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Multi-species Conserved Sequences02:51

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Updated: May 22, 2026

Multimodal Cross-Device and Marker-Free Co-Registration of Preclinical Imaging Modalities
07:13

Multimodal Cross-Device and Marker-Free Co-Registration of Preclinical Imaging Modalities

Published on: October 27, 2023

Cross-modal recipe retrieval via multi-granularity alignment.

Runqi Zan1, Tao Yao1, Yuxin Yu1

  • 1organization=School of Computer Science and Artificial Intelligence, addressline=Ludong University, Yantai, postcode=264000, country=China.

Neural Networks : the Official Journal of the International Neural Network Society
|May 20, 2026
PubMed
Summary
This summary is machine-generated.

A new Cross-modal Multi-Granularity Alignment (CMGA) method improves recipe retrieval by focusing on key ingredients in images and text. This approach enhances accuracy in distinguishing recipes with similar components.

Keywords:
Cross-modal recipe retrievalImage detail captureKey information enhancementLLM

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Last Updated: May 22, 2026

Multimodal Cross-Device and Marker-Free Co-Registration of Preclinical Imaging Modalities
07:13

Multimodal Cross-Device and Marker-Free Co-Registration of Preclinical Imaging Modalities

Published on: October 27, 2023

Area of Science:

  • Food Computing
  • Artificial Intelligence
  • Computer Vision

Background:

  • Cross-modal recipe retrieval is crucial for food safety and nutrition management.
  • Existing methods struggle with ingredient alignment between recipe images and text, leading to retrieval inaccuracies.
  • Distinguishing recipes with similar ingredients remains a significant challenge.

Purpose of the Study:

  • To propose a novel Cross-modal Multi-Granularity Alignment (CMGA) method for enhanced recipe retrieval.
  • To address the limitations of previous methods in aligning key food ingredients across modalities.
  • To improve the accuracy and granularity of cross-modal recipe searching.

Main Methods:

  • Developed a Key Information Enhancement (KIE) module using cross-attention and Large Language Models (LLMs) to focus on explicit food ingredients in text.
  • Introduced an Image Detail Enhancement (IDE) module with sparse attention and dynamic feature fusion to capture visual food components and cooking details.
  • Implemented a bidirectional contrastive loss function to emphasize learning from challenging, similar recipe examples.

Main Results:

  • The proposed CMGA method demonstrated superior performance compared to baseline models on the Recipe1M dataset.
  • CMGA effectively improved the alignment of main food ingredients between textual descriptions and visual representations.
  • The method showed enhanced capability in distinguishing between recipes with subtle ingredient differences.

Conclusions:

  • The CMGA method offers a significant advancement in cross-modal recipe retrieval.
  • Focusing on multi-granularity alignment, particularly ingredient-level details, is key to overcoming previous limitations.
  • This research contributes to more accurate and reliable food information retrieval systems.