◆学术与社会服务 Ø 亚洲触觉会议(AsiaHaptics 2020)大会主席(General Chair) Ø IEEE 触觉技术委员会(IEEE Technical Committee on Haptics, TCH) 执行委员会主席,2014年8月至2017年12月, (http://www.worldhaptics.org/executive-committee ) Ø IEEE Transactions on Haptics编委(Associate Editor),2014年12月至今 Ø IEEE 触觉技术委员会执行委员会副主席,2011年8月至2014年8月 Ø Digital medicine国际期刊编委,2016年6月至今 Ø 虚拟现实与智能硬件期刊编委,2018年1月至今 Ø IEEE高级会员,中国计算机学会高级会员,中国机械工程学会高级会员 Ø 中国计算机学会人机交互专业组委员 Ø 2015年IEEE世界触觉会议编辑委员会副编辑(IEEE World Haptics Conference 2015, Associate Editor) Ø 2015年IEEE国际机器人与自动化大会分会主席(IEEE International Conference on Robotics and Automation, ICRA 2015, Session Chair) Ø 2014年欧洲触觉会议国际咨询委员会委员,International advisory committee, EuroHaptics Conference 2014, Paris, France(触觉领域三大主流会议之一) Ø 2014年欧洲触觉会议程序委员会委员,Program Committee, EuroHaptics Conference 2014, Paris, France(触觉领域三大主流会议之一) Ø 2014年机器人科学与系统程序委员会委员,Program Committee, Robotics Science and Systems (RSS) 2014, Berlin, Germany(机器人领域知名会议) Ø Member of International Program Committee, 10th Workshop on Virtual Reality Interaction and Physical Simulation (VRIPHYS 2013). Lille, France. (https://vriphys2013.inria.fr/committees/) Ø 2013年IEEE世界触觉会议编辑委员会副编辑(IEEE World Haptics Conference 2013, Associate Editor) Ø 2013年IEEE世界触觉会议组织委员会成员(IEEE World Haptics Conference 2013 Organizing Committee member, Publicity Co-Chair)(触觉领域顶级会议) Ø 2011年IEEE世界触觉会议评奖委员会成员(IEEE World Haptics Conference 2011 Award Committee member)(触觉领域顶级会议) Ø 2011年IEEE国际机器人与自动化大会触觉分会主席(IEEE International Conference on Robotics and Automation, ICRA 2011, Session Chair of Haptics Session) Ø 国际期刊审稿人,包括IEEE Transaction on Haptics, ACM Transaction on Graphics, IEEE Transactions on Instrumentation and Measurement, IEEE Transactions on Systems, Man, and Cybernetics--Part C: Applications and Reviews, Journal of Computer Science and Technology等期刊; 专著 1. D. Wang, J. Xiao, and Y. Zhang, Haptic rendering for fine manipulation, Springer, 2014, ISBN 978-3-662-44949-3. http://www.springer.com/computer/hci/book/978-3-662-44948-6 期刊论文 1. D. Wang, K. Ohnishi and W. Xu, "Multimodal Haptic Display for Virtual Reality: A Survey", IEEE Transactions on Industrial Electronics, 2020, Vol. 67, No. 01, pp. 610-623 2. D. Wang, M. Song, A. Naqash, Y. Zheng, W. Xu, and Y. Zhang, Toward Whole-hand Kinesthetic Feedback: A Survey of Force Feedback Gloves, IEEE Transactions on Haptics, VOL. 12, NO. 2, APRIL-JUNE, 2019, pp. 189-204 3. Z. Wang, D. Wang, Y. Zhang, J. Liu, L.Wen, W. Xu, and Y. Zhang, A Three-Fingered Force Feedback Glove using Fiber reinforced Soft Bending Actuators, IEEE Transactions on Industrial Electronics, 2020, In press 4. Y. Zhang, D. Wang, Z. Wang, Y. Zhang and J. Xiao, Passive Force-feedback Gloves with Joint-based Variable Impedance Using Layer Jamming, IEEE Transactions on Haptics, In press 