Bittner Katie C, Grienberger Christine, Vaidya Sachin P, Milstein Aaron D, Macklin John J, Suh Junghyup, Tonegawa Susumu, Magee Jeffrey C
Howard Hughes Medical Institute, Janelia Research Campus, Ashburn, Virginia, USA.
1] RIKEN-MIT Center for Neural Circuit Genetics at the Picower Institute for Learning and Memory, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA. [2] Howard Hughes Medical Institute at the Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
Nat Neurosci. 2015 Aug;18(8):1133-42. doi: 10.1038/nn.4062. Epub 2015 Jul 13.
Feature-selective firing allows networks to produce representations of the external and internal environments. Despite its importance, the mechanisms generating neuronal feature selectivity are incompletely understood. In many cortical microcircuits the integration of two functionally distinct inputs occurs nonlinearly through generation of active dendritic signals that drive burst firing and robust plasticity. To examine the role of this processing in feature selectivity, we recorded CA1 pyramidal neuron membrane potential and local field potential in mice running on a linear treadmill. We found that dendritic plateau potentials were produced by an interaction between properly timed input from entorhinal cortex and hippocampal CA3. These conjunctive signals positively modulated the firing of previously established place fields and rapidly induced new place field formation to produce feature selectivity in CA1 that is a function of both entorhinal cortex and CA3 input. Such selectivity could allow mixed network level representations that support context-dependent spatial maps.
特征选择性放电使神经网络能够生成外部和内部环境的表征。尽管其很重要,但产生神经元特征选择性的机制尚未完全明确。在许多皮质微回路中,两种功能不同的输入通过产生驱动爆发式放电和强大可塑性的活跃树突信号进行非线性整合。为了研究这种处理在特征选择性中的作用,我们记录了在直线跑步机上奔跑的小鼠CA1锥体神经元的膜电位和局部场电位。我们发现,树突平台电位是由内嗅皮质和海马CA3适时输入之间的相互作用产生的。这些联合信号正向调节先前建立的位置野的放电,并迅速诱导新的位置野形成,从而在CA1中产生特征选择性,这是内嗅皮质和CA3输入共同作用的结果。这种选择性可以允许混合网络水平的表征,以支持依赖于上下文的空间图谱。