Computer Science ›› 2026, Vol. 53 ›› Issue (8): 182-190.doi: 10.11896/jsjkx.251200069
• Computer Graphics & Multimedia • Previous Articles Next Articles
LING Yun, LI Haodong
CLC Number:
| [1] WANG Z,BAO J,ZHOU W,et al.Dire for diffusion-generated image detection[C]//Proceedings of the IEEE/CVF International Conference on Computer Vision.2023:22445-22455. [2] BAYAR B,STAMM M C.A deep learning approach to universal image manipulation detection using a new convolutional layer[C]//Proceedings of the 4th ACM Workshop on Information Hiding and Multimedia Security.2016:5-10. [3] RAO Y,NI J.A deep learning approach to detection of splicing and copy-move forgeries in images[C]//2016 IEEE Internatio-nal Workshop on Information Forensics and Security(WIFS).IEEE,2016:1-6. [4] FRIDRICH J,KODOVSKY J.Rich models for steganalysis of digital images[J].IEEE Transactions on Information Forensics and Security,2012,7(3):868-882. [5] COZZOLINO D,VERDOLIVA L.Noiseprint:A CNN-basedcamera model fingerprint[J].IEEE Transactions on Information Forensics and Security,2019,15:144-159. [6] GUILLARO F,COZZOLINO D,SUD A,et al.Trufor:Leveraging all-round clues for trustworthy image forgery detection and localization[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2023:20606-20615. [7] XIE E,WANG W,YU Z,et al.SegFormer:Simple and efficientdesign for semantic segmentation with transformers[J].Advances in Neural Information Processing Systems,2021,34:12077-12090. [8] DONG C,CHEN X,HU R,et al.MVSS-Net:Multi-view multi-scale supervised networks for image manipulation detection[J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2022,45(3):3539-3553. [9] KWON M J,YU I J,NAM S H,et al.CAT-Net:Compression artifact tracing network for detection and localization of image splicing[C]//Proceedings of the IEEE/CVF Winter Conference on Applications of Computer Vision.2021:375-384. [10] LIU X,LIU Y,CHEN J,et al.PSCC-Net:Progressive spatio-channel correlation network for image manipulation detection and localization[J].IEEE Transactions on Circuits and Systems for Video Technology,2022,32(11):7505-7517. [11] GUO X,LIU X,REN Z,et al.Hierarchical fine-grained image forgery detection and localization[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2023:3155-3165. [12] YU Z,NI J,LIN Y,et al.Diffforensics:Leveraging diffusion prior to image forgery detection and localization[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2024:12765-12774. [13] XU Z,ZHANG X,LI R,et al.FakeShield:Explainable Image Forgery Detection and Localization via Multi-modal Large Language Models[C]//The Thirteenth International Conference on Learning Representations.2025. [14] SOHL-DICKSTEIN J,WEISS E,MAHESWARANATHANN,et al.Deep unsupervised learning using nonequilibrium thermodynamics[C]//International Conference on Machine Lear-ning.PMLR,2015:2256-2265. [15] SONG J,MENG C,ERMON S.Denoising diffusion implicitmodels[J].arXiv:2010.02502,2020. [16] LIU Z,MAO H,WU C Y,et al.A convnet for the 2020s[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2022:11976-11986. [17] DONG J,WANG W,TAN T.Casia image tampering detection evaluation database[C]//2013 IEEE China Summit and International Conference on Signal and Information Processing.IEEE,2013:422-426. [18] WEN B,ZHU Y,SUBRAMANIAN R,et al.COVERAGE—A novel database for copy-move forgery detection[C]//2016 IEEE International Conference on Image Processing(ICIP).IEEE,2016:161-165. [19] GUAN H,KOZAK M,ROBERTSON E,et al.MFC datasets:Large-scale benchmark datasets for media forensic challenge evaluation[C]//2019 IEEE Winter Applications of Computer Vision Workshops(WACVW).IEEE,2019:63-72. [20] DE CARVALHO T J,RIESS C,ANGELOPOULOU E,et al.Exposing digital image forgeries by illumination color classification[J].IEEE Transactions on Information Forensics and Secu-rity,2013,8(7):1182-1194. [21] HSU Y F,CHANG S F.Detecting image splicing using geometry invariants and camera characteristics consistency[C]//2006 IEEE International Conference on Multimedia and Expo.IEEE,2006:549-552. [22] ROMBACH R,BLATTMANN A,LORENZ D,et al.High-re-solution image synthesis with latent diffusion models[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2022:10684-10695. [23] JIA S,HUANG M,ZHOU Z,et al.Autosplice:A text-prompt manipulated image dataset for media forensics[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2023:893-903. [24] NICHOL A,DHARIWAL P,RAMESH A,et