Literature

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Showing 55-60 of 72 publications (Page 10 of 12)
Alcor Alcor
2023

Cristian Ripoli et al.

Engineering memory with an extrinsically disordered Kinase

An extrinsically disordered LIMK1 kinase enlarges dendritic spines on command, enhancing synaptic transmission and improving memory encoding in aged mice.

Science Advances

DOI
Alcor Alcor
2023

Accanto N, Blot FGC, Lorca-Cámara A, Zampini V, Bui F, Tourain C, Badt N, Katz O, Emiliani V

A flexible two-photon fiberscope for fast activity imaging and precise optogenetic photostimulation of neurons in freely moving mice

Presents a flexible two-photon fiberscope combining 50 Hz functional imaging and holographic photostimulation of selected neurons in freely moving mice.

Neuron

DOI
Alcor Alcor
2023

Dembitskaya Y., Boyce A.K.J., Idziak A. et al.

Shadow imaging for panoptical visualization of brain tissue in vivo

Introduces shadow imaging, labeling extracellular fluid with fluorescent dye to reveal neurons, microglia, tumor cells and vasculature in living brain tissue.

Nature Communications

DOI
Alcor Alcor
2023

Platisa J., Ye X., Ahrens A.M. et al.

High-speed low-light in vivo two-photon voltage imaging of large neuronal populations

Combines optimized voltage indicators, kilohertz-rate two-photon microscope and self-supervised denoising to image over 100 neurons in vivo below the shot-noise limit.

Nature Methods

DOI
Alcor Alcor
2023

Chunzhu Zhao, Yufei Zhu, Dong Zhang, Qiang Fu, Mingjie Pan, Runlong Wu, Aimin Wang, Heping Cheng

Millimeter field-of-view miniature two-photon microscopy for brain imaging in freely moving mice

Describes a 2.5 g miniature two-photon microscope with a 1000×788 µm² field of view, imaging around 400 hippocampal neurons in freely moving mice.

Optics Express

DOI
Alcor Alcor
2023

Zhang C., Yu B., Lin F. et al.

Deep tissue super-resolution imaging with adaptive optical two-photon multifocal structured illumination microscopy

Reports an adaptive-optics two-photon multifocal structured illumination microscope enabling super-resolution imaging of neurons deep in brain slices and in zebrafish.

PhotoniX

DOI

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