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教育经历 2004年获得合肥工业大学测控技术及仪器专业学士学位; 2007年获得天津大学测试计量技术及仪器专业硕士学位; 2012年美国南加州大学超声传感器研究中心访问学者,学习高分辨超声系统及换能器技术; 2012年获得香港理工大学生物医学工程博士学位; 博士论文题目: Development of Novel Imaging Systems and Techniques for Micro-ultrasound 工作经历 2007-2009工作于中兴通讯股份有限公司,先后任职硬件/FPGA工程师、项目经理; 2012年加入中国科学院深圳先进技术研究院-医工所-影像中心,任副研究员; 2018年晋升为研究员,博士生导师; 2019年深圳市超声成像与治疗技术重点实验室,主任。 人才获奖 2014年中国科学院王宽诚教育基金获得者; 2015年参与获得中国科学院科技促进发展奖; 2015年参与获得广东省科技进步一等奖; 2015年入选深圳市海外高层次人才“孔雀计划”B类引进人才; 2015年获批广东省自然科学基金杰青基金; 2016年“深圳市青年科技奖”获得者; 2017年广东省特支计划青年拔尖人才获得者; 2020年获批国家自然科学基金优秀青年科学基金。 代表性科研项目 1) 国家自然科学基金优秀青年科学基金项目:高分辨率超声成像,项目负责人 2) 国家自然科学基金面上基金:基于双模血管内超声的易损斑块弹性及周边血流成像研究,项目负责人 3) 国家自然科学基金青年基金:基于50-100MHz 高频率超声的血管内高分辨率成像方法研究,项目负责人 4) 国家自然科学基金重大仪器研制基金项目:基于超声辐射力的深部脑刺激与神经调控仪器研制,核心成员 5) 中国科学院前沿重点拔尖青年项目:基于高频率超声(20-50MHz)的在体小动物脑血流成像方法与系统研究,项目负责人 6) 中国科学院科研仪器设备研制项目:小动物全脑微血流超分辨超声成像仪器研制,项目负责人 7) 广东省自然科学基金杰出青年基金:基于平面波技术的高频超声成像方法及其在脑科学领域的应用研究,项目负责人 8) 深圳市科技计划项目:深圳市超声成像与治疗技术重点实验室,主任 9) 企业委托横向项目, 生物力学超声测量装置,项目负责人 教授课程 1) 生物医学超声成像; 2) 生物医学超声换能器。 授权专利: 1) 邱维宝,于妍妍,孙雷,“超声波成像系统及成像方法”,专利申请号:201210044885.6 2) 邱维宝,韩韬,郑海荣,朱国乾,旋转控制装置、旋转控制回撤系统和超声成像系统,发明专利,授权公告号:CN103393437B, 授权公告日:2015.04.08 3) 邱维宝,朱国乾,郑海荣,韩韬,机械扇形摆动装置, 发明专利,授权公告号:CN103393436B,授权公告日:2015.09.16. 4) 郑海荣,邱维宝,黎国锋,梁长虹,内窥式鼻咽癌超声成像装置及方法, 发明专利,授权公告号:CN103385736B,授权公告日:2015.07.29 5) 王丛知,曾成志,郑海荣,明妍,杨培德,杨戈,肖杨,李永川,钱明,邱维宝,减少生理活动对医学成像或测量结果干扰的装置及方法,发明专利,授权公告号:CN103040524B,授权公告日:2014.12.17 6) 王丛知,杨培德,郑海荣,曾成志,杨戈,肖杨,李永川,明妍,钱明,邱维宝,生物组织粘弹性测量方法和系统,发明专利,授权公告号:CN103054552B,授权公告日:2014.12.10 7) 郑荣琴,李凯,张成祥,李志成,邱维宝,超声耦合剂输送器,实用新型专利,授权公告号, CN204520764U, 授权公告日, 2015.08.05 8) 郑海荣,李永川,苏敏,钱明,邱维宝, 一种单阵元神经刺激低频超声换能器, 实用新型专利,专利申请号:201520882109.2, 授权公告日, 2016.03.09 9) 郑海荣,邱维宝、周娟、曹寿国、孟德、苏敏、黎国锋、一种超声神经刺激设备及系统,实用新型,专利申请号:201520996080.0,申请日:2015-12-03,授权公告日, 2016.05.04。 10) 邱维宝,牟培田,肖杨,张雪,郑海荣,基带波束合成超声成像方法及其系统,发明专利,申请号:201310585670.X 申请日:2013-11-19,授权公开号 103654853B,授权公开日 2016-06-08 11) 张雪,郑海荣,肖杨,邱维宝,牟培田,李彦明,一种基于超声弹性图像的弹性应变评估方法和系统,申请号:201310229776.6 申请日:2013-06-09,授权公开号,103606142B,授权公开日,2016-07-06 12) 叶为镪,邱维宝,郑海荣,基于平面波的超声温度成像方法,申请号:201410856098.0,申请日:2014-12-31,授权公开号,104523294B,授权公开日,2016-09-21 专利申请: 13) 邱维宝,牟培田,吴米龙,郑海荣,基于USB3.0的超声数据处理及传输装置和方法、超声诊断系统,申请号:201310390542.X,申请日:2013-8-21 14) 邱维宝, 叶宗英,郑海荣,一种估算流体速度的系统和方法,申请号:201410348514.6,申请日:2014-07-21。 15) 邱维宝, Alexander Cochran(亚历山大.科克伦),胡丽,黄志红,王杏颖,郑海荣,胶囊内窥镜,申请号:201410766330.1,申请日:2014-12-12。 16) 王丛知、郑海荣、杨戈、肖杨、邱维宝,一种用于生物组织弹性测量的剪切波速度估计方法,申请号:201410822138.X,申请日:2014-12-25。 17) 郑海荣、王丛知、邱维宝、钱明、肖杨,一种超声穿颅聚焦的方法,申请号:201410855314.X,申请日:2014-12-31。 18) 郑海荣 邱维宝 周娟 史志谦,超声波传感器阵列的激励装置,申请号:201410855458.5,申请日:2014-12-31。 19) 郑海荣,邱维宝,黎国锋,一种超声刺激神经组织的装置,专利申请号:201510250365.4,申请日:2015-5-15。 