导师介绍

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许凯亮
系别: 
生物医学工程系
办公室: 
交叉二号楼B5025(复旦江湾校区)
职称: 
青年研究员
电话: 
021-31242521
Email: 
xukl@fudan.edu.cn

教育背景

谷歌学术主页 查看

● 09/2007 ~ 06/2012 复旦大学 电子工程系,生物医学工程专业 博士 导师:王威琪院士,他得安教授

● 09/2002 ~ 06/2006 内蒙古大学 电子工程系,电子信息科学与技术 学士

计算机系,计算机科学与技术 学士(辅修)

研究经历

● 09/2018 复旦大学 青年研究员

● 04/2017 ~ 08/2018 研究员,法国朗之万实验室

● 04/2015 ~ 03/2017 欧盟玛丽居里学者,Laboratoire d’Imagerie Biomédicale,巴黎第六大学,法国

● 04/2014 ~ 04/2015 博士后,Laboratoire d’Imagerie Biomédicale,巴黎第六大学,法国

● 05/2012 ~ 04/2014 博士后,复旦大学,电子工程系,电子科学与技术博士后流动站

● 09/2011 ~ 03/2012 访问学者,生物医学工程系,Stony Brook大学,美国

● 01/2011 ~ 02/2011 访问学者,物理系,Jyvaskyla大学,芬兰

研究方向

● 医学超声,如定量骨超声定征、超快超声、超分辨率超声成像、三维超声成像、剪切波弹性成像等

● 工业超声,如超声共振谱技术、超声导波疲劳检测、损伤评价与成像系统研制等

● 声学数值仿真,如有限元(FEM)、时域有限差分(FDTD)、边界元(BEM)等

● 声学信号处理,频谱估计、频散Radon变换、压缩感知、时频分析、线性与非线性超声导波信号处理等

● 声学反问题求解,如Markov chain Monte Carlo方法以及Reversible Jump Markov chain Monte Carlo方法等,全波形反演等

科研项目

● 主持,欧盟玛丽居里基金项目(Marie Skłodowska-Curie International Incoming Fellowship), “Finite element resonant ultrasound spectroscopy to characterize maturation of cortical bone elastic properties”

● 主持,国家自然科学基金青年项目,“评价长骨的超声激发振动声导波方法研究”

荣誉及奖励

● 2016 高等学校科学研究优秀成果奖,科技进步二等奖,排名第4/10

● 2015 欧盟玛丽居里学者(前15%,8000余名申请者)

● 2014 上海市优秀博士论文

● 2013 第二十五届上海优秀发明选拔赛,优秀发明金奖,排名第5/6

● 2012 上海市优秀毕业生

● 2010 学业奖学金,复旦大学,一等

● 2010 优秀学生,复旦大学

● 2008 优秀学生,复旦大学

学术兼职

● 中国声学学会生物医学超声工程分会 秘书

● 超声换能器及材料专业委员会 委员

● 中国声学学会 会员

● IEEE 会员

● 长期应邀担任以下期刊审稿人

J. Acoust. Soc. Am.

Ultrasonics

Ultrasound in Med. & Biol.

IEEE T. Ultrason. Ferr. Freq. Control

IEEE T. Ind. Inf.

Comput. Biol. Med.

Sci. China Technol. Sc.

Mech. Syst. Signal Process.

Compos. Struct.

Struct. Health Monit.

NDT & E International

J. Biomechanics

代表论文

1.闫少渊,许凯亮,他得安.多倾角发射分组互相关降噪的超快超声脑功能成像方法研究.复旦学报(自然科学版),2023,62(04):409-418.

2.Kailiang Xu, Shaoyuan Yan, Jianping Song*, Ultrafast Doppler Imaging of Brain Arteriovenous Malformation, World Neurosurgery, 177, 3-4, 2023.

3.Shaoyuan Yan, Jiajun Shou, Junjin Yu, Jianping Song*, Ying Mao and Kailiang Xu*, Ultrafast Ultrasound Vector Doppler for Small Vasculature Imaging, IEEE T. Ultrason. Ferr. Freq. Control, 70(7), 613-624, 2023.

4.Yan, Shaoyuan, Yapeng Fu, and Kailiang Xu. High-Intensity Focused Ultrasound Ablation Monitoring Using Ultrafast Doppler Imaging: A Preliminary Study. 2023 IEEE International Ultrasonics Symposium (IUS). IEEE, 2023.

5.Junjin Yu, Haoru Dong, Dean Ta, Rong Xie*, Kailiang Xu*, Super-Resolution Ultrasound Microvascular Angiography for Spinal Cord Penumbra Imaging, Ultrasound in Med. & Biol., 49 (9), 2140-2151, 2023.

