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    Prompt tuning (PT) for vision-language models faces information asymmetry. DAPT addresses this by decoupling visual data, improving model attention and performance in few-shot and data-efficient learning scenarios.

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    Area of Science:

    • Computer Science
    • Artificial Intelligence
    • Machine Learning

    Background:

    • Prompt tuning (PT) is a resource-efficient method for fine-tuning vision-language models.
    • A key challenge in PT is information asymmetry between visual and textual modalities.
    • This asymmetry can lead to biased attention, hindering model performance.

    Purpose of the Study:

    • To address the information asymmetry in prompt tuning for vision-language models.
    • To propose a novel framework, DAPT, that enhances modal alignment and visual attention.
    • To improve the task-specific transferability and generalization capabilities of these models.

    Main Methods:

    • Proposed DAPT (Decouple-Before-Align Prompt tuning) framework.
    • Explicitly decoupled visual modality into foreground and background representations using segmentation cues.
    • Aligned decoupled visual patterns with foreground texts and background classes.
    • Introduced visual pull-push regularization for enhanced focus on region-of-interest objects.

    Main Results:

    • DAPT demonstrated superior performance across few-shot learning, base-to-novel generalization, and data-efficient learning benchmarks.
    • The framework effectively mitigated biased attention caused by information asymmetry.
    • Achieved enhanced modal alignment and improved visual concentration on relevant objects.

    Conclusions:

    • DAPT offers an effective, architecture-free solution for prompt tuning in vision-language models.
    • The decouple-before-align strategy successfully addresses information asymmetry.
    • The proposed methods significantly improve model performance and generalization capabilities.