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PMID: 16093337 Published · ppublish English Evaluation Study Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Optical recording of fast neuronal membrane potential transients in acute mammalian brain slices by second-harmonic generation microscopy.

Journal of neurophysiology ·Vol. 94 ·No. 5 ·2005-11-00 ·Pages 3628-36

Dombeck DA, Sacconi L, Blanchard-Desce M, Webb WW

Abstract

Although nonlinear microscopy and fast (approximately 1 ms) membrane potential (Vm) recording have proven valuable for neuroscience applications, their potentially powerful combination has not yet been shown for studies of Vm activity deep in intact tissue. We show that laser illumination of neurons in acute rat brain slices intracellularly filled with FM4-64 dye generates an intense second-harmonic generation (SHG) signal from somatic and dendritic plasma membranes with high contrast >125 microm below the slice surface. The SHG signal provides a linear response to DeltaVm of approximately 7.5%/100 mV. By averaging repeated line scans (approximately 50), we show the ability to record action potentials (APs) optically with a signal-to-noise ratio (S/N) of approximately 7-8. We also show recording of fast Vm steps from the dendritic arbor at depths inaccessible with previous methods. The high membrane contrast and linear response of SHG to DeltaVm provides the advantage that signal changes are not degraded by background and can be directly quantified in terms of DeltaVm. Experimental comparison of SHG and two-photon fluorescence Vm recording with the best known probes for each showed that the SHG technique is superior for Vm recording in brain slice applications, with FM4-64 as the best tested SHG Vm probe.

MeSH Terms
Action Potentials/physiology Animals Brain/physiology Membrane Potentials/physiology Microscopy, Fluorescence/methods Neurons/physiology Optics and Photonics Patch-Clamp Techniques/methods Pyridinium Compounds Quaternary Ammonium Compounds Rats Rats, Sprague-Dawley Tissue Culture Techniques/methods
Chemicals
FM 4-64 Pyridinium Compounds Quaternary Ammonium Compounds
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Dombeck Daniel A
School of Applied and Engineering Physics, Cornell University, Ithaca, NY 14853, USA.
Sacconi Leonardo
Blanchard-Desce Mireille
Webb Watt W
Article Info
Journal
Journal of neurophysiology
Abbr.
J Neurophysiol
ISSN
0022-3077
Published
2005-11-00
Epub
2005-00-10
Pages
3628-36
Language
English
Region
United States
NLM ID
0375404
Subset
IM
Grants
NIGMS NIH HHS · GM-07469 · United States
NIGMS NIH HHS · GM-08267 · United States
NIBIB NIH HHS · P41 EB-001976-17 · United States
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