Abstract Optical controlling and reading-out highly localized intracellular signaling events in network of neurons, single neurons and subcellular compartments is considered as the most groundbreaking innovation in the neuroscience field in recent years. New optical readout and manipulation tools for optogenetics are continuously required. Here we report on a tapered multicore optical fiber system able to achieve multipoint illumination and polychromatic lightening of a target with the resolution of single-cell and single organelles. The steering of the output beam can be achieved by controlling the wavelength and phase of the optical signals coupled to the fiber. Consequently, the change of the direction of the beam can be achieved without...
Optogenetic approaches to manipulate neural activity have revolutionized the ability of neuroscienti...
Optogenetics promises spatiotemporal precise control of neural processes using light. However, the s...
The functionality of cortical neurons depends on the strength of its local and long-range synapses a...
SummaryOptical stimulation and silencing of neural activity is a powerful technique for elucidating ...
Optical stimulation and silencing of neural activity is a powerful technique for elucidating the str...
Optogenetic control of neural activity in deep brain regions ideally requires precise and flexible l...
Deciphering the neural patterns underlying brain functions is essential to understanding how neurons...
We present a Ray Tracing model of tapered optical fibers (TF), recently proposed for both wide-volum...
The combination of genetics and optics for simultaneous control and monitor of neural activity has r...
Optogenetics offers many advantages in terms of cell-type specificity, allowing to investigate funct...
This work describes a method to inject light into tapered optical fibers (TFs) in order to achieve s...
Optogenetics offers many advantages in terms of cell-type specificity, allowing to investigate funct...
Optical fibers are commonly inserted into living tissues such as the brain in order to deliver light...
Spatial-resolved light delivery in the living mammalian brain is of utmost importance in optogenetic...
The field of implantable optical neural interfaces has recently enabled the interrogation of neural ...
Optogenetic approaches to manipulate neural activity have revolutionized the ability of neuroscienti...
Optogenetics promises spatiotemporal precise control of neural processes using light. However, the s...
The functionality of cortical neurons depends on the strength of its local and long-range synapses a...
SummaryOptical stimulation and silencing of neural activity is a powerful technique for elucidating ...
Optical stimulation and silencing of neural activity is a powerful technique for elucidating the str...
Optogenetic control of neural activity in deep brain regions ideally requires precise and flexible l...
Deciphering the neural patterns underlying brain functions is essential to understanding how neurons...
We present a Ray Tracing model of tapered optical fibers (TF), recently proposed for both wide-volum...
The combination of genetics and optics for simultaneous control and monitor of neural activity has r...
Optogenetics offers many advantages in terms of cell-type specificity, allowing to investigate funct...
This work describes a method to inject light into tapered optical fibers (TFs) in order to achieve s...
Optogenetics offers many advantages in terms of cell-type specificity, allowing to investigate funct...
Optical fibers are commonly inserted into living tissues such as the brain in order to deliver light...
Spatial-resolved light delivery in the living mammalian brain is of utmost importance in optogenetic...
The field of implantable optical neural interfaces has recently enabled the interrogation of neural ...
Optogenetic approaches to manipulate neural activity have revolutionized the ability of neuroscienti...
Optogenetics promises spatiotemporal precise control of neural processes using light. However, the s...
The functionality of cortical neurons depends on the strength of its local and long-range synapses a...