Literature DB >> 12034331

Recording and marking with silicon multichannel electrodes.

George Townsend1, Pascal Peloquin, Fabian Kloosterman, Jamille F Hetke, L Stan Leung.   

Abstract

This protocol describes an implementation of recording and analysis of evoked potentials in the hippocampal cortex, combined with lesioning using multichannel silicon probes. Multichannel recording offers the advantage of capturing a potential field at one instant in time. The potentials are then subjected to current source density (CSD) analysis, to reveal the layer-by-layer current sources and sinks. Signals from each channel of a silicon probe (maximum 16 channels in this study) were amplified and digitized at up to 40 kHz after sample-and-hold circuits. A modular lesion circuit board could be inserted between the input preamplifiers and the silicon probe, such that any one of the 16 electrodes could be connected to a DC lesion current. By making a lesion at the electrode showing a physiological event of interest, the anatomical location of the event can be precisely identified, as shown for the distal dendritic current sink in CA1 following medial perforant path stimulation. Making two discrete lesions through the silicon probe is useful to indicate the degree of tissue shrinkage during histological procedures. In addition, potential/CSD profiles were stable following small movements of the silicon probe, suggesting that the probe did not cause excessive damage to the brain.

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Year:  2002        PMID: 12034331     DOI: 10.1016/s1385-299x(02)00139-3

Source DB:  PubMed          Journal:  Brain Res Brain Res Protoc        ISSN: 1385-299X


  7 in total

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Journal:  J Neurophysiol       Date:  2016-12-14       Impact factor: 2.714

2.  Inverse current source density method in two dimensions: inferring neural activation from multielectrode recordings.

Authors:  Szymon Łęski; Klas H Pettersen; Beth Tunstall; Gaute T Einevoll; John Gigg; Daniel K Wójcik
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3.  Melanopsin-derived visual responses under light adapted conditions in the mouse dLGN.

Authors:  Katherine E Davis; Cyril G Eleftheriou; Annette E Allen; Christopher A Procyk; Robert J Lucas
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4.  Embedded Ultrathin Cluster Electrodes for Long-Term Recordings in Deep Brain Centers.

Authors:  Leila Etemadi; Mohsin Mohammed; Palmi Thor Thorbergsson; Joakim Ekstrand; Annika Friberg; Marcus Granmo; Lina M E Pettersson; Jens Schouenborg
Journal:  PLoS One       Date:  2016-05-09       Impact factor: 3.240

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Authors:  Inga Kristaponyte; Nichole L Beebe; Jesse W Young; Sharad J Shanbhag; Brett R Schofield; Alexander V Galazyuk
Journal:  eNeuro       Date:  2021-01-15

6.  Increased hippocampal excitability in the 3xTgAD mouse model for Alzheimer's disease in vivo.

Authors:  Katherine E Davis; Sarah Fox; John Gigg
Journal:  PLoS One       Date:  2014-03-12       Impact factor: 3.240

7.  Phase-locking of bursting neuronal firing to dominant LFP frequency components.

Authors:  Maria Constantinou; Daniel H Elijah; Daniel Squirrell; John Gigg; Marcelo A Montemurro
Journal:  Biosystems       Date:  2015-08-21       Impact factor: 1.973

  7 in total

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