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Ryoko Ando's research works | RIKEN, Wako (RIKEN AICS) and other places
Ryoko Ando's research works | RIKEN, Wako (RIKEN AICS) and other places

An optical marker based on the UV-induced green-to-red photoconversion of a  fluorescent protein - Wyatt Technology
An optical marker based on the UV-induced green-to-red photoconversion of a fluorescent protein - Wyatt Technology

A split fluorescent reporter with rapid and reversible complementation |  Nature Communications
A split fluorescent reporter with rapid and reversible complementation | Nature Communications

Ultrafast Excited-State Dynamics of the Photoswitchable Protein Dronpa |  Journal of the American Chemical Society
Ultrafast Excited-State Dynamics of the Photoswitchable Protein Dronpa | Journal of the American Chemical Society

Dronpa-Green | MBL Life Science -JAPAN-
Dronpa-Green | MBL Life Science -JAPAN-

mKikGR, a Monomeric Photoswitchable Fluorescent Protein | PLOS ONE
mKikGR, a Monomeric Photoswitchable Fluorescent Protein | PLOS ONE

IJMS | Free Full-Text | Engineering Photosensory Modules of Non-Opsin-Based  Optogenetic Actuators
IJMS | Free Full-Text | Engineering Photosensory Modules of Non-Opsin-Based Optogenetic Actuators

Category:Ange☆Reve Member | Jpop Wiki | Fandom
Category:Ange☆Reve Member | Jpop Wiki | Fandom

Two new coral fluorescent proteins of distinct colors for sharp  visualization of cell-cycle progression | bioRxiv
Two new coral fluorescent proteins of distinct colors for sharp visualization of cell-cycle progression | bioRxiv

A highly photostable and bright green fluorescent protein | Nature  Biotechnology
A highly photostable and bright green fluorescent protein | Nature Biotechnology

A Green Fluorescent Protein with Photoswitchable Emission from the Deep Sea  | PLOS ONE
A Green Fluorescent Protein with Photoswitchable Emission from the Deep Sea | PLOS ONE

Fast and Reversible Photoswitching of the Fluorescent Protein Dronpa as  Evidenced by Fluorescence Correlation Spectroscopy: Biophysical Journal
Fast and Reversible Photoswitching of the Fluorescent Protein Dronpa as Evidenced by Fluorescence Correlation Spectroscopy: Biophysical Journal

An optical marker based on the UV-induced green-to-red photoconversion of a  fluorescent protein | PNAS
An optical marker based on the UV-induced green-to-red photoconversion of a fluorescent protein | PNAS

GFP Family: Structural Insights into Spectral Tuning: Chemistry & Biology
GFP Family: Structural Insights into Spectral Tuning: Chemistry & Biology

Ultrafast Excited-State Dynamics of the Photoswitchable Protein Dronpa |  Journal of the American Chemical Society
Ultrafast Excited-State Dynamics of the Photoswitchable Protein Dronpa | Journal of the American Chemical Society

Low-Temperature Chromophore Isomerization Reveals the Photoswitching  Mechanism of the Fluorescent Protein Padron | Journal of the American  Chemical Society
Low-Temperature Chromophore Isomerization Reveals the Photoswitching Mechanism of the Fluorescent Protein Padron | Journal of the American Chemical Society

Regulated Fast Nucleocytoplasmic Shuttling Observed by Reversible Protein  Highlighting | Science
Regulated Fast Nucleocytoplasmic Shuttling Observed by Reversible Protein Highlighting | Science

Dronpa-Green | MBL Life Sience -ASIA-
Dronpa-Green | MBL Life Sience -ASIA-

Dronpa-Green | MBL Life Sience -ASIA-
Dronpa-Green | MBL Life Sience -ASIA-

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Exploring tissue morphodynamics using the photoconvertible Kaede protein in  amphioxus embryos | PLOS ONE
Exploring tissue morphodynamics using the photoconvertible Kaede protein in amphioxus embryos | PLOS ONE

High-resolution fluorescence microscopy based on a cyclic sequential  multiphoton process
High-resolution fluorescence microscopy based on a cyclic sequential multiphoton process

Ryoko Ando's research works | RIKEN, Wako (RIKEN AICS) and other places
Ryoko Ando's research works | RIKEN, Wako (RIKEN AICS) and other places

Absolute quantum yield measurements of fluorescent proteins using a  plasmonic nanocavity | Communications Biology
Absolute quantum yield measurements of fluorescent proteins using a plasmonic nanocavity | Communications Biology