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Zero-Shot Character Identification and Speaker Prediction in Comics via Iterative Multimodal Fusion

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

Recognizing characters and predicting speakers of dialogue are critical for comic processing tasks, such as voice generation or translation. However, because characters vary by comic title, supervised learning approaches like training character classifiers which require specific annotations for each comic title are infeasible. This motivates us to propose a novel zero-shot approach, allowing machines to identify characters and predict speaker names based solely on unannotated comic images. In spite of their importance in real-world applications, these task have largely remained unexplored due to challenges in story comprehension and multimodal integration. Recent large language models (LLMs) have shown great capability for text understanding and reasoning, while their application to multimodal content analysis is still an open problem. To address this problem, we propose an iterative multimodal framework, the first to employ multimodal information for both character identification and speaker prediction tasks. Our experiments demonstrate the effectiveness of the proposed framework, establishing a robust baseline for these tasks. Furthermore, since our method requires no training data or annotations, it can be used as-is on any comic series.

fields

cs.CL 1

years

2025 1

verdicts

ACCEPT 1

representative citing papers

ComicScene154: A Scene Dataset for Comic Analysis

cs.CL · 2025-08-22 · accept · novelty 6.0

ComicScene154 is a new 154-page comic dataset with manual scene-boundary annotations; human agreement is moderate (pk=0.17) and the provided baseline only slightly beats random.

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  • ComicScene154: A Scene Dataset for Comic Analysis cs.CL · 2025-08-22 · accept · none · ref 14 · internal anchor

    ComicScene154 is a new 154-page comic dataset with manual scene-boundary annotations; human agreement is moderate (pk=0.17) and the provided baseline only slightly beats random.