Abstract
1. An in vitro preparation of the medullary pacemaker nucleus of the weakly electric fish Apteronotus leptorhynchus was studied which fires regularly and synchronously at the fish's characteristic frequency of electric organ discharge (EOD). Upon bipolar stimulation of tissue regions through which pass prepacemaker nucleus afferents to the pacemaker, a brief, transient increase in discharge frequency ensued at short-latency (Fig. 1A). 2. Intracellular recordings revealed that the acceleration was accompanied by a depolarization and decline in action potential amplitude. The magnitude of these changes was both phase- (Fig. 5) and amplitude-dependent, with the latter showing an evident threshold effect (Figs. 4 and 12). The response was reversibly blocked by high Mg2+ saline (Fig. 1B), and the magnitude of the accelerations showed marked facilitation during repeated stimulation (Fig. 6). 3. Optical and histological identification allowed characteristically different responses in the intracellular recordings to be attributed to the two cell types of the pacemaker nucleus: pacemaker and relay cells (Figs. 2 and 3). Similar responses have been observed at these respective recording locations in the intact animal during chirping (Dye and Heiligenberg 1987). 4. Simultaneous recordings of pairs of cells revealed a transient change in the phase relationship of firing during the accelerations which was most marked between relay and pacemaker cells (Fig. 7). These dual recordings also revealed that the relay cells depolarize and accelerate more than pacemaker cells (Fig. 10), suggesting that they are the principal effectors of this behavioral modulation. 5. Trains of pulses additionally elicited a long-lasting frequency elevation which occurred at a slightly higher threshold than the brief accelerations. This slow frequency change relaxed back to baseline following a biexponential time course which closely resembled that of a distinct behavior seen in intact fish, termed 'yodeling' (Dye 1987).
MeSH Terms
Action Potentials/drug effects
Animals
Biological Clocks
Calcium/pharmacology
Electric Fish/physiology
Electric Organ/innervation,physiology
Electric Stimulation
In Vitro Techniques
Magnesium/pharmacology
Medulla Oblongata/drug effects,physiology
Time Factors
Chemicals
Magnesium
Calcium
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Dye J
Department of Neurosciences and Neurobiology Unit, Scripps Institution of Oceanography, La Jolla, California 92093.
References (16)
16 references, click to expand
-
Mechanism of facilitation at the crayfish neuromuscular junction.
J Physiol. 1961 Mar;155:530-42
PMID: 13724751
-
Anatomical and functional organization of the prepacemaker nucleus in gymnotiform electric fish: the accommodation of two behaviors in one nucleus.
J Comp Neurol. 1988 Oct 1;276(1):113-31
PMID: 2461396
-
Statistical factors involved in neuromuscular facilitation and depression.
J Physiol. 1954 Jun 28;124(3):574-85
PMID: 13175200
-
Input to the medullary pacemaker nucleus in the weakly electric fish, Eigenmannia (sternopygidae, gymnotiformes).
Brain Res. 1981 May 4;211(2):418-23
PMID: 7016257
-
Dynamics and stimulus-dependence of pacemaker control during behavioral modulations in the weakly electric fish, Apteronotus.
J Comp Physiol A. 1987 Aug;161(2):175-85
PMID: 3625571
-
Physiology and ultrastructure of electrotonic junctions. IV. Medullary electromotor nuclei in gymnotid fish.
J Neurophysiol. 1967 Mar;30(2):236-300
PMID: 6045196
-
Individual prepacemaker neurons can modulate the pacemaker cycle of the gymnotiform electric fish, Eigenmannia.
J Comp Physiol A. 1988 Jan;162(1):13-21
PMID: 3351783
-
Synaptology of the medullary command (pacemaker) nucleus of the weakly electric fish (Apteronotus leptorhynchus) with particular reference to comparative aspects.
Exp Brain Res. 1985;60(3):509-20
PMID: 4076373
-
Sensory feedback from electroreceptors to electromotor pacemaker centers in gymnotids.
Am J Physiol. 1968 Jun;214(6):1253-61
PMID: 5649480
-
Facilitation, augmentation, and potentiation of transmitter release.
Prog Brain Res. 1979;49:175-82
PMID: 42112
-
Hormone-induced and maturational changes in electric organ discharges and electroreceptor tuning in the weakly electric fish Apteronotus.
J Comp Physiol A. 1987 Mar;160(3):385-94
PMID: 3572854
-
'Recognition units' at the top of a neuronal hierarchy? Prepacemaker neurons in Eigenmannia code the sign of frequency differences unambiguously.
J Comp Physiol A. 1988 Apr;162(6):759-72
PMID: 3397919
-
Effect of temperature on the discharge rates of the electric organ of some gymnotids.
Comp Biochem Physiol. 1968 Nov;27(2):625-7
PMID: 5758391
-
Intracellular recording in the medullary pacemaker nucleus of the weakly electric fish, Apteronotus, during modulatory behaviors.
J Comp Physiol A. 1987 Aug;161(2):187-200
PMID: 3625572
-
The reliability of neurons.
J Gen Physiol. 1970 May;55(5):565-84
PMID: 5462670
-
Cell types and synaptic organization of the medullary electromotor nucleus in a constant frequency weakly electric fish, Sternarchus albifrons.
J Comp Neurol. 1980 Aug 1;192(3):407-26
PMID: 7419738