We present an approach to enhance microwave brain imaging with an innovative metamaterial (MM) planar design based on a cross-shaped split-ring resonator (SRR-CS). The proposed metasurface is incorporated in different setups, and its interaction with EM waves is studied both experimentally and by using CST Microwave Studio R and is compared to a “no MM” case scenario. We show that the MM can enhance the penetration of the transmitted signals into the human head when placed in contact with skin tissue, acting as an impedance-matching layer. In addition, we show that the MM can improve the transceivers’ ability to detect useful “weak” signals when incorporated in a headband scanner for brain imaging by increasing the signal difference from a ...
We reveal that the unique properties of ultrathin metasurface resonators can improve dramatically m...
This article reviews recent developments in designing and testing new types of materials which can b...
This paper presents a study of a planar antenna-array inspired by the metamaterial concept where the...
This paper presents an innovative metasurface design for emerging microwave brain imaging applicatio...
Over the last two decades, metamaterials (MMs) and metasurfaces (MTSs) have been used to fabricate i...
Our study focuses on examining whether MTS structures can enhance the “weak” signal scattered from a...
This paper presents a feasibility study to enhance microwave imaging (MWI) for intracerebral haemorr...
This paper presents some hardware advances towards a microwave system for brain imaging. In particul...
Stroke is a very frequent disorder and one of the major leading causes of death and disability world...
In this paper we investigate the capabilities of metamaterials technology to enhance the quality of ...
This paper presents a new printed square monopole antenna (PSMA) for haemorrhagic stroke detection, ...
In this paper, we present a metasurface for improving signal penetration inside biological medium an...
In this work, we experimentally demonstrate an increase in the local transmit efficiency of a 1.5 T ...
The talk will briefly introduce the principles of medical microwave imaging (MWI) and then review r...
The design of a compact metamaterial ultra-wideband (UWB) antenna with a goal towards application in...
We reveal that the unique properties of ultrathin metasurface resonators can improve dramatically m...
This article reviews recent developments in designing and testing new types of materials which can b...
This paper presents a study of a planar antenna-array inspired by the metamaterial concept where the...
This paper presents an innovative metasurface design for emerging microwave brain imaging applicatio...
Over the last two decades, metamaterials (MMs) and metasurfaces (MTSs) have been used to fabricate i...
Our study focuses on examining whether MTS structures can enhance the “weak” signal scattered from a...
This paper presents a feasibility study to enhance microwave imaging (MWI) for intracerebral haemorr...
This paper presents some hardware advances towards a microwave system for brain imaging. In particul...
Stroke is a very frequent disorder and one of the major leading causes of death and disability world...
In this paper we investigate the capabilities of metamaterials technology to enhance the quality of ...
This paper presents a new printed square monopole antenna (PSMA) for haemorrhagic stroke detection, ...
In this paper, we present a metasurface for improving signal penetration inside biological medium an...
In this work, we experimentally demonstrate an increase in the local transmit efficiency of a 1.5 T ...
The talk will briefly introduce the principles of medical microwave imaging (MWI) and then review r...
The design of a compact metamaterial ultra-wideband (UWB) antenna with a goal towards application in...
We reveal that the unique properties of ultrathin metasurface resonators can improve dramatically m...
This article reviews recent developments in designing and testing new types of materials which can b...
This paper presents a study of a planar antenna-array inspired by the metamaterial concept where the...