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厦门大学电子科学与技术学院导师介绍:林玉兰

作者:聚创厦大考研网-小厦老师 点击量: 861 发布时间: 2018-09-07 16:51 微信号: H17720740258



  姓名:  林玉兰
  职称、职位:副教授、硕导
  邮箱:yulan.lin(AT)xmu.edu.cn
  电话:0592-2183301
  办公地点:物理机电航空大楼331
  学历:
  武汉理工大学工学学学士,通信工程专业;
  厦门大学理学博士,无线电物理专业。
  研究方向:
  核磁共振谱学新技术及信号处理
  主讲课程:
  数字信号处理
  生物医学电子学实验
  数值分析(研究生课)
  成果奖励:
  福建省自然科学优秀论文三等奖,2014
  课题项目:
  研究异核自旋-自旋偶合相位调制快速获取多维核磁共振谱方法,福建省自然科学面上项目,2016-2019
  不均匀场下单扫描空间编码技术获取高分辨多核NMR 谱,国家自然科学基金面上项目,2012-2015
  代表作:
  [1]Lin YL, Pieter E. S. S., Zhang ZY, Frydman L*, 2017. A fast approach to 3D HSQC-based spectroscopy based on a Fourier phase encoding of pre-targeted resonances. Journal of Magnetic Resonance 274: 1090-7807 (IEEE: SCI/EI).
  [2]Lin YL, Adonis L, Frydman L*, 2016. Multidimensional J-driven NMR correlations by single-scan offset-encoded recoupling. Journal of Magnetic Resonance 265: 33-44 (IEEE: SCI/EI).
  [3]Qiu WQ, Wei ZL,Ding N, Yang Y, Ye QM, Lin YL*, ChenZ*, 2016. Partial-Homogeneity-Based Two-dimensional high-resolution nuclear magnetic resonance spectroscopy under inhomogeneous magnetic fields. ChemPhysChem17(10): 1493-1499 (IEEE: SCI/EI).
  [4]Zhang ZY, Pieter E. S. S., Cai SH, Zheng ZY, Lin YL*, Chen Z*, 2015. Establishing resolution-improved NMR spectroscopy in high magnetic fields with unknown spatiotemporal variations. The Journal of Chemical Physics 143: 244201(IEEE: SCI/EI).
  [5]Qiu WQ,Chen YH,Wei ZL,Yang J,Lin YL*,Chen Z,2015. A method based on covariance and pattern recognition for improving resolutions of spatially encoded NMR spectra,Magnetic Resonance in Chemistry 53:945-951(IEEE: SCI/EI).
  [6]Lin YL,Huang YQ,Cai SH,Chen Z*,2013. Intermolecular zero quantum coherence in NMR spectroscopy,Annual Reports on NMR Spectroscopy,78(1):209-257(IEEE: SCI/EI).
  [7]Lin YL,Zhang ZY,Cai SH,Chen Z*,2011. High-resolution 2D J-Resolved spectroscopy in inhomogeneous fields with two scans,Journal of the American Chemical Society 133(20):7632-7635(IEEE: SCI/EI).
  [8]Chen Z*,Cai SH,Huang YQ,Lin YL,2015. High-resolution NMR spectroscopy in inhomogeneous fields,Progress in Nuclear Magnetic Resonance Spectroscopy (90–91):1-31 (IEEE: SCI/EI).
  [9]Jin YL, Cai HH, Lin YL, Cui XH*, Chen Z, 2015. Usage of the ultrafast intermolecular single-quantum coherence (UF iSQC) sequence for NMR spectroscopy of ex vivo tissue. Food Research International 77(3) 636-642(IEEE: SCI/EI).
  [10]Cai HH,Chen H,Lin YL,Feng JH,Cui XH*,Chen Z*, 2014. Feasibility of ultrafast intermolecular single-quantum coherence spectroscopy in analysis of viscous-liquid foods,Food Analytical Methods8(7):1682-1690(IEEE: SCI/EI).
  [11]Qu XB,Guo D,Ning BD,Hou YK,Lin YL,Cai SH,Chen Z*,2012. Undersampled MRI reconstruction with patch-based directional wavelets,Magnetic Resonance Imaging30(7):964-977 (IEEE: SCI/EI).
  [12]Cai CB,Lin YL,Cai SH*,Sun HJ,Zhong JH,Chen Z,2012. Flat pancake distant dipolar fields for enhancement of intermolecular multiple-quantum coherence signals,Journal of Chemical Physics136(9):094503 (IEEE: SCI/EI).
  [13]Wu C,Zhao MF,Cai SH*,Lin YL,Chen Z,2010. Ultrafast 2D COSY with constant-time phase-modulated spatial encoding,Journal of Magnetic Resonance 204(1):82-90(IEEE: SCI/EI).


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