With the use of a point voltage-clamp technique, the effects of Zn2+, UO22+, tetraethylammonium, and several other homologous quaternary ammonium ions on the electrical properties of the frog sartorius muscle and its mechanical threshold were studied. None of the agents separated the voltage thresholds for mechanical activation and delayed rectification. However, Zn2+, UO22+, and TEA, which are known to potentiate the twitch, caused some inhibition of the normal increase in potassium conductance during delayed rectification. Zn2+ and UO22+ also slowed the rate of development of the outward current. A strength-duration relation was studied for depolarization pulses capable of initiating contraction. With a depolarizing pulse of 2.5 msec the mechanical threshold is about -13 mv at about 20°C. UO22+, 0.5 µM, which markedly reduced the outward current produced by such a short pulse, did not raise the mechanical threshold. All findings indicate that there is no direct causal relation between delayed rectification and mechanical activation.
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1 May 1970
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May 01 1970
Actions of Some Cations on the Electrical Properties and Mechanical Threshold of Frog Sartorius Muscle Fibers
C. Y. Kao,
C. Y. Kao
From the Physiological Laboratory, Cambridge University, England.
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P. R. Stanfield
P. R. Stanfield
From the Physiological Laboratory, Cambridge University, England.
Search for other works by this author on:
C. Y. Kao
From the Physiological Laboratory, Cambridge University, England.
P. R. Stanfield
From the Physiological Laboratory, Cambridge University, England.
Dr. Kao's present address is Department of Pharmacology, Downstate Medical Center, State University of New York, Brooklyn, New York 11203.
Received:
May 22 1969
Online ISSN: 1540-7748
Print ISSN: 0022-1295
Copyright © 1970 by The Rockefeller University Press
1970
J Gen Physiol (1970) 55 (5): 620–639.
Article history
Received:
May 22 1969
Citation
C. Y. Kao, P. R. Stanfield; Actions of Some Cations on the Electrical Properties and Mechanical Threshold of Frog Sartorius Muscle Fibers . J Gen Physiol 1 May 1970; 55 (5): 620–639. doi: https://doi.org/10.1085/jgp.55.5.620
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