Neuropixels Opto: Combining high-resolution electrophysiology and optogenetics
Lakunina, A.; Socha, K. Z.; Ladd, A.; Bowen, A. J.; Chen, S.; Colonell, J.; Doshi, A.; Karsh, B.; Krumin, M.; Kulik, P.; Li, A.; Neutens, P.; O'Callaghan, J.; Olsen, M.; Putzeys, J.; Tilmans, H. A. C.; Ye, Z.; Welkenhuysen, M.; Hausser, M.; Koch, C.; Ting, J.; Neuropixels Opto Consortium, ; Dutta, B.; Harris, T. D.; Steinmetz, N. A.; Svoboda, K.; Siegle, J. H.; Carandini, M.
Show abstract
High-resolution extracellular electrophysiology is the gold standard for recording spikes from distributed neural populations, and is especially powerful when combined with optogenetics for manipulation of specific cell types with high temporal resolution. We integrated these approaches into prototype Neuropixels Opto probes, which combine electronic and photonic circuits. These devices pack 960 electrical recording sites and two sets of 14 light emitters onto a 70 m wide, 1 cm long shank, allowing spatially addressable optogenetic stimulation with blue and red light. In mouse cortex, Neuropixels Opto probes delivered high-quality recordings together with spatially addressable optogenetics, differentially activating or silencing neurons at distinct cortical depths. In mouse striatum and other deep structures, Neuropixels Opto probes delivered efficient optotagging, facilitating the identification of two cell types in parallel. Neuropixels Opto probes represent an unprecedented tool for recording, identifying, and manipulating neuronal populations.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Electro-optical mechanically flexible coaxial microprobes for minimally invasive interfacing with intrinsic neural circuits 97%
- Ultrafast Light Targeting for High-Throughput Precise Control of Neuronal Networks 97%
- Diesel2p mesoscope with dual independent scan engines for flexible capture of dynamics in distributed neural circuitry 96%
Similar papers in this journal
Similar papers in this journal
- Targeted micro-fiber arrays for measuring and manipulating localized multi-scale neural dynamics over large, deep brain volumes during behavior 97%
- High performance microbial opsins for spatially and temporally precise perturbations of large neuronal networks 96%
- Feature-tuned synaptic inputs to somatostatin interneurons drive context-dependent processing 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.