Electromagnetic metamaterials for biomedical applications: short review and trends
DC Tzarouchis, M Koutsoupidou, I Sotiriou… - EPJ Applied …, 2024 - epjam.epj.org
This mini-review examines the most prominent features and usages of metamaterials, such
as metamaterial-based and metamaterial-inspired RF components used for biomedical …
as metamaterial-based and metamaterial-inspired RF components used for biomedical …
[HTML][HTML] Multi-band DNG metamaterials: A design approach using combined split ring and triple T-resonators
In this research, a double negative (DNG) metamaterial is proposed for C, X, and Ku
frequency bands applications. The two− layer DNG metamaterial comprises of a copper …
frequency bands applications. The two− layer DNG metamaterial comprises of a copper …
A miniaturized flexible implantable antenna with metamaterial resonators for biomedical applications
Purpose The purpose of this study is to propose a flexible implantable antenna based on
resonant metamaterials (MTMs) for medical applications. The antenna operates at 2.45 GHz …
resonant metamaterials (MTMs) for medical applications. The antenna operates at 2.45 GHz …
Dual-band half-circular ring implantable antenna with metamaterial SRR for biomedical applications
N Keltouma, S Amaria, B Khadidja… - Telecommunications …, 2023 - dl.begellhouse.com
This paper presents a half-circular ring antenna with a rectangular slot that operates in the
industrial, scientific, and medical (ISM) band at 2.45 GHz. A metamaterial (MTM) split-ring …
industrial, scientific, and medical (ISM) band at 2.45 GHz. A metamaterial (MTM) split-ring …
A metamaterial unit-cell based patch radiator for brain-machine interface technology
EA Mainul, MF Hossain - Heliyon, 2024 - cell.com
This paper presents a novel approach to the design of a brain implantable antenna tailored
for brain-machine interface (BMI) technology. The design is based on a U-shaped unit-cell …
for brain-machine interface (BMI) technology. The design is based on a U-shaped unit-cell …
A Self-Duplexing Antenna For High-Performance Medical Implants
Multi-tasking implantable antennas require additional multiplexer circuitry which makes the
device bulky and more power consuming. Therefore, in this work, an implantable antenna …
device bulky and more power consuming. Therefore, in this work, an implantable antenna …
Revolutionizing healthcare with metamaterial-enhanced antennas: a comprehensive review and future directions
SP Asokan, K Kaliappan - Frequenz, 2024 - degruyter.com
The state of the art for wearable antennas for wireless communication and biological
applications is compiled in this article. It addresses a wide range of subjects, such as how to …
applications is compiled in this article. It addresses a wide range of subjects, such as how to …
Miniature Circular Implantable antenna for Wireless Biomedical Applications
S Amaria, N Keltouma, A Turkiya - 2022 7th International …, 2022 - ieeexplore.ieee.org
This paper presents a miniature circular implantable antenna suitable for biomedical
applications. The suggested antenna operates in the industrial, scientific, and medical (ISM) …
applications. The suggested antenna operates in the industrial, scientific, and medical (ISM) …
[PDF][PDF] Survey of near-field wireless communication and power transfer for biomedical implants
HK Abduljaleela, S Mutashar, SK Gharghanb - Engineering and Technology …, 2024 - iasj.net
Nowadays, the energy of wireless power transfer (WPT) is widely employed to replace bio-
implantable batteries in implanted systems or devices such as implantable microsystems for …
implantable batteries in implanted systems or devices such as implantable microsystems for …
Metamaterial Based Wearable and Implantable Antennas
D Sharma, S Kumar - Handbook of Nano-Metamaterials, 2024 - Springer
In recent years, wearable and implantable medical devices (IMDs) have proven to be
extremely effective in a variety of healthcare monitoring and therapeutic applications. In …
extremely effective in a variety of healthcare monitoring and therapeutic applications. In …