Zugriffsnummer 20231
Dokumenttyp Konferenzartikel
Peer Review unbekannt
Sprache Englisch
Titel Reconstruction of absorption and fluorescence contrast for scanning time-domain fluorescence mammography
Autor(in); Institution
Ziegler, R.; Philips Research Labs., USA
Nielsen, T.; Philips Research Labs., USA
Köhler, T.; Philips Research Labs., USA
Grosenick, Dirk; 8.3, Biomedizinische Optik, PTB-Berlin
Steinkellner, Oliver; 8.3, Biomedizinische Optik, PTB-Berlin
Hagen, Axel; 8.3, Biomedizinische Optik, PTB-Berlin
Macdonald, Rainer; 8.3, Biomedizinische Optik, PTB-Berlin
Rinneberg, Herbert; PTB-Berlin, retired staff
Quelle/Jahr Optical tomography and spectroscopy of tissue VII:(2007), 64340H-1 - 64340H-11
Schriftenreihe Progress in biomedical optics and imaging: 8,11 ; Proceedings of SPIE: 6434
Herausgeber(in)
Chance, Britton
ISSN 1605-7422
ISBN 978-0-8194-6547-4
DOI
Verlag Bellingham, Wash.: SPIE
Konferenzangaben Biomedical Optics 2007, Optical Tomography and Spectroscopy of Tissue VII (Photonics West 2007), San Jose, 20-25, January, 2007, USA
Zusammenfassung We report on the reconstruction of absorption and fluorescence from measured time-domain diffuse reflectance and transmittance of laser and fluorescence radiation. Measurements were taken on slab-like, diffusely scattering and fluorescent phantoms containing fluorescent inhomogeneities, using fs laser pulses (λ = 730 nm) and time correlated single photon counting. The source was scanned across the entrance face of the phantom, and at each source position data were collected in transmission and reflection at various detector positions. These measurements simulate in vivo data that will be obtained employing a scanning, time-domain fluorescence mammograph, where the breast is gently compressed between two parallel glass plates, and source and detector optical fibers scan synchronously at various source-detector offsets, allowing to record laser and fluorescence mammograms. The diffusion equations for the propagation of the laser and fluorescence radiation were solved in frequency domain by the finite element method. Measured time-resolved phantom data were Fourier-transformed to frequency domain prior to image reconstruction. Signal-to-noise ratios were high enough to use several data sets simultaneously in the reconstruction process belonging to various modulation frequencies up to several hundred MHz. To obtain the spatial distribution of the fluorescent contrast agent the Born approximation of the fluorescence diffusion equation was used.

Zitierung

Ziegler, R., Nielsen, T., Köhler, T., Grosenick, D., Steinkellner, O., Hagen, A., Macdonald, R., & Rinneberg, H. (2007). Reconstruction of absorption and fluorescence contrast for scanning time-domain fluorescence mammography. Biomedical Optics 2007, Optical Tomography and Spectroscopy of Tissue VII (Photonics West 2007), San Jose, 20-25, January, 2007, USA. https://doi.org/10.1117/12.700860

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