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Designing Nanoscale Logic Circuits Based on Markov Random Fields., , , , и . J. Electron. Test., 23 (2-3): 255-266 (2007)A noise-immune sub-threshold circuit design based on selective use of Schmitt-trigger logic., , , , , , и . ACM Great Lakes Symposium on VLSI, стр. 39-44. ACM, (2012)MRF Reinforcer: A Probabilistic Element for Space Redundancy in Nanoscale Circuits., , , , и . IEEE Micro, 26 (5): 19-27 (2006)A fast simulator for the analysis of sub-threshold thermal noise transients., , , и . DAC, стр. 56:1-56:6. ACM, (2016)Developing implantable neuroprosthetics: A new model in pig., , , , , , , , и . EMBC, стр. 3024-3030. IEEE, (2011)A 32-channel fully implantable wireless neurosensor for simultaneous recording from two cortical regions., , , , и . EMBC, стр. 2300-2306. IEEE, (2011)Interactive presentation: Techniques for designing noise-tolerant multi-level combinational circuits., , , , и . DATE, стр. 576-581. EDA Consortium, San Jose, CA, USA, (2007)Designing MRF based error correcting circuits for memory elements., , , , и . DATE, стр. 792-793. European Design and Automation Association, Leuven, Belgium, (2006)A 100-channel hermetically sealed implantable device for wireless neurosensing applications., , , , и . ISCAS, стр. 2629-2632. IEEE, (2012)Polymeric packaging for fully implantable wireless neural microsensors., , , , , и . EMBC, стр. 743-746. IEEE, (2012)