20) 郑海荣,牛丽丽,刘新,孟龙,邱维宝,钱明,蔡飞燕,肖杨,王丛知,声敏感离子通道遗传操作方法及系统,专利申请号:201580000405.8, 申请日:2015-9-14。 21) 郑海荣、李永川、苏敏、钱明、邱维宝,一种单阵元神经刺激低频超声换能器,基于厚度模式的单阵元脑刺激超声低频换能器,实用新型,专利申请号:201520882109.2,申请日:2015-9-14。 22) 郑海荣、李飞、蔡飞燕、孟龙、王辰、张成祥、邱维宝、李永川、严飞、牛丽丽、耿刘峰、徐超伟,基于人工结构声场的微流体系统及操控微粒的方法,专利申请号:201510655483.3,申请日:2015-10-10。 23) 郑海荣、李永川、苏敏、钱明、邱维宝,基于径向模式的单阵元超声低频换能器,发明专利,专利申请号:专利申请号:201510751066.9,申请日:2015-11-06。 24) 邱维宝、苏敏、赵慧霞、王晶瑶、李永川、郑海荣,一种基于二维面阵探头的视网膜刺激设备,发明专利,专利申请号:201511019409.9 ,申请日:2015-11-23。 25) 郑海荣、 李永川、刘西宁、钱明、苏敏、邱维宝, 超声探头及其制备方法,发明专利,专利申请号:201510847602.5 ,申请日:2015-11-27。 26) 邱维宝,王杏颖,胡丽,郑海荣,一种超声胶囊内窥镜,发明专利,专利申请号:201510930435.0,申请日:2015-12-15。 27) 郑海荣、钱明、李永川、邱维宝、牛丽丽、王丛知,一种基于大规模面阵元的超声脑刺激或调控方法及装置。发明专利,专利申请号:201510990909.0,申请日:2015-12-25。 28) 邱维宝、苏敏、赵慧霞、王晶瑶、李永川、郑海荣,超声视网膜刺激设备,发明专利,专利申请号:201511007490.9,申请日:2015-12-29。 29) 郑海荣、邱维宝、苏敏、黎国锋、钱明、李永川,头戴式超声刺激设备及系统,发明专利,专利申请号:201580001254.8,申请日:2015-12-31。 30) 郑海荣、刘西宁、李永川、钱明、苏敏、邱维宝,超声探头背衬成型装置、治具及制造方法、超声探头背衬成型装置及治具,实用新型,专利申请号:201620036133.9,申请日:2016-01-14。 31) 邱维宝,牟培田,郑海荣,一种延迟激励超声成像方法、装置及延迟激励系统,发明专利,专利申请号:201610257356.2,申请日:2016-4-22。

研究领域

1、医学超声成像与图像处理; 2、超声电子电路及仪器开发; 3、高性能超声换能器开发。

为新型医学超声方法及系统: 1)高分辨率超声成像换能器与成像系统 高分辨率超声成像技术和设备。(a) 高性能超声换能器;(b) 阵列超声电子系统;(c)新型超声仪器设备;(d) 超敏微血流成像技术;(e) 三维超声血流成像技术。 2)高分辨率血管内超声成像方法及系统 为心血管疾病提供超声成像工具。团队已经开发并产业转化的血管内超声成像关键技术:图(a)血管内超声成像原理;(b)高频超声成像系统平台主机;(c)血管内超声换能器,直径小于1毫米,中心频率大于40MHz;(d)成像调试时的电路及软件;(e)离体血管超声及光声成像图。 3)高分辨内窥超声成像方法及装置 为肠道疾病提供高分辨率成像方法。团队开发的新型内窥超声成像技术:图(a) 超声内镜示意图;(b)成像扫描方案;(c) 原理样机,基于LiNbO3单晶材料开发的35MHz超声成像器件;(d)离体小肠成像图,纵向分辨率小于60微米。 4)无创超声神经调控技术及系统 无创超声神经调控技术研究。(a) 便携式超声神经调控仪器;(b) 阵列式超声神经调控系统模块;(c) 面阵列超声换能器技术研究;(d) 磁共振兼容阵列系统;(e) 千阵元超声操控系统;(f) 大规模阵列超声调控系统。

近期论文

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[1] W. Qiu, A. Bouakaz, E. E. Konofagou, H. Zheng*, “Ultrasound for the Brain: A Review of Physical and Engineering Principles, and Clinical applications”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control, accepted. [2] J. Zhou, J. Li, H. Zhong, X. Shi, G. Yang, J. Huang, Y. Li, T. Ma, X. Long, W. Qiu*, and H. Zheng*, “Fiber-based Clock Synchronization Method for Medical Ultrasound System”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control, accepted. [3] [Z. Zhang, M. Su], F. Li, R. Liu, R. Cai, G. Li, Q. Jiang, H. Zhong, T. Shrout, S. Zhang, H. Zheng*, and W. Qiu*, “New Sm-PMN-PT Ceramic-based 2D Array for Low-intensity Ultrasound Therapy Application”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control, accepted. [4] [Y. Qiu, Y. Huang], Z. Zhang, B. F. Cox, R. Liu, J. Hong, P. Mu, H. S. Lay, G. Cummins, M. P. Y. Desmulliez, E. Clutton, H. Zheng, W. Qiu*, and S. Cochran, “Ultrasound