On the importance of modelling organ geometry and boundary conditions for predicting three-dimensional prostate
Alex Jahya1, Martijn G Schouten, Jurgen J Fütterer
1a MIRA - Institute for Biomedical Technology and Technical Medicine, University of Twente , Enschede , The Netherlands.
Abstract:
The use of an ultrasound probe or a needle guide during biopsy deforms both the rectal wall and the prostate, resulting in lesion motion. An accurate patient-specific finite element (FE)-based biomechanical model can be used to predict prostate deformations. In this study, an FE model of a prostate phantom is developed using magnetic resonance images, while soft-tissue elasticity is estimated in vivo using an ultrasound-based acoustic radiation force impulse imaging technique. This study confirms that three-dimensional FE-predicted prostate deformation is predominantly dependent on accurate modelling of prostate geometry and boundary conditions. Upon application of various compressive displacements, our results show that a linear elastic FE model can accurately predict prostate deformations. The maximum global error between FE-predicted simulations and experimental results is 0.76 mm. Moreover, the effect of including the urethra, puboprostatic ligament and urinary bladder on prostate deformations is investigated by a sensitivity study.
More Related Videos
08:43Identification, Histological Characterization, and Dissection of Mouse Prostate Lobes for In Vitro 3D Spheroid Culture Models
Published on: September 18, 2018
09:04Establishment and Maintenance of Patient-derived Prostate Cancer Organoids: A Detailed Experimental Protocol
Published on: November 14, 2025
