paper-with-me

Papers

Electro-Quasistatic Animal Body Communication for Chronic Untethered Rodent Biopotential Recording

2020-05-11 · Shreeya Sriram, Shitij Avlani, Matthew P Ward, Shreyas Sen

Continuous multi-channel monitoring of biopotential signals is vital in understanding the body as a whole, facilitating accurate models and predictions in neural research. The current state of the art in wireless technologies for untethered biopotential recordings rely on radiative electromagnetic (EM) fields. In such transmissions, only a small fraction of this energy is received since the EM fields are widely radiated resulting in lossy inefficient systems. Using the body as a communication medium (similar to a 'wire') allows for the containment of the energy within the body, yielding order(s) of magnitude lower loss than radiative EM communication. In this work, we introduce Animal Body Communication (ABC), which utilizes the concept of using the body as a medium into the domain of chronic animal biopotential recording. This work, for the first time, develops the theory and models for animal body communication circuitry and channel loss. Using this theoretical model, a sub-inch$^3$, custom-designed sensor node is built using off the shelf components which is capable of sensing and transmitting biopotential signals, through the body of the rat at significantly lower powers compared to traditional wireless transmissions. In-vivo experimental analysis proves that ABC successfully transmits acquired electrocardiogram (EKG) signals through the body with correlation accuracy >99% when compared to traditional wireless communication modalities, with a 50x reduction in power consumption.

📄 PDF Abstract BibTeX arXiv:2005.05370

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Channel Modeling for Physically Secure Electro-Quasistatic In-Body to Out-of-Body Communication with Galvanic Tx and Multimodal Rx

2022-04-27 · Arunashish Datta, Mayukh Nath, Baibhab Chatterjee, Nirmoy Modak 외

Increasing number of devices being used in and around the human body has resulted in the exploration of the human body as a communication medium. In this paper, we design a channel model for implantable devices communica…

Understanding The Role of Magnetic and Magneto-Quasistatic Fields in Human Body Communication

2020-10-30 · Mayukh Nath, Alfred Krister Ulvog, Scott Weigand, Shreyas Sen

With the advent of wearable technologies, Human Body Communication (HBC) has emerged as a physically secure and power-efficient alternative to the otherwise ubiquitous Wireless Body Area Network (WBAN). Whereas the most …

Bi-Phasic Quasistatic Brain Communication for Fully Untethered Connected Brain Implants

2022-05-18 · Baibhab Chatterjee, Mayukh Nath, Gaurav Kumar K, Shulan Xiao 외

Wireless communication using electro-magnetic (EM) fields acts as the backbone for information exchange among wearable devices around the human body. However, for Implanted devices, EM fields incur high amount of absorpt…

Blocking

In-The-Wild Interference Characterization and Modelling for Electro-Quasistatic-HBC with Miniaturized Wearables

2020-10-31 · Parikha Mehrotra, David Yang, Scott Weigand, Shreyas Sen

The emergence of Human Body Communication (HBC) as an alternative to wireless body area networks (WBAN) has led to the development of small sized, energy efficient and more secure wearable and implantable devices forming…

Body-Resonance Human Body Communication

2024-11-16 · Samyadip Sarkar, Qi Huang, Sarthak Antal, Mayukh Nath 외

Seamless interaction between Humans and AI-empowered battery-operated miniaturized electronic devices, exponentially transforming the wearable technology industry while forming an anthropomorphic artificial nervous syste…

Distributed Computing