Lowering of pH does not directly affect the junctional resistance of crayfish lateral axons
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Physiology,Biophysics
Link
http://link.springer.com/content/pdf/10.1007/BF01869725.pdf
Reference16 articles.
1. Campos de Carvalho, A., Spray, D.C., Bennett, M.V.L. 1984. pH dependence of transmission at electronic synapses of the crayfish septate axon.Brain Res. 321:279–286
2. Johnston, M.F. 1979. Electrotonic coupling and intracellular perfusion. Ph. D. Thesis. Duke University. Durham. N. C.
3. Johnston, M.F., Ramón, F. 1981. Electrotonic coupling in internally perfused crayfish segmented axons.J. Physiol. (London) 317:509–518
4. Peracchia, C. 1973. Low resistance junctions in crayfish. I. Two arrays of globules in junctional membranes.J. Cell. Biol. 57:546–565
5. Peracchia, C. 1986. Calmodulin-like proteins and communicating junctions. Electrical uncoupling of crayfish septate axons is inhibited by calmodulin inhibitor W7 and is not affected by cyclic nucleotides.Pfluegers Arch. (in press)
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