成员介绍

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李博艺
系别: 
生物医学工程技术研究所
办公室: 
湾谷科技园D2栋1301
职称: 
博士后
Email: 
liboyi@fudan.edu.cn

教育和工作背景

● 2020/08 – 至今:复旦大学,工程与应用技术研究院,博士后(合作导师:他得安 教授)

● 2016/09 – 2020/06:复旦大学,生物医学工程专业,工学博士(导师:他得安 教授,Lawrence H. Le 教授,王威琪 院士)

● 2013/09 – 2016/06:内蒙古大学,信息与通信工程专业,工学硕士

● 2008/09 – 2012/06:四川农业大学,农业电气化与自动化专业,工学学士

研究方向

从事光声-超声多模态成像研究,包括:PACT、PAM、PLD/LED的光声-超声多模态成像; 超声背散射骨成像及诊断;智慧医疗超声的诊疗一体化仪器研制。担任上海市超声医学工程学会,仪器工程开发专业委员会,委员。

科研项目

● 2021,国家自然科学基金青年科学基金,《评价髋关节的多模超声成像理论及方法研究》,30万元,在研,主持

● 2021,中国博士后科学基金第69批面上资助,《多模态超声评价髋关节骨组织方法研究》,8万元,结题,主持

● 2023,近代声学教育部重点实验室开放课题,《评价软-硬骨的多模超声成像方法研究》,1.5万元,在研,主持

● 2024,武汉联影智融医疗科技有限公司横向项目课题,《超声-光声骨骼成像及特征提取方法研究》,25 万元,在研,主持

● 2021,国家自然科学基金国家重大科研仪器研制项目,《慢性前列腺炎多模态超声/光声诊疗方法及仪器研制》,720万元,在研,参与;

● 2023,国家自然科学基金国家重大科研仪器研制项目,《高温合金损伤演化非线性超声表征与分析仪器研制》,862万元,在研,参与;

● 2018,国家自然科学基金国家重大科研仪器研制项目,《跨尺度高分辨率的多模态超声骨成像方法及仪器研制》,725万元,结题,参与。

人才项目资助

● 2021,中国声学学会青年人才托举工程项目;

● 2020,上海市“超级博士后”激励计划;

● 2020、2022,2024复旦大学“超级博士后”激励计划。

获奖荣誉

● 2024.01获第三十五届上海市优秀发明选拔赛“优秀发明金奖”(排名3/10);

● 2023.09获C.F. Ying Award for Young Ultrasonics Scholars “国际青年超声学者奖”(个人);

● 2023.07获中国研究生电子设计竞赛上海赛区研究生组“三等奖”(指导教师);

● 2022.04获首届中国智能医疗器械创新大赛全国总决赛本科生组“二等奖”(指导教师);

● 2020.09获第三届中国医疗器械创新创业大赛人体精密测量专场赛“一等奖”(排名3/4);

● 2020.09获第三届中国医疗器械创新创业大赛全国总决赛“三等奖”(排名3/4);

● 2019.09获中国国际工业博览会高校展区优秀展品奖“特等奖”(团体);

● 2019.08获第十四届中国研究生电子设计竞赛“全国总决赛最佳论文奖”(3/3);

● 2019.08获第十四届中国研究生电子设计竞赛“全国总决赛三等奖”(3/3);

● 2019.07获第十四届中国研究生电子设计竞赛“上海赛区一等奖”(3/3);

● 2019.04获日内瓦国际发明展“金奖”(排名4/8);

● 2018.11获中国国际高新技术成果交易会“优秀产品奖”(团体)。

代表性论文

SCI期刊论文:

1. Boyi Li, Mengyang Lu, Tianhua Zhou, Mengxu Bu, Wenting Gu, Junyi Wang, Qiuchen Zhu, Xin Liu*, Dean Ta. Removing Artifacts in Transcranial Photoacoustic Imaging with Polarized Self-Attention Dense-UNet, Ultrasound in Medicine & Biology, 2024.05.

2. Boyi Li, Chengcheng Liu*, Xin Liu, Tho N. H. T. Tran, Ying Li, Dan Li, Dongsheng Bi, Duwei Liu, Dean Ta*. Amplitude Modulation Excitation for Cancellous Bone Evaluation Using a Portable Ultrasonic Backscatter Instrumentation, Chinese Physics B, 31, 2022, 114303-1-11.

3. Boyi Li, Mengyang Lu, Chengcheng Liu, Xin Liu*, Dean Ta. Acoustic Hologram Reconstruction with Unsupervised Neural Network, Frontiers in Materials, 9, 2022, 916527-1-9.