5. X. Guo, Y. Zhang, W. Xu, and D. Wang, Effect of Temperature on the Detection and Discrimination Thresholds of Voltage on Electrovibration Tactile Display, IEEE Transactions on Haptics, In press 6. R. Chu, Y. Zhang, H. Zhang, W. Xu, J. Ryu, D. Wang, Co-actuation: a Method for Achieving High Stiffness and Low Inertia for Haptic Devices, IEEE Transactions on Haptics, In press 7. D. Wang, K. Ohnishi, and W. Xu, Novel Emerging Sensing, Actuation, and Control Techniques for Haptic Interaction and Teleoperation. IEEE Transactions on Industrial Electronics, Vol. 67, No. 01, pp. 624-626, January 2020 8. D. Wang, T. Li, N. Afzal, et al. Haptics-mediated Approaches for Enhancing Sustained Attention: Framework and Challenges. Sci China Inf Sci, 2020 9. Y. Zheng, D. Wang, Y. Zhang, Y. Tang. Enhancing attention by synchronizing respiration and fingertip pressure: a pilot study using functional near infrared spectroscopy. Frontiers in Neuroscience, 2019, In press 10. Y. Zheng, D. Wang, Y. Zhang and W. Xu, Detecting Mind Wandering: An Objective Method via Simultaneous Control of Respiration and Fingertip Pressure. Frontiers in Psychology, 2019, 10:216. doi: 10.3389/fpsyg.2019.00216 11. C. Peng, D. Wang, Y. Zhang, and J. Xiao, "A Visuo-Haptic Attention Training Game With Dynamic Adjustment of Difficulty", IEEE Access, 2019, 7, pp. 68878-68891 12. C. Peng, D. Wang, and Y. Zhang, Quantifying Differences among Ten Fingers in Force Control Capabilities by a Modified Meyer Model. Symmetry, 2019, 11, 1109; doi:10.3390/sym11091109 13. D. Wang, Y. Guo, S. Liu, Y. Zhang, W. Xu, J. Xiao. Haptic display for virtual reality: progress and challenges. Virtual Reality & Intelligent Hardware, 2019, 1(2): 136—162 14. M. Liu, J. Zhang, W. Jia, Q. Chang, S. Shan, Y. Hu, D. Wang, Enhanced Executive Attention Efficiency after Adaptive Force Control Training: Behavioural and Physiological Results, Behavioural Brain Research (2019), 15. X. Guo, Y. Zhang, D. Wang, L. Lu, J. Jiao, and W. Xu, "The Effect of Applied Normal Force on the Electrovibration," IEEE Transactions on Haptics, 2019, In press 16. Y. Zheng, D. Wang, Z. Wang, Y. Zhang, Y. Zhang, W. Xu, Design of a Lightweight Force Feedback Glove with a Large Workspace, Engineering (2018), Vol. 4, Issue 6, Dec. 2018, pp. 869-880 17. J. Jiao, D. Wang, Y. Zhang, D. Cao, Y. Visell, X. Guo, et al., "Detection and Discrimination Thresholds for Haptic Gratings on Electrostatic Tactile Displays," IEEE Transactions on Haptics, pp. 1-1, 2018 18. D. Wang, C. Peng, N. Afzal, W. Li, D. Wu, Y. Zhang, Localization Performance of Multiple Vibrotactile Cues on Both Arms, IEEE Transactions on Haptics, 2017, PP(99):1-1. 