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PMID: 2918347 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Measurement of passive membrane parameters with whole-cell recording from neurons in the intact amphibian retina.

Journal of neurophysiology ·Vol. 61 ·No. 1 ·1989-01-00 ·Pages 218-30

Coleman PA, Miller RF

Abstract

1. Whole-cell recordings have been obtained from intact, photoactive retinal neurons using patch-clamp electrodes in the amphibian superfused retina eyecup preparation. 2. After removal of the vitreous humor from the surface of the retina, using a collagenase with low tryptic activity, high-resistance seals (1-10 G omega) could be formed between the patch pipette and the cell membrane by applying mild suction to the pipette. Additional suction broke the membrane patch and provided continuity between the low-resistance pipette and the interior of the neuron. 3. Measurements of input resistance and time constant were obtained from bipolar, amacrine, and ganglion cells. Assuming the membrane capacitance was 1 microF/cm2, time constant data were used to derive the specific membrane resistance. The average specific membrane resistance for the inner retinal neurons in our sample was 68,000 omega.cm2. 4. Analysis of the charging curve induced by a brief current pulse applied to the soma was used to analyze the average electrotonic length of dendrites. The charging curves of some ganglion cells were well represented by a single exponential, suggesting that they were essentially isopotential. 5. The voltage decay along an equivalent cylinder model of a ganglion cell was calculated, using the experimentally obtained values of membrane resistance to compute decay of steady-state voltages along the dendritic tree. The calculations indicate that with the high membrane resistance values implied by this study, the electrotonic length of dendritic cables were short, and there may be relatively little attenuation of the synaptic potentials irrespective of their location along the dendritic tree.

MeSH Terms
Ambystoma Animals Cell Membrane/physiology Dendrites/physiology Electric Conductivity Mathematics Necturus maculosus Neurons/physiology Neurophysiology/methods Retina/cytology Retinal Ganglion Cells/physiology Time Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Coleman P A
Washington University School of Medicine, Department of Ophthalmology, St. Louis, Missouri 63110.
Miller R F
Article Info
Journal
Journal of neurophysiology
Abbr.
J Neurophysiol
ISSN
0022-3077
Published
1989-01-00
Pages
218-30
Language
English
Region
United States
NLM ID
0375404
Subset
IM
Grants
NEI NIH HHS · EY-00844 · United States
NEI NIH HHS · EY-07057 · United States
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