Bioelectronic sensor nodes for the internet of bodies

B Chatterjee, P Mohseni, S Sen - Annual Review of Biomedical …, 2023 - annualreviews.org
Energy-efficient sensing with physically secure communication for biosensors on, around,
and within the human body is a major area of research for the development of low-cost …

Emerging trends of biomedical circuits and systems

M Sawan, J Yang, M Tarkhan, J Chen… - … and Trends® in …, 2021 - nowpublishers.com
Biomedical circuits and systems are heading toward a multidisciplinary race in two main
directions. On the one hand, advanced smart medical devices must be built to improve …

Biphasic quasistatic brain communication for energy-efficient wireless neural implants

B Chatterjee, M Nath, G Kumar K, S Xiao, K Jayant… - Nature …, 2023 - nature.com
Wearable devices typically use electromagnetic fields for wireless information exchange. For
implanted devices, electromagnetic signals suffer from a high amount of absorption in tissue …

Advanced biophysical model to capture channel variability for eqs capacitive hbc

A Datta, M Nath, D Yang, S Sen - IEEE Transactions on …, 2021 - ieeexplore.ieee.org
Human Body Communication (HBC) has come up as a promising alternative to traditional
radio frequency (RF) Wireless Body Area Network (WBAN) technologies. This is essentially …

On the safety of human body communication

S Maity, M Nath, G Bhattacharya… - IEEE Transactions …, 2020 - ieeexplore.ieee.org
Human Body Communication (HBC) utilizes the electrical conductivity properties of the
human body to communicate between devices in and around the body. The increased …

Human body–electrode interfaces for wide-frequency sensing and communication: A review

K Polachan, B Chatterjee, S Weigand, S Sen - Nanomaterials, 2021 - mdpi.com
Several on-body sensing and communication applications use electrodes in contact with the
human body. Body–electrode interfaces in these cases act as a transducer, converting ionic …

Sub-μWRComm: 415-nW 1–10-kb/s Physically and Mathematically Secure Electro-Quasi-Static HBC Node for Authentication and Medical Applications

S Maity, N Modak, D Yang, M Nath… - IEEE Journal of Solid …, 2021 - ieeexplore.ieee.org
Low-power secure communication is one of the key enablers of applications, such as secure
authentication and remote health monitoring. Radio wave-based communication method …

Inter-body coupling in electro-quasistatic human body communication: theory and analysis of security and interference properties

M Nath, S Maity, S Avlani, S Weigand, S Sen - Scientific Reports, 2021 - nature.com
Radiative communication using electromagnetic fields is the backbone of today's wirelessly
connected world, which implies that the physical signals are available for malicious …

Spiking neural networks-inspired signal detection based on measured body channel response

T Kang, KI Oh, JJ Lee, SE Kim, SE Kim… - IEEE Transactions …, 2022 - ieeexplore.ieee.org
Spiking neural networks (SNNs) are inspired by biological behavior in the neural system
processing information by the rate or delay components of discrete spiking signals in a …

Enabling the internet of bodies through capacitive body channel access schemes

A Celik, AM Eltawil - IEEE Internet of Things Journal, 2022 - ieeexplore.ieee.org
The Internet of Bodies (IoB) is an imminent extension of the vast Internet of Things (IoT)
domain, where wearable, ingestible, injectable, and implantable smart objects form a …