AboutNeuron TypesElectrophysiology PropertiesArticlesFAQsData/APIGet Involved

Article: Activity-dependent modulation of layer 1 inhibitory neocortical circuits by acetylcholine.

Full Text (publisher's website) ; Article Metadata ; Article Data (extracted)
Brombas A; Fletcher LN; Williams SR
J. Neurosci., 2014

Inferred neuron-electrophysiology data values

Neuron Type Neuron Description Ephys Prop Extracted Value Standardized Value Content Source
Other Somatosensory cortex layer 1 cholinergic excitatory neurogliaform cells AHP duration -24.9 ± 0.4 (68) -- Data Table
Other Somatosensory cortex layer 1 cholinergic excitatory classical-accommodating cells AHP duration -15.2 ± 0.9 (28) -- Data Table
Other Somatosensory cortex layer 1 cholinergic excitatory neurogliaform cells input resistance 109.3 ± 3.8 (72) 109.3 (MΩ) Data Table
Other Somatosensory cortex layer 1 cholinergic excitatory classical-accommodating cells input resistance 123.2 ± 6.0 (31) 123.2 (MΩ) Data Table
Other Somatosensory cortex layer 1 cholinergic excitatory neurogliaform cells resting membrane potential -77.0 ± 0.5 (72) -77.0 (mV) Data Table
Other Somatosensory cortex layer 1 cholinergic excitatory classical-accommodating cells resting membrane potential -75.9 ± 0.73 (31) -75.9 (mV) Data Table

Report miscurated data

Metadata values

Experimental condition Value
Species Rats
ElectrodeType Patch-clamp
Strain Rats, Wistar
PrepType in vitro
ExternalSolution 5.0
InternalSolution 5.0
JxnPotential Unreported
AnimalAge 24.0 - 31.0
RecTemp 34.0 - 36.0
internal_0_pH 7.25
internal_0_Mg 2.0
internal_0_Na 21.3
internal_0_K 135.0
internal_0_GTP 0.3
internal_0_ATP 2.0
internal_0_HEPES 10.0
internal_0_Cl 11.0
external_0_Mg 1.0
external_0_Na 154.25
external_0_K 3.0
external_0_Cl 134.0
external_0_Ca 2.0
external_0_glucose 25.0

Data table listing

Data Table Article Title Authors Journal Year Table needs expert? Ephys table mentions Curated by Times validated
46586 Activity-dependent modulation of layer 1 inhibitory neocortical circuits by acetylcholine. Brombas A; Fletcher LN; Williams SR J. Neurosci. 2014 False 3 Nathalie Binnion, Brenna Li, 1