[HTML][HTML] Towards accurate microwave characterization of tissues: Sensing depth analysis of open-ended coaxial probes with ex vivo rat breast and skin tissues

C Aydinalp, S Joof, T Yilmaz - Diagnostics, 2021 - mdpi.com
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues.

C Aydinalp, S Joof, T Yilmaz… - Diagnostics (2075 …, 2021 - search.ebscohost.com
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues.

C Aydinalp, S Joof, T Yilmaz - Diagnostics (Basel, Switzerland), 2021 - europepmc.org
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues …

C Aydinalp, S Joof, T Yilmaz - 2021 - search.proquest.com
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

[PDF][PDF] Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues …

C Aydinalp, S Joof, T Yilmaz - 2021 - pdfs.semanticscholar.org
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues

C Aydinalp, S Joof, T Yilmaz - 2021 - aperta.ulakbim.gov.tr
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

[PDF][PDF] Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues …

C Aydinalp, S Joof, T Yilmaz - 2021 - academia.edu
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues

C Aydinalp, S Joof, T Yilmaz - Diagnostics (Basel …, 2021 - pubmed.ncbi.nlm.nih.gov
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues

C Aydinalp, S Joof, T Yilmaz - Diagnostics, 2021 - research.send4journal.com
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …

[HTML][HTML] Towards Accurate Microwave Characterization of Tissues: Sensing Depth Analysis of Open-Ended Coaxial Probes with Ex Vivo Rat Breast and Skin Tissues

C Aydinalp, S Joof, T Yilmaz - Diagnostics, 2021 - ncbi.nlm.nih.gov
Dielectric properties of biological materials are commonly characterized with open-ended
coaxial probes due to the broadband and non-destructive measurement capabilities …