6.Junjin Yu, Xingyi Guo, Shaoyuan Yan, Qiumin Le, Vincent Hingot, Dean Ta, Olivier Couture, and Kailiang Xu*, Randomized Channel Subsampling Method for Efficient Ultrafast Ultrasound Imaging, Measurement Science and Technology, 34 (8), 084005, 2023.

7.Yu, Junjin, et al. Spinal Cord Penumbra Restoration Monitoring during Chronic Phase Using Ultrasound Localization Microscopy. 2023 IEEE International Ultrasonics Symposium (IUS). IEEE, 2023.

8.付亚鹏,孙乾东,李博艺等.基于RCA阵列三维超快超声血流成像方法仿真研究.物理学报,2023,72(07):252-261.

9.Shaoyuan Yan*, Kailiang Xu# ,Hadamard Coded Multiplane Wave based Ultrafast Doppler for Rat Brain Imaging

10.程双毅,郁钧瑾,付亚鹏,他得安,许凯亮.非线性造影超声成像数值仿真方法.物理学报,2023;72(15): 154302

11.Chenchen Zhou, Kailiang Xu*, Dean Ta. Frequency-domain full-waveform inversion-based musculoskeletal ultrasound computed tomography. J. Acoust. Soc. Am. 2023; 154 (1): 279-294.

12.Feiyao Ling, Honglei Chen, Yanfeng Lang, Zhibo Yang, Kailiang Xu*, Dean Ta. Lamb wave tomography for defect localization using wideband dispersion reversal method. Measurement. 2023; 216: 112965.

13.Xingyi Guo, Dean Ta, Kailiang Xu*. Frame Rate Effects and Their Compensation on Super-Resolution Microvessel Imaging Using Ultrasound Localization Microscopy. Ultrasonics, 2023; 132: 107009

14.Xinyan Zhou#, Shuxin Sun#, Yuefu Chen, Chengcheng Liu, Dan Li, Qun Cheng, Min He, Ying Li*, Kailiang Xu*, Dean Ta*.Pulsed Frequency Modulated Ultrasound Promotes Therapeutic Effects of Osteoporosis Induced by Ovarian Failure in Mice. Ultrasonics, 2023; 132: 106973

15.隋怡晖,郭星奕,郁钧瑾等.生成对抗网络加速超分辨率超声定位显微成像方法研究.物理学报,2022,71(22):149-160.

16.Junjin Yu, Xingyi Guo, Yihui Sui, Jiajun Shou, Dean Ta, Rong Xie, Kailiang Xu. Ultrasound Localization Microscopy for Compression-Induced Spinal Cord Injury Evaluation, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

17.Shaoyuan Yan, Junjin Yu, Xingyi Guo, Yapeng Fu, Dean Ta, Kailiang Xu. Ultrasound Cerebral Vasculature Velocimetry: A Comparative Study between Ultrafast Vector Doppler and Ultrasound Localization Microscropy, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

18.Feiyao Ling, Honglei Chen, Dean Ta, Kailiang Xu. Wideband Dispersion Reversal Based Corrosion Inspection Using A0 Lamb Waves, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

19.Shuangyi Cheng, Junjin Yu, Xingyi Guo, Dean Ta, Kailiang Xu. Nonlinear Simulation of Amplitude Modulation Pulse Sequencing for Contrast-Enhanced Ultrasound (CEUS) Imaging, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

20.Shuhang Zheng, Feiyao Ling, Jean-Gabriel Minonzio, Dean Ta, Kailiang Xu. Orthogonal Matching Pursuit Based Sparse Dispersive Radon Transform for Ultrasonic Guided Mode Extraction, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

21.Yihui Sui, Xingyi Guo, Junjin Yu, Dean Ta, Kailiang Xu. Generative Adversarial Nets for Ultrafast Ultrasound Localization Microscopy Reconstruction, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

22.Qing Li, Tho N.H.T. Tran, Jialin Guo, Kailiang Xu, Boyi Li, Lawrence H. Le, Dean Ta. AI-Powered Measurement of Ultrasonic axial-Transmission Velocity for Pediatric Skeletal Development Evaluation, 2022 IEEE International Ultrasonics Symposium (IUS), Venice, Italy, October 10-13, 2022

23.Yihui Sui, Shaoyuan Yan, Junjin Yu, Jianping Song, Dean Ta, Weiqi Wang, Kailiang Xu*. Randomized spatial downsampling-based cauchy-RPCA clutter filtering for high-resolution ultrafast ultrasound microvasculature imaging and functional imaging. IEEE Trans UFFC, 2022; 69(8): 2425-2436.

24.郁钧瑾,郭星奕,隋怡晖,宋剑平,他得安,梅永丰,许凯亮*.超分辨率超快超声脊髓微血管成像方法研究.物理学报, 2022;71(17): 174302.

