Glucose-based biofuel cells and their applications in medical implants: a review

I Chakraborty, RT Olsson, RL Andersson, A Pandey - Heliyon, 2024 - cell.com
In glucose biofuel cells (G-BFCs), glucose oxidation at the anode and oxygen reduction at
the cathode yield electrons, which generate electric energy that can power a wide range of …

Analysis and classification of heart rate using CatBoost feature ranking model

B Dhananjay, J Sivaraman - Biomedical Signal Processing and Control, 2021 - Elsevier
Background In specific contexts, it is difficult to manually differentiate Sinus Rhythm (SR),
Sinus Tachycardia (ST), and Atrial Tachycardia (AT) from ECG signals. Upright P-wave is a …

An injectable 64 nW ECG mixed-signal SoC in 65 nm for arrhythmia monitoring

YP Chen, D Jeon, Y Lee, Y Kim, Z Foo… - IEEE Journal of Solid …, 2014 - ieeexplore.ieee.org
A syringe-implantable electrocardiography (ECG) monitoring system is proposed. The noise
optimization and circuit techniques in the analog front-end (AFE) enable 31 nA current …

[HTML][HTML] Noise efficient integrated amplifier designs for biomedical applications

S Simmich, A Bahr, R Rieger - Electronics, 2021 - mdpi.com
The recording of neural signals with small monolithically integrated amplifiers is of high
interest in research as well as in commercial applications, where it is common to acquire …

An ECG delineation and arrhythmia classification system using slope variation measurement by ternary second-order delta modulators for wearable ECG sensors

X Tang, W Tang - IEEE Transactions on Biomedical Circuits …, 2021 - ieeexplore.ieee.org
This paper presents a system for electrocardiogram (ECG) delineation and arrhythmia
classification. The proposed system consists of a front-end integrated circuit, a delineation …

21.3 A 6.45 μW self-powered IoT SoC with integrated energy-harvesting power management and ULP asymmetric radios

A Klinefelter, NE Roberts, Y Shakhsheer… - … Solid-State Circuits …, 2015 - ieeexplore.ieee.org
A 1 trillion node internet of things (IoT) will require sensing platforms that support numerous
applications using power harvesting to avoid the cost and scalability challenge of battery …

A 6.45 Self-Powered SoC With Integrated Energy-Harvesting Power Management and ULP Asymmetric Radios for Portable Biomedical Systems

A Roy, A Klinefelter, FB Yahya, X Chen… - … circuits and systems, 2015 - ieeexplore.ieee.org
This paper presents a batteryless system-on-chip (SoC) that operates off energy harvested
from indoor solar cells and/or thermoelectric generators (TEGs) on the body. Fabricated in a …

A 148-nW reconfigurable event-driven intelligent wake-up system for AIoT nodes using an asynchronous pulse-based feature extractor and a convolutional neural …

Z Wang, Y Liu, P Zhou, Z Tan, H Fan… - IEEE Journal of Solid …, 2021 - ieeexplore.ieee.org
This article presents a 148-nW always-on wake-up system that drastically reduces the
system power consumption of Internet of Things (IoT) sensor nodes while oftentimes …

[PDF][PDF] Enzymatic glucose biofuel cell and its application

G Slaughter, T Kulkarni - Journal of Biochips & Tissue Chips, 2015 - researchgate.net
Biofuel cells have received significant attention in the last few decades due to its potential
application as alternative energy sources and advantages over conventional fuel cells. This …

A 20-pW discontinuous switched-capacitor energy harvester for smart sensor applications

X Wu, Y Shi, S Jeloka, K Yang, I Lee… - IEEE Journal of Solid …, 2017 - ieeexplore.ieee.org
We present a discontinuous harvesting approach for switch capacitor dc-dc converters that
enables ultralow-power energy harvesting. Smart sensor applications rely on ultralow-power …