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Correlating Stimulus-Specific Adaptation of Cortical Neurons and Local Field Potentials in the Awake Rat

机译:唤醒大鼠大脑皮层神经元和局部场电位的刺激特异性适应。

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摘要

Changes in the sensory environment are good indicators for behaviorally relevant events and strong triggers for the reallocation of attention. In the auditory domain, violations of a pattern of repetitive stimuli precipitate in the event-related potentials as mismatch negativity (MMN). Stimulus-specific adaptation (SSA) of single neurons in the auditory cortex has been proposed to be the cellular substrate of MMN (). However, until now, the existence of SSA in the awake auditory cortex has not been shown. In the present study, we recorded single and multiunits in parallel with evoked local field potentials (eLFPs) in the primary auditory cortex of the awake rat. Both neurons and eLFPs in the awake animal adapted in a stimulus-specific manner, and SSA was controlled by stimulus probability and frequency separation. SSA of isolated units was significant during the first stimulus-evoked “on” response but not in the following inhibition and rebound of activity. The eLFPs exhibited SSA in the first negative deflection and, to a lesser degree, in a slower positive deflection but no MMN. Spike adaptation correlated closely with adaptation of the fast negative deflection but not the positive deflection. Therefore, we conclude that single neurons in the auditory cortex of the awake rat adapt in a stimulus-specific manner and contribute to corresponding changes in eLFP but do not generate a late deviant response component directly equivalent to the human MMN. Nevertheless, the described effect may reflect a certain part of the process needed for sound discrimination.
机译:感觉环境的变化是行为相关事件的良好指示,是注意力重新分配的强大触发因素。在听觉领域,在与事件相关的电位中会出现违反重复刺激模式的现象,即失配负(MMN)。已经提出听觉皮层中单个神经元的刺激特异性适应(SSA)是MMN()的细胞基质。然而,直到现在,还没有显示出在清醒的听觉皮层中存在SSA。在本研究中,我们在清醒大鼠的初级听觉皮层中记录了单个和多个单元以及诱发的局部场电位(eLFP)。清醒动物中的神经元和eLFP均以刺激特异性方式适应,SSA由刺激概率和频率分离控制。在第一个刺激诱发的“开”反应中,孤立单位的SSA显着,但在随后的抑制和活性反弹中却没有。 eLFP在第一个负偏斜中显示出SSA,而在较小的程度上,正向偏斜较慢,但没有MMN。尖峰适应与快速负偏斜的适应密切相关,而与正偏斜的密切相关。因此,我们得出的结论是,清醒大鼠的听觉皮层中的单个神经元以刺激特异性的方式适应并有助于eLFP的相应变化,但不会产生直接等同于人类MMN的晚期异常反应成分。然而,所描述的效果可能反映了声音辨别所需的过程的某些部分。

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