New approach to optical diffraction tomography yielding a vector equation of diffraction tomography and a novel tomographic microscope

被引:335
作者
Lauer, V [1 ]
机构
[1] Lauer Opt & Traitement Signal, F-94130 Nogent Sur Marne, France
来源
JOURNAL OF MICROSCOPY-OXFORD | 2002年 / 205卷
关键词
diffraction; electric field; electromagnetic; frequency space holography; microscope; scattering; tomography; synthetic aperture; wave;
D O I
10.1046/j.0022-2720.2001.00980.x
中图分类号
TH742 [显微镜];
学科分类号
摘要
We first obtain a frequency-space equation of diffraction tomography for the electric field vector, within the first-order Born approximation, using a simplified formalism resulting from using three-dimensional spatial frequencies and replacing outgoing waves by linear combinations of homogeneous plane waves. A coherent optical diffraction tomographic microscope is then described, in which a sample is successively illuminated by a series of plane waves having different directions, each scattered wave is recorded by phase-shifting interferometry, and the object is then reconstructed from these recorded waves. The measurement process in this device is analysed taking into account the illuminating wave, the wave scattered by the sample, the reference wave, and the phase relations between these waves. This analysis yields appropriate equations that take into account the characteristics of the reference wave and compensate random phase shifts. It makes it possible to obtain a high-resolution three-dimensional frequency representation in full conformity with theory. The experimentally obtained representations show index and absorptivity with a resolution limit of about a quarter of a wavelength, and have a depth of field of about 40 mum.
引用
收藏
页码:165 / 176
页数:12
相关论文
共 23 条
[1]   Observation of biological objects using an optical diffraction tomographic microscope [J].
Lauer, V .
LASER MICROSCOPY, 2000, 4164 :122-133
[2]   Ultrabroadband Optical Diffraction Tomography [J].
Hormann, Martin ;
Camargo, Franco V. A. ;
van Hulst, Niek F. ;
Cerullo, Giulio ;
Liebel, Matz .
ACS PHOTONICS, 2024, 11 (09) :3680-3687
[3]   Hyperspectral optical diffraction tomography [J].
Jung, JaeHwang ;
Kim, Kyoohyun ;
Yoon, Jonghee ;
Park, YongKeun .
OPTICS EXPRESS, 2016, 24 (03) :2006-2012
[4]   QUANTITATIVE IMAGING BY OPTICAL DIFFRACTION TOMOGRAPHY [J].
WEDBERG, TC ;
STAMNES, JJ .
OPTICAL REVIEW, 1995, 2 (01) :28-31
[5]   Bayesian inversion for optical diffraction tomography [J].
Ayasso, H. ;
Duchene, B. ;
Mohammad-Djafari, A. .
JOURNAL OF MODERN OPTICS, 2010, 57 (09) :765-776
[6]   An improved particle-sizing approach based on optical diffraction tomography [J].
Ding, Chizhu ;
Yang, Kecheng ;
Li, Wei ;
Xia, Min ;
Tan, Dan .
EPL, 2013, 102 (04)
[7]   MEASUREMENTS OF ULTRASONIC FIELDS WITH OPTICAL DIFFRACTION TOMOGRAPHY [J].
HOLM, A ;
PERSSON, HW ;
LINDSTROM, K .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1991, 17 (05) :505-512
[8]   A new bridge technique for neutron tomography and diffraction measurements [J].
Burca, G. ;
James, J. A. ;
Kockelmann, W. ;
Fitzpatrick, M. E. ;
Zhang, S. Y. ;
Hovind, J. ;
van Langh, R. .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2011, 651 (01) :229-235
[9]   Optical diffraction tomography within a variational Bayesian framework [J].
Ayasso, H. ;
Duchene, B. ;
Mohammad-Djafari, A. .
INVERSE PROBLEMS IN SCIENCE AND ENGINEERING, 2012, 20 (01) :59-73
[10]   Optical Diffraction Tomography by Use of Optimization and Phase-Based Fidelity Criterion [J].
Smith-Dryden, Seth ;
Fan, Shengli ;
Saleh, Bahaa E. A. ;
Li, Guifang .
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2021, 27 (04)