Potassium currents dynamically set the recruitment and firing properties of F-type motoneurons in neonatal mice.
نویسندگان
چکیده
In neonatal mice, fast- and slow-type motoneurons display different patterns of discharge. In response to a long liminal current pulse, the discharge is delayed up to several seconds in fast-type motoneurons and their firing frequency accelerates. In contrast, slow-type motoneurons discharge immediately, and their firing frequency decreases at the beginning of the pulse. Here, we identify the ionic currents that underlie the delayed firing of fast-type motoneurons. We find that the firing delay is caused by a combination of an A-like potassium current that transiently suppresses firing on a short time scale and a slowly-inactivating potassium current that inhibits the discharge over a much longer time scale. We then show how these intrinsic currents dynamically shape the discharge threshold and the frequency-input function of fast-type motoneurons. These currents contribute to the orderly recruitment of motoneurons in neonates and might play a role in the postnatal maturation of motor units.
منابع مشابه
Potassium currents dynamically set the 4 recruitment and firing properties of F - type 5 motoneurons in neonatal mice
Address for Correspondence: Felix Leroy 27 Centre de Neurophysique, Physiologie et Pathologie, UMR 8119 28 Université Paris Descartes, 45 rue des Saints-Pères, 75006 Paris, France 29 *present address: Dr Steve Siegelbaum lab,Columbia University Medical Center, 30 New York State Psychiatric Institute,1051 Riverside Drive New York, NY 10032 31 e-mail: [email protected] 32 33 34 35 Articles in PresS...
متن کاملA Simulation-Based Study of Dorsal Cochlear Nucleus Pyramidal Cell Firing Patterns
A two-variable integrate and fire model is presented to study the role of transient outward potassium currents in producing temporal aspects of dorsal cochlear nucleus (DCN) pyramidal cells with different profiles namely the chopper, the pauser and the buildup. This conductance based model is a reduced version of KM-LIF model (Meng & Rinzel, 2010) which captures qualitative firing features of a...
متن کاملDistribution of effective synaptic currents in cat triceps surae motoneurons. VI. Contralateral pyramidal tract.
We measured the effective synaptic currents (IN) produced by stimulating the contralateral pyramidal tract (PT) in triceps surae motoneurons of the cat. This is an oligosynaptic pathway in the cat that generates both excitation and inhibition in hindlimb motoneurons. We also determined the effect of the PT synaptic input on the discharge rate of some of the motoneurons by inducing repetitive fi...
متن کاملThe dendritic location of the L-type current and its deactivation by the somatic AHP current both contribute to firing bistability in motoneurons
Spinal motoneurons may display a variety of firing patterns including bistability between repetitive firing and quiescence and, more rarely, bistability between two firing states of different frequencies. It was suggested in the past that firing bistability required that the persistent L-type calcium current be segregated in distal dendrites, far away from the spike generating currents. However...
متن کاملDevelopment of potassium conductances in perinatal rat phrenic motoneurons.
Prior to the inception of inspiratory synaptic drive transmission from medullary respiratory centers, rat phrenic motoneurons (PMNs) have action potential and repetitive firing characteristics typical of immature embryonic motoneurons. During the period spanning from when respiratory bulbospinal and segmental afferent synaptic connections are formed at embryonic day 17 (E17) through to birth (g...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of neurophysiology
دوره 114 3 شماره
صفحات -
تاریخ انتشار 2015