Computer Science ›› 2024, Vol. 51 ›› Issue (8): 224-231.doi: 10.11896/jsjkx.230500038
• Computer Graphics & Multimedia • Previous Articles Next Articles
HE Zhilin1,2, GU Tianhao1,2, XU Guanhua1
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[1]LAWRENCE N,JORDAN M.Semi-supervised learning viaGaussian processes [J].Advances in Neural Information Processing Systems,2004,17:753-760. [2]WANG T C,LIU M Y,ZHU J Y,et al.High-resolution image synthesis and semantic manipulation with conditional gans[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2018:8798-8807. [3]PARK T,LIU M Y,WANG T C,et al.Semantic image synthesis with spatially-adaptive normalization[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2019:2337-2346. [4]KARRAS T,LAINE S,AILA T.A style-based generator architecture for generative adversarial networks[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2019:4401-4410. [5]ENDO Y,KANAMORI Y.Few-shot semantic image synthesisusing stylegan prior [J].arXiv:2103.14877,2021. [6]OJHA U,LI Y,LU J,et al.Few-shot image generation viacross-domain correspondence[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2021:10743-10752. [7]ROBB E,CHU W S,KUMAR A,et al.Few-shot Adaptation of Generative Adversarial Net-works[J].arXiv:2010.11943,2020. [8]BAZAZIAN D,CALWAY A,DAMEN D.Dual-Domain ImageSynthesis using Segmenta-tion-Guided GAN[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2022:506-515. [9]LEE C H,LIU Z,WU L,et al.Maskgan:Towards diverse and interactive facial image manipulation[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2020:5549-5558. [10]YU F,SEFF A,ZHANG Y,et al.Lsun:Construction of a large-scale image dataset using deep learning with humans in the loop [J].arXiv:1506.03365,2015. [11]GARCIA-GARCIA A,ORTS-ESCOLANO S,OPREA S,et al.A review on deep learning techniques applied to semantic segmentation [J].arXiv:1704.06857,2017. [12]HEUSEL M,RAMSAUER H,UNTERTHINER T,et al.Gans trained by a two time-scale update rule converge to a local nash equilibrium [J].Advances in Neural Information Processing Systems,2017,30:6626-6637. [13]LIU H,BROCK A,SIMONYAN K,et al.Evolving normalization-activation layers [J].Advances in Neural Information Processing Systems,2020,33:13539-13550. [14]WANG Y,CHEN Y C,ZHANG X,et al.Attentive normalization for conditional image generation[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2020:5094-5103. [15]ZHU J C,GAO L L,SONG J K,et al.Label-Guided Generative Adversarial Network for Realistic Image Synthesis [J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2023,45(3):3311-3328. [16]HUANG X,BELONGIE S.Arbitrary style transfer in real-time with adaptive instance normalization[C]//Proceedings of the IEEE International Conference on Computer Vision.New York:IEEE Press,2017:1501-1510. [17]KARRAS T,LAINE S,AITTALA M,et al.Analyzing and improving the image quality of stylegan[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2020:8110-8119. [18]PARK T,LIU M Y,WANG T C,et al.Gaugan:semantic image synthesis with spatially adaptive normalization[C]//International Conference on Computer Graphics and Interactive Techniques.ACM,2019. [19]LIU M Y,HUANG X,MALLYA A,et al.Few-shot unsupervised image-to-image translation[C]//Proceedings of the IEEE International Conference on Computer Vision.New York:IEEE Press,2019:10551-10560. [20]SAITO K,SAENKO K,LIU M Y.Coco-funit:Few-shot unsupervised image translation with a content conditioned style encoder[C]//Proceedings of Computer Vision-ECCV 2020.Berlin:Springer,2020:382-398. [21]LI X X,AN W J,WU J J,et al.Channel attention bilinear metric network[J].Journal of Jilin University(Engineering and Technology Edition),2024,54(2):524-532. [22]PIZZATI F,LALONDE J F,DE. CHARETTE R.Manifest:Man-ifold deformation for few-shot image transla-tion[C]//Proceedings of Computer Vision(ECCV 2022).Berlin:Springer,2022:440-456. [23]WANG W,BAO J,ZHOU W,et al.Semantic image synthesisvia diffusion models [J].arXiv:2207.00050,2022. [24]CAREIL M,VERBEEK J,LATHUILIÈRE S.Few-shot Semantic Image Synthesis with Class Af-finity Transfer[C]//Procee-dings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2023:23611-23620. [25]RICHAEDSON E,ALALUF Y,PATASHNIK O,et al.Encoding in style:a stylegan encoder for image-to-image translation[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2021:2287-2296. [26]WANG Y,KHAN S,GONZALEZ-GARCIA A,et al.Semi-supervised learning for few-shot image-to-image translation[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2020,4453-4462. [27]TAN Z,CHAI M,CHEN D,et al.Diverse semantic image synthesis via probability distribution modeling[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.New York:IEEE Press,2021:7962-7971. [28]ZHU Z,XU Z,YOU A,et al.Semantically Multi-Modal Image Synthesis[C]//Proceedings of the IEEE Conference on Compu-ter Vision and Pattern Recognition.New York:IEEE Press,2020,5466-5475. |
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