al.Glide:To-wards photorealistic image generation and editing with text-guided diffusion models[J].arXiv:2112.10741,2021. [25] LIN T Y,MAIRE M,BELONGIE S,et al.Microsoft coco:Common objects in context[C]//European Conference on Computer Vision.Cham:Springer,2014:740-755. [26] MAREEN H,KARAGEORGIOU D,VAN WALLENDAEL G,et al.TGIF:Text-guided inpainting forgery dataset[C]//2024 IEEE International Workshop on Information Forensics and Security(WIFS).IEEE,2024:1-6. [27] REN S,HE K,GIRSHICK R,et al.Faster R-CNN:Towardsreal-time object detection with region proposal networks[C]//Advances in Neural Information Processing Systems.2015. [28] KIRILLOV A,MINTUN E,RAVI N,et al.Segment anything[C]//Proceedings of the IEEE/CVF International Conference on Computer Vision.2023:4015-4026. [29] LI J,LI D,XIONG C,et al.Blip:Bootstrapping language-image pre-training for unified vision-language understanding and ge-neration[C]//International conference on Machine Learning.PMLR,2022:12888-12900. [30] JU X,LIU X,WANG X,et al.Brushnet:A plug-and-play image inpainting model with decomposed dual-branch diffusion[C]//European Conference on Computer Vision.Cham:Springer,2024:150-168. [31] ZHUANG J,ZENG Y,LIU W,et al.A task is worth one word:Learning with task prompts for high-quality versatile image inpainting[C]//European Conference on Computer Vision.Cham:Springer,2024:195-211. [32] AVRAHAMI O,FRIED O,LISCHINSKI D.Blended latent diffusion[J].ACM Transactions on Graphics,2023,42(4):1-11. |
| [1] | SHEN Fengyin, FAN Hongjie. Research on Design of Multi-level SQL Optimization Framework Based on Big Data Business Workflows [J]. Computer Science, 2026, 53(8): 1-8. |
| [2] | LAI Yingxu, ZHANG Yuwei, ZHUANG Junxi. Construction and Generation of SOR Label System for Learner Personalized Portrait [J]. Computer Science, 2026, 53(8): 9-19. |
| [3] | LIU Yanze, HAN Bo, YUAN Jidong, SU Dongliang, REN Jia, CAI Zhiming, WANG Zhihai. Anomaly Detection in Time Series Based on Time-Frequency Contrastive Learning [J]. Computer Science, 2026, 53(8): 20-28. |
| [4] | GUO Peilin, ZOU Zhiyi, WANG Bo, LUO Jiawei. STMVF:Novel Multi-view Graph Convolutional Network for Spatial Transcriptomics Cell Deconvolution with Dual Cross-attention Mechanism [J]. Computer Science, 2026, 53(8): 40-49. |
| [5] | PAN Yuquan, YUAN Deyu, WANG Anran, JIA Yuan. Enhanced GNNs Across Social Networks User Identity Linkage Algorithm Based on HiddenFeatures [J]. Computer Science, 2026, 53(8): 50-60. |
| [6] | LIAO Xuechao, ZOU Hang, LYU Peidong, ZENG Zhiqiang. Lithium-ion Battery Capacity Data Augmentation and Prediction Based on Diffusion,Denoise and Coding-Decoding Attention [J]. Computer Science, 2026, 53(8): 103-116. |
| [7] | DENG Jiayan, TIAN Shirui, LIU Hou, ZHU Ningbo, DUAN Mingxing. Zero-shot Pedestrian Trajectory Prediction Method Based on Compositional Motion [J]. Computer Science, 2026, 53(8): 117-126. |
| [8] | GUO Chenhui, CHEN Zebin, TAN Guang. Sparse-view Gaussian Splatting Consistent Reconstruction with Mask-guided Generative Prior [J]. Computer Science, 2026, 53(8): 127-138. |
| [9] | ZHANG Zhe, LIU Junjie, ZHANG Baili. Improved DETR-based Method for CAD Graphic Element Recognition [J]. Computer Science, 2026, 53(8): 139-147. |
| [10] | CAI Yi, WANG Xiaobin, CHEN Ruili, XU Jinfeng. Handwriting Gender Recognition Method Based on Multi-scale Directional Attention Transformer [J]. Computer Science, 2026, 53(8): 156-164. |
| [11] | WANG Jiahui, WANG Hongyu, HAO Yingguang. Feature Aggregation with Joint Tracking:Video Object Detection in Occlusion Scenarios [J]. Computer Science, 2026, 53(8): 165-173. |
| [12] | HU Changyu, FAN Xinyu, ZHANG Zhi, DING Zixu, ZHANG Zhengyue, PENG Juhong. Hierarchical Lightweight Micro-expression Recognition Based on Optical Flow Partitioned FeatureFusion [J]. Computer Science, 2026, 53(8): 174-181. |
| [13] | WANG Yifan, YANG Peixuan, LU Yuansuo, LIU Mengjun. Teacher Trajectory Recognition and Reconstruction in Smart Classrooms via Multi-source Fusion [J]. Computer Science, 2026, 53(8): 191-200. |
| [14] | WANG Jingyang, XUE Weimin, HUANG Min, WU Shaoguang. Improved YOLOv11n Model for Small Target Detection in UAV Aerial Images [J]. Computer Science, 2026, 53(8): 201-208. |
| [15] | ZHONG Rui, YAN Hongwei, LIU Jiawei. Lightweight Low-resolution Face Recognition via Hierarchical Dynamic Feature Generation Distillation [J]. Computer Science, 2026, 53(8): 209-218. |
|
||