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J L Novak

Publications and source records attributed to J L Novak.

5 recordsLinked to original sources

Two-dimensional current source density analysis of propagation delays for components of epileptiform bursts in rat hippocampal slices.

Recordings of epileptiform burst activity in the CA1 region of the transverse rat hippocampal slices were made with a 32-channel surface electrode array. The 200 microns interelectrode resolution, the simultaneity of the data, and the use of a two-dimensional current source density analysis allowed accurate measurement of population spike peak times. Differences were found in the apparent propagation delays among 3 burst components: the compound action potential (CAP) along the Schaffer collaterals, the first population spike directly driven by the CAP, and the second (and succeeding) population spikes representing the bursting, epileptiform component. Delay measurements were applied to epileptiform bursts recorded in slices treated with picrotoxin (PTX), pentylenetetrazol (PTZ), and 0-Mg2+ medium. In 0-Mg2+ medium all components propagate at nearly the same velocity. In the PTZ and PTX media the second population spike propagated more slowly than the CAP. The first population spike propagated at the same velocity as the CAP for orthodromic Schaffer collateral stimulation. The first population spike propagated at the same, slower velocity as the second spike for antidromic Schaffer collateral stimulation.

Animals

A high-speed multichannel neural data acquisition system for IBM PC compatibles.

An inexpensive 32-channel data acquisition system has been constructed for use in acquiring neuroelectric data from a multiple element electrode array. Direct memory access (DMA) techniques allowed a maximum aggregate sampling rate of 652 ksamples/s, or 20.4 ksamples/s on 32 channels. The 8-bit analog-to-digital (A/D) conversion circuitry lies on a single plug-in card installed in an IBM PC-compatible AT & T 6300 Plus personal computer, although the card may be used in an IBM PC with no reduction in sampling performance. Data have been taken from 32 points on the surface of the rat hippocampal slice preparation. Assembly language graphics routines permitted rapid display of raw and processed data. Signal processing routines can be executed and results can be displayed to provide rapid feedback to an experimenter.

Action Potentials

Multisite hippocampal slice recording and stimulation using a 32 element microelectrode array.

A technique has been developed in which a planar array of 32 microelectrodes, arranged in a 4 by 8 pattern with 200 micron separation, is used to record from and stimulate the hippocampal slice preparation at multiple sites. Control of media flow past the tissue is critical to observe signals and preserve viability. Active suppression circuitry is used to prevent device saturation due to large stimulation artifacts. The field potentials recorded are spatially unique and provide a 2-dimensional description of the underlying population activity in the various pyramidal strata and subpopulations. Multisite stimulation is also possible with the array, permitting the experimenter to quickly stimulate and record from brain slices in many spatial patterns.

Animals