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Annals of Biomedical Engineering
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May 17, 2020
Electro-Thermal Therapy Algorithms and Active Internal Electrode Cooling Reduce Thermal Injury in High Frequency Pulsed Electric Field Cancer Therapies
Michael B Sano, Christopher C Fesmire, Ross A Petrella
Physics in Medicine and Biology
|
July 7, 2018
Burst and continuous high frequency irreversible electroporation protocols evaluated in a 3D tumor model
Michael B Sano, Christopher C Fesmire, Matthew R DeWitt, et al.
Bioelectrochemistry (Amsterdam, Netherlands)
|
May 22, 2020
Irreversible electroporation is a thermally mediated ablation modality for pulses on the order of one microsecond
Christopher C Fesmire, Ross A Petrella, Jacob D Kaufman, et al.
IEEE Transactions on Bio-Medical Engineering
|
January 13, 2022
Polymer Nanoparticles Enhance Irreversible Electroporation In Vitro
Ross A Petrella, Shani L Levit, Christopher C Fesmire, et al.
IEEE Transactions on Bio-Medical Engineering
|
July 17, 2020
Algorithmically Controlled Electroporation: A Technique for Closed Loop Temperature Regulated Pulsed Electric Field Cancer Ablation
Ross Aaron Petrella, Christopher C Fesmire, Jacob D Kaufman, et al.
Annals of Biomedical Engineering
|
May 16, 2020
Temperature Dependence of High Frequency Irreversible Electroporation Evaluated in a 3D Tumor Model
Christopher C Fesmire, Ross A Petrella, Callie A Fogle, et al.
IEEE Transactions on Bio-Medical Engineering
|
December 25, 2023
Integrated Time Nanosecond Pulse Irreversible Electroporation (INSPIRE): Assessment of Dose, Temperature, and Voltage on Experimental and Clinical Treatment Outcomes
Christopher C Fesmire, Robert H Williamson, Ross A Petrella, et al.
Cryobiology
|
January 3, 2024
A novel in vitro model of clinical cryoablation to investigate the transition zone for focal tumor ablation
Maura R Vrabel, Christopher C Fesmire, Matthew J Rich, et al.
Computers in Biology and Medicine
|
June 23, 2020
Electro-thermal therapy: Microsecond duration pulsed electric field tissue ablation with dynamic temperature control algorithms
Michael B Sano, Ross A Petrella, Jacob D Kaufman, et al.
Journal of Vascular and Interventional Radiology : JVIR
|
September 19, 2019
High-Frequency Irreversible Electroporation Using 5,000-V Waveforms to Create Reproducible 2- and 4-cm Ablation Zones-A Laboratory Investigation Using Mechanically Perfused Liver
Jacob D Kaufman, Christopher C Fesmire, Ross A Petrella, et al.
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Search research articles
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Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Annals of Biomedical Engineering
|
May 17, 2020
Electro-Thermal Therapy Algorithms and Active Internal Electrode Cooling Reduce Thermal Injury in High Frequency Pulsed Electric Field Cancer Therapies
Michael B Sano, Christopher C Fesmire, Ross A Petrella
Physics in Medicine and Biology
|
July 7, 2018
Burst and continuous high frequency irreversible electroporation protocols evaluated in a 3D tumor model
Michael B Sano, Christopher C Fesmire, Matthew R DeWitt, et al.
Bioelectrochemistry (Amsterdam, Netherlands)
|
May 22, 2020
Irreversible electroporation is a thermally mediated ablation modality for pulses on the order of one microsecond
Christopher C Fesmire, Ross A Petrella, Jacob D Kaufman, et al.
IEEE Transactions on Bio-Medical Engineering
|
January 13, 2022
Polymer Nanoparticles Enhance Irreversible Electroporation In Vitro
Ross A Petrella, Shani L Levit, Christopher C Fesmire, et al.
IEEE Transactions on Bio-Medical Engineering
|
July 17, 2020
Algorithmically Controlled Electroporation: A Technique for Closed Loop Temperature Regulated Pulsed Electric Field Cancer Ablation
Ross Aaron Petrella, Christopher C Fesmire, Jacob D Kaufman, et al.
Annals of Biomedical Engineering
|
May 16, 2020
Temperature Dependence of High Frequency Irreversible Electroporation Evaluated in a 3D Tumor Model
Christopher C Fesmire, Ross A Petrella, Callie A Fogle, et al.
IEEE Transactions on Bio-Medical Engineering
|
December 25, 2023
Integrated Time Nanosecond Pulse Irreversible Electroporation (INSPIRE): Assessment of Dose, Temperature, and Voltage on Experimental and Clinical Treatment Outcomes
Christopher C Fesmire, Robert H Williamson, Ross A Petrella, et al.
Cryobiology
|
January 3, 2024
A novel in vitro model of clinical cryoablation to investigate the transition zone for focal tumor ablation
Maura R Vrabel, Christopher C Fesmire, Matthew J Rich, et al.
Computers in Biology and Medicine
|
June 23, 2020
Electro-thermal therapy: Microsecond duration pulsed electric field tissue ablation with dynamic temperature control algorithms
Michael B Sano, Ross A Petrella, Jacob D Kaufman, et al.
Journal of Vascular and Interventional Radiology : JVIR
|
September 19, 2019
High-Frequency Irreversible Electroporation Using 5,000-V Waveforms to Create Reproducible 2- and 4-cm Ablation Zones-A Laboratory Investigation Using Mechanically Perfused Liver
Jacob D Kaufman, Christopher C Fesmire, Ross A Petrella, et al.
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