Biomedical Engineering Reference
In-Depth Information
[57] B. Kemper, G. von Bally, Digital holographic microscopy for live cell applications and technical
inspection, Appl. Opt. 47 (2008) A52 A61.
[58] L. Miccio, A. Finizio, R. Puglisi, D. Balduzzi, A. Galli, P. Ferraro, Dynamic DIC by digital holography
microscopy for enhancing phase-contrast visualization, Biomed. Opt. Express 2 (2011) 331 344.
[59] N.T. Shaked, Y. Zhu, M.T. Rinehart, A. Wax, Two-step-only phase-shifting interferometry with
optimized detector bandwidth for microscopy of live cells, Opt. Express 17 (2009) 15585 15591.
[60] C.A. Sciammarella, F.M. Sciammarella, Measurement of mechanical properties of materials in the
micrometer range using electronic holographic moire´, Opt. Eng. 42 (2003) 1215
1222.
[61] 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) 744 746.
[62] F. Dubois, C. Yourassowsky, N. Callens, C. Minetti, P. Queeckers, T. Podgorski, et al., Digital
holographic microscopy working with a partially spatial coherent source, in: P. Ferraro, A. Wax,
Z. Zalevsky (Eds.), Coherent Light Microscopy, Springer, Berlin, Heidelberg, 2011, pp. 31 59.
[63] D.J. Brady, Optical Imaging and Spectroscopy, John Wiley & Sons, Inc., Hoboken, NJ, 2009.
[64] W.S. Haddad, D. Cullen, J.C. Solem, J.W. Longworth, A. McPherson, K. Boyer, et al., Fourier-transform
holographic microscope, Appl. Opt. 31 (1992) 4973 4978.
[65] W. Xu, M.H. Jericho, I.A. Meinertzhagen, H.J. Kreuzer, Digital in-line holography for biological
applications, Proc. Natl. Acad. Sci. U.S.A. 98 (2001) 11301 11305.
[66] G. Pedrini, H.J. Tiziani, Short-coherence digital microscopy by use of a lensless holographic imaging
system, Appl. Opt. 41 (2002) 4489 4496.
[67] L. Repetto, E. Piano, C. Pontiggia, Lensless digital holographic microscope with light-emitting diode
illumination, Opt. Lett. 29 (2004) 1132 1134.
[68] J. Garcia-Sucerquia, W. Xu, M.H. Jericho, H.J. Kreuzer, Immersion digital in-line holographic
microscopy, Opt. Lett. 31 (2006) 1211 1213.
[69] G. Situ, J.T. Sheridan, Holography: an interpretation from the phase-space point of view, Opt. Lett. 32
(2007) 3492 3494.
[70] G.C. Sherman, Application of the convolution theorem to Rayleigh's integral formulas, J. Opt. Soc. Am.
57 (1967) 546 547.
[71] G. Koren, F. Polack, D. Joyeux, Iterative algorithms for twin-image elimination in in-line holography
using finite-support constraints, J. Opt. Soc. Am. A. 10 (1993) 423 433.
[72]
J.R. Fienup, Reconstruction of an object from the modulus of its Fourier transform, Opt. Lett. 3 (1978)
27
29.
[73] T. Lindeberg, Edge detection and ridge detection with automatic scale selection, Int. J. Comput. Vis. 30
(1998) 117 156.
[74] T.-W. Su, S.O. Isikman, W. Bishara, D. Tseng, A. Erlinger, A. Ozcan, Multi-angle lensless digital
holography for depth resolved imaging on a chip, Opt. Express 18 (2010) 9690 9711.
[75] A. Chawla, Vasectomy follow-up: clinical significance of rare nonmotile sperm in postoperative semen
analysis, Urology 64 (2004) 1212 1215.
[76] N.B. Dhar, A. Bhatt, J.S. Jones, Determining the success of vasectomy, BJU Int. 97 (2006) 773 776.
[77] W. Bishara, U. Sikora, O. Mudanyali, T.-W. Su, O. Yaglidere, S. Luckhart, et al., Holographic pixel
super-resolution in portable lensless on-chip microscopy using a fiber-optic array, Lab. Chip. 11 (2011)
1276 1279.
[78] S.E.M. Lewis, Is sperm evaluation useful in predicting human fertility? Reproduction 134 (2007) 31 40.
Search WWH ::




Custom Search