●J. Yu*, Y. Cai* et al., VoxelMorph-Based Deep Learning Motion Correction for Ultrasound Localization Microscopy of Spinal Cord, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control (SCI), 2024. (期刊Popular article)
●J. Yu, H. Dong et al., Super-Resolution Ultrasound Microvascular Angiography for Spinal Cord Penumbra Imaging, Ultrasound in Medicine & Biology (SCI), 2023.
●J. Yu, X. Guo, S. Yan et al., Randomized Channel Subsampling Method for Efficient Ultrafast Ultrasound Imaging, Measurement Science and Technology (SCI), 2023. (期刊2023年度最佳论文,全年共6篇)
●郁钧瑾, 郭星奕, 等, 超分辨率超快超声脊髓微血管成像方法, 物理学报(SCI), 2022. (编辑推荐) (期刊2023年度高被引论文)
●Q. Hu, J. Yu et al., Ultrafast Doppler Vascular Imaging for Intraoperative Physiological Monitoring of Human Spinal Cord, Journal of Visualized Experiments (SCI), 2025.
●董浩如, 郁钧瑾, 等, 通过超分辨率超快超声技术观测不同节段SD大鼠脊髓损伤后血管血流改变特征, 中华医学杂志 (北大核心), 2024.
●S. Yan*, J. Shou*, J. Yu et al., Ultrafast Ultrasound Vector Doppler for Small Vasculature Imaging, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control (SCI), 2023. (期刊Popular article)
●程双毅, 郁钧瑾, 等, 非线性造影超声成像数值仿真方法, 物理学报 (SCI), 2023.
●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 (SCI), 2022.
●Y. Sui, S. Yan, J. Yu et al., Randomized spatial downsampling-based Cauchy-RPCA clutter filtering for high-resolution ultrafast ultrasound microvasculature imaging and functional imaging, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control (SCI), 2022. (期刊封面文章)
发表EI收录国际会议论文9篇,第一作者6篇,1篇获Student Travel Grant:
●J. Yu, L. Zhou et al., “Individual Singular Mode Functional Ultrasound for Somatosensory Conduction Detection of Spinal Cord”in IEEE International Ultrasonics Symposium, 2025. (口头报告)
●J. Yu, Q. Hu et al., “In Vivo Pulsatility and Resistivity Measurement of Rat Spinal Cord Using Ultrafast Doppler Imaging: A Preliminary Study” in IEEE International Ultrasonics Symposium, 2024.
●J. Yu, Y. Cai et al., “Microbubble Localization Compensation-Based Motion Correction for Ultrasound Localization Microscopy of Spinal Cord”in IEEE UFFC Latin America Ultrasonics Symposium, 2024. (口头报告) (Best Student Paper Finalist) (Student Pitch Competition第一名)
●J. Yu, H. Dong et al., “Spinal Cord Penumbra Restoration Monitoring in Chronic Phase Using Ultrasound Localization Microscopy” in IEEE International Ultrasonics Symposium, 2023. (口头报告)
●J. Yu, H. Dong et al., “Ultrasound localization microscopy based microvasculature evaluation after spinal cord injury with varying severities” in International Congress on Ultrasonics, 2023. (口头报告)
●J. Yu, H. Dong et al., “Ultrafast Ultrasound Localization Microscopy for Visualization of Spinal Cord Compression Injury” in IEEE International Ultrasonics Symposium, 2022. (口头报告) (Student Travel Grant)
●S. Yan, J. Yu et al., “Ultrafast Ultrasound Vector Doppler for Pulsatility Measurement in Rat Spinal Cord Small Vasculature” in IEEE International Ultrasonics Symposium, 2024.
●S. Yan, J. Yu et al., “Ultrafast Ultrasound Vector Doppler Velocimetry for Brain Vasculature Imaging” in IEEE International Ultrasonics Symposium, 2022.
●S. Cheng, J. Yu et al., “Nonlinear Simulation of Amplitude Modulation Pulse Sequencing for Contrast-Enhanced Ultrasound (CEUS) Imaging” in IEEE International Ultrasonics Symposium, 2022.
●第二发明人,一种随机空间采样的超快超声血流成像方法及系统,[P]. 20211213838.5,已授权。
●第二发明人,基于超快多普勒成像的脉搏波检测方法及系统, PCT/CN2026/108985,美国专利,实审中。
●第二发明人,基于功能超声成像的无创闭环神经调控系统,[P]. 202510929578.3,实审中。
●第三发明人,基于超声成像的聚焦超声治疗系统,PCT/CN2022/114344,美国专利,已授权。
●第三发明人,微血管血流超声成像系统与方法,:PCT/CN2023/116211,美国专利,已授权。
●第三发明人,一种基于时变空间向量的功能超声成像方法,实审中。第二发明人,一种随机空间采样的超快超声血流成像方法及系统,[P]. 20211213838.5,已授权。
●第二发明人,基于超快多普勒成像的脉搏波检测方法及系统, PCT/CN2026/108985,美国专利,实审中。
●第二发明人,基于功能超声成像的无创闭环神经调控系统,[P]. 202510929578.3,实审中。
●第三发明人,基于超声成像的聚焦超声治疗系统,PCT/CN2022/114344,美国专利,已授权。
●第三发明人,微血管血流超声成像系统与方法,:PCT/CN2023/116211,美国专利,已授权。
●第三发明人,一种基于时变空间向量的功能超声成像方法,实审中。