capsule endoscopy with a mechanically scanning micro-ultrasound: a porcine study”, Ultrasound in Medicine and Biology, vol. 46, no. 3, pp. 796-804, Mar. 2020. [5] Q. Zhang, X. Pang, Z. Zhang, M. Su, J. Hong, H. Zheng, W. Qiu, and K. H. Lam, "Miniature Transducer Using PNN-PZT-based Ceramic for Intravascular Ultrasound", IEEE Trans. Ultrason. Ferroelectr. Freq. Control, vol. 66, no. 6, pp. 1102-1109, Jun. 2019. (IF: 2.989). [6] [M. Su, Z. Zhang], J. Hong, Y. Huang, P. Mu, Y. Yu, R. Liu, S. Liang, H. Zheng*, and W. Qiu*, “Cable shared dual-frequency catheter for intravascular ultrasound”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control. vol. 66, no. 5, pp. 849-856, May. 2019. (IF: 2.989). [7] Y. Yu, Z. Zhang, F. Cai, M. Su, Q. Jiang, Q. Zhou, M. S. Humayun, W. Qiu*, and H. Zheng*, A Novel Racing Array Transducer for Noninvasive Ultrasonic Retinal Stimulation: A Simulation Study, Sensors, vol. 19, no. 8, 1825, 2019. (IF: 3.031). [8] Z. Zhang, W. Qiu, H. Gong, G. Li, Q. Jiang, P. Liang, H. Zheng*, and P. Zhang*, “Low-intensity ultrasound suppresses low-Mg2+-induced epileptiform discharges in juvenile mouse hippocampal slices”, Journal of Neural Engineering, vol. 16, 036006, 2019. (IF: 4.551) [9] C. Liu, M. Xing, B. Cong, C. Qiu, D. He, C. Wang, Y. Xiao, T. Yin, M. Shao, W. Qiu, T. Ma, X. Gong, X. Chen, H. Zheng, R. Zheng, and L. Song, "In vivo transrectal imaging of canine prostate with a sensitive and compact handheld transrectal array photoacoustic probe for early diagnosis of prostate cancer", Biomed. Opt. Express, vol. 10, no. 4, pp. 1707-1717, 2019. (IF: 3.91) [10] [J. Hong, M. Su, Y. Yu], Z. Zhang, R. Liu, Y. Huang, P. Mu, H. Zheng*, and W. Qiu*, “A dual-mode imaging catheter for intravascular ultrasound application”, IEEE Transactions on Medical Imaging. vol. 38, no. 3, pp. 657-663, Mar. 2019. (IF: 7.816) [11] J. Xia, Y. Yang, C. Hu, R. Meng, Q. Jiang, R. Liu, Y. Yu, Z. Sheng, F. Yan, L. Zhang, Z. Shi, H. Zheng, and W. Qiu*, “Evaluation brain tumor in small animals using plane-wave-based power Doppler imaging”, Ultrasound in Medicine and Biology. vol. 45, no. 3, pp. 811-822, Mar. 2019. (IF: 2.205). [12] [G. Li, W. Qiu, Z. Zhang], Q. Jiang, M. Su, R. Cai, Y. Li, F. Cai, Z. Deng, D. Xu, H. Zhang, and H. Zheng*, “Noninvasive ultrasonic neuromodulation in freely moving mice”, IEEE Transactions on Biomedical Engineering. vol. 66, no. 1, pp. 217-224, Jan. 2019. (IF: 4.491) [13] [Z. Zhang, R. Chen], B. Wang, T. Zhang, M. Su, R. Liu, J. Yang, X. Cao, Y. Li, H. Zheng, K. K. Shung, M. S. Humayun, Q. Zhou*, and W. Qiu*, “Development of a KNN Ceramic-Based Lead-Free Linear Array