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- Conference Paper
- C3
- open access
Computational investigation of the effective forces on droplets during electrostatic precipitation pressurized intraperitoneal aerosol chemotherapy (ePIPAC)
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Efficacy of additional electrostatic precipitation to intraperitoneal aerosolized chemotherapy in a realistically reconstructed human peritoneal cavity : a computational study
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- Journal Article
- A1
- open access
Optimization of intraperitoneal aerosolized drug delivery using computational fluid dynamics (CFD) modeling
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- Conference Paper
- C3
- open access
Electrostatic precipitation pressurized intraperitoneal aerosol chemotherapy in a realistically reconstructed human peritoneal cavity : computational modelling approach
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Simulation of electrostatic precipitation pressurized intraperitoneal aerosol chemotherapy (ePIPAC) in a realistic human abdominal model
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- Conference Paper
- C3
- open access
In silico modeling of regional droplet deposition during aerosolized intraperitoneal chemotherapy using a patient-inspired geometry
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Numerical simulations of pressurized intraperitoneal aerosol chemotherapy (PIPAC) : effect of inertial impaction
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- Conference Paper
- C3
- open access
Electrostatic precipitation pressurized intraperitoneal aerosol chemotherapy (ePIPAC) : finding the optimal electrical potential
(2021) EUROPEAN JOURNAL OF SURGICAL ONCOLOGY. In European Journal of Surgical Oncology 47(2). p.e30-e30 -
- Conference Paper
- C3
- open access
Analysis of the effect of liquid viscosity on the aerosol distribution during Pressurized Intraperitoneal Aerosol Chemotherapy (PIPAC) using computational modeling
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Effect of fluid flow rate and droplet size on spatial aerosol distribution during pressurized intraperitoneal aerosol chemotherapy (PIPAC)