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PUBMED FOR HANDHELDS

Journal Abstract Search


316 related items for PubMed ID: 15458105

  • 1. Spring: a general framework for collaborative, real-time surgical simulation.
    Montgomery K, Bruyns C, Brown J, Sorkin S, Mazzella F, Thonier G, Tellier A, Lerman B, Menon A.
    Stud Health Technol Inform; 2002; 85():296-303. PubMed ID: 15458105
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  • 4. A framework using cluster-based hybrid network architecture for collaborative virtual surgery.
    Qin J, Choi KS, Poon WS, Heng PA.
    Comput Methods Programs Biomed; 2009 Dec; 96(3):205-16. PubMed ID: 19631402
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  • 8. [Present and future developments of the virtual surgery and tele-virtual surgery system].
    Suzuki S, Suzuki N, Hattori A, Hayashibe M, Otake Y, Kobayashi S, Hashizume M.
    Nihon Rinsho; 2004 Apr; 62(4):815-23. PubMed ID: 15106354
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  • 10. A network architecture supporting consistent rich behavior in collaborative interactive applications.
    Marsh J, Glencross M, Pettifer S, Hubbold R.
    IEEE Trans Vis Comput Graph; 2006 Apr; 12(3):405-16. PubMed ID: 16640254
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  • 13. Computer-controlled motorized endoscopic grasper for in vivo measurement of soft tissue biomechanical characteristics.
    Brown JD, Rosen J, Moreyra M, Sinanan M, Hannaford B.
    Stud Health Technol Inform; 2002 Apr; 85():71-3. PubMed ID: 15458062
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  • 17. Improvement of surgical simulation using dynamic volume rendering.
    Radetzky A, Schröcker F, Auer LM.
    Stud Health Technol Inform; 2000 Apr; 70():272-8. PubMed ID: 10977556
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  • 18. Force interactions in laparoscopic simulations: haptic rendering of soft tissues.
    Basdogan C, Ho CH, Srinivasan MA, Small SD, Dawson SL.
    Stud Health Technol Inform; 1998 Apr; 50():385-91. PubMed ID: 10180581
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  • 19. Co-located haptic and 3D graphic interface for medical simulations.
    Berkelman P, Miyasaka M, Bozlee S.
    Stud Health Technol Inform; 2013 Apr; 184():48-50. PubMed ID: 23400128
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