Microwave imaging can be used as an alternate modality for monitoring bone health. Dielectrically accurate, anthropomorphic phantoms play vital role in testing of imaging prototype prior to clinical applications. However, no study to date has proposed cortical and trabecular hone phantoms. This paper presents a multilayered 3D-printed human calcaneus structure. Further, we have proposed liquid based tissue phantoms that mimic the dielectric properties of skin, muscle, cortical bone and trabecular bone. Tissue phantoms are composed of Trition X-100, water and salt. The dielectric properties were measured across 0.5-8.5 GHz. Each layer of the 3D-printed structure was filled with corresponding tissue phantom. The combined average percentage di...
In biomedical applications realistic phantoms are becoming more useful for validation and testing of...
In this work, two-dimensional simulations of the microwave dielectric properties of models with elli...
Studies about microwave imaging systems require complex models of biological materials to test the p...
Recent studies have found a significant dielectric contrast between healthy and osteoporotic human t...
The dielectric properties of bones are found to be influenced by the demineralisation of bones. Ther...
Microwave tomography (MWT) can be used as an alternative modality for monitoring human bone health. ...
To facilitate examination for osteogenesis and follow up after craniotomy similar head models called...
Osteoporosis, characterised as low bone mass, causes continuous systematic deterioration of the trab...
International audienceWe produced an anatomically and dielectrically realistic phantom of the axilla...
International audienceMicrowave imaging offers an alternative modality for breast cancer screening a...
This Letter introduces a feasibility study of a scanning system for applications in biomedical bone ...
Phantoms provide valuable test platforms for developing medical devices. Solid materials in particul...
This work presents the development and testing of a three layer anatomical human body phantom suitab...
A critical need exists for new imaging tools to more accurately characterize bone quality beyond the...
A major cause of bone mass loss worldwide is osteoporosis. X-ray is considered to be the gold-standa...
In biomedical applications realistic phantoms are becoming more useful for validation and testing of...
In this work, two-dimensional simulations of the microwave dielectric properties of models with elli...
Studies about microwave imaging systems require complex models of biological materials to test the p...
Recent studies have found a significant dielectric contrast between healthy and osteoporotic human t...
The dielectric properties of bones are found to be influenced by the demineralisation of bones. Ther...
Microwave tomography (MWT) can be used as an alternative modality for monitoring human bone health. ...
To facilitate examination for osteogenesis and follow up after craniotomy similar head models called...
Osteoporosis, characterised as low bone mass, causes continuous systematic deterioration of the trab...
International audienceWe produced an anatomically and dielectrically realistic phantom of the axilla...
International audienceMicrowave imaging offers an alternative modality for breast cancer screening a...
This Letter introduces a feasibility study of a scanning system for applications in biomedical bone ...
Phantoms provide valuable test platforms for developing medical devices. Solid materials in particul...
This work presents the development and testing of a three layer anatomical human body phantom suitab...
A critical need exists for new imaging tools to more accurately characterize bone quality beyond the...
A major cause of bone mass loss worldwide is osteoporosis. X-ray is considered to be the gold-standa...
In biomedical applications realistic phantoms are becoming more useful for validation and testing of...
In this work, two-dimensional simulations of the microwave dielectric properties of models with elli...
Studies about microwave imaging systems require complex models of biological materials to test the p...