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Large-scale high-density brain-wide neural recording in nonhuman primates
Biorxiv : the Preprint Server for Biology
|May 19, 2023
Summary
New Neuropixels 1.0-NHP probes enable large-scale neural recordings in macaque brains. This technology significantly advances systems neuroscience research in nonhuman primates.
Area of Science:
- Systems Neuroscience
- Neurotechnology
- Electrophysiology
Background:
- Integrated silicon electrodes have advanced systems neuroscience by enabling large-scale neural population recordings with single-cell resolution.
- Current technologies have limitations for nonhuman primate research, despite their value as models of human cognition.
Purpose of the Study:
- To design, fabricate, and evaluate Neuropixels 1.0-NHP, a high channel count linear electrode array for large-scale neural recordings in macaque brains.
- To enable simultaneous recordings from superficial and deep brain structures in large animals.
Main Methods:
- Fabrication of two versions of the Neuropixels 1.0-NHP probe: 4416 electrodes on a 45 mm shank and 2496 electrodes on a 25 mm shank.
- Programmatic selection of 384 channels per probe for simultaneous multi-area recording.
- Demonstration of recording capabilities in macaque brains.
Main Results:
- Successful recording from over 3000 single neurons in a single session.
- Simultaneous recording from over 1000 neurons using multiple probes.
- Demonstrated ability to access both superficial and deep brain structures.
Conclusions:
- Neuropixels 1.0-NHP significantly increases recording access and scalability for systems neuroscience in nonhuman primates.
- This technology facilitates new experimental approaches, including fine-grained electrophysiological characterization and brain-wide recording.
- Enables detailed study of functional connectivity and neural population dynamics in primate models.

