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Susan C Hagness

Showing results (1-10 of 47) with videos related to

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IEEE Transactions on Bio-Medical Engineering|October 30, 2020
Ex Vivo Performance of a Flexible Microwave Ablation AntennaYahya Mohtashami, Nader Behdad, Susan C Hagness
Microwave and Optical Technology Letters|August 26, 2011
Heterogeneous Anthropomorphic Phantoms with Realistic Dielectric Properties for Microwave Breast Imaging ExperimentsAlireza Mashal, Fuqiang Gao, Susan C Hagness
Physics in Medicine and Biology|January 7, 2009
Toward contrast-enhanced microwave-induced thermoacoustic imaging of breast cancer: an experimental study of the effects of microbubbles on simple thermoacoustic targetsAlireza Mashal, John H Booske, Susan C Hagness
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|October 6, 2020
Multi-physics modeling of thermoacoustic pulse generation and propagation during pulsed microwave ablation of tissueAudrey L Evans, Chu Ma, Susan C Hagness
Biomedical Physics & Engineering Express|March 24, 2022
Microwave-induced thermoacoustic signal characteristics in a dynamic temperature environmentAudrey L Evans, Chu Ma, Susan C Hagness
IEEE Antennas and Wireless Propagation Letters|February 24, 2015
A TSVD Analysis of the Impact of Polarization on Microwave Breast Imaging using an Enclosed Array of Miniaturized Patch AntennasR Owen Mays, Nader Behdad, Susan C Hagness
Physics in Medicine and Biology|June 8, 2010
3D computational study of non-invasive patient-specific microwave hyperthermia treatment of breast cancerEarl Zastrow, Susan C Hagness, Barry D Van Veen
IEEE Pulse|July 18, 2017
Human Breast Phantoms: Test Beds for the Development of Microwave Diagnostic and Therapeutic TechnologiesLuz Maria Neira, R Owen Mays, Susan C Hagness
Optics Express|June 11, 2008
Amplified total internal reflection: theory, analysis, and demonstration of existence via FDTDKeely J Willis, John B Schneider, Susan C Hagness
IEEE Transactions on Bio-Medical Engineering|May 22, 2014
Microwave ablation at 10.0 GHz achieves comparable ablation zones to 1.9 GHz in ex vivo bovine liverHung Luyen, Fuqiang Gao, Susan C Hagness, et al.
Pageof 5

Showing results (1-10 of 47) with videos related to

Sort By:
Pageof 5
IEEE Transactions on Bio-Medical Engineering|October 30, 2020
Ex Vivo Performance of a Flexible Microwave Ablation AntennaYahya Mohtashami, Nader Behdad, Susan C Hagness
Microwave and Optical Technology Letters|August 26, 2011
Heterogeneous Anthropomorphic Phantoms with Realistic Dielectric Properties for Microwave Breast Imaging ExperimentsAlireza Mashal, Fuqiang Gao, Susan C Hagness
Physics in Medicine and Biology|January 7, 2009
Toward contrast-enhanced microwave-induced thermoacoustic imaging of breast cancer: an experimental study of the effects of microbubbles on simple thermoacoustic targetsAlireza Mashal, John H Booske, Susan C Hagness
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|October 6, 2020
Multi-physics modeling of thermoacoustic pulse generation and propagation during pulsed microwave ablation of tissueAudrey L Evans, Chu Ma, Susan C Hagness
Biomedical Physics & Engineering Express|March 24, 2022
Microwave-induced thermoacoustic signal characteristics in a dynamic temperature environmentAudrey L Evans, Chu Ma, Susan C Hagness
IEEE Antennas and Wireless Propagation Letters|February 24, 2015
A TSVD Analysis of the Impact of Polarization on Microwave Breast Imaging using an Enclosed Array of Miniaturized Patch AntennasR Owen Mays, Nader Behdad, Susan C Hagness
Physics in Medicine and Biology|June 8, 2010
3D computational study of non-invasive patient-specific microwave hyperthermia treatment of breast cancerEarl Zastrow, Susan C Hagness, Barry D Van Veen
IEEE Pulse|July 18, 2017
Human Breast Phantoms: Test Beds for the Development of Microwave Diagnostic and Therapeutic TechnologiesLuz Maria Neira, R Owen Mays, Susan C Hagness
Optics Express|June 11, 2008
Amplified total internal reflection: theory, analysis, and demonstration of existence via FDTDKeely J Willis, John B Schneider, Susan C Hagness
IEEE Transactions on Bio-Medical Engineering|May 22, 2014
Microwave ablation at 10.0 GHz achieves comparable ablation zones to 1.9 GHz in ex vivo bovine liverHung Luyen, Fuqiang Gao, Susan C Hagness, et al.
Pageof 5