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FuseCap: Leveraging Large Language Models for Enriched Fused Image Captions

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arxiv 2305.17718 v2 pith:T6IFQ5IT submitted 2023-05-28 cs.CV cs.AIcs.CL

classification cs.CVcs.AIcs.CL
keywords captionsimagedetailsmodelmodelspairsapproachcaptioning
verification ladder T0 review T1 audit T2 compute T3 formal
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The advent of vision-language pre-training techniques enhanced substantial progress in the development of models for image captioning. However, these models frequently produce generic captions and may omit semantically important image details. This limitation can be traced back to the image-text datasets; while their captions typically offer a general description of image content, they frequently omit salient details. Considering the magnitude of these datasets, manual reannotation is impractical, emphasizing the need for an automated approach. To address this challenge, we leverage existing captions and explore augmenting them with visual details using "frozen" vision experts including an object detector, an attribute recognizer, and an Optical Character Recognizer (OCR). Our proposed method, FuseCap, fuses the outputs of such vision experts with the original captions using a large language model (LLM), yielding comprehensive image descriptions. We automatically curate a training set of 12M image-enriched caption pairs. These pairs undergo extensive evaluation through both quantitative and qualitative analyses. Subsequently, this data is utilized to train a captioning generation BLIP-based model. This model outperforms current state-of-the-art approaches, producing more precise and detailed descriptions, demonstrating the effectiveness of the proposed data-centric approach. We release this large-scale dataset of enriched image-caption pairs for the community.

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Cited by 1 Pith paper

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  1. VisCon-100K: Leveraging Contextual Web Data for Fine-tuning Vision Language Models

    cs.CL 2025-02 conditional novelty 6.0 of 10

    A web-context-derived dataset and a 'leaky modality mix' of captions with Q&A pairs improve vision-language model fine-tuning on several benchmarks.

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