[1] Zhao H X, Guo Y, Li P M et al. Investigation of single-pixel imaging in signal-to-noise ratio and its development at special wavelength[J]. Laser & Optoelectronics Progress, 58, 1011010(2021).
[2] Nakano A. Spinning-disk confocal microscopy: a cutting-edge tool for imaging of membrane traffic[J]. Cell Structure and Function, 27, 349-355(2002).
[3] Pittman T B, Shih Y H, Strekalov D V et al. Optical imaging by means of two-photon quantum entanglement[J]. Physical Review A, 52, R3429-R3432(1995).
[4] Valencia A, Scarcelli G, D’Angelo M et al. Two-photon imaging with thermal light[J]. Physical Review Letters, 94, 063601(2005).
[5] Shapiro J H. Computational ghost imaging[J]. Physical Review A, 78, 061802(2008).
[6] Ferri F, Magatti D, Lugiato L A et al. Differential ghost imaging[J]. Physical Review Letters, 104, 253603(2010).
[7] Sun B Q, Welsh S S, Edgar M P et al. Normalized ghost imaging[J]. Optics Express, 20, 16892-16901(2012).
[8] Duarte M F, Davenport M A, Takhar D et al. Single-pixel imaging via compressive sampling[J]. IEEE Signal Processing Magazine, 25, 83-91(2008).
[9] Sun B, Edgar M P, Bowman R et al. 3D computational imaging with single-pixel detectors[J]. Science, 340, 844-847(2013).
[10] Sun M J, Huang J Y, Penuelas J. Suppressing the noise in binarized Fourier single-pixel imaging utilizing defocus blur[J]. Optics and Lasers in Engineering, 108, 15-18(2018).
[11] Zhang Z B, Wang X Y, Zheng G A et al. Fast Fourier single-pixel imaging via binary illumination[J]. Scientific Reports, 7, 12029(2017).
[12] Bian L H, Suo J L, Hu X M et al. Efficient single pixel imaging in Fourier space[J]. Journal of Optics, 18, 085704(2016).
[13] Jiang H Z, Zhu S G, Zhao H J et al. Adaptive regional single-pixel imaging based on the Fourier slice theorem[J]. Optics Express, 25, 15118-15130(2017).
[14] Huang J, Shi D F, Yuan K E et al. Computational-weighted Fourier single-pixel imaging via binary illumination[J]. Optics Express, 26, 16547-16559(2018).
[15] Zhang Z B, Liu S J, Peng J Z et al. Simultaneous spatial, spectral, and 3D compressive imaging via efficient Fourier single-pixel measurements[J]. Optica, 5, 315-319(2018).
[16] Xu B J, Jiang H Z, Zhao H J et al. Projector-defocusing rectification for Fourier single-pixel imaging[J]. Optics Express, 26, 5005-5017(2018).
[17] Yu W K, Tang F Y, Wang S F et al. Dynamic single-pixel imaging[J]. Laser & Optoelectronics Progress, 58, 1011013(2021).
[18] Zhang Z B, Ma X, Zhong J G. Single-pixel imaging by means of Fourier spectrum acquisition[J]. Nature Communications, 6, 6225(2015).
[19] Zhang Z B, Wang X Y, Zheng G A et al. Hadamard single-pixel imaging versus Fourier single-pixel imaging[J]. Optics Express, 25, 19619-19639(2017).
[20] Zhong J G, Yao M H, Peng J Z. Progress in computational Fourier microscopy[J]. Laser & Optoelectronics Progress, 58, 1811009(2021).
[21] Meng W W, Shi D F, Huang J et al. Sparse Fourier single-pixel imaging[J]. Optics Express, 27, 31490-31503(2019).
[22] Weng J W, Ouyang H Y, Yang C P. Single pixel imaging based on fringe projection with amplitude spatial modulation[J]. Acta Optica Sinica, 41, 1511003(2021).
[23] Wang Z R, Zhao W J, Zhai A P et al. DQN based single-pixel imaging[J]. Optics Express, 29, 15463-15477(2021).
[24] Wang Z, Bovik A C, Sheikh H R et al. Image quality assessment: from error visibility to structural similarity[J]. IEEE Transactions on Image Processing, 13, 600-612(2004).
[25] Zhang K Y, Cao J, Zhang F H et al. Fourier single-pixel imaging based on lateral inhibition for low-contrast scenes[J]. IEEE Photonics Journal, 11, 6901711(2019).
[26] Zhang Z B, Su Z J, Deng Q W et al. Lensless single-pixel imaging by using LCD: application to small-size and multi-functional scanner[J]. Optics Express, 27, 3731-3745(2019).
[27] Qi Y, Heng L Z, Li L et al. Hadamard transform-based hyperspectral imaging using a single-pixel detector[J]. Optics Express, 28, 16126-16139(2020).
[28] Li M F, Yan L, Yang R et al. Fast single-pixel imaging based on optimized reordering Hadamard basis[J]. Acta Physica Sinica, 68, 064202(2019).
[29] Liu B L, Yang Z H, Liu X et al. Coloured computational imaging with single-pixel detectors based on a 2D discrete cosine transform[J]. Journal of Modern Optics, 64, 259-264(2017).
[30] Guo Q, Chen H W, Wang Y X et al. High-speed real-time image compression based on all-optical discrete cosine transformation[J]. Proceedings of SPIE, 10076, 100760E(2017).
[31] Chen Y, Liu S, Yao X R et al. Discrete cosine single-pixel microscopic compressive imaging via fast binary modulation[J]. Optics Communications, 454, 124512(2020).
[32] Zhou Y, Zhang H W, Zhong F et al. Iterative denoising of ghost imaging based on adaptive threshold method[J]. Acta Physica Sinica, 67, 244201(2018).
[33] Jiang H Z, Zhu S G, Zhao H J et al. Adaptive regional single-pixel imaging based on the Fourier slice theorem[J]. Optics Express, 25, 15118-15130(2017).
[34] Phillips D B, Sun M J, Taylor J M et al. Adaptive foveated single-pixel imaging with dynamic supersampling[J]. Science Advances, 3, e1601782(2017).
[35] Rousset F, Ducros N, Farina A et al. Adaptive basis scan by wavelet prediction for single-pixel imaging[J]. IEEE Transactions on Computational Imaging, 3, 36-46(2017).