Enabling Covert Body Area Network using Electro-Quasistatic Human Body Communication | Scientific Reports
Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript. Advertisement Scientific Reports volume 9, Article number: 4160 (2019) Cite this article 28k Accesses 50 Citations 296 Altmetric Metrics details A Publisher Correction to this article was published on 27 February 2020 This article has been updated Radiative communication using electro-magnetic (EM) fields amongst the wearable and implantable devices act as the backbone for information exchange around a human body, thereby enabling prime applications in the fields of connected healthcare, electroceuticals, neuroscience, augmented and virtual reality. However, owing to such radiative nature of the traditional wireless comm
Download PDF Subjects Applied physics Biological physics Biomedical engineering A Publisher Correction to this article was published on 27 February 2020 This article has been updated Abstract Radiative communication using electro-magnetic (EM) fields amongst the wearable and implantable devices act as the backbone for information exchange around a human body, thereby enabling prime applications in the fields of connected healthcare, electroceuticals, neuroscience, augmented and virtual reality. However, owing to such radiative nature of the traditional wireless communication, EM signals propag
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