4. Xin Liu*, Boyi Li, Bo Pang, Chengcheng Liu, Yuexia Shu, Kailiang Xu, Jianwen Luo, Dean Ta*. Improved Ultrasound Imaging Performance with Complex Cumulant Analysis,IEEE Transactions on Biomedical Engineering, 69(3), 2022, 1281-1290.

5. Tianhua Zhou, Boyi Li, Xin Liu*, and Dean Ta*. Data-Driven Method of Super-Resolution Image Recovery for Speckle-Illumination Photoacoustic Computed Tomography, Optics Letters, 49(8), 2024, 1949-1952.

6. Jingxian Wang, Boyi Li*, Tianhua Zhou, Chengcheng Liu, Mengyang Lu, Wenting Gu, Xin Liu, Dean Ta. Reconstructing Cancellous Bone from Down-Sampled Optical-Resolution Photoacoustic Microscopy Images with Deep Learning, Ultrasound in Medicine & Biology, 2024.05.

7. Duwei Liu, Boyi Li*, Dongsheng Bi, Tho N. H. T. Tran, Yifang Li, Dan Liu, Ying Li, Dean Ta*. Assessment of Cortical Bone Fatigue Using Coded Nonlinear Ultrasound,Chinese Physics B, 30(9), 2021, 094301-1-11.

8. Zijian Wang, Jingyi Xiao, Dan Li*, Boyi Li*, JianQiu Zhang, Dean Ta. Full Waveform Inversion Guided Wave Tomography with A Recurrent Neural Network, Ultrasonics, 133, 2023, 107043-1-10.

9. Dongsheng Bi, Lingwei Shi, Boyi Li*, Ying Li, Chengcheng Liu, Lawrence H. Le, Jingchun Luo, Sijia Wang, Dean Ta*. The Protocol of Ultrasonic Backscatter Measurements of Musculoskeletal Properties, Phenomics, 2023, 1-9, IF=0, 发表时间2023.07. (共同通讯作者)

10. Dongsheng Bi, Chengcheng Liu*, Zhongquan Dai, Zhili Li, Ying Li, Boyi Li*, Dan Li, Linjie Wang, Lina Qu, Yinghui Li, Dean Ta*. Human Bone Loss Assessed by High‑Resolution Peripheral Quantitative Computed Tomography and Ultrasonic Transmission Techniques, Microgravity Science and Technology, 35(12), 2023, 1-12.

11. Lingwei Shi, Dongsheng Bi, Jingchun Luo, Wei Chen, Cuiwei Yang, Yan Zheng, Ju Hao, Ke Chang, Boyi Li*, Chengcheng Liu*, Dean Ta. Associations Between Electrocardiogram and Carotid Ultrasound Parameters: a Healthy Chinese Group Study, Frontiers in Physiology, 8(13), 2022, 976254-1-10.

12. Fei Dai, Wenyu Xing, Yunkai Zhu, Boyi Li, Yaqing Chen, Dean Ta*. DF-GAM: Cross-domain Ultrasound Image High-Quality Reconstruction Using a Dual Frequency-Domain Guided Adaptation Model, Ultrasound in Medicine & Biology, 2024.05.

13. Chuanxin Zhang, Xue Jiang*, Shuai Han, Jiajie He, Yan Zheng, Boyi Li, Dean Ta*. Converged Wireless Infrastructure with Acoustic Holographic Array, Applied Physics Reviews, 9(4), 2022, 041413.

EI会议论文:

14. Boyi Li, Shuai Han, Qiang Xie, Chunshan Yang, Tianhua Zhou, Ying Li , Ting Feng, Dan Li, Kailiang Xu, Xin Liu*, Dean Ta*. A Wide Field of Vision Photoacoustic Imaging Method Based on Axial-Lateral Multi-Angle Laser Excitation and Coherent Compounding Technique: A Simulation and Experiment Study, 2024, 1-4, 2024 IEEE UFFC Latin America Ultrasonics Symposium (IEEE UFFC LAUS 2024), 2024.05.08-10, Montevideo, Uruguay.

15. Boyi Li, Qiang Xie, Tianhua Zhou, Shuai Han, Chunshan Yang, Chengcheng Liu, Ying Li, Dan Li, Xin Liu*, Dean Ta*. A Dual-modal Imaging System for Bone Measurement Using the Photoacoustic and Ultrasonic Imaging, 2023, 1-4, The 2023 International Congress on Ultrasonics, 2023.09.18-21, Beijing, China.

