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Automated single cardiomyocyte characterization by nucleus extraction from dynamic holographic images using a fully convolutional neural network

  • Ahmadzadeh, Ezat
  • Jaferzadeh, Keyvan
  • Shin, Seokjoo
  • Moon, Inkyu
  • 2020-03
  • Ahmadzadeh, Ezat. (2020-03). Automated single cardiomyocyte characterization by nucleus extraction from dynamic holographic images using a fully convolutional neural network. Biomedical Optics Express, 11(3), 1501–1516. doi: 10.1364/BOE.385218
  • The Optical Society
  • View : 845
  • Download : 190
  • Jaferzadeh, Keyvan
  • Rappaz, Benjamin
  • Kuttler, Fabien
  • Kim, Bo kyoung
  • Moon, Inkyu
  • Marquet, Pierre
  • Turcatti, Gerardo
  • 2020-01
  • Jaferzadeh, Keyvan. (2020-01). Marker-Free Automatic Quantification of Drug-Treated Cardiomyocytes with Digital Holographic Imaging. ACS Photonics, 7(1), 105–113. doi: 10.1021/acsphotonics.9b01152
  • American Chemical Society
  • View : 772
  • Download : 0

No-search focus prediction at the single cell level in digital holographic imaging with deep convolutional neural network

  • Jaferzadeh, Keyvan
  • Hwang, Seung-Hyeon
  • Moon, Inkyu
  • Javidi, Bahram
  • 2019-08
  • Jaferzadeh, Keyvan. (2019-08). No-search focus prediction at the single cell level in digital holographic imaging with deep convolutional neural network. doi: 10.1364/BOE.10.004276
  • The Optical Society
  • View : 657
  • Download : 127
  • Jaferzadeh, Keyvan
  • Rappaz, Benjamin
  • Kim, Youhyun
  • Kim, Bo-Kyung
  • Moon, Inkyu
  • Marquet, Pierre
  • Turcatti, Gerardo
  • 2023-06
  • Jaferzadeh, Keyvan. (2023-06). Automated Dual-Mode Cell Monitoring To Simultaneously Explore Calcium Dynamics and Contraction-Relaxation Kinetics within Drug-Treated Stem Cell-Derived Cardiomyocytes. ACS Sensors, 8(7), 2533–2542. doi: 10.1021/acssensors.3c00073
  • American Chemical Society
  • View : 440
  • Download : 0
  • Jaferzadeh, Keyvan
  • Son, Seungwoo
  • Rehman, Abdur
  • Park, Seonghwan
  • Moon, Inkyu
  • 2023-01
  • Jaferzadeh, Keyvan. (2023-01). Automated Stain-Free Holographic Image-Based Phenotypic Classification of Elliptical Cancer Cells. Advanced Photonics Research, 4(1). doi: 10.1002/adpr.202200043
  • Wiley-VCH
  • View : 410
  • Download : 50

Quantification of stored red blood cell fluctuations by time-lapse holographic cell imaging

  • Jaferzadeh, Keyvan
  • Moon, Inkyu
  • Bardyn, Manon
  • Prudent, Michel
  • Tissot, Jean-Daniel
  • Rappaz, Benjamin
  • Javidi, Bahram
  • Turcatti, Gerardo
  • Marquet, Pierre
  • 2018-10
  • Jaferzadeh, Keyvan. (2018-10). Quantification of stored red blood cell fluctuations by time-lapse holographic cell imaging. doi: 10.1364/BOE.9.004714
  • The Optical Society
  • View : 814
  • Download : 115
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