Static and dynamic properties of synaptic transmission at the cyto-neural junction of frog labyrinth posterior canal.
Open Access
- 1 August 1989
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 94 (2) , 303-327
- https://doi.org/10.1085/jgp.94.2.303
Abstract
The properties of synaptic transmission have been studied at the cyto-neural junction of the frog labyrinth posterior canal by examining excitatory postsynaptic potential (EPSP) activity recorded intraaxonally from the afferent nerve after abolishing spike firing by tetrodotoxin. The waveform, amplitude, and rate of occurrence of the EPSPs have been evaluated by means of a procedure of fluctuation analysis devised to continuously monitor these parameters, at rest as well as during stimulation of the semicircular canal by sinusoidal rotation at 0.1 Hz, with peak accelerations ranging from 8 to 87 deg.s-2. Responses to excitatory and inhibitory accelerations were quantified in terms of maximum and minimum EPSP rates, respectively, as well as total numbers of EPSPs occurring during the excitatory and inhibitory half cycles. Excitatory responses were systematically larger than inhibitory ones (asymmetry). Excitatory responses were linearly related either to peak acceleration or to its logarithm, and the same occurred for inhibitory responses. In all units examined, the asymmetry of the response yielded nonlinear two-sided input-output intensity functions. Silencing of EPSPs during inhibition (rectification) was never observed. Comparison of activity during the first cycle of rotation with the average response over several cycles indicated that variable degrees of adaptation (up to 48%) characterize the excitatory response, whereas no consistent adaptation was observed in the inhibitory response. All fibers appeared to give responses nearly in phase with angular velocity, at 0.1 Hz, although the peak rates generally anticipated by a few degrees the peak angular velocity. From the data presented it appears that asymmetry, adaptation, and at least part of the phase lead in afferent nerve response are of presynaptic origin, whereas rectification and possible further phase lead arise at the encoder. To confirm these conclusions a simultaneous though limited study of spike firing and EPSP activity has been attempted in a few fibers.This publication has 23 references indexed in Scilit:
- Adapting-bump model for eccentric cells of Limulus.The Journal of general physiology, 1980
- Activation of the efferent system in the isolated frog labyrinth: Effects on the afferent EPSPs and spike discharge recorded from single fibers of the posterior nerveBrain Research, 1980
- Post-synaptic potentials recorded from afferent nerve fibres of the posterior semicircular canal in the frogBrain Research, 1977
- Sensitivity, polarity, and conductance change in the response of vertebrate hair cells to controlled mechanical stimuli.Proceedings of the National Academy of Sciences, 1977
- Adaptive distortions in the generator potential of semicircular canal sensory afferentsBrain Research, 1977
- Functional characterization of primary vestibular afferents in the frogExperimental Brain Research, 1976
- The origin of slow potentials in semicircular canals of the frogActa Oto-Laryngologica, 1976
- Changes in time scale and sensitivity in the ommatidia of LimulusThe Journal of Physiology, 1964
- A further study of the statistical composition of the end‐plate potentialThe Journal of Physiology, 1955
- Über den Nachweis der Bewegung der Cupula in der intakten Bogengangsampulle des Labyrinthes bei der natürlichen rotatorischen und calorischen ReizungPflügers Archiv - European Journal of Physiology, 1931