Coordinatore | KUNGLIGA TEKNISKA HOEGSKOLAN
Organization address
address: Valhallavaegen 79 contact info |
Nazionalità Coordinatore | Sweden [SE] |
Totale costo | 4˙434˙496 € |
EC contributo | 3˙400˙000 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2013-SMALL-7 |
Funding Scheme | CP-FP |
Anno di inizio | 2013 |
Periodo (anno-mese-giorno) | 2013-12-01 - 2016-11-30 |
# | ||||
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1 |
KUNGLIGA TEKNISKA HOEGSKOLAN
Organization address
address: Valhallavaegen 79 contact info |
SE (STOCKHOLM) | coordinator | 772˙764.00 |
2 |
KATHOLIEKE UNIVERSITEIT LEUVEN
Organization address
address: Oude Markt 13 contact info |
BE (LEUVEN) | participant | 597˙450.00 |
3 |
QCM LAB AB
Organization address
address: GADDVAGEN 16 contact info |
SE (JARFALLA) | participant | 380˙800.00 |
4 |
LINKOPINGS UNIVERSITET
Organization address
address: CAMPUS VALLA contact info |
SE (LINKOPING) | participant | 364˙236.00 |
5 |
FUTURE DIAGNOSTICS BV
Organization address
address: NIEUWEWEG 279 contact info |
NL (Wijchen) | participant | 350˙000.00 |
6 |
STOCKHOLMS UNIVERSITET
Organization address
address: Universitetsvaegen 10 contact info |
SE (STOCKHOLM) | participant | 305˙326.00 |
7 |
LOUGHBOROUGH UNIVERSITY
Organization address
address: Ashby Road contact info |
UK (LOUGHBOROUGH) | participant | 272˙632.00 |
8 |
KAROLINSKA INSTITUTET
Organization address
address: Nobels Vag 5 contact info |
SE (STOCKHOLM) | participant | 175˙800.00 |
9 |
GETINGE INFECTION CONTROL AB
Organization address
address: EKEBERGSVAGEN 26 contact info |
SE (GETINGE) | participant | 141˙200.00 |
10 |
THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE
Organization address
address: The Old Schools, Trinity Lane contact info |
UK (CAMBRIDGE) | participant | 39˙792.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'Gastroenteritis, caused by the airborne Norovirus, is the third most deadly infectious disease worldwide, infecting ~4% of the population annually, worldwide, and has related costs measured in billions € annually in the EU alone. Today, detection of airborne viruses can only be done in retrospect in the laboratory, which severely limits the ability to rapidly react and limit the spread of an outbreak. The NOROSENSOR consortium will address this problem by developing the first of its kind, real-time sensor for airborne viruses, with particular focus on the NoV. Because the virus concentration in air can be very low, and because rapid and efficient virus trapping and concentration methods have been missing, no solution exists today. The NOROSENSOR project will fill this important need by integrating a number of recently developed, highly powerful technologies: • Novel nanobiotechnology: nanobead enhanced rolling circle amplification (nano-RCA), engineered synthetic DNA aptamers, and proximity ligation assays (PLA) • First ever airborne nanoparticle manipulation: capturing, filtering and up-concentration of viruses using acoustophoresis and electrostatic precipitation. with beyond state-of-the-art: • Ultra-sensitive QCM mass-sensitive transducers and electronics. • Novel Off-stoichiometry Thiol-Ene-Epoxies (OSTE) polymers for cartridge and reagent storage on-chip. The consortium consist of six of the highest ranked European Universities, each experts in their research area, two SMEs providing a unique expertise in their core business areas, and a large multinational industry in infection control technology.'