Construction of a very high-density extracellular electrode array.
- 1 July 2000
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 279 (1), H437-H442
- https://doi.org/10.1152/ajpheart.2000.279.1.h437
Abstract
Cellular activation mapping (specifying in time and space the electrical activation sequence of cells) is a well-established basic research tool in cardiac, neural, and gastric physiology. Much recent research in cardiac mapping has focused on large arrays (>200 electrodes) with small electrodes (<500 microm). Construction of such arrays using standard techniques is tedious and yields irregular electrode spacing. We present a novel construction technique that rapidly produces large arrays with regularly spaced small electrodes. For methods, fine-pitch copper ribbon cables, insulated with either polyvinylchloride (PVC) or polyimide (flexible printed circuit; FPC), were assembled together such that the active surface was the cut end of the cable. The cut end was sanded and polished, then coated with silver and sometimes silver chloride. Once completed, the alternating current (AC) root-mean-square (rms) potential was measured between two adjacent, individual electrodes. Polarization testing was conducted according to a previously reported protocol (Witkowski FX and Penkoske PA. J Electrocardiol 21: 273-282, 1988). Activation mapping was conducted in the open-chest guinea pig with both pacing- and defibrillation- strength stimuli. In terms of results, four PVC and three FPC arrays were constructed, ranging from 4 to 400 electrodes. Two hours of labor were needed to create a complete electrode array, independent of the number of electrodes, including connectors and silver/silver chloride coating. As expected, the addition of a silver/silver chloride coating significantly reduced (0.76-0.42 mV, P < 0.001) the AC rms potential difference between two electrodes. A nearly immediate recovery of the potential difference between adjacent pairs of silver/silver chloride electrodes was observed after defibrillation stimuli.Keywords
This publication has 11 references indexed in Scilit:
- Constructing a multichannel electrocardiography system from a few standardized, high-level componentsIEEE Engineering in Medicine and Biology Magazine, 1998
- The Stochastic Nature of Cardiac Propagation at a Microscopic LevelCirculation Research, 1995
- A Quantitative Measurement of Spatial Orderin Ventricular FibrillationJournal of Cardiovascular Electrophysiology, 1993
- Multielectrode mapping of slow-wave activity in the isolated rabbit duodenumJournal of Applied Physiology, 1993
- In vivo estimation of cardiac transmembrane current.Circulation Research, 1993
- A normal coronary artery: what size is it?Circulation, 1992
- A flexible perforated microelectrode array for extended neural recordingsIEEE Transactions on Biomedical Engineering, 1992
- A silicon-based, three-dimensional neural interface: manufacturing processes for an intracortical electrode arrayIEEE Transactions on Biomedical Engineering, 1991
- Multisite microprobes for neural recordingsIEEE Transactions on Biomedical Engineering, 1991
- A completely automated activation-repolarization interval algorithm for directly coupled unipolar electrograms and its three-dimensional correlation with refractory periodsJournal of Electrocardiology, 1988