三维打印作为一种尖端的、通用的和个性化的血管支架制造工艺:走向量身定制的医疗设备。

IF 6.8 3区 医学 Q1 ENGINEERING, BIOMEDICAL
Fatima Garcia-Villen, Fernando López-Zárraga, Cesar Viseras, Sandra Ruiz-Alonso, Fouad Al-Hakim, Irene Diez-Aldama, Laura Saenz-Del-Burgo, Denis Scaini, Jose Luis Pedraz
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引用次数: 1

摘要

血管支架(VS)已经彻底改变了心血管疾病的治疗,在冠状动脉疾病(CAD)患者中植入血管支架已成为治疗血管狭窄的常规、易于操作的手术干预措施。尽管多年来VS不断发展,但仍然需要更有效的方法来应对医学和科学挑战,特别是当涉及到外周动脉疾病(PAD)时。在这方面,三维(3D)打印被认为是一种很有前途的替代方案,可以通过优化形状、尺寸和支架骨干(对最佳机械性能至关重要)来升级VS,使其针对每个患者和每个狭窄病变进行定制。此外,3D打印与其他方法的结合也可以使最终设备升级。这篇综述的重点是使用3D打印技术生产VS的最新研究,无论是单独使用还是与其他技术结合使用。最后的目的是概述3D打印在VS制造中的可能性和局限性。此外,CAD和PAD病理的现状也得到了解决,从而突出了现有VS的主要弱点,并确定了研究差距,可能的市场利基和未来的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

219Three-dimensional printing as a cutting-edge, versatile and personalizable vascular stent manufacturing procedure: Toward tailor-made medical devices.

219Three-dimensional printing as a cutting-edge, versatile and personalizable vascular stent manufacturing procedure: Toward tailor-made medical devices.

219Three-dimensional printing as a cutting-edge, versatile and personalizable vascular stent manufacturing procedure: Toward tailor-made medical devices.

219Three-dimensional printing as a cutting-edge, versatile and personalizable vascular stent manufacturing procedure: Toward tailor-made medical devices.

Vascular stents (VS) have revolutionized the treatment of cardiovascular diseases, as evidenced by the fact that the implantation of VS in coronary artery disease (CAD) patients has become a routine, easily approachable surgical intervention for the treatment of stenosed blood vessels. Despite the evolution of VS throughout the years, more efficient approaches are still required to address the medical and scientific challenges, especially when it comes to peripheral artery disease (PAD). In this regard, three-dimensional (3D) printing is envisaged as a promising alternative to upgrade VS by optimizing the shape, dimensions and stent backbone (crucial for optimal mechanical properties), making them customizable for each patient and each stenosed lesion. Moreover, the combination of 3D printing with other methods could also upgrade the final device. This review focuses on the most recent studies using 3D printing techniques to produce VS, both by itself and in combination with other techniques. The final aim is to provide an overview of the possibilities and limitations of 3D printing in the manufacturing of VS. Furthermore, the current situation of CAD and PAD pathologies is also addressed, thus highlighting the main weaknesses of the already existing VS and identifying research gaps, possible market niches and future directions.

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来源期刊
CiteScore
6.90
自引率
4.80%
发文量
81
期刊介绍: The International Journal of Bioprinting is a globally recognized publication that focuses on the advancements, scientific discoveries, and practical implementations of Bioprinting. Bioprinting, in simple terms, involves the utilization of 3D printing technology and materials that contain living cells or biological components to fabricate tissues or other biotechnological products. Our journal encompasses interdisciplinary research that spans across technology, science, and clinical applications within the expansive realm of Bioprinting.
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