Optogenetic manipulation of cells or living organisms became widely used in neuroscience following the introduction of the light-gated ion channel channelrhodopsin-2 (ChR2). ChR2 is a non-selective cation channel, ideally suited to depolarize and evoke action potentials in neurons. However, its calcium (Ca2+) permeability and single channel conductance are low and for some applications longer-lasting increases in intracellular Ca2+ might be desirable. Moreover, there is need for an efficient light-gated potassium (K+) channel that can rapidly inhibit spiking in targeted neurons. Considering the importance of Ca2+ and K+ in cell physiology, light-activated Ca2+-permeant and K+-specific channels would be welcome additions to the optogenetic t...
Background and Purpose: The cyclic nucleotides cAMP and cGMP are ubiquitous second messengers regula...
Optogenetic channels and ion pumps have become indispensable tools in neuroscience to manipulate neu...
Optogenetics offers unique possibilities to control cells with a high spatio-temporal precision usin...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
The field of optogenetics uses channelrhodopsins (ChRs) for light-induced neuronal activation. Howev...
The present palette of opsin-based optogenetic tools lacks a light-gated potassium (K+) channel desi...
Optogenetics enables manipulation of biological processes with light at high spatio-temporal resolut...
Channels Channelrhodopsin-2 (ChR2) is a light-activated microbial cation channel which can be used t...
Background and Purpose: The cyclic nucleotides cAMP and cGMP are ubiquitous second messengers regula...
Optogenetic channels and ion pumps have become indispensable tools in neuroscience to manipulate neu...
Optogenetics offers unique possibilities to control cells with a high spatio-temporal precision usin...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
The field of optogenetics uses channelrhodopsins (ChRs) for light-induced neuronal activation. Howev...
The present palette of opsin-based optogenetic tools lacks a light-gated potassium (K+) channel desi...
Optogenetics enables manipulation of biological processes with light at high spatio-temporal resolut...
Channels Channelrhodopsin-2 (ChR2) is a light-activated microbial cation channel which can be used t...
Background and Purpose: The cyclic nucleotides cAMP and cGMP are ubiquitous second messengers regula...
Optogenetic channels and ion pumps have become indispensable tools in neuroscience to manipulate neu...
Optogenetics offers unique possibilities to control cells with a high spatio-temporal precision usin...