PhotoniX, Volume. 3, Issue 1, 30(2022)
Multi-focus light-field microscopy for high-speed large-volume imaging
[3] [3] Fan JL, Rivera JA, Sun W, Peterson J, Haeberle H, Rubin S, et al. High-speed volumetric two-photon fluorescence imaging of neurovascular dynamics. Nat Commun. 2020. .
[4] [4] Chen Z, Özbek A, Rebling J, Zhou Q, Deán-Ben XL, Razansky D. Multifocal structured illumination optoacoustic microscopy. Light Sci Appl. 2020. .
[5] [5] Winkelmann JA, Eid A, Spicer G, Almassalha LM, Nguyen TQ, Backman V. Spectral contrast optical coherence tomography angiography enables single-scan vessel imaging. Light Sci Appl. 2019. .
[8] [8] Chakraborty T, Chen B, Daetwyler S, Chang BJ, Vanderpoorten O, Sapoznik E, et al. Converting lateral scanning into axial focusing to speed up three-dimensional microscopy. Light Sci Appl. 2020. .
[10] [10] Liu TL, Upadhyayula S, Milkie DE, et al. Observing the cell in its native state: imaging subcellular dynamics in multicellular organisms. Science. 2018. .
[18] [18] Wu J, Guo Y, Deng C et al. An integrated imaging sensor for aberration-corrected 3D photography. Nature. 2022.
[21] [21] Cong L, Wang Z, Chai Y, Hang W, Shang C, Yang W, et al. Rapid whole brain imaging of neural activity in freely behaving larval zebrafish ( Danio rerio). Elife. 2017. .
[25] [25] Bo E, Ge X, Luo Y, et al. Cellular-resolution in vivo tomography in turbid tissue through digital aberration correction. .
[26] [26] Huang L, Chen H, Luo Y, Rivenson Y, Ozcan A. Recurrent neural network-based volumetric fluorescence microscopy. Light Sci Appl. 2021. .
[27] [27] Zhang Y, Lu Z, Wu J, et al. Computational optical sectioning with an incoherent multiscale scattering model for light-field microscopy. Nat Commun. 2021. .
[28] [28] Park J, Papoutsi A, Ash RT, Marin MA, Poirazi P, Smirnakis SM. Contribution of apical and basal dendrites to orientation encoding in mouse V1 L2/3 pyramidal neurons. Nat Commun. 2019. .
[29] [29] Zhou P, Resendez SL, Rodriguez-Romaguera J, et al. Efficient and accurate extraction of in vivo calcium signals from microendoscopic video data. Elife. 2018. .
[31] [31] Liu C, Adelson EH, Wilson D. Beyond pixels: exploring new representations and applications for motion analysis; 2009.
[33] [33] Li X, Zhang G, Qiao H, et al. Unsupervised content-preserving transformation for optical microscopy. Light Sci Appl. 2021. .
[34] [34] Zhu J-Y, Park T, Isola P, Efros AA, Research BA. Unpaired image-to-image translation using cycle-consistent adversarial networks. In: Proceedings of the IEEE international conference on computer vision; 2017. p. 2223–32.
[35] [35] Li X, Li Y, Zhou Y, et al. Real-time denoising enables high-sensitivity fluorescence time-lapse imaging beyond the shot-noise limit. Nat Biotechnol. 2022. .
[40] [40] Boyd S, Parikh N, Chu E, Peleato B, Eckstein J. Distributed optimization and statistical learning via the alternating direction method of multipliers. Foundations and trends®. Mach Learn. 2011;3:1–122.
[41] [41] Ronneberger O, Fischer P, Brox T. U-net: convolutional networks for biomedical image segmentation. In: Lecture notes in computer science (including subseries lecture notes in artificial intelligence and lecture notes in bioinformatics): Springer Verlag; 2015. p. 234–41.
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Yi Zhang, Yuling Wang, Mingrui Wang, Yuduo Guo, Xinyang Li, Yifan Chen, Zhi Lu, Jiamin Wu, Xiangyang Ji, Qionghai Dai. Multi-focus light-field microscopy for high-speed large-volume imaging[J]. PhotoniX, 2022, 3(1): 30
Category: Research Articles
Received: Aug. 14, 2022
Accepted: Nov. 14, 2022
Published Online: Jul. 10, 2023
The Author Email: Jiamin Wu (wujiamin@tsinghua.edu.cn), Xiangyang Ji (xyji@tsinghua.edu.cn), Qionghai Dai (qhdai@tsinghua.edu.cn)