Biomedical Engineering Reference
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[76] B. Kemper, L. Schmidt, S. Przibilla, C. Rommel, S. Ketelhut, A. Vollmer, et al., Influence of sample
preparation and identification of subcellular structures in quantitative holographic phase contrast
microscopy, Proc. SPIE 7715 (2010) 771504.
[77] M. Bielaszewska, A. Bauwens, L. Greune, B. Kemper, U. Dobrindt, J.M. Geelen, et al., Vacuolisation of
human microvascular endothelial cells by enterohaemorrhagic Escherichia coli , Thromb. Haemost. 102
(2009) 1080.
[78] B. Kemper, P. Langehanenberg, I. Bredebusch, J. Schnekenburger, G. von Bally, Techniques and
applications of digital holographic microscopy for life cell imaging, Proc. SPIE 6633 (2007) 66330D.
[79] B. Rappaz, E. Cano, T. Colomb, J. K¨hn, C. Depeursinge, V. Simanis, et al., Noninvasive
characterization of the fission yeast cell cycle by monitoring dry mass with digital holographic
microscopy, J. Biomed. Opt. 14 (2009) 034049.
[80] G. Popescu, Y.K. Park, N. Lue, C. Best-Popescu, L. Deflores, R.S. Dasari, et al., Optical imaging of cell
mass and growth dynamics, Am. J. Physiol. Cell Physiol. 295 (2008) C538.
[81] M. Mir, Z. Wang, Z. Shen, M. Bednarz, R. Bashir, I. Golding, et al., Optical measurement of
cycle-dependent growth, Proc. Natl. Acad. Sci. U.S.A. 108 (2011) 13124.
[82] B. Kemper, A. Bauwens, A. Vollmer, S. Ketelhut, P. Langehanenberg, J. M¨ thing, et al., Label-free
quantitative cell division monitoring of endothelial cells by digital holographic microscopy, J. Biomed.
Opt. 15 (2010) 036009.
[83] P. Langehanenberg, L. Ivanova, B. Bernhardt, S. Ketelhut, A. Vollmer, D. Dirksen, et al., Automated
3D-tracking of living cells by digital holographic microscopy, J. Biomed. Opt. 14 (2009) 014018.
[84] B. Rappaz, F. Charri ` re, C. Depeursinge, P.J. Magistretti, P. Marquet, Simultaneous cell morphometry
and refractive index measurement with dual-wavelength digital holographic microscopy and dye-enhanced
dispersion of perfusion medium, Opt. Lett. 33 (2008) 744.
[85] B. Kemper, S. Przibilla, A. Vollmer, S. Ketelhut, G. von Bally, Quantitative phase imaging-based
refractive index determination of living cells using incorporated microspheres as reference, Proc. SPIE
8086 (2011) 808607.
[86] P. Friedl, E.B. Brocker, Reconstructing leukocyte migration in 3D extracellular matrix by time-lapse
videomicroscopy and computer-assisted tracking, Methods Mol. Biol. 239 (2004) 77.
[87] M. Esseling, B. Kemper, M. Antkowiak, D.J. Stevenson, L. Chaudet, M.A.A. Neil, et al., Multimodal
biophotonic workstation for live cell analysis, J. Biophotonics 5 (2012) 9.
[88] H. Ding, X. Liang, Z. Wang, S.A. Boppart, K. Tangella, G. Popescu, Measuring the scattering parameters
of tissues from quantitative phase imaging of thin slices, Opt. Lett. 36 (2011) 2281.
[89] E. Shaffer, C. Moratal, P. Magistretti, P. Marquet, C. Depeursinge, Label-free second-harmonic phase
imaging of biological specimen by digital holographic microscopy, Opt. Lett. 35 (2010) 4102.
[90] E. Shaffer, P. Marquet, C. Depeursinge, Real time, nanometric 3D-tracking of nanoparticles made
possible by second harmonic generation digital holographic microscopy, Opt. Express 18 (2010) 17392.
[91] Y. Cotte, F.M. Toy, C. Arfire, S.S. Kou, D. Boss, I. Bergo¨nd, et al., Realistic 3D coherent transfer
function inverse filtering of complex fields, Biomed. Opt. Express 2 (2011) 2216.
[92] Y. Cotte, M.F. Toy, N. Pavillon, C. Depeursinge, Microscopy image resolution improvement by
deconvolution of complex fields, Opt. Express 18 (2010) 19462.
[93] S.D. Babacan, Z. Wang, M. Do, G. Popescu, Cell imaging beyond the diffraction limit using sparse
deconvolution spatial light interference microscopy, Biomed. Opt. Express 2 (2011) 1815.
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