This paper presents some hardware advances towards a microwave system for brain imaging. In particular, we present a new antenna array design for efficient propagation of microwave signals in the head, as well as a metamaterial structure designed for transmission enhancement through impedance matching. The presented system is modelled in CST Microwave Studio R , using a specific anthropomorphic mannequin (SAM) head model to analyse performance. Simulations results suggest that our designs can be useful in designing a microwave scanner for brain imaging applications such as stroke detection and monitoring
This paper presents the experimental validation of a microwave imaging system for real-time monitori...
With this paper, we will report about the feasibility study of a novel device which will be capable ...
In this paper, we have presented a microwave scattering analysis from multiple human head models. Th...
This paper presents some hardware advances towards a microwave system for brain imaging. In particul...
This paper presents an innovative metasurface design for emerging microwave brain imaging applicatio...
We present an approach to enhance microwave brain imaging with an innovative metamaterial (MM) plana...
Stroke is a very frequent disorder and one of the major leading causes of death and disability world...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
The effect of noise on the ability to detect strokes in the human head using microwave-based systems...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
In this work, a prototype of a laboratory microwave imaging system suitable to methodically test the...
Two novel preprocessing techniques are applied to reinforce the detection performance and the image ...
Microwave imaging is a promising strategy for detecting the presence of brain strokes. In this contr...
Recent advances indicate that microwave-based imaging systems have the potential to be used for diff...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
This paper presents the experimental validation of a microwave imaging system for real-time monitori...
With this paper, we will report about the feasibility study of a novel device which will be capable ...
In this paper, we have presented a microwave scattering analysis from multiple human head models. Th...
This paper presents some hardware advances towards a microwave system for brain imaging. In particul...
This paper presents an innovative metasurface design for emerging microwave brain imaging applicatio...
We present an approach to enhance microwave brain imaging with an innovative metamaterial (MM) plana...
Stroke is a very frequent disorder and one of the major leading causes of death and disability world...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
The effect of noise on the ability to detect strokes in the human head using microwave-based systems...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
In this work, a prototype of a laboratory microwave imaging system suitable to methodically test the...
Two novel preprocessing techniques are applied to reinforce the detection performance and the image ...
Microwave imaging is a promising strategy for detecting the presence of brain strokes. In this contr...
Recent advances indicate that microwave-based imaging systems have the potential to be used for diff...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
This paper presents the experimental validation of a microwave imaging system for real-time monitori...
With this paper, we will report about the feasibility study of a novel device which will be capable ...
In this paper, we have presented a microwave scattering analysis from multiple human head models. Th...