DocumentCode :
1605972
Title :
Research on soft tissue deformation and cutting in the virtual surgery
Author :
Ye, Xiufen ; Xi Ji´er ; Zhu, Ling ; Rui Yan
Author_Institution :
Coll. of Autom., Harbin Eng. Univ., Harbin, China
fYear :
2011
Firstpage :
340
Lastpage :
345
Abstract :
With the applications of OpenGL 3D rendering techniques and SensAble force feedback devices, this paper conducted an in-depth study on the solution procedure of virtual human soft tissue modeling, deformation and incision formation. We applied Mass-Spring System (MSS) to model human soft tissue and introduced its topology; during deformation process, Runge-Kutta Method (RKM) was adopted after its comparison with Euler and Midpoint Method and a dynamical local deformation method was proposed based on RKM. Frame rate per second (FPS) of local and global deformation is also compared. In the cutting process, three methods, namely method based on deleting mesh, MSS-based element meshing method and active points moving cutting triangle mesh algorithm method, were compared and a conclusion was drawn. For this conclusion, we proposed, for the first time, a new incision formation method based on local Bezier Curve. The experimental results indicated that this method can better balance the contradiction between real-time characteristic and precision and present very good simulation effects.
Keywords :
Runge-Kutta methods; biological tissues; biomechanics; deformation; force feedback; medical computing; mesh generation; physiological models; rendering (computer graphics); surgery; virtual reality; Euler method; OpenGL 3D rendering; Runge-Kutta method; SensAble force feedback devices; active points moving cutting triangle mesh algorithm; cutting; deleting mesh; dynamical local deformation method; element meshing method; incision; local Bezier curve; mass-spring system; midpoint method; soft tissue deformation; tissue topology; virtual human soft tissue modeling; virtual surgery; Computational modeling; Face; Periodic structures; Rendering (computer graphics); Three dimensional displays; Bezier Curve; Soft tissue modeling and deformation; Virtual cutting; Virtual surgery;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Complex Medical Engineering (CME), 2011 IEEE/ICME International Conference on
Conference_Location :
Harbin Heilongjiang
Print_ISBN :
978-1-4244-9323-4
Type :
conf
DOI :
10.1109/ICCME.2011.5876762
Filename :
5876762
Link To Document :
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