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Updated: Jul 23, 2025

07:12
Development of a Gaze-Contingent Display Framework Designed for Perceptual and Oculomotor Research with Simulated Central Vision Loss
Published on: April 11, 2025
464
TransVG++: End-to-End Visual Grounding With Language Conditioned Vision Transformer.
Summary
This study introduces Transformer-based frameworks for visual grounding, simplifying complex fusion mechanisms. The improved TransVG++ model, utilizing Vision Transformer, achieves state-of-the-art results by enhancing vision-language fusion.
Area of Science:
- Computer Vision
- Artificial Intelligence
- Machine Learning
Background:
- Traditional visual grounding methods rely on complex, manually-designed fusion mechanisms.
- These heuristic designs can lead to overfitting and suboptimal performance on diverse datasets.
Purpose of the Study:
- To develop simplified yet effective Transformer-based frameworks for visual grounding.
- To improve multi-modal fusion and reasoning capabilities in visual grounding models.
- To establish new state-of-the-art performance on visual grounding tasks.
Main Methods:
- Proposed TransVG, using Transformers for multi-modal correspondence and direct box coordinate regression.
- Introduced TransVG++, a purely Transformer-based framework leveraging Vision Transformer (ViT).
- Developed Language Conditioned Vision Transformer for intermediate vision-language fusion, reusing ViT components.
Main Results:
- Demonstrated that simple Transformer encoder layers outperform complex fusion modules in TransVG.
- TransVG++ achieved significant performance gains by integrating ViT and intermediate fusion.
- Reported state-of-the-art records across five prevalent visual grounding datasets.
Conclusions:
- Transformer-based approaches offer a more effective and less complex alternative to traditional visual grounding methods.
- The TransVG++ framework, with its integrated Vision Transformer, represents a significant advancement in visual grounding accuracy and efficiency.
- The proposed methods pave the way for more robust and generalizable visual grounding systems.
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