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PMID: 17643087 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Review

Circuit-breakers: optical technologies for probing neural signals and systems.

Nature reviews. Neuroscience ·Vol. 8 ·No. 8 ·2007-08-00 ·Pages 577-81

Zhang F, Aravanis AM, Adamantidis A, de Lecea L, Deisseroth K

Abstract

Neuropsychiatric disorders, which arise from a combination of genetic, epigenetic and environmental influences, epitomize the challenges faced in understanding the mammalian brain. Elucidation and treatment of these diseases will benefit from understanding how specific brain cell types are interconnected and signal in neural circuits. Newly developed neuroengineering tools based on two microbial opsins, channelrhodopsin-2 (ChR2) and halorhodopsin (NpHR), enable the investigation of neural circuit function with cell-type-specific, temporally accurate and reversible neuromodulation. These tools could lead to the development of precise neuromodulation technologies for animal models of disease and clinical neuropsychiatry.

MeSH Terms
Animals Gene Transfer Techniques Humans Neural Pathways/physiology,radiation effects Neurophysiology/methods,trends Optics and Photonics/instrumentation Photic Stimulation/methods Rhodopsins, Microbial/metabolism,pharmacology,radiation effects Synaptic Transmission/physiology,radiation effects Vision, Ocular/physiology,radiation effects
Chemicals
Rhodopsins, Microbial
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Zhang Feng
Department of Bioengineering, W083 Clark Center, 318 Campus Drive West, Stanford University, California, USA.
Aravanis Alexander M
Adamantidis Antoine
de Lecea Luis
Deisseroth Karl
Article Info
Journal
Nature reviews. Neuroscience
Abbr.
Nat Rev Neurosci
ISSN
1471-003X
Published
2007-08-00
Pages
577-81
Language
English
Region
England
NLM ID
100962781
Subset
IM
Grants
NINDS NIH HHS · R01 NS069720 · United States
NINDS NIH HHS · R13 NS071694 · United States
Corrections
ErratumIn
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