19. D. Wang, T. Li, G. Yang, Y. Zhang, Effect of Concurrent and Delayed Visual Feedback on Motor Memory Consolidation, IEEE Transactions on Haptics, 2017 Feb 22. doi: 10.1109/TOH.2017.2672549 20. G. Liu, X. Sun, D. Wang, Y. Liu, and Y. Zhang, Effect of Electrostatic Tactile Feedback on Accuracy and Efficiency of Pan Gestures on Touch Screens, IEEE Transactions on Haptics, 2017, PP(99):1-1. 21. T. Li, D. Wang, C. Peng, C. Yu, and Y. Zhang, “Speed-Accuracy Tradeoff of Fingertip Force Control with Visual/Audio/Haptic Feedback,” Int. J. Human Computer Studies, vol. 110, pp. 33–44, Oct. 2018. 22. D. Wang, X. Zhao, Y. Shi, Y. Zhang and J. Xiao, Six Degree-of-Freedom Haptic Simulation of a Stringed Musical Instrument for Triggering Sounds, IEEE Transactions on Haptics, DOI: 10.1109/TOH.2016.2628369 23. D. Wang, X. Zhao, Y. Shi, Y. Zhang and J. Xiao, Six Degree-of-Freedom Haptic Simulation of Probing Dental Caries within a Narrow Oral Cavity, IEEE Transactions on Haptics, DOI: 10.1109/TOH.2016.2531660 24. S. Zhang, D. Wang, N. Afzal, Y. Zhang, R. Wu, Rhythmic Haptic Stimuli Improve Short-term Attention, IEEE Transactions on Haptics, DOI: 10.1109/TOH.2016.2531662 25. D. Wang, J. Jiao, G. Yang, Y. Zhang, Force Maintenance Accuracy Using a Tool: Effects of Magnitude and Feedback, IEEE Transactions on Haptics, In Press 26. G. Yu, D. Wang, Y. Zhang, and J. Xiao, Simulating sharp geometric features in six degrees-of-freedom haptic rendering, IEEE Transactions on Haptics, Vol. 8, No. 1, 2015, pp. 67-78 27. D. Wang, Y. Zhang, X. Yang, G. Yang, and Y. Yang, Force Control Tasks with Pure Haptic Feedback Promote Short-Term Focused Attention, IEEE Transactions on Haptics, Vol. 7, No. 4, 2014, pp. 467-476 28. D. Wang, Y. Shi, S. Liu, Y. Zhang and J. Xiao, Haptic Simulation of Organ Deformation and Hybrid Contacts in Dental Operations, IEEE Transactions on Haptics, Vol. 7, No. 1, 2014, pp. 48-60 29. D. Wang, X. Zhang, Y. Zhang and J. Xiao, Configuration-based Optimization for Six Degree-of-Freedom Haptic Rendering for Fine Manipulation, IEEE Transactions on Haptics, Vol. 6, No. 2, 2013, pp. 167-180 (IDS: 157EA; WOS:000319877500004) 30. D. Wang, J. Guo, C. Sun, M. Xu, and Y. Zhang, A Flexible Concept for Designing Multi-Axis Force/Torque Sensors using Force Closure Theorem, IEEE Transactions on Instrumentation and Measurement, Vol. 62, No. 7, 2013, pp. 1951-1959 31. D. Wang, C. Yang, Y. Zhang and J. Xiao, Towards in-vivo force and motion measurement for vascular surgery, IEEE Transactions on Instrumentation and Measurement, Vol. 63, No. 8, 2014, pp.1975 - 1982 32. D. Wang, Y. Zhang, J. Hou, Y. Wang, P. Lv, Y. Chen, H. Zhao, iDental: A haptic-based dental simulator and its preliminary evaluation, IEEE Transactions on Haptics, Vol. 5, No. 4, 2012, pp. 332-343 33. D. Wang, Y. Zhang, W. Zhou, H. Zhao, Z. Chen, "Collocation