羅建文(清華大學生物醫學工程系研究員)

羅建文(清華大學生物醫學工程系研究員)

羅建文,男,畢業於清華大學,現為清華大學生物醫學工程系研究員,博士生導師。曾獲我國生物醫學工程學科最高科技獎“黃家駟生物醫學工程獎”技術發明類二等獎(第一完成人)與中國圖象圖形學學會技術發明獎二等獎(第一完成人)。

基本介紹

  • 中文名:羅建文 
  • 國籍中國
  • 民族:漢
  • 出生地:福建省
  • 畢業院校:清華大學  
  • 學位/學歷:博士  
  • 職業:教師 
  • 專業方向:生物醫學工程  
  • 職務:研究員   
  • 主要成就:研究醫學超聲成像新方法,用於重大疾病診斷與篩查。
  • 實驗室:清華大學靈感實驗室(Medical Ultrasound Engineering Lab, MUSE Lab)
人物經歷,研究方向,代表性論著,

人物經歷

2011- 清華大學生物醫學工程系,研究員,博士戲戰墓生贈葛疊導師
2009-2011 美國哥倫比亞大學,生物醫學工程系,Associate Research Scientist
2005-2009 美國哥倫朵影坑盼比亞大學,生物醫學工程系,博士後
2000-2005 清華大學,生物醫學工程系,工學博士
1996-2000 清華大學,電熱捉獄機工程與套用電照臘乃子技術系,工學學士

研究方向

超聲成像,螢光分子乘照成像,光聲成像

代表性論著

1. Zhang J, He Q, Xiao Y, Zheng H, Wang C*, Luo J*, Ultrasound image reconstruction from plane wave radio-frequency dataset by self-supervised deep neural network, Medical Image Analysis 2021, 70, 102018 (IF=11.148).
2. Chen Y, Liu J, Luo X*, Luo J*. ApodNet: Learning for high frame rate synthetic transmit aperture ultrasound imaging. IEEE Transactions on Medical Imaging 2021, 40(11): 3190-3204 (IF=10.048).
3. Liu X*, Zhou T, Lu M, Yang Y, He Q, Luo J*. Deep learning for ultrasound localization microscopy. IEEE Transactions on Medical Imaging 2020, 39(10): 3064-3078 (IF=10.048).
4. Liu J, He Q, Luo J*. A compressed sensing strategy for synthetic transmit aperture ultrasound imaging. IEEE Transactions on Medical Imaging 2017, 36(4): 878-891 (IF=10.048).
5. Zhang G, Pu H, He W, Liu F, Luo J*, Bai J. Bayesian framework based direct reconstruction of fluorescence parametric images. IEEE Transactions on Medical Imaging 2015, 34(6): 1378-1391 (IF=10.048).
6. Luo J, Fujikura K, Tyrie LS, Tilson III MD, Konofagou EE. Pulse wave imaging of normal and aneurysmal abdominal aortas in vivo. IEEE Transactions on Medical Imaging 2009, 8(4): 477-486 (IF=10.048).
7. Luo J, Konofagou EE. A fast normalized cross-correlation calculation method for motion estimation. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 2010, 57(6): 1347-1357 (年度高引論文,1/322).
8. Luo J, Li RX, Konofagou EE. Pulse wave imaging of the human carotid artery: An in vivo feasibility study. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 2012, 59(1): 174-181 (年度高引宙拒櫻灑論文,3/314).
9. Cai C, Deng K, Ma C*, Luo J*. End-to-end deep neural network for quantitative photoacoustic imaging. Optics Letters 2018, 43(12): 2752-2755 (Editor's Pick).
10. Zhao F, Tong L, He Q, Luo J*. Coded excitation for diverging wave cardiac imaging: A feasibility study. Physics in Medicine and Biology 2017, 62(4): 1565-1584 (Highlights of 2017).
7. Luo J, Konofagou EE. A fast normalized cross-correlation calculation method for motion estimation. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 2010, 57(6): 1347-1357 (年度高引論文,1/322).
8. Luo J, Li RX, Konofagou EE. Pulse wave imaging of the human carotid artery: An in vivo feasibility study. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 2012, 59(1): 174-181 (年度高引論文,3/314).
9. Cai C, Deng K, Ma C*, Luo J*. End-to-end deep neural network for quantitative photoacoustic imaging. Optics Letters 2018, 43(12): 2752-2755 (Editor's Pick).
10. Zhao F, Tong L, He Q, Luo J*. Coded excitation for diverging wave cardiac imaging: A feasibility study. Physics in Medicine and Biology 2017, 62(4): 1565-1584 (Highlights of 2017).

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