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Deciphering functional roles of synaptic plasticity and intrinsic neural firing in developing mouse visual cortex layer IV microcircuit. | LitMetric

AI Article Synopsis

  • The critical period for mouse primary visual cortex development is essential for cognitive vision and occurs between the onset of changes in neuron firing and eye opening on postnatal day 14.
  • The study utilized models to analyze the roles of short-term plasticity and intrinsic firing in regulating neural activities, discovering that synaptic short-term plasticity is the key factor influencing the firing patterns of the microcircuit.
  • Key findings show that while short-term plasticity enhances the activity of certain interneurons, intrinsic firing reduces overall circuit frequency; thalamic inputs were also found to significantly influence neuron firing dynamics during this critical period.

Article Abstract

Between the onset of the critical period of mouse primary visual cortex and eye opening at postnatal day 14 is a complex process and that is vital for the cognitive function of vision. The onset of the critical period of mouse primary visual cortex involves changes of the intrinsic firing property of each neuron and short term plasticity of synapses. In order to investigate the functional role of each factor in regulating the circuit firing activity during the critical period plasticity, we adopted the Markram's model for short term plasticity and Wilson's model for intrinsic neuron firing activity, and construct a microcircuit for mouse visual cortex layer IV based on the connection probabilities from experimental results. Our results indicate that, during CP development, the most critical factors that regulate the firing pattern of microcircuit is the short term plasticity of the synapse from PC to PV and SST interneurons, which upregulates the PV interneuron firing and produces new balance between excitation and inhibition; the intrinsic firing activity of PC and PV during development downregulates the firing frequency of the circuits. In addition, we have investigated the function of feedforward excitatory thalamic-cortical projection to PC and PV interneuron during CP, and found that neural firing activity largely depends on the TC input and the results are similar to the local circuit with minor differences. We conclude that the short term plasticity development during critical period plays a crucial role in regulating the circuit behavior.

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Source
http://dx.doi.org/10.1007/s10827-022-00823-xDOI Listing

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