AI-based analysis of 3D position and orientation of red blood cells using a digital in-line holographic microscopy.
暂无分享,去创建一个
[1] A. Marangoni,et al. Mechanisms of Separation between Tetrahydrofuran and Water Using Hydroxystearic Acid , 2022, Physics of Fluids.
[2] A. Viallat,et al. Dynamics of Individual Red Blood Cells Under Shear Flow: A Way to Discriminate Deformability Alterations , 2022, Frontiers in Physiology.
[3] E. Lam,et al. Deep learning for digital holography: a review. , 2021, Optics express.
[4] Q. Ma,et al. The Relationship between Erythrocytes and Diabetes Mellitus , 2021, Journal of diabetes research.
[5] Vittorio Bianco,et al. Compact off-axis holographic slide microscope: design guidelines. , 2020, Biomedical optics express.
[6] Igor Meglinski,et al. Optical Tweezers in Studies of Red Blood Cells , 2020, Cells.
[7] Sang Joon Lee,et al. Deep learning-based digital in-line holographic microscopy for high resolution with extended field of view , 2019, Optics & Laser Technology.
[8] Taesik Go,et al. Machine learning‐based in‐line holographic sensing of unstained malaria‐infected red blood cells , 2018, Journal of biophotonics.
[9] Xiangnan Wang,et al. Fast phase retrieval in off-axis digital holographic microscopy through deep learning. , 2018, Optics express.
[10] Sang Joon Lee,et al. Digital stereo-holographic microscopy for studying three-dimensional particle dynamics , 2018, Optics and Lasers in Engineering.
[11] Sang Joon Lee,et al. Label-free sensor for automatic identification of erythrocytes using digital in-line holographic microscopy and machine learning. , 2018, Biosensors & bioelectronics.
[12] A. Iolascon,et al. Hereditary stomatocytosis: An underdiagnosed condition , 2018, American journal of hematology.
[13] T. Ye,et al. Red blood cell motion and deformation in a curved microvessel. , 2017, Journal of biomechanics.
[14] Hong Zhao,et al. A deep convolutional neural network for classification of red blood cells in sickle cell anemia , 2017, PLoS Comput. Biol..
[15] Nicholas I. Smith,et al. An evaluation of fixation methods: Spatial and compositional cellular changes observed by Raman imaging , 2017 .
[16] Vittorio Bianco,et al. Endowing a plain fluidic chip with micro-optics: a holographic microscope slide , 2017, Light: Science & Applications.
[17] Yuchao Li,et al. Rotation and deformation of human red blood cells with light from tapered fiber probes , 2017 .
[18] Pasquale Memmolo,et al. Tomographic flow cytometry by digital holography , 2016, Light: Science & Applications.
[19] Sang Joon Lee,et al. Precise measurement of orientations of transparent ellipsoidal particles through digital holographic microscopy. , 2016, Optics express.
[20] D. DeVoe,et al. Optical detection enhancement in porous volumetric microfluidic capture elements using refractive index matching fluids. , 2015, The Analyst.
[21] P Memmolo,et al. Red blood cell as an adaptive optofluidic microlens , 2015, Nature Communications.
[22] Gerhard Gompper,et al. Deformation and dynamics of red blood cells in flow through cylindrical microchannels. , 2014, Soft matter.
[23] Bo Wang,et al. Graphene/polydimethylsiloxane nanocomposite strain sensor. , 2013, The Review of scientific instruments.
[24] M. Socol,et al. Full dynamics of a red blood cell in shear flow , 2012, Proceedings of the National Academy of Sciences.
[25] N. Mohandas,et al. Malaria and human red blood cells , 2012, Medical Microbiology and Immunology.
[26] Yong-Seok Choi,et al. Three-dimensional volumetric measurement of red blood cell motion using digital holographic microscopy. , 2009, Applied optics.
[27] P. Marquet,et al. Comparative study of human erythrocytes by digital holographic microscopy, confocal microscopy, and impedance volume analyzer , 2008, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[28] G. Bally,et al. Digital Holographic Microscopy , 2007, PhotonicsViews.
[29] Wojciech Strojny,et al. Stiffness of normal and pathological erythrocytes studied by means of atomic force microscopy. , 2006, Journal of biochemical and biophysical methods.
[30] Myung K. Kim,et al. Wavelength-scanning digital interference holography for tomographic three-dimensional imaging by use of the angular spectrum method. , 2005, Optics letters.
[31] Aleksander S Popel,et al. Microcirculation and Hemorheology. , 2005, Annual review of fluid mechanics.
[32] G. Whitesides,et al. Solvent compatibility of poly(dimethylsiloxane)-based microfluidic devices. , 2003, Analytical chemistry.
[33] P. Roller,et al. Formaldehyde fixation. , 1985, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[34] D. Gabor. A New Microscopic Principle , 1948, Nature.
[35] I. Tikhomirova,et al. Microcirculation and blood rheology abnormalities in chronic heart failure. , 2017, Clinical hemorheology and microcirculation.
[36] Yong-Seok Choi,et al. Advances in digital holographic micro-PTV for analyzing microscale flows , 2012 .
[37] J. Katz,et al. Applications of Holography in Fluid Mechanics and Particle Dynamics , 2010 .