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No Token Left Behind: Explainability-Aided Image Classification and Generation

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arxiv 2204.04908 v2 pith:X5KFCWHN submitted 2022-04-11 cs.CV

No Token Left Behind: Explainability-Aided Image Classification and Generation

classification cs.CV
keywords clipclassificationimageinputmodelsusedzero-shotbeen
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The application of zero-shot learning in computer vision has been revolutionized by the use of image-text matching models. The most notable example, CLIP, has been widely used for both zero-shot classification and guiding generative models with a text prompt. However, the zero-shot use of CLIP is unstable with respect to the phrasing of the input text, making it necessary to carefully engineer the prompts used. We find that this instability stems from a selective similarity score, which is based only on a subset of the semantically meaningful input tokens. To mitigate it, we present a novel explainability-based approach, which adds a loss term to ensure that CLIP focuses on all relevant semantic parts of the input, in addition to employing the CLIP similarity loss used in previous works. When applied to one-shot classification through prompt engineering, our method yields an improvement in the recognition rate, without additional training or fine-tuning. Additionally, we show that CLIP guidance of generative models using our method significantly improves the generated images. Finally, we demonstrate a novel use of CLIP guidance for text-based image generation with spatial conditioning on object location, by requiring the image explainability heatmap for each object to be confined to a pre-determined bounding box.

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Cited by 1 Pith paper

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  1. An Image is Worth One Word: Personalizing Text-to-Image Generation using Textual Inversion

    cs.CV 2022-08 unverdicted novelty 8.0

    Textual Inversion learns a single embedding vector from a few images to represent personal concepts inside the text embedding space of a frozen text-to-image model, enabling their composition in natural language prompts.