Keio University

News

321-330 items (total 704)
Published on April 03, 2023

Discovery that SARS-CoV-2 and its variants efficiently infect microglia, the brain's immune cells, without infecting neurons

Office of Communications and Public Relations

Published on April 03, 2023

Keio University's Faculty of Nursing and Medical Care and Fujisawa City Sign Agreement to Promote Community Health Activities

Office of Communications and Public Relations

Published on April 03, 2023

Controlling the Diradical Character of Charged π-Electron Systems through Ion Pair Formation—Promising for the Development of Electronic and Photofunctional Materials Using Electron Spins

Office of Communications and Public Relations

Published on March 30, 2023

A Computational Method for Evaluating the Frictional Properties of Various Lubricants—An approach combining molecular dynamics simulations and machine learning makes it possible to estimate frictional properties from molecular motion—

Office of Communications and Public Relations

Published on March 29, 2023

Olfactory Training Device "yokun" Wins Multiple International Design Awards—A KGRI and Keio SDM Joint Research Project

Office of Communications and Public Relations

Published on March 27, 2023

The Faculty of Policy Management Publishes the "Sogo Seisaku Gaku wo Hiraku" (Opening Up Policy Management) Series in Five Volumes

Office of Communications and Public Relations

Published on March 23, 2023

Elucidating the Exciton Multiplication Process that Dynamically Changes with Pressure—Achieving Hydrostatic Pressure Control of Intramolecular Singlet Fission

Office of Communications and Public Relations

Published on March 23, 2023

[Press Release and Video Release] Launch of the KGRI Centre for Strategy (March 1, 2023) and more

KGRI

Published on March 16, 2023

New Method Developed to Evaluate the Efficacy of Poorly Absorbed Antimicrobial Agents- Contributing to the Proper Use of Therapeutics for Clostridioides difficile Infection and Promoting the Development of New Treatments -

Office of Communications and Public Relations

Published on March 16, 2023

Proposal of a Bio-Inspired Molecular-Scale Water Transport Method: Toward the Construction of an Ultra-Low Energy Water Transport System

Office of Communications and Public Relations