Biomedical Engineering Reference
In-Depth Information
[5] R.M. Willett, R.F. Marcia, J.M. Nichols, Compressed sensing for practical optical imaging systems:
a tutorial, Opt. Eng. 50 (2011) 072601-1 072601-13.
[6] W.J. Lukosz, Optical systems with resolving powers exceeding the classical limit, J. Opt. Soc. Am. 56
(1966) 1463 1472.
[7] D. Shapiro, P. Thibault, T. Beetz, V. Elser, M. Howells, C. Jacobsen, et al., Biological imaging by soft
x-ray diffraction microscopy, Proc. Natl. Acad. Sci. USA 102 (2005) 15343 15346.
[8] S. Gazit, A. Szameit, Y.C. Eldar, M. Segev, Super-resolution and reconstruction of sparse sub-wavelength
images, Opt. Express 17 (2009) 23920
23946.
[9] S.W. Hell, J. Wichmann, Breaking the diffraction resolution limit by stimulated emission: stimulated-
emission-depletion fluorescence microscopy, Opt. Lett. 19 (1994) 780 782.
[10] X. Zuang, Nano-maging with STORM, Nat. Photonics 3 (2009) 365 367.
[11] A. Lipson, S.G. Lipson, H. Lipson, Optical Physics, fourth ed., Cambridge University Press, Cambridge,
2011.
[12] A. Lewis, M. Isaacson, A. Harootunian, A. Murray, Development of a 500 ˚ resolution light microscope,
Ultramicroscopy 13 (1984) 227 230.
[13] M. Vaez-Iravani, F.L Toledo-Crow, Phase contrast and amplitude pseudoheterodyne interference near
field scanning optical microscopy, Appl. Phys. Lett. 62 (1992) 1044 1046.
[14] D. Sayre, H.N. Chapman, J. Miao., On the extendibility of X-ray crystallography to non-crystals, Acta
Cryst. A54 (1998) 232 239.
[15] R.W. Gershberg, W.O. Saxton, A practical algorithm for the determination of phase from image and
diffraction plane pictures, Optik 35 (1972) 237 246.
[16] H.A. Hauptmann, The phase problem of X-ray crystallography, Rep. Prog. Phys. 54 (1991) 1427 1454.
[17] R.H.T. Bates, Fourier phase problems are uniquely solvable in more than one dimension, I: underlying
theory, Optik 61 (1982) 247 262.
[18] D.L. Donoho, I.M. Johnstone, J.C. Hoch, A.S. Stern, Maximum entropy and the nearly black object, J. R.
Stat. Soc. B54 (1992) 41 81.
[19] J. H ¨ gbom, Aperture synthesis with a non-regular distribution of interferometer baselines, Astron.
Astrophys. Suppl. Ser. 15 (1974) 417 426.
[20] J.L. Starck, E. Pantin, F. Murtagh, Deconvolution in astronomy: a review, Publ. Astr. Soc. Pac. 800
(2002) 1051 1069.
[21] M. Ben-Levy, E. Pelac, E. Imaging measurement system. 1997, patent WO/1997/006509
[22] R. Heintzmann, C. Cremer, Laterally modulated excitation microscopy: improvement of resolution by
using a diffraction grating, Proc. SPIE 3568 (1998) 185
195.
[23] M.G.L. Gustafsson, Surpassing the lateral resolution limit by a factor of two using structured illumination
microscopy, J. Microsc. 198 (2000) 82 87.
[24] M.G. Somekh, K. Hsu, M.C. Pitter, Effect of processing strategies on the stochastic transfer function in
structured illumination Microscopy, J.Opt. Soc. Am. A28 (2011) 1925 1934.
[25] A. Gur, D. Fixler, V. Mic, J. Garcia, Z. Zalevsky, Linear optics based nanoscopy, Opt. Express 18 (2010)
22223 22231.
Search WWH ::




Custom Search