International audienceIon channels are transmembrane proteins that control the movement of ions across the cell membrane. They are the molecular machines that make neurons excitable by enabling the initiation and propagation of action potentials (APs). Rapid signaling within and between neurons requires complex molecular processes that couple the sensing of membrane voltage or neurotransmitter release to the fast opening and closing of the ion channel gate. Malfunction of an on channel's sensing or gating module can have disastrous pathological consequences. However, linking molecular changes to the modulation of neural circuits and ultimately to a physiological or pathological state is not a straightforward task. It requires precise and so...
Nature has incorporated small photochromic molecules, colloquially termed 'photoswitches', in photor...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Ion channels are transmembrane proteins that control the movement of ions across the cell membrane. ...
International audienceLight-controllable tools provide powerful means to manipulate and interrogate ...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
Membrane receptors and ion channels respond to various stimuli and relay that information across the...
International audienceThe optical neuroscience revolution is transforming how we study neural circui...
With a new technology called optogenetics, it is possible to turn neuronal activity on and off in di...
Transmembrane receptors allow a cell to communicate with its environment in response to a variety of...
If we look at a simple organism such as a zebrafish under a microscope, we would see many cells work...
International audienceThe powerful optogenetic pharmacology method allows the optical control of neu...
International audienceIn neurons, ligand-gated ion channels decode the chemical signal of neurotrans...
The ability to turn on and off specific cell types and neural pathways in the brain, in a temporally...
Proteins with engineered sensitivities to light are infiltrating the biological mechanisms by which ...
Nature has incorporated small photochromic molecules, colloquially termed 'photoswitches', in photor...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Ion channels are transmembrane proteins that control the movement of ions across the cell membrane. ...
International audienceLight-controllable tools provide powerful means to manipulate and interrogate ...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
Membrane receptors and ion channels respond to various stimuli and relay that information across the...
International audienceThe optical neuroscience revolution is transforming how we study neural circui...
With a new technology called optogenetics, it is possible to turn neuronal activity on and off in di...
Transmembrane receptors allow a cell to communicate with its environment in response to a variety of...
If we look at a simple organism such as a zebrafish under a microscope, we would see many cells work...
International audienceThe powerful optogenetic pharmacology method allows the optical control of neu...
International audienceIn neurons, ligand-gated ion channels decode the chemical signal of neurotrans...
The ability to turn on and off specific cell types and neural pathways in the brain, in a temporally...
Proteins with engineered sensitivities to light are infiltrating the biological mechanisms by which ...
Nature has incorporated small photochromic molecules, colloquially termed 'photoswitches', in photor...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...