Three-dimensional scene reconstruction of partially occluded objects using digital holograms

Maycock J, McElhinney C, Hennelly B, Naughton T, McDonald J, Javidi B (2006)
Applied Optics 45(13): 2975-2985.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Maycock, JonathanUniBi; McElhinney, Conor; Hennelly, Bryan; Naughton, Thomas; McDonald, John; Javidi, Bahram
Abstract / Bemerkung
We propose a task-specific digital holographic capture system for three-dimensional scenes, which can reduce the amount of data sent from the camera system to the receiver and can effectively reconstruct partially occluded objects. The system requires knowledge of the object of interest, but it does not require a priori knowledge of either the occlusion or the distance the object is from the camera. Subwindows of the camera-plane Fresnel field are digitally propagated to reveal different perspectives of the scene, and these are combined to overcome the unknown foreground occlusions. The nature of the occlusions and the effect of subwindows are analyzed thoroughly by using the Wigner distribution function. We demonstrate that a careful combination of reconstructions from subwindows can reveal features that are not apparent in a reconstruction from the whole hologram. We provide results by using optically captured digital holograms of real-world objects and simulated occlusions.
Erscheinungsjahr
2006
Zeitschriftentitel
Applied Optics
Band
45
Ausgabe
13
Seite(n)
2975-2985
ISSN
0003-6935
eISSN
1539-4522
Page URI
https://pub.uni-bielefeld.de/record/2426156

Zitieren

Maycock J, McElhinney C, Hennelly B, Naughton T, McDonald J, Javidi B. Three-dimensional scene reconstruction of partially occluded objects using digital holograms. Applied Optics. 2006;45(13):2975-2985.
Maycock, J., McElhinney, C., Hennelly, B., Naughton, T., McDonald, J., & Javidi, B. (2006). Three-dimensional scene reconstruction of partially occluded objects using digital holograms. Applied Optics, 45(13), 2975-2985. https://doi.org/10.1364/ao.45.002975
Maycock, Jonathan, McElhinney, Conor, Hennelly, Bryan, Naughton, Thomas, McDonald, John, and Javidi, Bahram. 2006. “Three-dimensional scene reconstruction of partially occluded objects using digital holograms”. Applied Optics 45 (13): 2975-2985.
Maycock, J., McElhinney, C., Hennelly, B., Naughton, T., McDonald, J., and Javidi, B. (2006). Three-dimensional scene reconstruction of partially occluded objects using digital holograms. Applied Optics 45, 2975-2985.
Maycock, J., et al., 2006. Three-dimensional scene reconstruction of partially occluded objects using digital holograms. Applied Optics, 45(13), p 2975-2985.
J. Maycock, et al., “Three-dimensional scene reconstruction of partially occluded objects using digital holograms”, Applied Optics, vol. 45, 2006, pp. 2975-2985.
Maycock, J., McElhinney, C., Hennelly, B., Naughton, T., McDonald, J., Javidi, B.: Three-dimensional scene reconstruction of partially occluded objects using digital holograms. Applied Optics. 45, 2975-2985 (2006).
Maycock, Jonathan, McElhinney, Conor, Hennelly, Bryan, Naughton, Thomas, McDonald, John, and Javidi, Bahram. “Three-dimensional scene reconstruction of partially occluded objects using digital holograms”. Applied Optics 45.13 (2006): 2975-2985.

12 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Three-Dimensional Imaging by Self-Reference Single-Channel Digital Incoherent Holography.
Rosen J, Kelner R., IEEE Trans Industr Inform 12(4), 2016
PMID: 28757811
Overview of compressive sensing techniques applied in holography [Invited].
Rivenson Y, Stern A, Javidi B., Appl Opt 52(1), 2013
PMID: 23292420
Phase-space window and degrees of freedom of optical systems with multiple apertures.
Ozaktas HM, Oktem FS., J Opt Soc Am A Opt Image Sci Vis 30(4), 2013
PMID: 23595329
Recovery of partially occluded objects by applying compressive Fresnel holography.
Rivenson Y, Rot A, Balber S, Stern A, Rosen J., Opt Lett 37(10), 2012
PMID: 22627561
Extended focused imaging for digital holograms of macroscopic three-dimensional objects.
McElhinney CP, Hennelly BM, Naughton TJ., Appl Opt 47(19), 2008
PMID: 18594582
Depth-independent segmentation of macroscopic three-dimensional objects encoded in single perspectives of digital holograms.
McElhinney CP, McDonald JB, Castro A, Frauel Y, Javidi B, Naughton TJ., Opt Lett 32(10), 2007
PMID: 17440543
Reduction of speckle in digital holography by discrete Fourier filtering.
Maycock J, Hennelly BM, McDonald JB, Frauel Y, Castro A, Javidi B, Naughton TJ., J Opt Soc Am A Opt Image Sci Vis 24(6), 2007
PMID: 17491629
Three-dimensional color object visualization and recognition using multi-wavelength computational holography.
Yeom S, Javidi B, Ferraro P, Alfieri D, Denicola S, Finizio A., Opt Express 15(15), 2007
PMID: 19547286

21 References

Daten bereitgestellt von Europe PubMed Central.

Optimal watermarking of digital hologram of 3-D object.
Kim H, Lee Y., Opt Express 13(8), 2005
PMID: 19495183
A new microscopic principle.
GABOR D., Nature 161(4098), 1948
PMID: 18860291

Goodman, Appl. Phys. Lett. 11(), 1967
Digital wavefront measuring interferometer for testing optical surfaces and lenses.
Bruning JH, Herriott DR, Gallagher JE, Rosenfeld DP, White AD, Brangaccio DJ., Appl Opt 13(11), 1974
PMID: 20134757
Phase-shifting digital holography.
Yamaguchi I, Zhang T., Opt Lett 22(16), 1997
PMID: 18185816

Onural, Opt. Eng. 26(), 1987
Three-dimensional object recognition by use of digital holography.
Javidi B, Tajahuerce E., Opt Lett 25(9), 2000
PMID: 18064126
Distortion-tolerant three-dimensional object recognition with digital holography.
Frauel Y, Tajahuerce E, Castro MA, Javidi B., Appl Opt 40(23), 2001
PMID: 18360422
Compression of digital holograms for three-dimensional object reconstruction and recognition.
Naughton TJ, Frauel Y, Javidi B, Tajahuerce E., Appl Opt 41(20), 2002
PMID: 12141512
Efficient compression of fresnel fields for Internet transmission of three-dimensional images.
Naughton TJ, McDonald JB, Javidi B., Appl Opt 42(23), 2003
PMID: 13678360

Naughton, Opt. Eng. 43(), 2004
Real-time three-dimensional object reconstruction by use of a phase-encoded digital hologram.
Matoba O, Naughton TJ, Frauel Y, Bertaux N, Javidi B., Appl Opt 41(29), 2002
PMID: 12389988
Encrypting three-dimensional information with digital holography.
Tajahuerce E, Javidi B., Appl Opt 39(35), 2000
PMID: 18354673

Lohmann, J. Opt. Soc. Am. A 10(), 1993

Lohmann, J. Opt. Soc. Am. A 13(), 1996
Sampling in the light of Wigner distribution.
Stern A, Javidi B., J Opt Soc Am A Opt Image Sci Vis 21(3), 2004
PMID: 15005400

Stern, J. Opt. Soc. Am. A 21(), 2004

Hennelly, J. Opt. Soc. Am. A 21(), 2005

Román-Moreno, Mex. Fis. 49(), 2003
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 16639445
PubMed | Europe PMC

Suchen in

Google Scholar