Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation

Bibliographic Details
Main Authors: Peng, T, O'Neill, D, Payne, S, Bost, C, Flanagan, R
Format: Conference item
Published: 2010
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author Peng, T
O'Neill, D
Payne, S
Bost, C
Flanagan, R
author_facet Peng, T
O'Neill, D
Payne, S
Bost, C
Flanagan, R
author_sort Peng, T
collection OXFORD
description
first_indexed 2024-03-07T00:47:26Z
format Conference item
id oxford-uuid:852e8e4f-2993-4eeb-a54d-4a4510e1e7d0
institution University of Oxford
last_indexed 2024-03-07T00:47:26Z
publishDate 2010
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spelling oxford-uuid:852e8e4f-2993-4eeb-a54d-4a4510e1e7d02022-03-26T21:55:38ZMathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency AblationConference itemhttp://purl.org/coar/resource_type/c_5794uuid:852e8e4f-2993-4eeb-a54d-4a4510e1e7d0Symplectic Elements at Oxford2010Peng, TO'Neill, DPayne, SBost, CFlanagan, R
spellingShingle Peng, T
O'Neill, D
Payne, S
Bost, C
Flanagan, R
Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation
title Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation
title_full Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation
title_fullStr Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation
title_full_unstemmed Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation
title_short Mathematical Modeling of Directional Effects of Perfusion on Liver Tissue Temperature of Radio Frequency Ablation
title_sort mathematical modeling of directional effects of perfusion on liver tissue temperature of radio frequency ablation
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AT paynes mathematicalmodelingofdirectionaleffectsofperfusiononlivertissuetemperatureofradiofrequencyablation
AT bostc mathematicalmodelingofdirectionaleffectsofperfusiononlivertissuetemperatureofradiofrequencyablation
AT flanaganr mathematicalmodelingofdirectionaleffectsofperfusiononlivertissuetemperatureofradiofrequencyablation