Wilber Aaron A, Skelin Ivan, Wu Wei, McNaughton Bruce L
Department of Psychology, Program in Neuroscience, Florida State University, Tallahassee, FL 32306, USA.
Canadian Centre for Behavioural Neuroscience, The University of Lethbridge, Lethbridge, AB T1K 3M4, Canada; Department of Neurobiology and Behavior, University of California, Irvine, CA 92697, USA.
Neuron. 2017 Sep 13;95(6):1406-1419.e5. doi: 10.1016/j.neuron.2017.08.033.
Egocentric neural coding has been observed in parietal cortex (PC), but its topographical and laminar organization is not well characterized. We used multi-site recording to look for evidence of local clustering and laminar consistency of linear and angular velocity encoding in multi-neuronal spiking activity (MUA) and in the high-frequency (300-900 Hz) component of the local field potential (HF-LFP), believed to reflect local spiking activity. Rats were trained to run many trials on a large circular platform, either to LED-cued goal locations or as a spatial sequence from memory. Tuning to specific self-motion states was observed and exhibited distinct cortical depth-invariant coding properties. These patterns of collective local and laminar activation during behavior were reactivated in compressed form during post-experience sleep and temporally coupled to cortical delta waves and hippocampal sharp-wave ripples. Thus, PC neuron motion encoding is consistent across cortical laminae, and this consistency is maintained during memory reactivation.
在顶叶皮质(PC)中已观察到以自我为中心的神经编码,但其拓扑结构和分层组织尚未得到很好的表征。我们使用多部位记录来寻找多神经元放电活动(MUA)和局部场电位的高频(300 - 900 Hz)成分(HF-LFP,被认为反映局部放电活动)中线性和角速度编码的局部聚类和分层一致性的证据。训练大鼠在一个大的圆形平台上进行多次试验,要么朝着LED提示的目标位置奔跑,要么作为来自记忆的空间序列奔跑。观察到对特定自我运动状态的调谐,并表现出不同的皮质深度不变编码特性。这些行为期间集体局部和分层激活的模式在经历后的睡眠中以压缩形式重新激活,并在时间上与皮质δ波和海马尖波涟漪耦合。因此,PC神经元运动编码在皮质各层中是一致的,并且这种一致性在记忆重新激活期间得以维持。