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Effects of visual stimulation on LFPs spikes and LFP-spike relations in PRR

机译:视觉刺激对PRR中LFP峰值和LFP峰值关系的影响

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摘要

Local field potentials (LFPs) have shown diverse relations to the spikes across different brain areas and stimulus features, suggesting that LFP-spike relationships are highly specific to the underlying connectivity of a local network. If so, the LFP-spike relationship may vary even within one brain area under the same task condition if neurons have heterogeneous connectivity with the active input sources during the task. Here, we tested this hypothesis in the parietal reach region (PRR), which includes two distinct classes of motor goal planning neurons with different connectivity to the visual input, i.e., visuomotor neurons receive stronger visual input than motor neurons. We predicted that the visual stimulation would render both the spike response and the LFP-spike relationship different between the two neuronal subpopulations. Thus we examined how visual stimulations affect spikes, LFPs, and LFP-spike relationships in PRR by comparing their planning (delay) period activity between two conditions: with or without a visual stimulus at the reach target. Neurons were classified as visuomotor if the visual stimulation increased their firing rate, or as motor otherwise. We found that the visual stimulation increased LFP power in gamma bands >40 Hz for both classes. Moreover, confirming our prediction, the correlation between the LFP gamma power and the firing rate became higher for the visuomotor than motor neurons in the presence of visual stimulation. We conclude that LFPs vary with the stimulation condition and that the LFP-spike relationship depends on a given neuron's connectivity to the dominant input sources in a particular stimulation condition.
机译:本地场电势(LFP)已显示出与不同大脑区域和刺激特征上的尖峰之间的各种关系,这表明LFP尖峰关系高度特定于本地网络的基础连接性。如果是这样,则在同一任务条件下,如果神经元在任务执行期间与活动输入源之间存在异质连接,则LFP峰值关系甚至可能在一个大脑区域内发生变化。在这里,我们在顶触及区域(PRR)中测试了这一假设,其中包括两类不同的运动目标计划神经元,它们与视觉输入具有不同的连通性,即视觉运动神经元比运动神经元获得更强的视觉输入。我们预测视觉刺激将使两个神经元亚群之间的峰响应和LFP峰关系都不同。因此,我们通过比较两种条件之间的计划(延迟)周期活动:在达到或没有达到目标的视觉刺激下,研究了视觉刺激如何影响PRR中的峰值,LFP和LFP峰值关系。如果视觉刺激提高了他们的放电速度,则将神经元归类为视觉运动,否则归为运动。我们发现,对于两个类别,视觉刺激都会在大于40 Hz的伽马带中提高LFP功率。此外,证实了我们的预测,在视觉刺激下,对于粘性运动,LFPγ功率与发动速率之间的相关性变得比运动神经元高。我们得出结论,LFP随刺激条件而变化,并且LFP峰值关系取决于特定刺激条件下给定神经元与主要输入源的连通性。

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