25.Yifang Li,Kailiang Xu*, Ying Li, Feng Xu, Dean Ta*, Deep learning analysis of ultrasonic guided waves for cortical bone characterization, IEEE T. Ultrason. Ferr. Freq. Control, 2020. (Accept)

26.Chen Jiang, Ying Li,Kailiang Xu*, Dean Ta*, Phase shift migration method for transcranial ultrasonic imaging, IEEE T. Ultrason. Ferr. Freq. Control, 2020. (Accept)

27.Sumayyah Naeem, Farah Naeem, Jing Zhang, Jawayria Mujtaba,Kailiang Xu, Gaoshan Huang, Alexander A Solovev, Yongfeng Mei, Parameters Optimization of Catalytic Tubular Nanomembrane-Based Oxygen Microbubble Generator, Micromachines, 11(7), 643, 2020.

28.Paul Muleki-Seya,Kailiang Xu, Mickael Tanter, Olivier Couture, Ultrafast Radial Modulation Imaging, IEEE T. Ultrason. Ferr. Freq. Control, 67(3), 598- 611, 2020.

29.Yunqing Li, Chen Jiang, Ying Li, Feng Xu,Kailiang Xu*, Dean Ta*, Lawrence H. Le, Multi-layer velocity model based synthetic aperture ultrasound imaging of cortical bone, Acta Phys. Sin., 68(18): 184302, 2019.

30.Zhenli Liu,Kailiang Xu*, Dan Li, Dean Ta*, Weiqi Wang, Automatic mode extraction of ultrasonic guided waves using synchrosqueezed Wavelet transform, Ultrasonics, 99, 105948, 2019.

31.Kailiang Xu*, Guillaume Marrelec, Simon Bernard, Quentin Grimal, Lorentzian-Model-Based Bayesian Analysis for Automated Estimation of Attenuated Resonance Spectrum, IEEE T. Signal Proces., 67(1): 4-16, 2019.

32.Laing Bai,Kailiang Xu*, Dan Li, Dean Ta*, Lawrence H. Le, Weiqi Wang, Fatigue evaluation of long cortical bone using ultrasonic guided waves. J. Biomehannics, 77, 83-90, 2018.

33.Kailiang Xu*, Pascal Laugier, Jean-Gabriel Minonzio, Dispersive Radon transform. J. Acoust. Soc. Am., 143(5), 2729-2743, 2018.

34.Kailiang Xu*, Jean-Gabriel Minonzio, Dean Ta, Bo Hu, Weiqi Wang, Pascal Laugier, Sparse SVD method for high resolution extraction of the dispersion curves of ultrasonic guided waves. IEEE T. Ultrason. Ferr. Freq. Control, 63(10): 1514-1524, 2016. (IEEE IUS大会优秀论文,曾三次入选IEEE UFFC期刊重点推荐论文).

35.Kailiang Xu*, Dean Ta, Didier Cassereau, Bo Hu, Weiqi Wang, Pascal Laugier, Jean-Gabriel Minonzio, Multichannel processing for dispersion curves extraction of ultrasonic axial-transmission signals: Comparisons and case studies. J. Acoust. Soc. Am., 140(3), 1758-1770, 2016.

36.Kailiang Xu*, Dean Ta*, Bo Hu, Pascal Laugier. Wideband dispersion reversal of Lamb waves, IEEE T. Ultrason. Ferr. Freq. Control, 61(6): 997-1005, 2014.

37.Kailiang Xu, Dean Ta, Runxin He, Yi-Xian Qin, Weiqi Wang. Axial transmission method for long bone fracture evaluation by ultrasonic guided waves: simulation, phantom and in-vitro experiment. Ultrasound in Med. & Biol., 40(4): 817-827, 2014.

38.Kailiang Xu, Dan Liu, Dean Ta, Bo Hu, Weiqi Wang. Quantification of guided mode propagation in fractured long bones. Ultrasonics, 54(5): 1210-1218, 2014.

39.Kailiang Xu, Dean Ta, Zhongqing Su, Weiqi Wang. Transmission analysis of ultrasonic Lamb mode conversion in a plate with partial-thickness notch. Ultrasonics, 54(1): 395-401, 2014.

40.Kailiang Xu, Dean Ta, Petro Moilanen, Weiqi Wang. Mode separation of Lamb waves based on dispersion compensation method. J. Acoust. Soc. Am., 131(4): 2714-2722, 2012.

41.Kailiang Xu, Dean Ta, Weiqi Wang, Multiridge-based analysis for separating individual modes from multimodal guided wave signals in long bones. IEEE T. Ultrason. Ferr. Freq. Control, 57(11): 2480-2490, 2010.

Note: * is corresponding author