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Control of feeding movements in the freshwater snail Planorbis corneus
- Source :
- Experimental Brain Research. 70:323-331
- Publication Year :
- 1988
- Publisher :
- Springer Science and Business Media LLC, 1988.
-
Abstract
- Isolated buccal ganglia of Planorbis corneus are capable of generating a feeding rhythm. In the present work, "rhythmic" neurons of different groups (see Arshavsky et al. 1988a) have been extracted, by means of an intracellular microelectrode, from the buccal ganglia. (1) After extraction, efferent neurons of groups 3, 5, 7, 9 and most group 4 neurons generated repeated spikes at a frequency controlled by a polarizing current. Any periodic oscillations, similar to those during feeding rhythm generation, were absent in these isolated neurons. It is concluded, therefore, that these neurons are "followers", that is, their rhythmic activity before extraction is determined by synaptic inputs from other neurons of the ganglia. (2) Isolated interneurons of groups 1 and 2 generated slow periodic oscillations similar to those observed in these neurons before their extraction. Subgroup 1e neurons generated smoothly growing depolarization accompanied by increasing spike activity; this depolarization was periodically interrupted by abrupt hyperpolarization, after which a new cycle started. Subgroup 1d neurons periodically generated short series of spikes. Group 2 neurons periodically generated a rectangular wave of depolarization with spike-like oscillations on its top. These results suggest that feeding rhythm generation in Planorbis is based on the endogenous rhythmic activity of group 1 and 2 neurons. (3) A pulse of hyperpolarizing current injected into an isolated neuron of subgroup 1e stopped the growth of depolarization in the neuron and reinitiated the process. This property as well as the character of the synaptic interactions of the interneurons (group 1 neurons excite those of group 2, while those of group 2 inhibit group 1 neurons; Arshavsky et al. 1988b) determine the alternating activity of groups 1 and 2.
- Subjects :
- Periodicity
Movement
Snails
Action Potentials
In Vitro Techniques
Planorbis
Membrane Potentials
Rhythm
medicine
Animals
Neurons
biology
Chemistry
General Neuroscience
Central pattern generator
Depolarization
Feeding Behavior
Efferent Neuron
Hyperpolarization (biology)
biology.organism_classification
Electrophysiology
medicine.anatomical_structure
nervous system
Ganglia
Neuron
Neuroscience
Subjects
Details
- ISSN :
- 14321106 and 00144819
- Volume :
- 70
- Database :
- OpenAIRE
- Journal :
- Experimental Brain Research
- Accession number :
- edsair.doi.dedup.....21f3abea04c135cb2c058f04f5afb2c5
- Full Text :
- https://doi.org/10.1007/bf00248357