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PMID: 6056014 Published · ppublish English Journal Article

Conduction velocity and intracellular action potentials of the tunicate heart.

The Journal of general physiology ·Vol. 50 ·No. 8 ·1967-09-00 ·Pages 2097-107

Kriebel ME

Abstract

The tubular heart of tunicates is composed of a single layer of myoendothelial cells. The direction of contraction reverses every few minutes. The conduction times in both directions are the same. Conduction velocity was greatest in the middle of the arms of the V-shaped heart and slowest in the apex. The greater the heart length, the greater was the conduction velocity. The Q(10) of conduction velocity was 2-2.3. Removal of the raphe which attaches the heart to the pericardium and removal of a line of undifferentiated cells opposite the raphe did not change the conduction velocity or prevent the heart from reversing the direction of conduction. The median resting potential of 42 cells was -71 mv and the median action potential was 75 mv. At 20 degrees C the duration of the action potential was 1.2 sec and the maximal rate of depolarization was 3-10 v/sec. An increase in the beat frequency produced by electrically stimulating the heart decreased the resting potential, rate of rise, the duration, and the overshoot of the action potential. The shape of the action potential was sometimes different in the two directions of conduction. The electrophysiological evidence indicates only one cell type and suggests that the mode of the spread of excitation is by local current flow from cell to cell.

MeSH Terms
Action Potentials Animals Chordata, Nonvertebrate/physiology Electric Stimulation Heart Conduction System/physiology Muscle Contraction Physical Phenomena Physics
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Kriebel M E
References (4)
4 references, click to expand
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    Experientia. 1964 Apr 15;20(4):227-8 PMID: 5854173
  2. [On the ultrastructure of the heart tubes of Ciona intestinalis L].
    Experientia. 1964 May 15;20(5):265-6 PMID: 5856309
  3. Intracellular recording from moving tissues with a flexibly mounted ultramicroelectrode.
    Science. 1956 Jan 20;123(3186):100-1 PMID: 13281489
  4. A study on the mechanism of impulse transmission across the giant synapse of the squid.
    J Physiol. 1958 Aug 29;143(1):114-37 PMID: 13576464
Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1967-09-00
Pages
2097-107
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2225763
Subset
IM
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