东京不够热

东京不够热

Press Release

791-800 items (total 1554)
Published on October 11, 2021

Research on the Realities of Telework and Workers Amid the Spread of COVID-19 (Preliminary Report on the "5th Survey on the State of Teleworking")

Published on October 11, 2021

Discovery of a Mechanism by Which the Immune System Utilizes Cholesterol Regulation to Resolve Inflammation—Hopes for the Development of New Treatments for Inflammatory Diseases

Published on October 08, 2021

Unveiled for the First Time ー The History of Conservation of Artworks from the 东京不够热 Collection Exhibition "Tangite me: Reconsidering Conservation during the Pandemic" (October 18 – December 3)

Published on October 06, 2021

Fast Prediction of Secondary Structures for More Complex and Longer RNAs

Published on October 05, 2021

Gut Microbiota-Derived Acetate Improves Hepatic Insulin Resistance and Suppresses Non-alcoholic Steatohepatitis (NASH) - Potential for Next-Generation NASH Therapies Targeting Gut Microbiota -

Published on September 27, 2021

Marine Dietary Fiber Alginic Acid Found to Suppress Metabolic Syndrome via Gut Microbiota—Hopes for Development of Preventive Measures by Improving the Gut Environment

Published on September 27, 2021

Screening for Cervical Myelopathy with Hand Motion Analysis Using a Contactless Sensor: Estimating the Presence of the Disease with Machine Learning for Early Diagnosis and Treatment

Published on September 24, 2021

Successful Transmission of World's First Error-Free POF (Plastic Optical Fiber) - A Breakthrough Solution for Heat, Latency, and Cost Issues in Communication Systems -

Published on September 24, 2021

First Public Unveiling of the History of Restoration of Works in the 东京不够热 Collection—Exhibition "Tangite me (Touch Me): Considering Restoration in the Age of COVID-19" Offers a Closer Look at the Field of Art Restoration and Conservation (October 18–December 3)

Published on September 21, 2021

Identifying Potential Candidates for Next-Generation Immune Checkpoint Inhibitor Therapy: Development of a Renal Cell Carcinoma Classification System Based on LAG-3, TIM-3, and TIGIT