Ultrasonic Transducer”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control. vol. 65, no. 11, pp. 2113-2120, Nov. 2018. (IF: 2.989). [14] F. Guo, Y. Wang, Z. Huang, W. Qiu, Z. Zhang, Z. Wang, J. Dong*, B. Yang, and W. Cao “Magnesium Alloy Matching Layer for PMN-PT Single Crystal Transducer Applications”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control. vol. 65, no. 10, pp. 1865-1872, Oct. 2018. (IF: 2.989) [15] H. Liu*, C. Tsai, C. Jan, H. Chang, S. Huang, M. Li, W. Qiu, and H. Zheng, “Design and implementation of a transmit/receive ultrasound phased array for brain applications”, IEEE Trans. Ultrason. Ferroelectr. Freq. Control. vol. 65, no. 10, pp. 1756-1767, Oct. 2018. (IF: 2.989) [16] H. Zhang, T. Wang, W. Qiu, Y. Han, Q. Sun, J. Zeng, F. Yan, H. Zheng, Z. Li*, and M. Gao, “Monitoring the Opening and Recovery of the Blood–Brain Barrier with Noninvasive Molecular Imaging by Biodegradable Ultra-small Cu2–xSe Nanoparticles”, Nano Letters. vol. 18, no. 8, pp. 4985-4992, Jul. 2018. (IF: 12.279) [17] [J. Ye, S. Tang, L. Meng], X. Li, X. Wen, S. Chen, L. Niu, X. Li, W. Qiu, H. Hu, M. Jiang, S. Shang, Q. Shu, H. Zheng*, S. Duan, and Y. Li*, “Ultrasonic control of neural activity through activation of the mechanosensitive channel MscL”, Nano Letters. vol. 18, no. 7, pp. 4148-4155, Jun. 2018. (IF: 12.279) [18] [G. Li, W. 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Qiu*, J. Xia, Y. Shi, P. Mu, X. Wang, M. Gao, C. Wang, Y. Xiao, G. Yang, J. Liu, L. Sun, and H. Zheng*, “A delayed-excitation data acquisition method for high-frequency ultrasound imaging”, IEEE Transactions on Biomedical Engineering. vol. 65, no. 1, pp. 15-20, Jan. 2018. (IF: 4.491). [22] W. Qiu, J. Zhou, Y. Chen, M. Su, G. Li, H. Zhao, S. Cao, D. Meng, C. Wang, Y. Xiao, K. H. Lam, J. Dai, and H. Zheng*, “A portable ultrasound system for non-invasive ultrasonic neuro-stimulation”, IEEE Transactions on Neural Systems and Rehabilitation Engineering. vol. 25, no. 12, pp. 2509-2515, Dec. 2017. (IF: 3.972) [23] [M. Gao, Y. Yu], H. Zhao, G. Li, H. Jiang, C. Wang, F. Cai, L. Chan, B. Chiu, W. Qian, W. Qiu*, and H. Zheng*, “Simulation Study of an Ultrasound Retinal Prosthesis With a Novel Contact-Lens Array for Noninvasive Retinal Stimulation”, IEEE Transactions on Neural Systems and Rehabilitation Engineering. vol. 25, no. 9, pp. 1605-11, Sep. 2017. (IF: 3.972) [24] X. Wang, V. Seetohul, R. Chen, M. Qian, Z. Shi, G. Yang, P. Mu, C. Wang, Z. Huang, Q. Zhou, H. Zheng, S. Cochran, and W. Qiu*, “Development of a mechanical scanning device with high-frequency ultrasound transducer for ultrasonic capsule endoscopy”, IEEE