5/16/2023 0 Comments Foxmail for apple devicesI am a board member for several biotech companies, and advisor to national governments in digital healthcare. Additionally, I hold an adjunct professor position at the George Washington University, where I teach and develop curriculums for biomedical big data informatics and biostatistics research and development courses. I am an author of +100 scientific publications in physics, chemistry, quantum chemistry, nanotechnology, biotechnology, population dynamics, and bioinformatics. After 2001, I switched my expertise to biotechnology and biomedical informatics and served as senior scientific software architect at NIH/NCBI, as a lead scientist of HIVE, R&D Director of Bioinformatics at FDA, as a senior director of bioinformatics in biotechnology company and Chief Scientist at a healthcare IT company. in Quantum Physics and Mathematics, post-doctoral training in Nanotechnology and Quantum Statistical Thermodynamics. The standard further describes methodologies for continuous self-monitoring of transmitted RF power.Ĭhief Scientist DNAHIVE, Professor of Bioinformatics and Biostatistics George Washington Universityīio: I have a solid scientific background in varied academic disciplines: MS in Physical Organic Chemistry, Ph.D. The P2725 standard therefore aims to ensure that microwave imaging apparatus does not subject clinical patients to levels of RF power levels that exceed those already deemed safe for use in MRIs, and further does not subject commercial BMI users to levels that exceed SAR limits already deemed safe for cell phone users. The potential for use in wearable BMIs creates the requirement that said apparatus be worn for hours at a time without exposing the user to levels of RF energy that could present long term health risks. Microwave brain imaging apparatus, while providing a higher degree of safety than most other imaging modalities, conveys new challenges to ensure that acceptable radio frequency (RF) power exposure limits are are not exceeded for both clinical patients as well as commercial users of microwave Brain Machine Interfaces (BMIs). Title: IEEE P2725.1 Standard for Microwave Structural, Vascular or Functional Medical Imaging Device Safety Chavarriaga is the chair of the IEEE Standards Association group on Neurotechnologies for Brain-Machine Interfacing, and co-chair of the IEEE P2863 Working group on Recommended Practices for Organisational Governance of AI. Ricardo is the head of the Swiss office of the Confederation of Laboratories for AI Research in Europe ( CLAIRE) Senior researcher at the Zürich University of Applied Sciences ( ZHAW) and associate fellow at the Geneva Center for Security Policy ( GCSP). His work is focused on responsible development of technologies that promote beneficial, humane interaction between human and intelligent machines. Head of the Swiss office of the Confederation of Laboratories for AI Research in Europeīio: Passionate of responsible development and social implications of technology, Ricardo Chavarriaga is an engineer and neuroscientist with more than 15 years of experience in research on human-machine interaction, brain-machine interfaces, assistive technologies and artificial intelligence.
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