AboutNeuron TypesElectrophysiology PropertiesArticlesFAQsData/APIGet Involved

Article: NKCC1 cotransporter inactivation underlies embryonic development of chloride-mediated inhibition in mouse spinal motoneuron.

Full Text (publisher's website) ; Article Metadata ; Article Data (extracted)
Delpy A; Allain AE; Meyrand P; Branchereau P
J. Physiol. (Lond.), 2008

Inferred neuron-electrophysiology data values

Neuron Type Neuron Description Ephys Prop Extracted Value Standardized Value Content Source
Spinal cord ventral horn motor neuron alpha cell capacitance (pF) 29.5 ± 3.6 -- Data Table
Spinal cord ventral horn motor neuron alpha input resistance (MΩ) 945.0 ± 96.0 -- Data Table
Spinal cord ventral horn motor neuron alpha resting membrane potential (mV) -55.4 ± 1.3 -- Data Table
Spinal cord ventral horn motor neuron alpha spike threshold (mV) -43.2 ± 2.7 -- Data Table

Report miscurated data

Metadata values

Experimental condition Value
Species Mice
ElectrodeType Patch-clamp
PrepType in vitro
ExternalSolution 4.0
external_0_Mg 1.0
external_0_Ca 2.0
external_0_Na 139.0
external_0_Cl 123.5
external_0_K 4.5
InternalSolution 3.0
internal_0_pH 7.4
internal_0_Mg 2.0
internal_0_Cl 130.0
internal_0_K 130.0
internal_1_pH 7.4
internal_1_Mg 2.0
internal_1_Ca 1.0
internal_1_Na 5.0
internal_1_Cl 7.0
internal_1_K 130.0

Data table listing

Data Table Article Title Authors Journal Year Table needs expert? Ephys table mentions Curated by Times validated
9461 NKCC1 cotransporter inactivation underlies embryonic development of chloride-mediated inhibition in mouse spinal motoneuron. Delpy A; Allain AE; Meyrand P; Branchereau P J. Physiol. (Lond.) 2008 False 4 Shreejoy Tripathy, 0
9462 NKCC1 cotransporter inactivation underlies embryonic development of chloride-mediated inhibition in mouse spinal motoneuron. Delpy A; Allain AE; Meyrand P; Branchereau P J. Physiol. (Lond.) 2008 False 0 None