Chinese Journal of Lasers, Volume. 47, Issue 12, 1207002(2020)
OCT in vivo Three-Dimensional Visualization of Zebrafish Brains from Juvenile to Adult
[1] Li P P, Ma T, Zhang X et al. Enlightenment for China's brain science innovation from global brain projects[J]. Journal of Tongji University (Medical Science), 40, 397-401(2019).
[5] Huang C N, Zhang J J. Research progress on the application of zebrafish in central nervous system diseases[J]. Acta Laboratorium Animalis Scientia Sinica, 26, 392-397(2018).
[8] Randlett O, Wee C L, Naumann E A et al. Whole-brain activity mapping onto a zebrafish brain atlas[J]. Nature Methods, 12, 1039-1046(2015).
[9] Sun L, Du J L. Progress in brain neural connectomics[J]. Scientia Sinica (Vitae), 48, 253-265(2018).
[12] Huang D, Swanson E A, Lin C P et al. Optical coherence tomography[J]. Science, 254, 1178-1181(1991).
[13] Fercher A F, Drexler W, Hitzenberger C K et al. Optical coherence tomography——principles and applications[J]. Reports on Progress in Physics, 66, 239-303(2003).
[15] Yaqoob Z, Wu J G, Yang C. Spectral domain optical coherence tomography: a better OCT imaging strategy[J]. BioTechniques, 39, S6-S13(2005).
[19] Jang I K, Bouma B E, Kang D H et al. Visualization of coronary atherosclerotic plaques in patients using optical coherence tomography: comparison with intravascular ultrasound[J]. Journal of the American College of Cardiology, 39, 604-609(2002).
[20] Nassif N, Cense B, Park B H et al. In vivo high-resolution video-rate spectral-domain optical coherence tomography of the human retina and optic nerve[J]. Optics Express, 12, 367-376(2004).
[21] Østby Y, Tamnes C K, Fjell A M et al. Heterogeneity in subcortical brain development: a structural magnetic resonance imaging study of brain maturation from 8 to 30 years[J]. The Journal of Neuroscience, 29, 11772-11782(2009).
[22] Divakar Rao K, Alex A, Verma Y et al. Real-time in vivo imaging of adult zebrafish brain using optical coherence tomography[J]. Journal of Biophotonics, 2, 288-291(2009).
[23] Zhang J, Ge W, Yuan Z. In vivo three-dimensional characterization of the adult zebrafish brain using a 1325nm spectral-domain optical coherence tomography system with the 27 frame/s video rate[J]. Biomedical Optics Express, 6, 3932-3940(2015).
[25] Bai X, Qi Y M, Liang Y Z et al. Photoacoustic computed tomography with lens-free focused fiber-laser ultrasound sensor[J]. Biomedical Optics Express, 10, 2504-2512(2019).
[26] Seo E, Lim J, Seo S J et al. Whole-body imaging of a hypercholesterolemic female zebrafish by using synchrotron X-ray micro-CT[J]. Zebrafish, 12, 11-20(2015).
[27] Merrifield G D, Mullin J, Gallagher L et al. Rapid and recoverable in vivo magnetic resonance imaging of the adult zebrafish at 7T[J]. Magnetic Resonance Imaging, 37, 9-15(2017).
[28] Lin Y P, Chen T R, Mao G J et al. Long-term and in vivo assessment of Aβ protein-induced brain atrophy in a zebrafish model by optical coherence tomography[J]. Journal of Biophotonics, 13, e202000067(2020).
Get Citation
Copy Citation Text
Mao Guangjuan, Lin Yanping, Chen Tingru, Zhang Yiqing, Qiu Ting, Lan Yintao, Xiang Xiang, Fu Hongbo, Zhang Jian. OCT in vivo Three-Dimensional Visualization of Zebrafish Brains from Juvenile to Adult[J]. Chinese Journal of Lasers, 2020, 47(12): 1207002
Category: biomedical photonics and laser medicine
Received: Mar. 5, 2020
Accepted: --
Published Online: Nov. 17, 2020
The Author Email: Jian Zhang (jianzhang@gzhmu.edu.cn)