This paper experimentally validates the capability of a microwave prototype device to localize hemorrhages and ischemias within the brain as well as proposes an innovative calibration technique based on the measured data. In the reported experiments, a 3-D human-like head phantom is considered, where the brain is represented either with a homogeneous liquid mimicking brain dielectric properties or with ex vivo calf brains. The microwave imaging (MWI) system works at 1 GHz, and it is realized with a low-complexity architecture formed by an array of twenty-four printed monopole antennas. Each antenna is embedded into the “brick” of a semi-flexible dielectric matching medium, and it is positioned conformal to the head upper part. The imaging a...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
This paper presents the experimental validation of a microwave imaging system for real-time monitori...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
This work focuses on brain stroke imaging via microwave technology. In particular, the open issue of...
This work focuses on brain stroke imaging via microwave technology. In particular, the open issue of...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
This paper experimentally validates the capability of a microwave prototype device to localize hemor...
This paper presents the experimental validation of a microwave imaging system for real-time monitori...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
The aim of this paper is to present and experimentally verify the first prototype of a microwave ima...
This work focuses on brain stroke imaging via microwave technology. In particular, the open issue of...
This work focuses on brain stroke imaging via microwave technology. In particular, the open issue of...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
International audienceThis work focuses on brain stroke imaging via microwave technology. In particu...
This paper presents the design of a novel low-complexity microwave imaging system for monitoring bra...