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Article: Reduced excitatory drive in interneurons in an animal model of cortical dysplasia.

Full Text (publisher's website) ; Article Metadata ; Article Data (extracted)
Xiang H; Chen HX; Yu XX; King MA; Roper SN
J. Neurophysiol., 2006

Inferred neuron-electrophysiology data values

Neuron Type Neuron Description Ephys Prop Extracted Value Standardized Value Content Source
Neocortex basket cell Somatosensory cortex layer 4-5 multipolar fast-spiking parvalbumin positive GABAergic interneuron cell capacitance (pF) 41.0 ± 5.0 (15) 41.0 (pF) Data Table
Neocortex basket cell Somatosensory cortex layer 4-5 multipolar fast-spiking parvalbumin positive GABAergic interneuron firing frequency (Hz) 164.0 ± 5.0 (15) 164.0 (Hz) Data Table
Neocortex basket cell Somatosensory cortex layer 4-5 multipolar fast-spiking parvalbumin positive GABAergic interneuron input resistance (MΩ) 198.0 ± 17.0 (15) 198.0 (MΩ) Data Table
Neocortex basket cell Somatosensory cortex layer 4-5 multipolar fast-spiking parvalbumin positive GABAergic interneuron resting membrane potential (mV) -61.0 ± 4.0 (15) -61.0 (mV) Data Table
Neocortex basket cell Somatosensory cortex layer 4-5 multipolar fast-spiking parvalbumin positive GABAergic interneuron spike amplitude (mV) 67.0 ± 6.0 (15) 67.0 (mV) Data Table
Neocortex basket cell Somatosensory cortex layer 4-5 multipolar fast-spiking parvalbumin positive GABAergic interneuron spike half-width (ms) 0.86 ± 0.2 (15) 0.86 (ms) Data Table
Neocortex Martinotti cell Somatosensory cortex layer 4-5 bipolar somatostatin immunopositive GABAergic interneuron cell capacitance (pF) 41.0 ± 2.0 (23) 41.0 (pF) Data Table
Neocortex Martinotti cell Somatosensory cortex layer 4-5 bipolar somatostatin immunopositive GABAergic interneuron firing frequency (Hz) 50.0 ± 3.0 (23) 50.0 (Hz) Data Table
Neocortex Martinotti cell Somatosensory cortex layer 4-5 bipolar somatostatin immunopositive GABAergic interneuron input resistance (MΩ) 171.0 ± 14.0 (23) 171.0 (MΩ) Data Table
Neocortex Martinotti cell Somatosensory cortex layer 4-5 bipolar somatostatin immunopositive GABAergic interneuron resting membrane potential (mV) -59.0 ± 2.0 (23) -59.0 (mV) Data Table
Neocortex Martinotti cell Somatosensory cortex layer 4-5 bipolar somatostatin immunopositive GABAergic interneuron spike amplitude (mV) 75.0 ± 6.0 (23) 75.0 (mV) Data Table
Neocortex Martinotti cell Somatosensory cortex layer 4-5 bipolar somatostatin immunopositive GABAergic interneuron spike half-width (ms) 1.4 ± 0.1 (23) 1.4 (ms) Data Table
Neocortex pyramidal cell layer 5-6 Somatosensory cortex layer 5 pyramidal cell cell capacitance (pF) 145.0 ± 4.0 (15) 145.0 (pF) Data Table
Neocortex pyramidal cell layer 5-6 Somatosensory cortex layer 5 pyramidal cell firing frequency (Hz) 17.0 ± 3.0 (15) 17.0 (Hz) Data Table
Neocortex pyramidal cell layer 5-6 Somatosensory cortex layer 5 pyramidal cell input resistance (MΩ) 76.0 ± 7.0 (15) 76.0 (MΩ) Data Table
Neocortex pyramidal cell layer 5-6 Somatosensory cortex layer 5 pyramidal cell resting membrane potential (mV) -68.0 ± 2.0 (15) -68.0 (mV) Data Table
Neocortex pyramidal cell layer 5-6 Somatosensory cortex layer 5 pyramidal cell spike amplitude (mV) 95.0 ± 4.0 (15) 95.0 (mV) Data Table
Neocortex pyramidal cell layer 5-6 Somatosensory cortex layer 5 pyramidal cell spike half-width (ms) 1.5 ± 0.1 (15) 1.5 (ms) Data Table

Report miscurated data

Metadata values

Experimental condition Value
Species Rats
ElectrodeType Patch-clamp
Strain Sprague-Dawley
PrepType in vitro
AnimalAge 21.0 - 28.0
RecTemp 22.0
InternalSolution 5.0
ExternalSolution 5.0
JxnPotential Unreported
internal_0_pH 7.3
internal_0_Mg 4.0
internal_0_Na 8.9
internal_0_K 125.0
internal_0_GTP 0.3
internal_0_ATP 4.0
internal_0_EGTA 0.2
internal_0_HEPES 10.0
internal_0_Cl 8.0
external_0_pH 7.4
external_0_Mg 2.0
external_0_Na 151.25
external_0_K 2.5
external_0_Cl 134.5
external_0_Ca 2.0
external_0_glucose 10.0

Data table listing

Data Table Article Title Authors Journal Year Table needs expert? Ephys table mentions Curated by Times validated
497 Reduced excitatory drive in interneurons in an animal model of cortical dysplasia. Xiang H; Chen HX; Yu XX; King MA; Roper SN J. Neurophysiol. 2006 False 6 Shreejoy Tripathy, Kerrie Tsigounis, Brenna Li, Athanasios Kritharis, 5