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PMID: 9199786 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Detection of spontaneous synaptic events with an optimally scaled template.

Biophysical journal ·Vol. 73 ·No. 1 ·1997-07-00 ·Pages 220-9

Clements JD, Bekkers JM

Abstract

Spontaneous synaptic events can be difficult to detect when their amplitudes are close to the background noise level. Here we report a sensitive new technique for automatic detection of small asynchronous events. A waveform with the time course of a typical synaptic event (a template) is slid along the current or voltage trace and optimally scaled to fit the data at each position. A detection criterion is calculated based on the optimum scaling factor and the quality of the fit. An event is detected when this criterion crosses a threshold level. The algorithm automatically compensates for changes in recording noise. The sensitivity and selectivity of the method were tested using real and simulated data, and the influence of the template parameter settings was investigated. Its performance was comparable to that obtained by visual event detection, and it was more sensitive than previously described threshold detection techniques. Under typical recording conditions, all fast synaptic events with amplitudes of at least three times the noise standard deviation (3 sigma) could be detected, as could 75% of events with amplitudes of 2 sigma. The scaled template technique is implemented within a commercial data analysis application and can be applied to many standard electrophysiological data file formats.

MeSH Terms
Animals Computer Simulation Dentate Gyrus/physiology Electric Stimulation Evoked Potentials/physiology Hippocampus/physiology In Vitro Techniques Models, Neurological Rats Rats, Wistar Software Synapses/physiology Synaptic Transmission/physiology Time Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Clements J D
John Curtin School of Medical Research, Australian National University, Canberra, Australia. john.clements@anu.edu.au
Bekkers J M
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Article Info
Journal
Biophysical journal
Abbr.
Biophys J
ISSN
0006-3495
Published
1997-07-00
Pages
220-9
Language
English
Region
United States
NLM ID
0370626
PMCID
PMC1180923
Subset
IM
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