传入的操控如何影响投射至运动皮层锥体束神经元的不同神经回路。在参与者执行低或高注意力需求的视觉检测任务时,对第一背侧骨间肌的SAI进行评估。通过在手腕处对正中神经进行电刺激,先于阈上经颅磁刺激来诱发SAI。为了分离运动皮层中不同的传入皮质内神经回路,使用前后(PA)或后前(AP)单相电流来诱发SAI。在一个独立样本中,使用正中神经刺激诱发的体感诱发电位(SEP)来评估在相同注意力需求的视觉检测任务期间的体感处理。与低视觉注意力需求相比,在高视觉注意力需求下,AP TMS诱发的SAI降低。PA TMS诱发的SAI不受视觉注意力需求的影响。SEP显示,高视觉注意力负荷降低了额中央P20 - N30,但未降低对侧顶叶N20 - P25 SEP成分。P20 - N30的降低证实了视觉注意力任务改变了感觉传入。目前的结果进一步支持了PA和AP TMS募集不同的神经元回路。AP回路可能是认知策略通过改变运动前区的感觉处理来塑造熟练运动过程中感觉运动处理的一种基质。