Imaging ex vivo and in vitro brain morphology in animal models with ultrahigh resolution optical coherence tomography

被引:38
作者
Bizheva, K
Unterhuber, A
Hermann, B
Povazay, B
Sattmann, H
Drexler, W
Stingl, A
Le, T
Mei, M
Holzwarth, R
Reitsamer, HA
Morgan, JE
Cowey, A
机构
[1] Med Univ Vienna, Dept Med Phys, A-1090 Vienna, Austria
[2] Christian Doppler Lab Heterogene Katalyse, A-1090 Vienna, Austria
[3] FEMTOLASERS GmbH, A-1010 Vienna, Austria
[4] Menlosyst GmbH, D-80799 Munich, Germany
[5] Med Univ Vienna, Dept Physiol, A-1090 Vienna, Austria
[6] Univ Wales Hosp, Cardiff CF4 4XW, S Glam, Wales
关键词
optical coherence tomography; biomedical optics; medical imaging; brain imaging;
D O I
10.1117/1.1756920
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The feasibility of ultrahigh resolution optical coherence tomography (UHR OCT) to image ex vivo and in vitro brain tissue morphology on a scale from single neuron cells to a whole animal brain was investigated using a number of animal models. Sub-2-mum axial resolution OCT in biological tissue was achieved at different central wavelengths by separately interfacing two state-of-the-art broad bandwidth light sources (titanium:sapphire, Ti:Al2O3 laser, lambda(c) = 800 nm, Deltalambda = 260 nm, P-out = 50 mW and a fiber laser light source lambda(c) = 1350 nm, Deltalambda = 470 nm, P-out = 4 mW) to free-space or fiber-based OCT systems, designed for optimal performance in the appropriate wavelength regions. The ability of sub-2-mum axial resolution OCT to visualize intracellular morphology was demonstrated by imaging living ganglion cells in cultures. The feasibility of UHR OCT to image the globular structure of an entire animal brain as well as to resolve fine morphological features at various depths in it was tested by imaging a fixed honeybee brain. Possible degradation of OCT axial resolution with depth in optically dense brain tissue was examined by depositing microspheres through the blood stream to various depths in the brain of a living rabbit. It was determined that in the 1100 to 1600-nm wavelength range, OCT axial resolution was well preserved, even at depths greater than 500 mum, and permitted distinct visualization of microspheres 15 mum in diameter. In addition, the OCT image penetration depth and the scattering properties of gray and white brain matter were evaluated in tissue samples from the visual cortex of a fixed monkey brain. (C) 2004 American Institute of Physics.
引用
收藏
页码:719 / 724
页数:6
相关论文
共 32 条
[1]   BIOMEDICAL IMAGING MODALITIES - A TUTORIAL [J].
ACHARYA, R ;
WASSERMAN, R ;
STEVENS, J ;
HINOJOSA, C .
COMPUTERIZED MEDICAL IMAGING AND GRAPHICS, 1995, 19 (01) :3-25
[2]   Compact, broad-bandwidth fiber laser for sub-2-μm axial resolution optical coherence tomography in the 1300-nm wavelength region [J].
Bizheva, K ;
Povazay, B ;
Hermann, B ;
Sattmann, H ;
Drexler, W ;
Mei, M ;
Holzwarth, R ;
Hoelzenbein, T ;
Wacheck, V ;
Pehamberger, H .
OPTICS LETTERS, 2003, 28 (09) :707-709
[3]  
BIZHEVA K, 2000, WAVES IMAGING COMPLE, P277
[4]   Optical coherence tomography for neurosurgical imaging of human intracortical melanoma [J].
Boppart, SA ;
Brezinski, ME ;
Pitris, C ;
Fujimoto, JG .
NEUROSURGERY, 1998, 43 (04) :834-841
[5]  
Bouma B.E., 2002, Handbook of Optical Coherence Tomography
[6]   Investigation of dispersion effects in ocular media by multiple wavelength partial coherence interferometry [J].
Drexler, W ;
Hitzenberger, CK ;
Baumgartner, A ;
Findl, O ;
Sattmann, H ;
Fercher, AF .
EXPERIMENTAL EYE RESEARCH, 1998, 66 (01) :25-33
[7]   In vivo ultrahigh-resolution optical coherence tomography [J].
Drexler, W ;
Morgner, U ;
Kärtner, FX ;
Pitris, C ;
Boppart, SA ;
Li, XD ;
Ippen, EP ;
Fujimoto, JG .
OPTICS LETTERS, 1999, 24 (17) :1221-1223
[8]   Enhanced visualization of macular pathology with the use of ultrahigh-resolution optical coherence tomography [J].
Drexler, W ;
Sattmarin, H ;
Hermann, B ;
Ko, TH ;
Stur, M ;
Unterhuber, A ;
Scholda, C ;
Findl, O ;
Wirtitsch, M ;
Fujimoto, JG ;
Fercher, AF .
ARCHIVES OF OPHTHALMOLOGY, 2003, 121 (05) :695-706
[9]   Ultrahigh-resolution ophthalmic optical coherence tomography [J].
Drexler, W ;
Morgner, U ;
Ghanta, RK ;
Kärtner, FX ;
Schuman, JS ;
Fujimoto, JG .
NATURE MEDICINE, 2001, 7 (04) :502-507
[10]   Ultrahigh-resolution optical coherence tomography [J].
Drexler, W .
JOURNAL OF BIOMEDICAL OPTICS, 2004, 9 (01) :47-74