An easy-to-assemble, robust, and lightweight drive implant for chronic tetrode recordings in freely moving animals

Author:

Voigts JakobORCID,Newman Jonathan PORCID,Wilson Matthew A,Harnett Mark T

Abstract

Abstract Tetrode arrays are a standard method for neuronal recordings in behaving animals, especially for chronic recordings of many neurons in freely-moving animals. Objective. We sought to simplify tetrode drive designs with the aim of enabling building and implanting a 16-tetrode drive in a single day. Approach. Our design makes use of recently developed technologies to reduce the complexity of the drive while maintaining a low weight. Main results. The design presents an improvement over existing implants in terms of robustness, weight, and ease of use. We describe two variants: a 16 tetrode implant weighing ∼2 g for mice, bats, tree shrews and similar animals, and a 64 tetrode implant weighing ∼16 g for rats and similar animals. These designs were co-developed and optimized alongside a new class of drive-mounted feature-rich amplifier boards with ultra-thin radio-frequency tethers, as described in an upcoming paper (Newman, Zhang et al in prep). Significance. This design significantly improves the data yield of chronic electrophysiology experiments.

Funder

National Institute of Neurological Disorders and Stroke

MIT Research Support Committee

National Eye Institute

Simons Center for the Social Brain at MIT

National Institute of Mental Health

Office of Integrative Activities

Simons Foundation

Publisher

IOP Publishing

Subject

Cellular and Molecular Neuroscience,Biomedical Engineering

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