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RSGAN: Face Swapping and Editing using Face and Hair Representation in Latent Spaces

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arxiv 1804.03447 v2 pith:S63YULCU submitted 2018-04-10 cs.CV cs.GR

classification cs.CVcs.GR
keywords facenetworkproposedhairlatentswappingeditingimages
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In this paper, we present an integrated system for automatically generating and editing face images through face swapping, attribute-based editing, and random face parts synthesis. The proposed system is based on a deep neural network that variationally learns the face and hair regions with large-scale face image datasets. Different from conventional variational methods, the proposed network represents the latent spaces individually for faces and hairs. We refer to the proposed network as region-separative generative adversarial network (RSGAN). The proposed network independently handles face and hair appearances in the latent spaces, and then, face swapping is achieved by replacing the latent-space representations of the faces, and reconstruct the entire face image with them. This approach in the latent space robustly performs face swapping even for images which the previous methods result in failure due to inappropriate fitting or the 3D morphable models. In addition, the proposed system can further edit face-swapped images with the same network by manipulating visual attributes or by composing them with randomly generated face or hair parts.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. De-Fake: Style based Anomaly Deepfake Detection

    cs.CV 2025-07 reject novelty 3.0 of 10

    A style-feature face-swap detector that requires a reference photo, with flawed threshold arithmetic and invalid external tests.

  2. Face Deepfakes -- A Comprehensive Review

    cs.CV 2025-02 conditional novelty 3.0 of 10

    A review of face deepfake generation and detection finds that off-the-shelf deepfake tools such as Wav2Lip and SimSwap achieve high attack success rates against lightweight face recognition models.

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