Periodic High-Conductance States in Spinal Neurons during Scratch-Like Network Activity in Adult Turtles
Open Access
- 6 July 2005
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 25 (27), 6316-6321
- https://doi.org/10.1523/jneurosci.0843-05.2005
Abstract
Intense synaptic activity may alter the response properties of neurons in highly interconnected networks. Here we investigate whether the excitability and the intrinsic response properties of neurons in the spinal cord are affected by the increased synaptic conductance during functional network activity. Scratch episodes were induced by mechanical stimulation in the isolated carapace-spinal cord preparation from the adult turtle. Intracellular recordings revealed a dramatic increase in synaptic activity in interneurons and motoneurons during scratch activity. Superimposed slow depolarizing waves were phase-related to the rhythmic bouts of spike activity in the hip flexor nerve. The increase in synaptic conductance in interneurons and motoneurons varied with the scratch rhythm. During individual episodes, the conductance shifted smoothly with the scratch rhythm from near-resting levels to levels two to four times higher. In slice experiments, we found that even moderate increases in the conductance of motoneurons suppressed the slow afterhyperpolarization and the plateau potentials. We conclude that the excitability and the intrinsic response properties of spinal neurons are periodically quenched by high synaptic conductance during functional network activity.Keywords
This publication has 32 references indexed in Scilit:
- Characterization of Subthreshold Voltage Fluctuations in Neuronal MembranesNeural Computation, 2003
- The high-conductance state of neocortical neurons in vivoNature Reviews Neuroscience, 2003
- The motor infrastructure: from ion channels to neuronal networksNature Reviews Neuroscience, 2003
- Turning on and off recurrent balanced cortical activityNature, 2003
- 5-HT2 Receptors Promote Plateau Potentials in Turtle Spinal Motoneurons by Facilitating an L-Type Calcium CurrentJournal of Neurophysiology, 2003
- Spinal plasticity mediated by postsynaptic L-type Ca2+ channelsBrain Research Reviews, 2002
- A small-systems approach to motor pattern generationNature, 2002
- The Impact of Parallel Fiber Background Activity on the Cable Properties of Cerebellar Purkinje CellsNeural Computation, 1992
- Carapace and plastron sensitivity to touch and vibration in the tortoise (Testudo hermanni and T. graeca)Journal of Zoology, 1986
- Voltage clamping with a single microelectrodeJournal of Neurobiology, 1975