Guided by the notion that biology itself offers some of the most incisive tools for studying biological systems, neurophysiologists rely increasingly on cell biological mechanisms and materials encoded in DNA to visualize and control the activity of neurons in functional circuits. Optical reporter proteins can broadcast the operational states of genetically designated cells and synapses; remote-controlled effectors can suppress or induce electrical activity. Many challenges, however, remain. These include the development of novel gene expression systems that target reporters and effectors to functionally relevant neuronal ensembles, the capacity to monitor and manipulate multiple populations of neurons in parallel, the ability to observe an...
Much has been learned about the environmental and molecular factors that influence the division, mig...
Methods to label neurons and to monitor their activity with genetically encoded fluorescent reporter...
Elucidation of the neural substrates underlying complex animal behaviors depends on precise activity...
Guided by the notion that biology itself offers some of the most incisive tools for studying biologi...
Information in nervous systems is often carried by neural ensembles--groups of neurons in transient ...
Proteins with engineered sensitivities to light are infiltrating the biological mechanisms by which ...
Understanding the principles of information processing in neural circuits requires systematic charac...
The recently introduced term ‘optogenetics’ describes a variety of techniques for expressing genes i...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
AbstractUnderstanding how the diverse cells of the nervous system generate sensations, memories and ...
One central goal of systems neuroscience is to understand how neural circuits implement the computat...
AbstractVisualizing fast physiological changes in small living cells, such as synaptic transmission ...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
International audienceBrain intricacies and the difficulty that scientists encounter in revealing it...
Toward the functional dissection of neuronal circuits, a number of new genetic tools have been devel...
Much has been learned about the environmental and molecular factors that influence the division, mig...
Methods to label neurons and to monitor their activity with genetically encoded fluorescent reporter...
Elucidation of the neural substrates underlying complex animal behaviors depends on precise activity...
Guided by the notion that biology itself offers some of the most incisive tools for studying biologi...
Information in nervous systems is often carried by neural ensembles--groups of neurons in transient ...
Proteins with engineered sensitivities to light are infiltrating the biological mechanisms by which ...
Understanding the principles of information processing in neural circuits requires systematic charac...
The recently introduced term ‘optogenetics’ describes a variety of techniques for expressing genes i...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
AbstractUnderstanding how the diverse cells of the nervous system generate sensations, memories and ...
One central goal of systems neuroscience is to understand how neural circuits implement the computat...
AbstractVisualizing fast physiological changes in small living cells, such as synaptic transmission ...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
International audienceBrain intricacies and the difficulty that scientists encounter in revealing it...
Toward the functional dissection of neuronal circuits, a number of new genetic tools have been devel...
Much has been learned about the environmental and molecular factors that influence the division, mig...
Methods to label neurons and to monitor their activity with genetically encoded fluorescent reporter...
Elucidation of the neural substrates underlying complex animal behaviors depends on precise activity...