Suppr超能文献

人工智能赋能的3D和4D打印技术助力更智能的生物医学材料与方法

Artificial Intelligence-Empowered 3D and 4D Printing Technologies toward Smarter Biomedical Materials and Approaches.

作者信息

Pugliese Raffaele, Regondi Stefano

机构信息

NeMO Lab, ASST GOM Niguarda Cà Granda Hospital, 20162 Milan, Italy.

出版信息

Polymers (Basel). 2022 Jul 8;14(14):2794. doi: 10.3390/polym14142794.

Abstract

In the last decades, 3D printing has played a crucial role as an innovative technology for tissue and organ fabrication, patient-specific orthoses, drug delivery, and surgical planning. However, biomedical materials used for 3D printing are usually static and unable to dynamically respond or transform within the internal environment of the body. These materials are fabricated ex situ, which involves first printing on a planar substrate and then deploying it to the target surface, thus resulting in a possible mismatch between the printed part and the target surfaces. The emergence of 4D printing addresses some of these drawbacks, opening an attractive path for the biomedical sector. By preprogramming smart materials, 4D printing is able to manufacture structures that dynamically respond to external stimuli. Despite these potentials, 4D printed dynamic materials are still in their infancy of development. The rise of artificial intelligence (AI) could push these technologies forward enlarging their applicability, boosting the design space of smart materials by selecting promising ones with desired architectures, properties, and functions, reducing the time to manufacturing, and allowing the in situ printing directly on target surfaces achieving high-fidelity of human body micro-structures. In this review, an overview of 4D printing as a fascinating tool for designing advanced smart materials is provided. Then will be discussed the recent progress in AI-empowered 3D and 4D printing with open-loop and closed-loop methods, in particular regarding shape-morphing 4D-responsive materials, printing on moving targets, and surgical robots for in situ printing. Lastly, an outlook on 5D printing is given as an advanced future technique, in which AI will assume the role of the fifth dimension to empower the effectiveness of 3D and 4D printing for developing intelligent systems in the biomedical sector and beyond.

摘要

在过去几十年中,3D打印作为一种创新技术,在组织和器官制造、定制矫形器、药物递送及手术规划等方面发挥了关键作用。然而,用于3D打印的生物医学材料通常是静态的,无法在体内环境中动态响应或转变。这些材料是在体外制造的,即先在平面基板上打印,然后将其部署到目标表面,因此打印部件与目标表面之间可能存在不匹配。4D打印的出现解决了其中一些缺点,为生物医学领域开辟了一条有吸引力的道路。通过对智能材料进行预编程,4D打印能够制造出对外部刺激产生动态响应的结构。尽管有这些潜力,但4D打印的动态材料仍处于发展初期。人工智能(AI)的兴起可以推动这些技术向前发展,扩大其适用性,通过选择具有所需结构、性能和功能的有前景的材料来拓展智能材料的设计空间,减少制造时间,并允许直接在目标表面进行原位打印以实现人体微观结构的高保真度。在这篇综述中,提供了对4D打印作为设计先进智能材料的迷人工具的概述。然后将讨论基于人工智能的3D和4D打印在开环和闭环方法方面的最新进展,特别是关于形状变形的4D响应材料、在移动目标上打印以及用于原位打印的手术机器人。最后,对5D打印作为一种先进的未来技术进行了展望,其中人工智能将扮演第五维度的角色,以增强3D和4D打印在生物医学领域及其他领域开发智能系统的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1adc/9319487/4e16929c4ecb/polymers-14-02794-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验