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Robust and Real-Time Guidewire Simulation Based on Kirchhoff Elastic Rod for Vascular Intervention Training

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【作者】 罗买生谢洪智谢叻蔡萍顾力栩

【Author】 LUO Mai-sheng;XIE Hong-zhi;XIE Le;CAI Ping;GU Li-xu;School of Biomedical Engineering,Shanghai Jiaotong University;Department of Cardiac Intervention,Beijing Union Medical College Hospital;Institute of Forming Technology & Equipment,Shanghai Jiaotong University;School of Electronic Information and Electrical Engineering,Shanghai Jiaotong University;

【机构】 School of Biomedical Engineering,Shanghai Jiaotong UniversityDepartment of Cardiac Intervention,Beijing Union Medical College HospitalInstitute of Forming Technology & Equipment,Shanghai Jiaotong UniversitySchool of Electronic Information and Electrical Engineering,Shanghai Jiaotong University

【摘要】 Virtual reality(VR) based vascular intervention training is a fascinating innovation, which helps trainees develop skills in safety remote from patients. The vascular intervention training involves the use of flexible tipped guidewires to advance diagnostic or therapeutic catheters into a patient’s vascular anatomy. In this paper, a real-time physically-based modeling approach is proposed to simulate complicated behaviors of guidewires and catheters based on Kirchhoff elastic rod. The slender body of guidewire and catheter is simulated using more efficient special case of naturally straight, isotropic Kirchhoff rods, and the short flexible tip composed of straight or angled design is modeled using more complex generalized Kirchhoff rods. We derive the equations of motion for guidewire and catheter with continuous elastic energy, and then they were discretized using a linear implicit scheme that guarantees stability and robustness. In addition, we apply a fast-projection method to enforce the inextensibility of guidewire and catheter, while an adaptive sampling algorithm is implemented to improve the simulation efficiency without reducing accuracy. Experimental results reveal that our guidewire simulation method is both robust and efficient in a real-time performance.

【Abstract】 Virtual reality(VR) based vascular intervention training is a fascinating innovation, which helps trainees develop skills in safety remote from patients. The vascular intervention training involves the use of flexible tipped guidewires to advance diagnostic or therapeutic catheters into a patient’s vascular anatomy. In this paper, a real-time physically-based modeling approach is proposed to simulate complicated behaviors of guidewires and catheters based on Kirchhoff elastic rod. The slender body of guidewire and catheter is simulated using more efficient special case of naturally straight, isotropic Kirchhoff rods, and the short flexible tip composed of straight or angled design is modeled using more complex generalized Kirchhoff rods. We derive the equations of motion for guidewire and catheter with continuous elastic energy, and then they were discretized using a linear implicit scheme that guarantees stability and robustness. In addition, we apply a fast-projection method to enforce the inextensibility of guidewire and catheter, while an adaptive sampling algorithm is implemented to improve the simulation efficiency without reducing accuracy. Experimental results reveal that our guidewire simulation method is both robust and efficient in a real-time performance.

【基金】 the National Natural Science Foundation of China(Nos.61190120,61190124 and 61271318);the Biomedical Engineering Fund of Shanghai Jiao Tong University(No.YG2012ZD06)
  • 【文献出处】 Journal of Shanghai Jiaotong University(Science) ,上海交通大学学报(英文版) , 编辑部邮箱 ,2014年05期
  • 【分类号】R318.01
  • 【下载频次】74
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