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Volumn 5958 LNCS, Issue , 2010, Pages 130-138

A point-based simulation framework for minimally invasive surgery

Author keywords

Deformable modeling; Minimally invasive surgery simulation; Physically based modeling; Point based simulation; SPH

Indexed keywords

BIOLOGICAL SOFT TISSUE; DEFORMABLE MODELING; ENTIRE SYSTEM; HAPTIC FEEDBACKS; MINIMALLY INVASIVE SURGERY; NON-LINEAR; PHYSICALLY BASED MODELING; PHYSICALLY-BASED SIMULATION; POINT-BASED; SIMULATION FRAMEWORK; SMOOTHED PARTICLE HYDRODYNAMICS; SMOOTHING METHODS; SURGICAL INSTRUMENT; TIME EFFICIENCIES; UNIFORM GRIDS;

EID: 77949588761     PISSN: 03029743     EISSN: 16113349     Source Type: Book Series    
DOI: 10.1007/978-3-642-11615-5_14     Document Type: Conference Paper
Times cited : (8)

References (13)
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    • Müller, M., Keiser, R., Nealen, A., Pauly, M., Gross, M., Alexa, M.: Point based animation of elastic, plastic and melting objects. In: SCA 2004: Proceedings of the 2004 ACM SIGGRAPH/Eurographics symposium on Computer animation, pp. 141-151. Eurographics Association, Aire-la-Ville (2004)
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    • Solenthaler, B., Schfli, J., Pajarola, R.: A unified particle model for fluid-solid interactions: Research Articles. Comput. Animat. Virtual Worlds 18(1), 69-82 (2007)
    • Solenthaler, B., Schfli, J., Pajarola, R.: A unified particle model for fluid-solid interactions: Research Articles. Comput. Animat. Virtual Worlds 18(1), 69-82 (2007)
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    • An efficient and scalable deformable model for virtual reality-based medical applications
    • Choi, K.-S., Sun, H., Heng, P.-A.: An efficient and scalable deformable model for virtual reality-based medical applications. Artificial Intelligence in Medicine 32(1), 51-69 (2004)
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    • Real time simulation of nonlinear soft tissue response in minimally invasive surgical procedures using a meshfree approach
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    • Lim, Y.-J., De, S.: Real time simulation of nonlinear soft tissue response in minimally invasive surgical procedures using a meshfree approach. In: Proceedings of the US National Congress on Computational Mechanics, Austin, TX (2005)
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.