bioRxiv · 10.1101/2022.02.09.479779
An Optrode Array for Spatiotemporally Precise Large-Scale Optogenetic Stimulation of Deep Cortical Layers in Non-human Primates
Abstract
Optogenetics has transformed studies of neural circuit function, but remains challenging to apply in large brains, such as those of non-human primates (NHPs). A major challenge is delivering intense, spatiotemporally precise, patterned photostimulation across large volumes in deep tissue. Such stimulation is critical, for example, to modulate selectively deep-layer corticocortical feedback projections. To address this unmet need, we have developed the Utah Optrode Array (UOA), a 10x10 glass needle waveguide array fabricated atop a novel opaque optical interposer then bonded to an electrically addressable LED array. In vivo experiments with the UOA demonstrated large-scale, spatiotemporally precise, activation of deep circuits in monkey cortex. Specifically, the UOA permitted both focal (confined to single layers/columns), and widespread (multiple layers/columns) optogenetic activation of deep layer neurons, simply by varying the number of activated LEDs and/or the irradiance. Thus, the UOA represents a powerful optoelectronic device for targeted manipulation of deep-layer circuits in NHP models.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Clark, A. M., Ingold, A., Reiche, C. F., Cundy, D., Balsor, J. L., Federer, F., McAlinden, N., Cheng, Y., Rolston, J. D., Rieth, L., Dawson, M. D., Mathieson, K., Blair, S., Angelucci, A.. 2022-02-10. An Optrode Array for Spatiotemporally Precise Large-Scale Optogenetic Stimulation of Deep Cortical Layers in Non-human Primates. https://doi.org/10.1101/2022.02.09.479779
Cite the original work for its findings. Save a collection to share your selection of sources.