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Control of Movement: Primary sensorimotor cortex exhibits complex dependencies of spike-field coherence on neuronal firing rates field power and behavior

机译:运动控制:主要感觉运动皮层表现出峰场相干对神经元放电速率场功率和行为的复杂依赖性

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摘要

Spike-field coherence (SFC) is widely used to assess cortico-cortical interactions during sensorimotor behavioral tasks by measuring the consistency of the relative phases between the spike train of a neuron and the concurrent local field potentials (LFPs). Interpretations of SFC as a measure of functional connectivity are complicated by theoretical work suggesting that estimates of SFC depend on overall neuronal activity. We evaluated the dependence of SFC on neuronal firing rates, LFP power, and behavior in the primary motor (MIo) and primary somatosensory (SIo) areas of the orofacial sensorimotor cortex of monkeys (Macaca mulatta) during performance of a tongue-protrusion task. Although we occasionally observed monotonically increasing linear relationships between coherence and firing rate, we most often found highly complex, nonmonotonic relationships in both SIo and MIo and sometimes even found that coherence decreased with increasing firing rate. The lack of linear relationships was also true for both LFP power and tongue-protrusive force. Moreover, the ratio between maximal firing rate and the firing rate at peak coherence deviated significantly from unity, indicating that MIo and SIo neurons achieved maximal SFC at a submaximal level of spiking. Overall, these results point to complex relationships of SFC to firing rates, LFP power, and behavior during sensorimotor cortico-cortical interactions: coherence is a measure of functional connectivity whose magnitude is not a mere monotonic reflection of changes in firing rate, LFP power, or the relevantly controlled behavioral parameter.>NEW & NOTEWORTHY The concern that estimates of spike-field coherence depend on the firing rates of single neurons has influenced analytical methods employed by experimental studies investigating the functional interactions between cortical areas. Our study shows that the overwhelming majority of the estimated spike-field coherence exhibited complex relations with firing rates of neurons in the orofacial sensorimotor cortex. The lack of monotonic relations was also evident after testing the influence of local field potential power and force on spike-field coherence.
机译:峰值场相干性(SFC)被广泛用于通过测量神经元的峰值序列与并发的局部场电势(LFP)之间的相对相位的一致性来评估感觉运动行为任务期间的皮质皮质相互作用。 SFC作为功能连通性度量的解释由于理论工作而变得复杂,这表明对SFC的估计取决于整体神经元活动。我们评估了SFC对猴子口颊感觉运动皮层的主要运动(MIo)和主要体感(SIo)区域中神经元放电率,LFP功率以及行为的依赖性,该过程是在执行舌头突出任务时进行的。尽管我们偶尔观察到相干性和发射速率之间的线性关系单调增加,但我们最经常发现在Sio和Mio中高度复杂的非单调关系,有时甚至发现随着发射速率的增加,相干性降低。线性关系的缺乏对于LFP力量和舌伸力也是如此。此外,最大发射速率与峰值相干性发射速率之间的比率显着偏离单位,这表明MIo和S110神经元在次最大峰值处实现了最大SFC。总体而言,这些结果表明,SFC与发射速率,LFP功率以及感觉运动皮层-皮质相互作用过程中的行为之间存在复杂的关系:相干性是功能连通性的一种度量,其大小不仅仅是发射速率,LFP功率, > NEW&NOWORTHY 。关于尖峰场相干性估计取决于单个神经元放电速率的担忧已经影响了研究皮质区域之间功能相互作用的实验研究所采用的分析方法。我们的研究表明,绝大多数估计的峰场相干性与口面部感觉运动皮层中神经元的放电速率之间存在复杂的关系。在测试局部场势功率和力对尖峰场相干性的影响后,也缺乏单调关系。

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