AbstractTo permit direct functional analyses of neural circuits, we have developed a method for stimulating groups of genetically designated neurons optically. Coexpression of the Drosophila photoreceptor genes encoding arrestin-2, rhodopsin (formed by liganding opsin with retinal), and the α subunit of the cognate heterotrimeric G protein—an explosive combination we term “chARGe”—sensitizes generalist vertebrate neurons to light. Illumination of a mixed population of neurons elicits action potentials selectively and cell-autonomously in its genetically chARGed members. In contrast to bath-applied photostimulants or caged neurotransmitters, which act indiscriminately throughout the illuminated volume, chARGe localizes the responsiveness to ...
The ability to turn on and off specific cell types and neural pathways in the brain, in a temporally...
Optogenetic strategies to control genetically distinct populations of neurons with light have been r...
Optogenetic tools enable examination of how specific cell types contribute to brain circuit function...
AbstractTo permit direct functional analyses of neural circuits, we have developed a method for stim...
To permit direct functional analyses of neural circuits, we have developed a method for stimulating ...
SummaryOptically gated ion channels were expressed in circumscribed groups of neurons in the Drosoph...
The recently introduced term ‘optogenetics’ describes a variety of techniques for expressing genes i...
The functional analysis of neuronal circuitry would be facilitated if researchers were able to contr...
SummaryChannelrhodopsin-2 (ChR2) is a light-gated, cation-selective ion channel isolated from the gr...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
Methods to label neurons and to monitor their activity with genetically encoded fluorescent reporter...
Optogenetic channels and ion pumps have become indispensable tools in neuroscience to manipulate neu...
<div><p>Manipulation of neuronal activity through genetically targeted actuator molecules is a power...
Optically gated ion channels were expressed in circumscribed groups of neurons in the Drosophila CNS...
The causal analysis of neuronal network function requires a selective manipulation of genetically de...
The ability to turn on and off specific cell types and neural pathways in the brain, in a temporally...
Optogenetic strategies to control genetically distinct populations of neurons with light have been r...
Optogenetic tools enable examination of how specific cell types contribute to brain circuit function...
AbstractTo permit direct functional analyses of neural circuits, we have developed a method for stim...
To permit direct functional analyses of neural circuits, we have developed a method for stimulating ...
SummaryOptically gated ion channels were expressed in circumscribed groups of neurons in the Drosoph...
The recently introduced term ‘optogenetics’ describes a variety of techniques for expressing genes i...
The functional analysis of neuronal circuitry would be facilitated if researchers were able to contr...
SummaryChannelrhodopsin-2 (ChR2) is a light-gated, cation-selective ion channel isolated from the gr...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
Methods to label neurons and to monitor their activity with genetically encoded fluorescent reporter...
Optogenetic channels and ion pumps have become indispensable tools in neuroscience to manipulate neu...
<div><p>Manipulation of neuronal activity through genetically targeted actuator molecules is a power...
Optically gated ion channels were expressed in circumscribed groups of neurons in the Drosophila CNS...
The causal analysis of neuronal network function requires a selective manipulation of genetically de...
The ability to turn on and off specific cell types and neural pathways in the brain, in a temporally...
Optogenetic strategies to control genetically distinct populations of neurons with light have been r...
Optogenetic tools enable examination of how specific cell types contribute to brain circuit function...