AI for biofabrication.

IF 8.2 2区 医学 Q1 ENGINEERING, BIOMEDICAL
Chang Zhou, Changru Liu, Zhendong Liao, Yuan Pang, Wei Sun
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Abstract

Biofabrication is an advanced technology that holds great promise for constructing highly biomimeticin vitrothree-dimensional human organs. Such technology would help address the issues of immune rejection and organ donor shortage in organ transplantation, aiding doctors in formulating personalized treatments for clinical patients and replacing animal experiments. Biofabrication typically involves the interdisciplinary application of biology, materials science, mechanical engineering, and medicine to generate large amounts of data and correlations that require processing and analysis. Artificial intelligence (AI), with its excellent capabilities in big data processing and analysis, can play a crucial role in handling and processing interdisciplinary data and relationships and in better integrating and applying them in biofabrication. In recent years, the development of the semiconductor and integrated circuit industries has propelled the rapid advancement of computer processing power. An AI program can learn and iterate multiple times within a short period, thereby gaining strong automation capabilities for a specific research content or issue. To date, numerous AI programs have been applied to various processes around biofabrication, such as extracting biological information, designing and optimizing structures, intelligent cell sorting, optimizing biomaterials and processes, real-time monitoring and evaluation of models, accelerating the transformation and development of these technologies, and even changing traditional research patterns. This article reviews and summarizes the significant changes and advancements brought about by AI in biofabrication, and discusses its future application value and direction.

用于生物制造的人工智能
生物制造是一种先进技术,在构建高度仿生的体外三维人体器官方面大有可为。这种技术将有助于解决器官移植中的免疫排斥和器官捐献者短缺问题,帮助医生为临床患者制定个性化治疗方案,并取代动物实验。生物制造通常涉及生物学、材料科学、机械工程和医学的跨学科应用,以产生需要处理和分析的大量数据和相关性。人工智能(AI)凭借其在大数据处理和分析方面的卓越能力,可以在处理和加工跨学科数据和关系,并将其更好地整合和应用于生物制造方面发挥至关重要的作用。近年来,半导体和集成电路产业的发展推动了计算机处理能力的快速提升。人工智能程序可以在短时间内多次学习和迭代,从而获得针对特定研究内容或问题的强大自动化能力。迄今为止,众多人工智能程序已被应用于生物制造的各个环节,如提取生物信息、设计和优化结构、智能细胞分拣、优化生物材料和工艺、实时监测和评估模型等,加速了这些技术的转化和发展,甚至改变了传统的研究模式。本文回顾和总结了人工智能在生物制造领域带来的重大变革和进步,并探讨了其未来的应用价值和发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biofabrication
Biofabrication ENGINEERING, BIOMEDICAL-MATERIALS SCIENCE, BIOMATERIALS
CiteScore
17.40
自引率
3.30%
发文量
118
审稿时长
2 months
期刊介绍: Biofabrication is dedicated to advancing cutting-edge research on the utilization of cells, proteins, biological materials, and biomaterials as fundamental components for the construction of biological systems and/or therapeutic products. Additionally, it proudly serves as the official journal of the International Society for Biofabrication (ISBF).
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