JAPAN-US-HEALTH-SCIENCE-NANOTECHNOLOGY

This picture taken on January 22, 2016 shows South Korean researcher Lee Sung-Won of Tokyo University's graduate school of engineering displaying a super-thin bendable pressure sensor, developed by professor Takao Someya and his team at his laboratory in Tokyo. The nanofiver type sensor containing carbon nanotubes and graphenes could someday be used in special gloves to detect breast lumps and make a digital record of the exam. A square sheet 4.8 by 4.8 centimetres (1.9 inches) in size has 144 locations that can measure pressure. The sheet is so flexible it can detect pressure changes accurately even when twisted like cloth -- a development claimed as a global first. AFP PHOTO / Yoshikazu TSUNO / AFP / YOSHIKAZU TSUNO (Photo credit should read YOSHIKAZU TSUNO/AFP via Getty Images)
This picture taken on January 22, 2016 shows South Korean researcher Lee Sung-Won of Tokyo University's graduate school of engineering displaying a super-thin bendable pressure sensor, developed by professor Takao Someya and his team at his laboratory in Tokyo. The nanofiver type sensor containing carbon nanotubes and graphenes could someday be used in special gloves to detect breast lumps and make a digital record of the exam. A square sheet 4.8 by 4.8 centimetres (1.9 inches) in size has 144 locations that can measure pressure. The sheet is so flexible it can detect pressure changes accurately even when twisted like cloth -- a development claimed as a global first. AFP PHOTO / Yoshikazu TSUNO / AFP / YOSHIKAZU TSUNO (Photo credit should read YOSHIKAZU TSUNO/AFP via Getty Images)
JAPAN-US-HEALTH-SCIENCE-NANOTECHNOLOGY
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N. Editorial:
506768956
Collezione:
AFP
Data di creazione:
22 gennaio 2016
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Info sulla liberatoria:
Senza liberatoria. Ulteriori informazioni
Fonte:
AFP
Codice a barre:
AFP
Nome oggetto:
Hkg10249188
Max. dimensione file:
3492 x 5160 px (29,57 x 43,69 cm) - 300 dpi - 4 MB