Accuracy of Visuo-Haptic System: Metrics and Calibration," IEEE Transactions on Haptics , Vol. 4, No. 4, Oct. –Dec., 2011, pp. 321-326 34. D. Wang, Y. Zhang, C. Yao, J. Wu, H. Jiao and M. Liu, “Toward force-based signature verification: a pen-type sensor and preliminary validation,” IEEE Transactions on Instrumentation and Measurement, Volume 59, Number 4, April 2010, pp: 752-762 (SCI:000275368500002) 35. D. Wang, Y. Zhang et al., “Cutting on Triangle Mesh Local Model based haptic display for dental preparation surgery simulation,” IEEE Transactions on Visualization and Computer Graphics, No. 6, 2005, p671-683 (SCI 检索号: 962VN) 36. D. Wang, L. Wang, Y. Zhang, P. Lv, Y. Sun and J. Xiao, Preliminary study on a miniature laser manipulation robotic device for tooth crown preparation, The International Journal of Medical Robotics and Computer Assisted Surgery, 2014 Dec. 10(4):482-94. doi: 10.1002/rcs.1560. Epub 2014 Jan 6 37. L. Wang, D. Wang, Y. Zhang, L. Ma, Y. Sun, and P. Lv, An automatic robotic system for three- dimensional tooth crown preparation using a picosecond laser, Lasers in Surgery and Medicine, 2014 Sep. 46(7):573-81. doi: 10.1002/lsm.22274 38. D. Wang, S. Zhao, T. Li, Y. Zhang, X. Wang, Preliminary Evaluation of a Virtual Reality Dental Simulation System on Drilling Operation, Bio-Medical Materials and Engineering, Accepted 39. D. Wang, T. Li, Y. Zhang, J. Hou, Survey on Multi-sensory Feedback Virtual Reality Dental Training Systems, European Journal of Dental Education, In press 40. F. Yuan, P. Lv, D. Wang, L. Wang, Y. Sun, Y. Wang, Controlling Dental Enamel–Cavity Ablation Depth with Optimized Stepping Parameters Along the Focal Plane Normal Using a Three Axis, Numerically Controlled Picosecond Laser, Photomedicine and Laser Surgery 02/2015; 33(2):92-7. DOI:10.1089/pho.2014.3840 41. Y. Sun, F. Yuan, P. Lv, D. Wang, L. Wang, Y. Wang, Method to control depth error when ablating human dentin with numerically controlled picosecond laser: a preliminary study. Lasers in Medical Science 06/2014; 30(5). DOI:10.1007/s10103-014-1596-2 42. Dangxiao Wang, Yuru Zhang, Jun Wu, “A hierarchical model of motor skill for haptic-assisted virtual reality training,” The International Journal of Virtual Reality, 2010, 9(3):75-81 43. DangXiao Wang , YuRu Zhang, Yong Wang, PeiJun Lü, RenGe Zhou and WanLin Zhou, “Haptic rendering for dental training system,” Science in China Series F: Information Sciences, Volume 52, Number 3, MAR 2009, pp: 529-546 (王党校,张玉茹等,面向牙科手术培训的力觉合成技术, 中国科学[F],2009年第39卷第1期:159~174) (SCI:000264106500013) 44. Jun Wu, Dangxiao Wang, Charlie C.L. Wang, and Yuru Zhang. “Toward stable and realistic haptic interaction for tooth preparation simulation,” ASME Transactions - Journal of Computing