2021
DOI: 10.21203/rs.3.rs-318156/v1
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Somatic Proximity of the Axon Initial Segment Predicts Motoneuron Excitability

Abstract: As the neuronal site where voltage gated channel density is highest, the axon initial segment (AIS) plays a key role in establishing a neuron’s action potential threshold, i.e. excitability. Among the properties of AIS that gain attention are length (AISl) and distance from the soma (AISd), which are variously found to change together with neuronal excitability following experimentally-induced perturbations in neural activity. The present study was designed to test the possibility that variation in AIS structu… Show more

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“…Other channels, including KV1.2 channels, which underlie the characteristic delayed firing behaviour of fast motoneurons 24,27,28 , are also clustered at the AIS and may dynamically interact with NaV1.6 channels to shape recruitment current. Furthermore, given that the AIS is further from the soma in fast compared to slow motoneurons 95 , physical properties of the AIS may also contribute to differential recruitment of motoneuron subtypes. If so, one might predict that the distance between soma and AIS may increase in fast motoneurons during the first two postnatal weeks and contribute to functional specification of motoneuron subtypes.…”
Section: Discussionmentioning
confidence: 99%
“…Other channels, including KV1.2 channels, which underlie the characteristic delayed firing behaviour of fast motoneurons 24,27,28 , are also clustered at the AIS and may dynamically interact with NaV1.6 channels to shape recruitment current. Furthermore, given that the AIS is further from the soma in fast compared to slow motoneurons 95 , physical properties of the AIS may also contribute to differential recruitment of motoneuron subtypes. If so, one might predict that the distance between soma and AIS may increase in fast motoneurons during the first two postnatal weeks and contribute to functional specification of motoneuron subtypes.…”
Section: Discussionmentioning
confidence: 99%