Daniel MangeDaniel Mange received the M.S. and Ph.D. degrees from the Swiss Federal Institute of Technology in Lausanne, Switzerland. Since 1969, he has been a Professor at the Swiss Federal Institute of Technology. He held a position as Visiting Professor at the Center for Reliable Computing, Stanford University, Stanford, CA, in 1987. Dr. Mange is director of the Logic Systems Laboratory and his chief interests include firmware theory (equivalence and transformation between hardwired systems and programs), cellular automata, artificial life, and embryonics (embryonic electronics). He has authored and co-authored several scientific papers in these areas, as well as the books "Microprogrammed Systems: An Introduction to Firmware Theory" (London: Chapman & Hall, 1992) and "Bio-Inspired Computing Machines" (Lausanne: Presses polytechniques et universitaires romandes, 1998). Dr. Mange was Program Co-Chairman of the First International Conference on Evolvable Systems: From Biology to Hardware (ICES96), held in Tsukuba, Japan, General Chairman of the Second International Conference on Evolvable Systems: From Biology to Hardware (ICES98), held in Lausanne in September 1998, General Chairman of the 5th International Workshop on Information Processing in Cells and Tissues (IPCAT 2003), held in Lausanne in September 2003, and general Co-Chairman of the 1st International Workshop on Biologically Inspired Approaches to Advanced Information Theory (Bio-ADIT 2004), held in Lausanne in January 2004.
Gian Luca BarbruniGian Luca Barbruni achieved his BSc and his MSc in Biomedical Engineering with specialisation in Biomedical Instrumentation at the Politecnico di Torino in 2017 and 2019, respectively.During his master thesis, supervised by Prof. Danilo Demarchi from Politecnico di Torino and titled “Body Dust: Feasibility study on signal transmission for sub-100μm-size active wireless biosensors”, he spent a semester of research at Integrated Circuit Laboratory (ICLAB) of Neuchâtel under the supervision of Prof. Sandro Carrara from École Polytechnique Fédérale de Lausanne (EPFL), Switzerland. He discusses about the feasibility on creating an UltraSound (US) communication circuit to wirelessly transmit outside the body diagnostic information from multiplexed biosensors chip built on the top layer of a drinkable CMOS “Body Dust” cube. The results of the feasibility study have been published showing promising results with sub-10 µW of power consumption and a total chip area of 43 x 44 µm2.He was a Research Assistant at the Department of Electronic Engineering (DET) of Politecnico di Torino.Actually he is conducting his PhD focusing on design and fabrication of analog and digital circuits for ultra-miniaturized CMOS for vision prosthesis, directed by Prof. Diego Ghezzi at Medtronic Chair in Neuroengineering in Geneva and co-directed by Prof. Sandro Carrara at ICLAB in Neuchâtel.