and Information Science in Engineering, vol.10, no.2, 021007 (9 pages), June 2010 (SCI:000278575300007) 45. D. Wang, Y. Zhang et al., “Strokes-based modeling and haptic skill display for Chinese calligraphy simulation system,” Springer Virtual Reality Journal, (2006) 9: 118-132 46. Jun Wu, Yuen-Shan Leung, Charlie C.L. Wang, Dangxiao Wang, and Yuru Zhang, “Smooth force rendering on coarse polygonal meshes,”Computer Animation and Virtual Worlds, Special Issue of 23rd International Conference on Computer Animation and Social Agents, Saint-Malo, France, May 31 - June 2, 2010, vo.21, no.3-4, pp.235-244 (SCI:000280135400011) 47. Guanyang Liu,Yuru Zhang, Dangxiao Wang,Townsend, “Stable haptic interaction using a damping model to implement a realistic tooth-cutting simulation for dental training,”Springer Virtual Reality Journal , Springer London 2008.3. (EI 082411306091) 48. 王党校,戴晓伟,张玉茹. 让虚拟世界真实可触——2012 IEEE 触/力觉研讨会介绍. 中国计算机学会通讯, 2012,8, 8(8):71-76 49. 邹愉, 张玉茹, 王党校. 求解柔索驱动并联机构最大任务空间的区间分析法[J]. 机械工程学报, 2014, 50(5):10-16. 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Chao Li, Dangxiao Wang, Yuru Zhang, Experimental Study on Enlarged Force Bandwidth Control of a Knee Rehabilitation Robot, Proc. of 2007 International Conference on Human Computer Interaction, HCII, Beijing, China, Jul. 22-27, 2007(ISTP:000248533200082)(EI: 20080411042530) 128. Yonggang Cao, Yuru Zhang, Yunzhong Ma, Dangxiao Wang. Design and Analysis of A New Six DOF Haptic Device for Dental Training,IEEE ROMAN 2007 Conference, Jeju, Korea, Aug. 26~29, 2007 (EI 20083311449938) 129. D. Wang, Y. Zhang, C. Yao, Machine-mediated motor skill training method in haptic-enabled Chinese calligraphy simulation system,Proceedings of 2006 IEEE International conference on Intelligent robot and systems, IROS 2006,Beijing, China,Oct. 9~15,2006 (EI: 20072510665539) 130. D. Wang, Y. Zhang, Y. Wang, G. Liu, Spatial-domain consistency between haptic and visual display under geometrical transform,Proceedings of EuroHaptics 2006, Paris, France, July 3-5, 2006 131. D. Wang, Y. Zhang, Y. 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Luo Yangyu, Wang dangxiao, Zhang Yuru, Development of a Haptic Interface, Proceedings of the 2nd International Symposium on Instrumentation Science and Technology, Jinan, PR.China, 2002, pp. 272-276 发明专利 1. 授权发明专利,王党校,张玉茹,吕培军,王勇,陈永刚,王治翔,“虚拟现实牙科手术触感训练支撑平台”(专利号:ZL 200910242042.5),2011年5月4日 2. 授权发明专利, 王党校,张玉茹,姚冲,吴俊,面向签名防伪的多维力觉信息测量数字笔(专利号:ZL 200710064434.8),2010年1月6日 3. 授权发明专利,王党校,张玉茹,王瑜, 周万琳,吴俊,“面向手眼协调操作的力觉视觉融合显示平台”(专利号:ZL200810056484.6),2009年8月19日 4. 授权发明专利,王党校,张玉茹,吴俊,姚冲,“书写训练设备及处理方法”(专利号:ZL 200710303776.0),2010年9月8日 5. 授权发明专利,王党校,张玉茹,刘冠阳,“虚拟空间的触觉力觉反馈人机拔河系统”,(专利号:ZL200810055892.X),2010年4月21日 6. 