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马建国
2023-05-06 10:10
  • 马建国
  • 马建国 - 副教授-北京航空航天大学-仪器科学与光电工程学院-个人资料

近期热点

资料介绍

个人简历


学习及工作经历\r
2016.12-至今, 北京航空航天大学, 仪器科学与光电工程学院, 副教授\r
2015.1-2016.7, 加州大学洛杉矶分校, 医学院, 博士后, 合作导师:Tzung K. Hsiai\r
2011.8–2014.12, 北卡罗来纳州立大学, 机械工程、电子工程, 博士, 导师: Xiaoning Jiang\r
2008.9–2011.6, 山东大学, 声学, 硕士, 导师: Rolf Mueller\r
2004.9–2008.6, 山东大学, 物理学, 学士\r
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教学情况\r
开设课程“医学成像技术概论”、“超声成像系统”、“电路分析”

研究领域


医学超声成像,多频超声换能器,超宽频光学超声传感,超声信息提取与智能诊断""

近期论文


X. Ma, B. Liu, Y. Cai et al., “Suppression of reverberations at fiber tips for optical ultrasound sensing,” Opt Lett, 45(9):2526-2529, 2020.\r
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J. Ma, M. Wei, Z. Xie et al., “Spectrum enhanced colour ultrasound (SECU) imaging,” Measurement, 154107401, 2020.\r
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B. Fu, J. Sun, G. Wang et al., “Solution-processed two-dimensional materials for ultrafast fiber lasers (invited),” Nanophotonics, 9(8):2169-2189, 2020.\r
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C. Shang, Y. Zhang, H. Qin et al., “Review on wavelength-tunable pulsed fiber lasers based on 2D materials,” Opt Laser Technol, 131106375, 2020.\r
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X. Ma, Y. Cai, B. Fu et al., “Fiber optic-based laser interferometry array for three-dimensional ultrasound sensing,” Optics Letters, 44(23):5852-5855, 2019.\r
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Y. Ding, J. Ma, A. D. Langenbacher et al., “Multiscale light-sheet for rapid imaging of cardiopulmonary system,” JCI Insight, 3(16), 2018.\r
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Y. Ding, J. Lee, J. Ma et al., “Light-sheet fluorescence imaging to localize cardiac lineage and protein distribution,” Sci Rep, 742209, 2017.\r
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R. Li, J. Yang, A. Saffari et al., “Ambient ultrafine particle ingestion alters gut microbiota in association with increased atherogenic lipid metabolites,” Sci Rep, 7(1):42906, 2017.\r
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J. Ma, Y. Luo, R. R. S. Packard et al., “Ultrasonic transducer-guided electrochemical impedance spectroscopy to assess lipid-laden plaques,” Sens Actuators B Chem, 235154-161, 2016.\r
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K. Sung, Y. Ding, J. Ma et al., “Simplified three-dimensional tissue clearing and incorporation of colorimetric phenotyping,” Sci Rep, 630736, 2016.\r
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R. R. Packard, X. Zhang, Y. Luo et al., “Two-point stretchable electrode array for endoluminal electrochemical impedance spectroscopy measurements of lipid-laden atherosclerotic plaques,” Ann Biomed Eng, 44(9):2695-2706, 2016.\r
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C. Fei, C. T. Chiu, X. Chen et al., “Ultrahigh frequency (100?MHz–300?MHz) ultrasonic transducers for optical resolution medical imagining,” Sci Rep, 6(1):28360, 2016.\r
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P. Fei, J. Lee, R. R. S. Packard et al., “Cardiac light-sheet fluorescent microscopy for multi-scale and rapid imaging of architecture and function,” Sci Rep, 6(1):22489, 2016.\r
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Y. Li, J. Ma, K. H. Martin et al., “An integrated system for superharmonic contrast-enhanced ultrasound imaging: design and intravascular phantom imaging study,” IEEE Trans Biomed Eng, 63(9):1933-1943, 2016.\r
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K. H. Martin, B. D. Lindsey, J. Ma et al., “Ex vivo porcine arterial and chorioallantoic membrane acoustic angiography using dual-frequency intravascular ultrasound probes,” Ultrasound Med Biol, 42(9):2294-2307, 2016.\r
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C. Fei, J. Ma, C. T. Chiu et al., “Design of matching layers for high-frequency ultrasonic transducers,” Appl Phys Lett, 107(12):123505, 2015.\r
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J. Ma, K. H. Martin, Y. Li et al., “Design factors of intravascular dual frequency transducers for super-harmonic contrast imaging and acoustic angiography,” Phys Med Biol, 60(9):3441-3457, 2015.\r
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J. Ma, M. B. Steer, X. Jiang, “An acoustic filter based on layered structure,” Appl Phys Lett, 106(11):111903, 2015.\r
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J. Ma, K. H. Martin, P. A. Dayton et al., “A preliminary engineering design of intravascular dual-frequency transducers for contrast-enhanced acoustic angiography and molecular imaging,” IEEE Trans Ultrason Ferroelectr Freq Control, 61(5):870-880, 2014. (封面front cover)\r
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K. H. Martin, B. D. Lindsey, J. Ma et al., “Dual-frequency piezoelectric transducers for contrast enhanced ultrasound imaging,” Sensors, 14(11):20825-20842, 2014.\r
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J. Ma, S. Guo, D. Wu et al., “Design, fabrication, and characterization of a single-aperture 1.5-MHz/3-MHz dual-frequency HIFU transducer,” IEEE Trans Ultrason Ferroelectr Freq Control, 60(7):1519-1529, 2013.\r
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J. Ma, R. Müller, “A method for characterizing the biodiversity in bat pinnae as a basis for engineering analysis,” Bioinsp Biomim, 6(2):026008, 2011. (封面front cover)

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