Noninvasive, in vivo imaging of subcortical mouse brain regions with 1.7 μm optical coherence tomography

被引:107
|
作者
Chong, Shau Poh [1 ]
Merkle, Conrad W. [1 ]
Cooke, Dylan F. [2 ,3 ]
Zhang, Tingwei [1 ]
Radhakrishnan, Harsha [1 ]
Krubitzer, Leah [2 ,3 ]
Srinivasan, Vivek J. [1 ]
机构
[1] Univ Calif Davis, Dept Biomed Engn, Davis, CA 95616 USA
[2] Univ Calif Davis, Dept Psychol, Davis, CA 95616 USA
[3] Univ Calif Davis, Ctr Neurosci, Davis, CA 95616 USA
基金
美国国家卫生研究院;
关键词
2-PHOTON MICROSCOPY; MULTIPLE-SCATTERING; TISSUE; DEPTH; ANGIOGRAPHY; CONTRAST; SKULL;
D O I
10.1364/OL.40.004911
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A spectral/Fourier domain optical coherence tomography (OCT) intravital microscope using a supercontinuum light source at 1.7 mu m was developed to study subcortical structures noninvasively in the living mouse brain. The benefits of 1.7 mu m for deep tissue brain imaging are demonstrated by quantitatively comparing OCT signal attenuation characteristics of cortical tissue across visible and near-infrared wavelengths. Imaging of hippocampal tissue architecture and white matter microvasculature are demonstrated in vivo through thinned-skull, glass coverslip-reinforced cranial windows in mice. Applications of this novel platform include monitoring disease progression and pathophysiology in rodent models of Alzheimer's disease and subcortical dementias, including vascular dementia. (C) 2015 Optical Society of America
引用
收藏
页码:4911 / 4914
页数:4
相关论文
共 50 条
  • [31] In vivo imaging of biological tissues using 1.3 mu m optical coherence tomography
    Pan, YT
    Farkas, DL
    FUNCTIONAL IMAGING AND OPTICAL MANIPULATION OF LIVING CELLS, PROCEEDINGS OF, 1997, 2983 : 93 - 100
  • [32] Optical coherence tomography for ultrahigh resolution in vivo imaging
    James G Fujimoto
    Nature Biotechnology, 2003, 21 : 1361 - 1367
  • [33] Porcine coronary imaging in vivo by optical coherence tomography
    Tearney, GJ
    Jang, IK
    Kang, DH
    Aretz, HT
    Houser, SL
    Brady, TJ
    Schlendorf, K
    Shishkov, M
    Bouma, BE
    ACTA CARDIOLOGICA, 2000, 55 (04) : 233 - 237
  • [34] Optical coherence tomography for ultrahigh resolution in vivo imaging
    Fujimoto, JG
    NATURE BIOTECHNOLOGY, 2003, 21 (11) : 1361 - 1367
  • [35] In vivo imaging of microvasculature using optical coherence tomography
    Vakoc, B. J.
    Lanning, R. M.
    Tyrrell, J. A.
    Padera, T. P.
    Bartlett, L. A.
    Stylianopoulos, T.
    Munn, L. L.
    Tearney, G. J.
    Fukumura, D.
    Jain, R. K.
    Bouma, B. E.
    2010 IEEE PHOTONICS SOCIETY WINTER TOPICALS MEETING SERIES, 2010, : 59 - 60
  • [36] Noninvasive photoacoustic computed tomography of mouse brain metabolism in vivo
    Yao, Junjie
    Xia, Jun
    Maslov, Konstantin I.
    Nasiriavanaki, Mohammadreza
    Tsytsarev, Vassiliy
    Demchenko, Alexei V.
    Wang, Lihong V.
    NEUROIMAGE, 2013, 64 : 257 - 266
  • [37] Noninvasive in vivo structural and vascular imaging of human oral tissues with spectral domain optical coherence tomography
    Davoudi, Bahar
    Lindenmaier, Andras
    Standish, Beau A.
    Allo, Ghassan
    Bizheva, Kostadinka
    Vitkin, Alex
    BIOMEDICAL OPTICS EXPRESS, 2012, 3 (05): : 826 - 839
  • [38] Noninvasive Photoacoustic Computed Tomography of Mouse Brain Metabolism In Vivo
    Yao, Junjie
    Xia, Jun
    Maslov, Konstantin I.
    Nasiriavanaki, Mohammadreza
    Tsytsarev, Vassiliy
    Demchenko, Alexei V.
    Wang, Lihong V.
    PHOTONS PLUS ULTRASOUND: IMAGING AND SENSING 2013, 2013, 8581
  • [39] Noninvasive Functional Imaging of Tissue Abnormalities Using Optical Coherence Tomography
    Larin, Kirill V.
    Tuchin, Valery V.
    Morrisett, Joel D.
    Ghosn, Mohamad G.
    2010 IEEE SENSORS, 2010, : 2283 - 2286
  • [40] Optical Doppler tomography for noninvasive imaging of in vivo blood flow
    Chen, ZP
    Milner, TE
    Srinivas, S
    Lindmo, T
    Dave, D
    Nelson, JS
    COHERENCE DOMAIN OPTICAL METHODS IN BIOMEDICAL SCIENCE AND CLINICAL APPLICATIONS, PROCEEDINGS OF, 1997, 2981 : 112 - 118