TSNeRF: Text-driven stylized neural radiance fields via semantic contrastive learning
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Yi Wang | Yu-Kun Lai | Kun Li | Qiao Feng | Jing-Song Cheng | Wen-Yuan Tao
[1] Dongdong Chen,et al. NeRF-Art: Text-Driven Neural Radiance Fields Stylization , 2022, IEEE transactions on visualization and computer graphics.
[2] T. Müller,et al. Instant neural graphics primitives with a multiresolution hash encoding , 2022, ACM Trans. Graph..
[3] Lizhuang Ma,et al. Neighborhood co-occurrence modeling in 3D point cloud segmentation , 2021, Comput. Vis. Media.
[4] Ilya Sutskever,et al. Learning Transferable Visual Models From Natural Language Supervision , 2021, ICML.
[5] Shi-Min Hu,et al. Jittor: a novel deep learning framework with meta-operators and unified graph execution , 2020, Science China Information Sciences.
[6] F. Hauptfleisch,et al. StyleProp: Real‐time Example‐based Stylization of 3D Models , 2020, Comput. Graph. Forum.
[7] Alexei A. Efros,et al. Contrastive Learning for Unpaired Image-to-Image Translation , 2020, ECCV.
[8] Andreas Geiger,et al. GRAF: Generative Radiance Fields for 3D-Aware Image Synthesis , 2020, NeurIPS.
[9] S. M. Ali Eslami,et al. PolyGen: An Autoregressive Generative Model of 3D Meshes , 2020, ICML.
[10] Yang Song,et al. Generative Modeling by Estimating Gradients of the Data Distribution , 2019, NeurIPS.
[11] Ravi Ramamoorthi,et al. Local light field fusion , 2019, ACM Trans. Graph..
[12] Jan-Michael Frahm,et al. Deep blending for free-viewpoint image-based rendering , 2018, ACM Trans. Graph..
[13] Bo Yang,et al. Dense 3D Object Reconstruction from a Single Depth View , 2018, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[14] ARNO KNAPITSCH,et al. Tanks and temples , 2017, ACM Trans. Graph..
[15] Sepp Hochreiter,et al. GANs Trained by a Two Time-Scale Update Rule Converge to a Local Nash Equilibrium , 2017, NIPS.
[16] Leon A. Gatys,et al. Texture Synthesis Using Convolutional Neural Networks , 2015, NIPS.
[17] Bruce W. Suter,et al. The multilayer perceptron as an approximation to a Bayes optimal discriminant function , 1990, IEEE Trans. Neural Networks.