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Article: Fear extinction induces mGluR5-mediated synaptic and intrinsic plasticity in infralimbic neurons.

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Sepulveda-Orengo MT; Lopez AV; Soler-Cedeño O; Porter JT
J. Neurosci., 2013


Table 2.

Electrophysiological properties of IL neurons in intrinsic plasticity experiments

Property Saline-Cond Saline-Ext MPEP-Ext
Vm (mV) -59 ± 1 -54 ± 2 -54 ± 1
Input resistance (mΩ) 252 ± 18 254 ± 30 253 ± 14
Rheobase (pA) 105 ± 9 111 ± 16 117 ± 8
mAHP (mV) -6 ± 0.5 -7.2 ± 0.5 -6.2 ± 0.7
  • One-way ANOVA showed no difference between the groups for any measure (p > 0.05). Recordings were done with a KMeSO4-based intracellular solution.


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Inferred neuron-electrophysiology data values

Neuron Type Neuron Description Ephys Prop Extracted Value Standardized Value Content Source
Neocortex pyramidal cell layer 5-6 Infralimbic prefrontal cortex layer V pyramidal neurons resting membrane potential (mV) -59.0 ± 1.0 -59.0 (mV) Data Table
Neocortex pyramidal cell layer 5-6 Infralimbic prefrontal cortex layer V pyramidal neurons input resistance (mΩ) 252.0 ± 18.0 252.0 (MΩ) Data Table
Neocortex pyramidal cell layer 5-6 Infralimbic prefrontal cortex layer V pyramidal neurons rheobase (pA) 105.0 ± 9.0 105.0 (pA) Data Table
Neocortex pyramidal cell layer 5-6 Infralimbic prefrontal cortex layer V pyramidal neurons medium AHP amplitude (mV) -6.0 ± 0.5 6.0 (mV) Data Table