16. Qiang Xie, Boyi Li, Tianhua Zhou, Xin Liu*, Shuai Han, Chengcheng Liu, Chunshan Yang, Ying Li, Dan Li, Dean Ta*. The Deterioration of Microstructure and Biochemical Components in Cancellous Bone Characterizing by the Photoacoustic Microscopy Imaging, 2023, 1-4, The 2023 International Congress on Ultrasonics, 2023.09.18-21, Beijing, China.

17. Tianhua Zhou, Boyi Li, Jingxian Wang, Xin Liu*, Dean Ta*. Photoacoustic Microscopic Evaluation of Subsurface Trabeculae in Cancellous Bone, 2023, 1-4, The 2023 IEEE International Ultrasonics Symposium (IEEE IUS 2023) , 2023.09.03-08, Montreal, Quebec, Canada.

18. Boyi Li, Tianhua Zhou, Xin Liu, Chengcheng Liu*, Tho N.H.T. Tran, Ying Li, Dan Li, Yifang Li, Dongsheng Bi, Dean Ta*. A Photoacoustic Spectrum Feature Extraction Method to Characterize the Hydroxyapatite Degradation Process in Cortical Bone, 2022, 1-4, The 2022 IEEE International Ultrasonics Symposium (IEEE IUS 2022), 2022.10.10-13, Venice, Italy.

19. Boyi Li, Chengcheng Liu*, Ying Li, Tho N.H.T. Tran, Dean Ta*. An Amplitude Modulation Ultrasonic Backscatter Method for Estimation Characterization of Cancellous Bones, 2021, 1-4, The 2021 IEEE International Ultrasonics Symposium (IEEE IUS 2021) , 2021.9.11-16, Xi`an, China.

学术报告

1. 2020.09.04,第三届中国医疗器械创新创业大赛人体精密测量专场赛,大会报告,题目“骨超声诊疗仪”,浙江安吉;

2. 2020.09.16,第三届中国医疗器械创新创业大赛全国总决赛,大会报告,题目“骨超声诊疗仪”,江苏苏州;

3. 2021.09.10,中国声学学会青年人才托举工程项目,会议报告,题目“多模态超声评价骨关节组织的方法研究及仪器研制”, 江苏常熟;

4. 2021.03.28,2020-2021年全国声学大会,会议报告,题目“调幅脉冲激励超声背散射表征骨骼特性方法研究”,上海;

5. 2021.09.11,IEEE International Ultrasonics Symposium,会议报告,题目“An Amplitude Modulation Ultrasonic Backscatter Method for Estimation Characterization of Cancellous Bones”, Xi'an, China;

6. 2022.10.10,IEEE International Ultrasonics Symposium,会议报告,题目“A Photoacoustic Spectrum Feature Extraction Method to Characterize the Hydroxyapatite Degradation Process in Cortical Bone”,Venice, Italy;

7. 2023.07.06,2022-2023年全国声学大会,会议报告,题目“多模态超声-光声特征提取表征骨生化成分研究及仪器研制”,黑龙江哈尔滨;

8. 2023.09.18,International Congress on Ultrasonics,会议报告,题目1“A Dual-modal Imaging System for Bone Measurement Using the Photoacoustic and Ultrasonic Imaging”,题目2“The Deterioration of Microstructure and Biochemical Components in Cancellous Bone Characterizing by the Photoacoustic Microscopy Imaging”,北京;

9. 2024.04.23,第四届“海聚英才”全球创新创业大赛初赛,报告题目 “跨尺度高分辨率的多模态超声骨成像方法及仪器研制”,上海;

10. 2024.05.08,IEEE UFFC LAUS,题目“A Wide Field of Vision Photoacoustic Imaging Method Based on Axial-Lateral Multi-Angle Laser Excitation and Coherent Compounding Technique”,Montevideo,Uruguay;

11. 2024.06.28,第四届“海聚英才”全球创新创业大赛复赛,报告题目 “跨尺度高分辨率的多模态超声骨成像方法及仪器研制”,上海。

发明专利

1. 2023,一种声致超声成像方法,ZL202111227183.7;

2. 2022,基于PWM编码激励的非线性超声导波检测系统及方法,ZL201911185788.7;

3. 2022,一种基于线性功放的非线性超声导波检测系统及方法,ZL201911184623.8。

软件著作权

1. 2023,PAUSMIS跨尺度高分辨率多模态骨成像分析软件,2023SR0410966;

2. 2023,超声频域骨骼成像系统,2023SR0411007;

3. 2023,ULMfast超分辨超声定位显微软件,2023SR0411038;

4. 2023,超声时域骨骼成像系统,2023SR0411039;

5. 2023,跨尺度高分辨率多模态骨成像采集控制软件,2023SR0731235。