期刊文献+

虚拟针灸视觉建模与仿真方法研究 被引量:4

Research of Virtual Acupuncture Visual Modeling and Simulation Method
下载PDF
导出
摘要 为了解决传统针灸培养模式中初学者只有理论训练而没有实践训练的问题,结合信息技术和医学技术开展虚拟针灸训练系统的研究与实践。针对针灸治疗视觉过程中皮肤下陷和皮肤旋转两种物理现象,通过数学物理建模方法在三角形网格皮肤模型上建立物理模型。利用Java3D建立虚拟针灸场景,并对所治疗的穴位点进行拾取,随后运用JOGL(Java Bindings for OpenGL)呈现针灸治疗视觉全过程,并根据训练者操作过程进行评判。通过整合各个功能模块,在NetBeans IDE下开发出一套虚拟针灸训练平台,供针灸训练人员进行操作,评测训练人员的针灸水平。虚拟针灸训练系统的研究和实践对于降低实习针灸师医疗事故出现率具有重要的实际意义和应用价值。 To solve the problem that the acupuncture learners have few practical training in the traditional acupuncture training pattern,the research and practice of virtual acupuncture training system were conducted combining modern information science and medical technology.By using mathematical physics modeling method to build the physical model on the triangular mesh model of human skin,the skin subsidence and rotation procedure were simulated.And Java3D was adopted to build the virtual acupuncture scene and the acupuncture points were picked up,and then JOGL(Java Bindings for OpenGL) was utilized to render the whole procedure of acupuncture therapy.On NetBeans IDE,each functional module was integrated to develop a virtual acupuncture training system that trains the acupuncture learners and values their acupuncture skills.Research and practice of virtual acupuncture training simulation has a significant value of reducing the risks of medical negligence caused by acupuncture learners.
出处 《系统仿真学报》 CAS CSCD 北大核心 2011年第8期1708-1713,共6页 Journal of System Simulation
基金 国家自然科学基金(61070079)
关键词 虚拟针灸训练系统 数学物理建模 JAVA3D JOGL virtual acupuncture training system mathematical physics modeling Java3D JOGL
  • 相关文献

参考文献17

  • 1王雪苔.针灸的国际化与现代化[J].中国针灸,2004,24(2):75-77. 被引量:22
  • 2O Gerovich, P Marayong, A M Okamura. The effect of visual and haptic feedback on computer-assisted needle insertion [J]. Computer- Aided Surgery (S1092-9088), 2004, 9(6): 243-249.
  • 3J Hing, A Brooks, J P Desai. Reality-based estimation of Needle and soft-tissue interaction for accurate haptic feedback in prostate brachytherapy simulation [R]// International Symposium of RoboticsResearch, San Francisco, CA, USA, 2005. Thousand Oaks, CA, USA: Sage Publications, Inc., 2005: 34-48.
  • 4E Gobbetti. Catheter Insertion Simulation with Co-registered Direct Volume Rendering and Haptic Feedback [J]. Studies in Health Technology and Informatics (S0926-9630), 2000, 70: 96-98.
  • 5Heng PA, Xie YM, Wang XH, et al. Virtual Acupuncture Human Based on Chinese Visible Human Dataset [J]. Studies in Health Technology and Informatics (S0926-9630), 2006, 119:194-197.
  • 6S P DiMaio, S E Salcudean. Needle insertion modeling and simulation [J]. IEEE Transactions on Robotics and Automation (S1042-296X), 2003, 19(5): 864-875.
  • 7Hiemenz Holton, Leslie L. Force Models for Needle Insertion Created from Measured Needle Puncture Data [J]. Studies in Health Technology and Informatics (S0926-9630), 2001, 81 : 180-186.
  • 8S P DiMaio, S E Salcudean. Simulated interactive needle insertion [C]// Proc. 10th Syrup. Haptic Interfaces for Virtual Environment, Teleoperator Systems, Mar. 24-25, 2002. Washington, DC, USA: IEEE Computer Society, 2002:344-351.
  • 9H-W Nienhuys, A F van der Stappen. Interactive Needle Insertions in 3-D Nonlinear Material. Inst. Inform. Comput. Sci., Utrecht Univ., Utrecht, The Netherlands. [EB/OL]. (2003) [2011-6-22]. www.cs.uu.nl.
  • 10L Hiemenz, A Litsky, P Schmalbrock. Puncture mechanics for the insertion of an epidural needle [C]// Proc. 21st Annul Meeting American Society of Biomechanics. USA: Clemson University South Carolina, September 24-27, 1997: 36-37.

二级参考文献25

  • 1朱向庆,王建明.ZigBee协议网络层的研究与实现[J].电子技术应用,2006,32(1):129-132. 被引量:61
  • 2陶晓玲,黄廷磊,王勇.ZigBee网状网技术探讨[J].广西师范学院学报(自然科学版),2006,23(3):67-71. 被引量:12
  • 3Cagetay B, Mert S, Mathias H, et al. VR-based simulators for training in minimally invasive surgery[J].IEEE Computer Graphics and Applications, 2007, 27(2) : 54-66.
  • 4Andre N, Slefan W, Marie-Therese F, et al. Ad vanced virtual endoscopic pituitary surgery[J]. IEEE Transactions on Visualization and Computer Graphics, 2005, 11(5): 497-507.
  • 5Kuhnapfei U, Cakmak H K, Maab H. Endoscopic surgery training using virtual reality and deformable tissue simulation[J]. Computer & Graphics, 2000, 24(5) : 671-682.
  • 6Provot X. Deformation constraints in a mass-spring model to describe rigid cloth behavior[C] // Proceedings of Graphics Interface. Quebec: Canadian Information Processing Society, 1995: 147-154.
  • 7Loup V. Computer experiments on classical fluids [J]. Physical Review, 1967, 159(1): 98-103.
  • 8Guarnieri F. Theory and algorithms for mixed monte carlo-stochastic dynamics simulations[J]. Journal of Mathematical Chemistry, Springer Netherlands, 1995, 8(1): 25-35.
  • 9William K. Pratt. Digital image processing[M]. 3rd Edition. New York: John Wiley and Sons, 2001.
  • 10Castleman R K. Digital image processing[M]. New York: Prentice-Hall International, 1998.

共引文献46

同被引文献30

引证文献4

二级引证文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部