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Novel method for COVID-19 diagnosis developed at FORTH receives funding for immediate market release
Novel method for COVID-19 diagnosis developed at FORTH receives funding for immediate market release
Sep 14, 2020
Biosensors lab of FORTH(http://biosensorslab.biology.uoc.gr/) has developed a novel molecular diagnostic method for the detection of nucleic acids at the point-of-care. The method exploits a newly designed portable 3D-printed device and a smartphone to perform isothermal amplification and real-time quantitative colorimetric detection of the target analyte. The simplicity of the methodology, rapid analysis time (<30 min) and affordable cost make it ideal for non-trained users at the point-of-need and in both the developed and resource limited countries. Clinical validation of the device with patients’ samples, for infectious diseases (COVID-19) and cancer-mutations (BRAF V600E) detection, demonstrated excellent performance compared to standard methods.
Collaborating Researcher of FORTH elected Fellow of the International Academy of Health Sciences Informatics
Collaborating Researcher of FORTH elected Fellow of the International Academy of Health Sciences Informatics
Sep 08, 2020
Dr. Angelina Kouroubali, collaborating researcher of the Institute of Computer Science (ICS) of the Foundation for Research and Technology – Hellas (FORTH), has been elected as a Fellow in the International Academy of Health Sciences Informatics. The International Academy of Health Sciences Informatics (IAHSI, https://imia-medinfo.org/wp/iahsi).)
The European Union Agency for Cybersecurity visits the Foundation for Research and Technology – Hellas in Crete to discuss framework of research projects and events
Sep 03, 2020
On 2 September 2020, an executive delegation from the European Union Agency for Cybersecurity (ENISA) toured the premises of the Foundation for Research and Technology – Hellas (FORTH) in Heraklion, Crete to advance research collaboration in cybersecurity.
IMBB Researchers and Scientists from the University of Padova uncover a novel pathogenesis mechanism for Autosomal Dominant Optic Atrophy, an incurable, visual loss disorder.
IMBB Researchers and Scientists from the University of Padova uncover a novel pathogenesis mechanism for Autosomal Dominant Optic Atrophy, an incurable, visual loss disorder.
Aug 18, 2020
The findings of the study, published yesterday in the premier international scientific journal Nature Communications, reveal a novel molecular mechanism underlying the detrimental effects of uncontrolled mitophagy on neuronal survival that contributes to the development and progression of Autosomal Dominant Optic Atrophy (ADOA).