Uni-SMART: Universal Science Multimodal Analysis and Research Transformer

Fuente: arXiv
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Autori principali: Cai, Hengxing, Cai, Xiaochen, Yang, Shuwen, Wang, Jiankun, Yao, Lin, Gao, Zhifeng, Chang, Junhan, Li, Sihang, Xu, Mingjun, Wang, Changxin, Wang, Hongshuai, Li, Yongge, Lin, Mujie, Li, Yaqi, Yin, Yuqi, Zhang, Linfeng, Ke, Guolin
Natura: Preprint
Pubblicazione: 2024
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author Cai, Hengxing
Cai, Xiaochen
Yang, Shuwen
Wang, Jiankun
Yao, Lin
Gao, Zhifeng
Chang, Junhan
Li, Sihang
Xu, Mingjun
Wang, Changxin
Wang, Hongshuai
Li, Yongge
Lin, Mujie
Li, Yaqi
Yin, Yuqi
Zhang, Linfeng
Ke, Guolin
author_facet Cai, Hengxing
Cai, Xiaochen
Yang, Shuwen
Wang, Jiankun
Yao, Lin
Gao, Zhifeng
Chang, Junhan
Li, Sihang
Xu, Mingjun
Wang, Changxin
Wang, Hongshuai
Li, Yongge
Lin, Mujie
Li, Yaqi
Yin, Yuqi
Zhang, Linfeng
Ke, Guolin
contents In scientific research and its application, scientific literature analysis is crucial as it allows researchers to build on the work of others. However, the fast growth of scientific knowledge has led to a massive increase in scholarly articles, making in-depth literature analysis increasingly challenging and time-consuming. The emergence of Large Language Models (LLMs) has offered a new way to address this challenge. Known for their strong abilities in summarizing texts, LLMs are seen as a potential tool to improve the analysis of scientific literature. However, existing LLMs have their own limits. Scientific literature often includes a wide range of multimodal elements, such as tables, charts, and molecule, which are hard for text-focused LLMs to understand and analyze. This issue points to the urgent need for new solutions that can fully understand and analyze multimodal content in scientific literature. To answer this demand, we present \textbf{Uni-SMART} (Universal Science Multimodal Analysis and Research Transformer), an innovative model designed for in-depth understanding of multimodal scientific literature. Through rigorous quantitative evaluation across several domains, Uni-SMART demonstrates superior performance over other text-focused LLMs. Furthermore, our exploration extends to practical applications, including patent infringement detection and nuanced analysis of charts. These applications not only highlight Uni-SMART's adaptability but also its potential to revolutionize how we interact with scientific literature.
format Preprint
id arxiv_https___arxiv_org_abs_2403_10301
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Uni-SMART: Universal Science Multimodal Analysis and Research Transformer
Cai, Hengxing
Cai, Xiaochen
Yang, Shuwen
Wang, Jiankun
Yao, Lin
Gao, Zhifeng
Chang, Junhan
Li, Sihang
Xu, Mingjun
Wang, Changxin
Wang, Hongshuai
Li, Yongge
Lin, Mujie
Li, Yaqi
Yin, Yuqi
Zhang, Linfeng
Ke, Guolin
Computation and Language
Computer Vision and Pattern Recognition
In scientific research and its application, scientific literature analysis is crucial as it allows researchers to build on the work of others. However, the fast growth of scientific knowledge has led to a massive increase in scholarly articles, making in-depth literature analysis increasingly challenging and time-consuming. The emergence of Large Language Models (LLMs) has offered a new way to address this challenge. Known for their strong abilities in summarizing texts, LLMs are seen as a potential tool to improve the analysis of scientific literature. However, existing LLMs have their own limits. Scientific literature often includes a wide range of multimodal elements, such as tables, charts, and molecule, which are hard for text-focused LLMs to understand and analyze. This issue points to the urgent need for new solutions that can fully understand and analyze multimodal content in scientific literature. To answer this demand, we present \textbf{Uni-SMART} (Universal Science Multimodal Analysis and Research Transformer), an innovative model designed for in-depth understanding of multimodal scientific literature. Through rigorous quantitative evaluation across several domains, Uni-SMART demonstrates superior performance over other text-focused LLMs. Furthermore, our exploration extends to practical applications, including patent infringement detection and nuanced analysis of charts. These applications not only highlight Uni-SMART's adaptability but also its potential to revolutionize how we interact with scientific literature.
title Uni-SMART: Universal Science Multimodal Analysis and Research Transformer
topic Computation and Language
Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2403.10301