Augmented reality-based visual-haptic modeling for thoracoscopic surgery training systems
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Yonghang Tai | Junjun Pan | Aimin Hao | Junsheng Shi | Victor I. Chang | Junjun Pan | Yonghang Tai | Junsheng Shi | Aimin Hao
[1] A. Jemal,et al. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries , 2018, CA: a cancer journal for clinicians.
[2] Aimin Hao,et al. Real-time dissection of organs via hybrid coupling of geometric metaballs and physics-centric mesh-free method , 2016, The Visual Computer.
[3] Anderson Maciel,et al. Efficient Surgical Cutting with Position-Based Dynamics , 2017, IEEE Computer Graphics and Applications.
[4] Lixu Gu,et al. Computerized Medical Imaging and Graphics a Hybrid Deformable Model for Real-time Surgical Simulation , 2022 .
[5] G. Veronesi,et al. Robotic surgery, video-assisted thoracic surgery, and open surgery for early stage lung cancer: comparison of costs and outcomes at a single institute. , 2018, Journal of thoracic disease.
[6] Jan Bender,et al. Position-based simulation of continuous materials , 2014, Comput. Graph..
[7] Jun J Pan,et al. Virtual reality training and assessment in laparoscopic rectum surgery , 2015, The international journal of medical robotics + computer assisted surgery : MRCAS.
[8] Evangelos Georgiou,et al. Surgical Simulation Training Systems: Box Trainers, Virtual Reality and Augmented Reality Simulators , 2016, ICRA 2016.
[9] R. Cerfolio,et al. Techniques for lung surgery: a review of robotic lobectomy , 2018, Expert review of respiratory medicine.
[10] Adrian G Barnett,et al. The association between lung cancer incidence and ambient air pollution in China: A spatiotemporal analysis. , 2016, Environmental research.
[11] Stéphane Cotin,et al. Virtual cutting of deformable objects based on efficient topological operations , 2015, The Visual Computer.
[12] Sarah Niebe,et al. Numerical methods for linear complementarity problems in physics-based animation , 2015, SIGGRAPH '13.
[13] Zaiqing Chen,et al. Towards Virtual VATS, Face, and Construct Evaluation for Peg Transfer Training of Box, VR, AR, and MR Trainer , 2019, Journal of healthcare engineering.
[14] Martin Kraus,et al. Simulation of surgical cutting in deformable bodies using a game engine , 2015, 2014 International Conference on Computer Graphics Theory and Applications (GRAPP).
[15] L. Molins,et al. Is it appropriate to perform video-assisted thoracoscopic surgery for advanced lung cancer? , 2018, Future oncology.
[16] Jennifer Herron,et al. Augmented Reality in Medical Education and Training , 2016 .
[17] Woojin Ahn,et al. Development of the VBLaST™: a virtual basic laparoscopic skill trainer , 2008, The international journal of medical robotics + computer assisted surgery : MRCAS.
[18] Jun Wu,et al. A Survey of Physically Based Simulation of Cuts in Deformable Bodies , 2015, Comput. Graph. Forum.
[19] Ravi Balasubramanian,et al. The Human Hand as an Inspiration for Robot Hand Development , 2014, Springer Tracts in Advanced Robotics.
[20] Matthias Harders,et al. Haptic Tumor Augmentation: Exploring Multi-Point Interaction , 2014, IEEE Transactions on Haptics.
[21] Tae-Yong Kim,et al. Strain based dynamics , 2014, SCA '14.
[22] M. Schijven,et al. Systematic review on the effectiveness of augmented reality applications in medical training , 2016, Surgical Endoscopy.
[23] Jeong Hun Kim,et al. Soft implantable microelectrodes for future medicine: prosthetics, neural signal recording and neuromodulation. , 2016, Lab on a chip.
[24] Mahdi Tavakoli,et al. Introduction to haptics for neurosurgeons. , 2013, Neurosurgery.
[25] Raja Flores,et al. Open, video-assisted thoracic surgery, and robotic lobectomy: review of a national database. , 2014, The Annals of thoracic surgery.