授权发明专利,张玉茹,曹永刚,王党校,马运忠,"六自由度力觉人机交互装置"(专利号:ZL 200710062916.X),2008.11.12 7. 授权发明专利,王党校, 方磊, 徐牧, 于佳琦, 张玉茹,一种能够实现六维空间力测量的力矩传感器,专利号:ZL201110190280.3 8. 授权发明专利,王党校, 王治翔, 宋涛,一种用来模拟力觉交互设备操作过程的接触刚度生成装置,专利号:ZL 201110256640.5 9. 授权发明专利,王党校,杨彩玲,张玉茹. 一种实时测量心血管介入手术中导管介入力和力矩的装置. 专利号:ZL 201210185159.6,2013-09-18 10. 授权发明专利,王党校,张欣,刘帅,张玉茹,面向虚拟现实牙科操作训练的多点接触力觉反馈系统,专利号:201110278879.2 11. 授权发明专利,吕培军,王党校,王勇,张玉茹,孙玉春,宋涛,陈中元,王磊. 一种激光式口腔内微型牙体预备自动切削装置. 专利号:ZL 201210193871.0 12. 授权发明专利,郭卫东,王党校,刘冠阳,刘斌,宋传涛,周墨渊,飞机驾驶盘力反馈系统,中华人民共和国发明专利, 专利号:ZL 201010292220.8(申请日2010.9.26) 13. 申请发明专利,王党校,杨彩玲,张玉茹. 一种心血管介入手术中的实时导管介入信息测量装置. 申请号:201310156819.2 公开(公告)号:CN103239791A 14. 申请发明专利,张玉茹、刘军传、王党校、李朝斌.一种新型的六自由度力反馈装置.申请号:201210225663.4 15. 申请发明专利,王党校,徐牧,张玉茹,杨潇潇,杨高峰,穿戴式力觉交互设备及系统,中国发明专利,受理号: 2014100006525 16. 申请发明专利,王党校,徐牧,张玉茹,杨潇潇,杨高峰,用于模块化力觉交互设备的音乐调制处理方法,中国发明专利,受理号:2014100009805 17. 申请发明专利, 王党校,王磊,张玉茹,马磊,一种口腔内微型自动化牙体预备的切削装置,申请号 201310671482.9 18. 申请发明专利,王党校,杨潇潇,张玉茹,徐牧,杨高峰,一种基于精确力量控制和触觉反馈及难度自适应的注意力训练方法,申请号:2015100023474 19. 申请发明专利,王党校,彭聪,杨潇潇,张玉茹,一种沉浸式视觉和离散力控制任务结合的注意力训练系统,中国发明专利,申请号:201610417385.0 20. 申请发明专利,王党校,李腾,张玉茹,杨潇潇,彭聪,一种纯触觉反馈和连续力控制任务结合的注意力训练系统,中国发明专利,申请号:201610780267.6 21. 申请发明专利,王党校,李腾,张玉茹,杨潇潇,彭聪,一种纯声音反馈和连续力控制任务结合的注意力训练系统,中国发明专利,申请号:201610786655.5 22. 申请发明专利,王党校,宋梦,张玉茹,一种气压驱动的力反馈和触觉反馈装置,申请号:201610597525.7,2016年7月27日 23. 申请发明专利,王党校,郑宇铠,宋梦,张玉茹,一种气压驱动的多指协同力反馈和触觉反馈手套装置 24. 王党校, 郑一磊, 刘诗怡. 一种基于呼吸和力触觉协同控制的注意力训练方法及系统:中国,201910080456.6[P]. 2019-01-28. 25. 王党校,郭园,杨修平,王海同,张玉茹.一种动支点杠杆式变刚度机构和单指力反馈手套:中国,201910400829.3. 26. 王党校,郭园,王海同,杨修平,张玉茹.一种可调尺寸的变刚度力反馈手套:中国,201910400828.9. 27. 王党校,郭园,王子琦,张玉茹.一种基于高密度柔性电磁线圈阵列驱动的主动纹理呈现装置:中国,201910307279.0. 28. 王党校, 焦健, 张玉茹, 郭兴伟. 一种低摩擦高精度的触觉纹理信息测量系统, 中国发明专利, 201910393700.4., 2019 29. 王党校,王子琦,张昱,张玉茹.一种基于软体驱动器的力反馈手套:中国,201811237973.1. 2018-10-24 30. 王党校,张昱,王子琦,张玉茹.一种多元触觉反馈手套:中国,201811237961.9. 2018-10-24 31. 王党校,张昱,王子琦,张玉茹.一种基于软体变刚度关节驱动器的力反馈手套:中国,201811112345.0. 2018-09-25 32. 王党校,张昱,王子琦,张玉茹.一种移动式多元融合触觉反馈装置: 中国,201811239153.6. 2018-10-24 33. 王党校,张昱,王子琦,张玉茹.一种基于网状结构的纹理反馈装置:中国,201811441321.X. 2018-11-29 34. 王党校,郭琦琦,张玉茹,一种具有多种振动模式的触觉交互装置 35. 王党校,郭琦琦,张玉茹,一种具有多点独立温度反馈的触觉反馈手柄 36. 王党校,张玉茹,郭琦琦,龚翌洁,一种多元触觉融合反馈手柄,申请号:201810843718.5,申请日:2018年7月27日 37. 张玉茹,王党校,陆磊,郭兴伟,一种柔性物体表面触觉反馈装置,申请号:201810842851.9 38. Yuru Zhang, Dangxiao Wang, Hongdong Zhang, Jian Song, Xiaohan Zhao, Force feedback handle device with a degree-of-freedom and working method thereof,United States Patent, Patent No US 10,394,271 B2, Date of Patent: Aug-27-2019 39. 张玉茹,王党校,张洪冬,宋健,赵晓含。一种单自由度力反馈手柄装置及其工作方法。中国专利:ZL201610290764.8。 40. 张玉茹,王党校,张洪冬,赵晓含,储瑞航。一种应用于力反馈设备的新型六自由度混联机构。ZL201610941924.0 计算机软件著作权 1. 数字笔识别算法,登记号:2008SRBJ4760 ,2008.08.15 2. 牙科手术训练力觉渲染算法及软件,登记号:2008SRBJ1439,2008.03.10 3. 多分辨率实时力觉合成算法及软件,登记号:2008SRBJ1437,2007.11.30 Last Modified: 2020-02-28 |
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