Transactions on Medical Imaging, vol. 36, no. 9, pp. 1922-1929, Sep. 2017. (IF: 6.131) [25] W. Qiu*, X. Wang, Y. Chen, Q. Fu, M. Su, L. Zhang, J. Xia, J. Dai, Y. Zhang, and H. Zheng*, “Modulated excitation imaging system for intravascular ultrasound”, IEEE Transactions on Biomedical Engineering, vol. 64, no. 8, pp. 1935-1942, Aug 2017. (IF: 4.288) [26] C. Wang, Y. Xiao, J. Xia, W. Qiu*, and H. Zheng*, “Effects of Non-Elevation-Focalized Linear Array Transducer on Ultrasound Plane-Wave Imaging”, Sensors, 16, 1906, 2016. (IF: 2.677) [27] [Y. Xiao, Y. Yu], L. Niu, M. Qian, Z. Deng, W. Qiu, and H. Zheng*, Quantitative evaluation of peripheral tissue elasticity for ultrasound-detected breast lesions, Clinical Radiology, vol. 71, no. 9, pp. 896-904, 2016. (IF: 2.141) [28] [H. Fang, Y. Chen], C. M. Wong, W. Qiu, J. Dai*, Q. Li, and Q. Yan, “Anodic aluminum oxide AAO-epoxy composite acoustic matching layers for ultrasonic transducer application”, Ultrasonics, vol. 70, pp. 29-33, 2016. (IF: 2.327) [29] G. Li, H. Zhao, H. Zhou, F. Yan, Y. Wang, C. Xu, C. Wang, L. Niu, L. Meng, S. Wu, H. Zhang, W. Qiu*, and H. Zheng*, “Improved anatomical specificity of non-invasive neuro-stimulation by high frequency (5 MHz) ultrasound”, Scientific Reports, 6, 24738, 2016. (IF: 4.259) [30] [W. Qiu*, C. Wang], Y. Li, J. Zhou, G. Yang, Y. Xiao, G. Feng, Q. Jin, P. Mu, M. Qian, and H. Zheng*, “A scanning-mode 2D shear wave imaging (s2D-SWI) system for ultrasound elastography”, Ultrasonics, vol. 62, pp. 89-96, Sep, 2015. (IF: 1.954) [31] Y. Yu, W. Qiu, B. Chiu, and L. Sun*, "Feasibility of multiple micro-particle trapping--A simulation study", Sensors, vol. 15, no. 3, pp. 4958-74, 2015. (IF: 2.033) [32] [W. Qiu, Y. Chen], C. M. Wong, B. Liu, J. Dai*, and H. Zheng*, “A novel dual-frequency imaging method for intravascular ultrasound applications”, Ultrasonics, vol. 57, pp. 31-35, Mar, 2015. (IF: 1.954) [33] [Y. Chen, W. Qiu], K. H. Lam, B. Liu, X. Jiang, H. Zheng, H. S. Luo, H. L. W. Chan, and J. Dai*, “Focused intravascular ultrasonic probe using dimpled transducer elements”, Ultrasonics, vol. 56, pp. 227-231, Feb, 2015. (IF: 1.954) [34] [Y. Chen, K. H. Lam], D. Zhou, Q. Yue, Y. Yu, J. Wu, W. Qiu, L. Sun, C. Zhang, H. Luo, H. L. W. Chan, and J. Dai*, “High performance relaxor-based ferroelectric single crystals for ultrasonic transducer applications”, Sensors, vol. 14, no. 8, pp. 13730-58, Jul, 2014. (IF: 2.245) [35] W. Qiu*, Z. Ye, Y. Yu, Y. Chen, L. Chi, P. Mu, G. Li, C. Wang, Y. Xiao, J. Dai, L. Sun, H. Zheng*, "A digital multi-gate Doppler method for high frequency ultrasound", Sensors, vol. 14, no. 8, pp. 13348-60, Jul, 