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特定的感觉运动中间神经元回路对小脑-注意力相互作用敏感。

Specific sensorimotor interneuron circuits are sensitive to cerebellar-attention interactions.

作者信息

Mirdamadi Jasmine L, Meehan Sean K

机构信息

Division of Physical Therapy, Department of Rehabilitation Medicine, Emory University School of Medicine, Atlanta, GA, United States.

Department of Kinesiology and Health Sciences, University of Waterloo, Waterloo, ON, Canada.

出版信息

Front Hum Neurosci. 2022 Aug 19;16:920526. doi: 10.3389/fnhum.2022.920526. eCollection 2022.

Abstract

Short latency afferent inhibition (SAI) provides a method to investigate mechanisms of sensorimotor integration. Cholinergic involvement in the SAI phenomena suggests that SAI may provide a marker of cognitive influence over implicit sensorimotor processes. Consistent with this hypothesis, we previously demonstrated that visual attention load suppresses SAI circuits preferentially recruited by anterior-to-posterior (AP)-, but not posterior-to-anterior (PA)-current induced by transcranial magnetic stimulation. However, cerebellar modulation can also modulate these same AP-sensitive SAI circuits. Yet, the consequences of concurrent cognitive and implicit cerebellar influences over these AP circuits are unknown. We used cerebellar intermittent theta-burst stimulation (iTBS) to determine whether the cerebellar modulation of sensory to motor projections interacts with the attentional modulation of sensory to motor circuits probed by SAI. We assessed AP-SAI and PA-SAI during a concurrent visual detection task of varying attention load before and after cerebellar iTBS. Before cerebellar iTBS, a higher visual attention load suppressed AP-SAI, but not PA-SAI, compared to a lower visual attention load. Post-cerebellar iTBS, the pattern of AP-SAI in response to visual attention load, was reversed; a higher visual attention load enhanced AP-SAI compared to a lower visual attention load. Cerebellar iTBS did not affect PA-SAI regardless of visual attention load. These findings suggest that attention and cerebellar networks converge on overlapping AP-sensitive circuitry to influence motor output by controlling the strength of the afferent projections to the motor cortex. This interaction has important implications for understanding the mechanisms of motor performance and learning.

摘要

短潜伏期传入抑制(SAI)提供了一种研究感觉运动整合机制的方法。胆碱能参与SAI现象表明,SAI可能提供了认知对隐性感觉运动过程影响的一个标志。与这一假设一致,我们之前证明视觉注意力负荷会优先抑制经颅磁刺激诱导的从前向后(AP)而非从后向前(PA)电流所优先募集的SAI回路。然而,小脑调制也可以调节这些相同的对AP敏感的SAI回路。然而,认知和隐性小脑对这些AP回路的同时影响的后果尚不清楚。我们使用小脑间歇性θ波爆发刺激(iTBS)来确定感觉运动投射的小脑调制是否与SAI探测的感觉运动回路的注意力调制相互作用。我们在小脑iTBS前后的不同注意力负荷的同时视觉检测任务中评估了AP-SAI和PA-SAI。在小脑iTBS之前,与较低的视觉注意力负荷相比,较高的视觉注意力负荷会抑制AP-SAI,但不会抑制PA-SAI。小脑iTBS后,AP-SAI对视觉注意力负荷的反应模式发生了逆转;与较低的视觉注意力负荷相比,较高的视觉注意力负荷增强了AP-SAI。无论视觉注意力负荷如何,小脑iTBS均不影响PA-SAI。这些发现表明,注意力和小脑网络汇聚在重叠的对AP敏感的神经回路上,通过控制传入运动皮层的投射强度来影响运动输出。这种相互作用对理解运动表现和学习的机制具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c654/9437336/08542059a2b9/fnhum-16-920526-g0001.jpg

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