Empirical thesis.Bibliography: page 33.1. Introduction -- 2. Measurement with a network analyser -- 3. The development of accurate tissue phantoms -- 4. Muscle tissue phantom -- 5. Skin tissue phantom -- 6. Layered phantom -- 7. Discussion -- 8. Conclusion -- 9. Future work -- 10. Abbreviations -- Bibliography.Dielectric materials have a vast potential for application in technology. this project is focused on the use of dielectric phantoms to develop technology. More specifically, the development of more accurate phantom solutions by the development of a skin tissue analogue is explored.Mode of access: World wide web.1 online resource (xiv, 33 pages colour illustrations
The electrical properties of tissues samples are required for investigation and simulation purposes ...
The dielectric properties of biological tissues characterize the interaction of electromagnetic fiel...
International audienceTissue-mimicking materials are widely developed and used as substitutes in man...
The topic for this thesis was commissioned by Verkotan Oy. Verkotan Oy is providing testing and cons...
This research is intending to investigate the human skin phantom’s dielectric constant. The phantom ...
This research is intending to investigate the human skin phantom’s dielectric constant. The phanto...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
In this paper, we first review the most common measurement methods, previously used, for assessing t...
Studies about microwave imaging systems require complex models of biological materials to test the p...
In recent years, there has been a re-emerging interest in the dielectric properties of biological t...
The driving force behind this thesis was the need for developing tissue mimicking materials that can...
The possibility of mimicking different types of breast tissues to realize experimental phantoms has ...
In this paper, the relative permittivity ε′_r and conductivity σ of commercially available 3D printi...
Accurate knowledge of the dielectric properties of biological tissues is necessary for the design an...
The electrical properties of tissues samples are required for investigation and simulation purposes ...
The dielectric properties of biological tissues characterize the interaction of electromagnetic fiel...
International audienceTissue-mimicking materials are widely developed and used as substitutes in man...
The topic for this thesis was commissioned by Verkotan Oy. Verkotan Oy is providing testing and cons...
This research is intending to investigate the human skin phantom’s dielectric constant. The phantom ...
This research is intending to investigate the human skin phantom’s dielectric constant. The phanto...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
In this paper, we first review the most common measurement methods, previously used, for assessing t...
Studies about microwave imaging systems require complex models of biological materials to test the p...
In recent years, there has been a re-emerging interest in the dielectric properties of biological t...
The driving force behind this thesis was the need for developing tissue mimicking materials that can...
The possibility of mimicking different types of breast tissues to realize experimental phantoms has ...
In this paper, the relative permittivity ε′_r and conductivity σ of commercially available 3D printi...
Accurate knowledge of the dielectric properties of biological tissues is necessary for the design an...
The electrical properties of tissues samples are required for investigation and simulation purposes ...
The dielectric properties of biological tissues characterize the interaction of electromagnetic fiel...
International audienceTissue-mimicking materials are widely developed and used as substitutes in man...