Invention Grant
- Patent Title: System and method for interactive patient specific simulation of radiofrequency ablation therapy
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Application No.: US14769844Application Date: 2014-02-24
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Publication No.: US10748438B2Publication Date: 2020-08-18
- Inventor: Chloe Audigier , Tommaso Mansi , Viorel Mihalef , Ali Kamen , Dorin Comaniciu , Puneet Sharma , Saikiran Rapaka
- Applicant: Siemens Healthcare GmbH
- Applicant Address: DE Erlangen
- Assignee: Siemens Healthcare GmbH
- Current Assignee: Siemens Healthcare GmbH
- Current Assignee Address: DE Erlangen
- International Application: PCT/US2014/017886 WO 20140224
- International Announcement: WO2014/133924 WO 20140904
- Main IPC: G01N33/48
- IPC: G01N33/48 ; G09B5/02 ; A61B34/10 ; A61B6/00 ; A61B6/03 ; G16H50/50 ; G09B23/30 ; A61B18/00

Abstract:
A method and system for interactive patient-specific simulation of liver tumor ablation is disclosed. A patient-specific anatomical model of the liver and circulatory system of the liver is estimated from 3D medical image data of a patient. A computational domain is generated from the patient-specific anatomical model of the liver. Blood flow in the liver and the circulatory system of the liver is simulated based on the patient-specific anatomical model. Heat diffusion due to ablation is simulated based on a virtual ablation probe position and the simulated blood flow in the liver and the circulatory system of the liver by solving a bio-heat equation for each node on the level-set representation using a Lattice-Boltzmann method (LBM) implementation. Cellular necrosis in the liver is computed based on the simulated heat diffusion. Visualizations of a computed necrosis region and temperature maps of the liver are generated. A user input is interactively received to modify the position of the virtual ablation probe, the heat diffusion and cellular necrosis is re-simulated based on the user input, and the visualizations of the computed necrosis region and the temperature maps are updated.
Public/Granted literature
- US20160022369A1 System And Method For Interactive Patient Specific Simulation Of Radiofrequency Ablation Therapy Public/Granted day:2016-01-28
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