Ian A. Oldenburg
Affiliations: | Harvard University, Cambridge, MA, United States |
Area:
NeuroscienceGoogle:
"Ian Oldenburg"Mean distance: 14.27 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorJustin C. Crowley | research assistant | 2007-2008 | Carnegie Mellon | |
Bernardo L. Sabatini | grad student | 2009-2014 | Harvard | |
(Basal Ganglia Modulation of Cortical Firing Rates in a Behaving Animal.) | ||||
Hillel Adesnik | post-doc | UC Berkeley |
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Publications
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Mardinly AR, Oldenburg IA, Pégard NC, et al. (2018) Precise multimodal optical control of neural ensemble activity. Nature Neuroscience |
Pégard NC, Mardinly AR, Oldenburg IA, et al. (2017) Three-dimensional scanless holographic optogenetics with temporal focusing (3D-SHOT). Nature Communications. 8: 1228 |
Pisanello F, Mandelbaum G, Pisanello M, et al. (2017) Dynamic illumination of spatially restricted or large brain volumes via a single tapered optical fiber. Nature Neuroscience |
Pisanello F, Sileo L, Pisanello M, et al. (2016) Nanomachined tapered optical fibers for in vivo optogenetics Ieee-Nano 2015 - 15th International Conference On Nanotechnology. 1528-1531 |
Pisanello F, Sileo L, Patria AD, et al. (2016) Multipoint optogenetic control of neural activity with tapered and nanostructured optical fibers Mediterranean Microwave Symposium. 2016 |
Oldenburg IA, Sabatini BL. (2015) Antagonistic but Not Symmetric Regulation of Primary Motor Cortex by Basal Ganglia Direct and Indirect Pathways. Neuron. 86: 1174-81 |
Saunders A, Oldenburg IA, Berezovskii VK, et al. (2015) A direct GABAergic output from the basal ganglia to frontal cortex. Nature. 521: 85-9 |
Oldenburg IA, Sabatini BL. (2015) Antagonistic but Not Symmetric Regulation of Primary Motor Cortex by Basal Ganglia Direct and Indirect Pathways Neuron. 86: 1174-1181 |
Pisanello F, Sileo L, Oldenburg IA, et al. (2014) Multipoint-emitting optical fibers for spatially addressable in vivo optogenetics. Neuron. 82: 1245-54 |
Beier KT, Saunders AB, Oldenburg IA, et al. (2013) Vesicular stomatitis virus with the rabies virus glycoprotein directs retrograde transsynaptic transport among neurons in vivo. Frontiers in Neural Circuits. 7: 11 |