Interactive modeling and simulation of peripheral nerve cords in virtual environments

被引:0
作者
Ullrich, Sebastian [1 ]
Frommen, Thorsten [1 ]
Eckert, Jan [1 ]
Schuetz, Astrid [1 ]
Liao, Wei [2 ]
Deserno, Thomas M. [2 ]
Ntoub, Alexandre [3 ]
Rossaint, Rolf [3 ]
Prescher, Andreas [4 ]
Kuhlen, Torsten [1 ]
机构
[1] Rhein Westfal TH Aachen, VR Grp, Seffenter Weg 23, Aachen, Germany
[2] Rhein Westfal TH Aachen, Dept Med Informat, Aachen, Germany
[3] Univ Hosp Aachen, Anesthesiol Clin, Aachen, Germany
[4] Univ Hosp Aachen, Inst Neuroanat, D-52074 Aachen, Germany
来源
MEDICAL IMAGING 2008: VISUALIZATION, IMAGE-GUIDED PROCEDURES, AND MODELING, PTS 1 AND 2 | 2008年 / 6918卷
关键词
modeling; surgical simulation; visualization;
D O I
10.1117/12.770354
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
This paper contributes to modeling, simulation and visualization of peripheral nerve cords. Until now, only sparse datasets of nerve cords can be found. In addition, this data has not yet been used in simulators, because it is only static. To build up a more flexible anatomical structure of peripheral nerve cords, we propose a hierarchical tree data structure where each node represents a nerve branch. The shape of the nerve segments itself is approximated by spline curves. Interactive modeling allows for the creation and editing of control points which are used for branching nerve sections, calculating spline curves and editing spline representations via cross sections. Furthermore, the control points can be attached to different anatomic structures. Through this approach, nerve cords deform in accordance to the movement of the connected structures, e.g., muscles or bones. As a result, we have developed an intuitive modeling system that runs on desktop computers and in immersive environments. It allows anatomical experts to create movable peripheral nerve cords for articulated virtual humanoids. Direct feedback of changes induced by movement or deformation is achieved by visualization in real-time. The techniques and the resulting data are already used for medical simulators.
引用
收藏
页数:8
相关论文
共 50 条
[41]   Virtual environments for medical training: Graphical and haptic simulation of laparoscopic common bile duct exploration [J].
Basdogan, C ;
Ho, CH ;
Srinivasan, MA .
IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2001, 6 (03) :269-285
[42]   The Modeling and Simulation of an Autonomous Quad-Rotor Microcopter in a Virtual Outdoor Scenario [J].
Rodic, Aleksandar ;
Mester, Gyula .
ACTA POLYTECHNICA HUNGARICA, 2011, 8 (04) :107-122
[43]   Virtual Reality Oriented Modeling and Simulation of Water-dropping From Helicopter [J].
Han, Yangnanbing ;
Liu, Hu ;
Tian, Yongliang ;
Chen, Zhengyuan ;
Nie, Zhengxin .
AIVR 2018: 2018 INTERNATIONAL CONFERENCE ON ARTIFICIAL INTELLIGENCE AND VIRTUAL REALITY, 2018, :20-25
[44]   Interactive, immersive visualization for indoor environments: Use of augmented reality, human-computer interaction and building simulation [J].
Malkawi, A ;
Srinivasan, R ;
Jackson, B ;
Yi, Y ;
Chan, K ;
Angelov, S .
EIGHTH INTERNATIONAL CONFERENCE ON INFORMATION VISUALISATION, PROCEEDINGS, 2004, :833-838
[45]   On the capture of ultralow-level benzene in indoor environments: Experiments, modeling and molecular simulation [J].
Zhang, Dingchao ;
Liu, Junjie ;
Liu, Meng ;
Liu, Lumeng ;
Do, D. D. .
SEPARATION AND PURIFICATION TECHNOLOGY, 2020, 251
[46]   From 3D landscape visualization to environmental simulation: The contribution of sound to the perception of virtual environments [J].
Lindquist, Mark ;
Lange, Eckart ;
Kang, Jian .
LANDSCAPE AND URBAN PLANNING, 2016, 148 :216-231
[47]   Impact of simulation fidelity on identifying swing-over hazards in virtual environments for novice crane operators [J].
Jiang, Tanghan ;
Fang, Yihai ;
Goh, Jiantsen ;
Hu, Songbo .
AUTOMATION IN CONSTRUCTION, 2024, 165
[48]   MediVol: A practical initial evaluaton of refined, 3D, interactive volumetric representations of soft tissue pathologies in Virtual Environments [J].
Aspin, R. ;
Smith, M. ;
Nazar, M. A. ;
Hutchinson, C. ;
Funk, L. .
13TH IEEE/ACM INTERNATIONAL SYMPOSIUM ON DISTRIBUTED SIMULATION AND REAL-TIME APPLICATIONS, PROCEEDINGS, 2009, :73-+
[49]   Modeling and performance analysis using extended fuzzy-timing Petri nets for networked virtual environments [J].
Zhou, Y ;
Murata, T ;
DeFanti, TA .
IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS PART B-CYBERNETICS, 2000, 30 (05) :737-756
[50]   A real-time interactive simulation framework for watershed decision making using numerical models and virtual environment [J].
Zhang, ShangHong ;
Xia, ZhongXi ;
Wang, TaiWei .
JOURNAL OF HYDROLOGY, 2013, 493 :95-104