Article ID Journal Published Year Pages File Type
4335005 Journal of Neuroscience Methods 2013 5 Pages PDF
Abstract

Parallel electrophysiological recording and behavioral monitoring of freely moving animals is essential for a better understanding of the neural mechanisms underlying behavior. In this paper we describe a novel wireless recording technique, which is capable of synchronously recording in vivo multichannel electrophysiological (LFP, MUA, EOG, EMG) and activity data (accelerometer, video) from freely moving cats. The method is based on the integration of commercially available components into a simple monitoring system and is complete with accelerometers and the needed signal processing tools. LFP activities of freely moving group-housed cats were recorded from multiple intracortical areas and from the hippocampus. EMG, EOG, accelerometer and video were simultaneously acquired with LFP activities 24-h a day for 3 months. These recordings confirm the possibility of using our wireless method for 24-h long-term monitoring of neurophysiological and behavioral data of freely moving experimental animals such as cats, ferrets, rabbits and other large animals.

► We developed a system for parallel electrophysiological, video and movement recording. ► The system enables 24-h/day long-term recordings from freely moving animals. ► The system was used on cats to collect data on sleep/wake activities. ► The system can be used to study unrestrained behavior of laboratory animals.

Related Topics
Life Sciences Neuroscience Neuroscience (General)
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