2014. (IF: 2.245) [36] Q. Zhou*, K. H. Lam, H. Zheng*, W. Qiu, K. K. Shung, “Piezoelectric single crystal ultrasonic transducers for biomedical applications”, Progress in Materials Science, vol. 66, pp. 87-111, Oct, 2014. (IF: 27.417) [37] [X. Zhang, Y. Xiao], J. Zeng, W. Qiu, M. Qian, C. Wang, R. Zheng*, and H. Zheng*, “Computer-assisted assessment of ultrasound real-time elastography: initial experience in 145 breast lesions”, European Journal of Radiology, 83, e1-e7, 2014. (IF: 2.369) [38] [W. Qiu, Y. Yu], F. K. Tsang, H. Zheng*, and L. Sun*, "A novel modulated excitation imaging system for micro-ultrasound," IEEE Transactions on Biomedical Engineering, vol. 60, no. 7, pp. 1884-1890, 2013. (IF: 2.233) [39] X. Zhou*, L. Sun, Y, Yu, W. Qiu, C. L. Lien, K. K. Shung. W. Yu, “Ultrasound bio-microscopic image segmentation for evaluation of zebrafish cardiac function,” IEEE Trans. Ultrason. Ferroelectr. Freq. Control, vol. 60, no. 4, pp. 718-726, 2013. (IF: 1.503) [40] W. Qiu, Y. Yu, H. R. Chabok, C. Liu, F. K. Tsang, Q. Zhou, K. K. Shung, H. Zheng, and L. Sun*, “A flexible annular array imaging platform for micro-ultrasound,” IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control, vol. 60, no. 1, pp. 178-86, 2013. (IF: 1.503) [41] W. Qiu, Y. Chen, X. Li, Y. Yu, W. F. Cheng, F. K. Tsang, Q. Zhou, K. K. Shung, J. Dai, and L. Sun*, “An open system for intravascular ultrasound imaging,” IEEE Trans. Ultrason. Ferroelectr. Freq. Control, vol. 59, no. 10, pp. 2201-2209, 2012. (IF: 1.822) [42] W. Qiu, Y. Yu, F. K. Tsang, and L. Sun*, “An FPGA based open platform for ultrasound biomicroscopy,” IEEE Trans. Ultrason. Ferroelectr. Freq. Control, vol. 59, no. 7, pp. 1432-1442, July, 2012. (IF: 1.822) [43] W. Qiu, Y. Yu, F. K. Tsang, and L. Sun*, “A multifunctional, reconfigurable pulse generator for high-frequency ultrasound imaging,” IEEE Trans. Ultrason. Ferroelectr. Freq. Control, vol. 59, no. 7, pp. 1558-1567, July, 2012. (IF: 1.822)

学术兼职

IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control,Associate Editor; IEEE International Ultrasonics Symposium (IUS) 国际超声年会, Technical Program Committee (TPC) Member;Session Chair;Judge of Student Paper Competition; IEEE Senior member; IEEE-UFFC Society Special Topic Schools, Coordinator; (Waves and Transducers School, Organizer and teaching faculty); 国家自然科学基金/广东省自然科学基金/中国博士后科学基金,评审专家; 中国医学装备协会/超声装备技术分会/超声换能器专委会,副主任委员; 中国医学装备协会/超声装备技术分会,委员; 中国康复医学会/脑功能检测与调控康复专业委员会,常务委员; 中国超声医学工程学会/仪器工程开发专委会,委员; 中国医师协会/超声分子影像与人工智能专委会,委员; 中国仪器仪表学会/显微仪器分会,理事; 中国科学院青促会成员; 广东省生物医学工程学会青年学术分会,副主任委员; 广东省生物医学工程学会,委员。

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