Abstract: As the scientific community seeks efficient optical neural interfaces with sub-cortical structures of the mouse brain, a wide set of technologies and methods is being developed to monitor cellular events through fluorescence signals generated by genetically encoded molecules. Among these technologies, tapered optical fibers (TFs) take advantage of the modal properties of narrowing waveguides to enable both depth-resolved and wide-volume light collection from scattering tissue, with minimized invasiveness with respect to standard flat fiber stubs (FFs). However, light guided in patch cords as well as in FFs and TFs can result in autofluorescence (AF) signal, which can act as a source of time-variable noise and limit their applicati...
The field of implantable optical neural interfaces has recently enabled the interrogation of neural ...
Optogenetic control of neural activity in deep brain regions ideally requires precise and flexible l...
[[abstract]]Fluorescence quantification in tissues using conventional techniques is problematic owin...
Fiber photometry is an emerging technique enabling the monitoring of neural activity in vivo by empl...
We propose an optical method to perform fluorescence lifetime photometry with depth-resolution in br...
Fiber photometry is increasingly utilized to monitor fluorescent sensors of neural activity in the b...
We describe a system exploiting a multi-anode array placed in the far-field plane of a tapered optic...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
In this article, we report the development of a minimally invasive fiber optic based fluorescence pr...
Tapered optical fibers (TFs) were recently employed for depth-resolved monitoring of functional fluo...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
ABSTRACT: Fiber photometry is widely used in neuroscience labs for in vivo detection of functional f...
Fiber photometry is widely used in neuroscience labs for in vivo detection of functional fluorescenc...
The field of implantable optical neural interfaces has recently enabled the interrogation of neural ...
Optogenetic control of neural activity in deep brain regions ideally requires precise and flexible l...
[[abstract]]Fluorescence quantification in tissues using conventional techniques is problematic owin...
Fiber photometry is an emerging technique enabling the monitoring of neural activity in vivo by empl...
We propose an optical method to perform fluorescence lifetime photometry with depth-resolution in br...
Fiber photometry is increasingly utilized to monitor fluorescent sensors of neural activity in the b...
We describe a system exploiting a multi-anode array placed in the far-field plane of a tapered optic...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
In this article, we report the development of a minimally invasive fiber optic based fluorescence pr...
Tapered optical fibers (TFs) were recently employed for depth-resolved monitoring of functional fluo...
Fiber photometry is used to monitor signals from fluorescent indicators in genetically-defined neura...
ABSTRACT: Fiber photometry is widely used in neuroscience labs for in vivo detection of functional f...
Fiber photometry is widely used in neuroscience labs for in vivo detection of functional fluorescenc...
The field of implantable optical neural interfaces has recently enabled the interrogation of neural ...
Optogenetic control of neural activity in deep brain regions ideally requires precise and flexible l...
[[abstract]]Fluorescence quantification in tissues using conventional techniques is problematic owin...