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Design and direct metal laser sintering of replacement heart valves

Design and direct metal laser sintering of replacement heart valves
置换心脏瓣膜的设计和直接金属激光烧结
批准号:
EP/S030182/2
负责人:
Neil Bressloff
金额:
$9.38万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2022
资助国家:
英国
项目状态:
已结题
起止时间:
2022 至 --

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中文摘要
翻译
在欧洲和北美老龄化的人口中,退行性心脏瓣膜病是一个日益严重的问题。此外,在南亚和非洲等低收入和中等收入国家,数千万年轻人和老年人都经历着细菌感染导致的瓣膜衰竭。目前治疗心脏瓣膜疾病的技术正在迅速转向经导管方法,寻求部署由激光切割的金属管框架组成的替换瓣膜。然而,为了开发新的阀门概念,以更好地应对全球现有和新出现的挑战,替代制造方法可能是必要的。为了应对这一机遇,我们成功地进行了一项初步的中试研究,涉及使用直接金属激光烧结(DMLS)对阀框进行添加制造。在这样做的过程中,我们已经证明了3D打印这些类型的薄支撑结构的可行性。现在,有必要从根本上优化和评估替换心脏瓣膜框架的DMLS制造工艺。两个合作地点的DMLS将使用世界领先的设施。概念激光机床已经在南安普顿大学的工程设计制造中心和意大利工业合作伙伴SISMA运营了三年多,后者实际上生产自己的高精度DMLS机床,供公司内部的专家使用。因此,SISMA将在添加剂制造方面提供必要的专业知识,这对于心脏瓣膜框架的小而薄的特征来说将是无价的。此外,该项目还将大大受益于南安普顿大学的Mu-Vis成像中心,在该中心,帧的高分辨率扫描将有助于确定制造精度、精度和质量。一旦制造工艺得到优化,它将用于制造和测试两个新的帧概念,这两个概念都是由于3D打印的附加性质而实现的。其中一个框架将基于放射状分层框架的专利知识产权,该框架在部署期间不会产生长度变化。第二个框架将以该大学的一个硕士项目中设计的概念为特色,该项目于2018年9月结束。第二个概念旨在克服与需要更换先前部署的已开始失效的人工瓣膜相关的问题。当人工瓣叶以类似于天然瓣膜的方式退化时,就会发生这种情况。目前,标准替换瓣膜用于一种被称为瓣膜中瓣膜的程序,该程序不涉及专门为此类重做程序设计的设备。除了这些工程任务外,我们还非常关注我们的影响途径,特别是在发达国家和低收入和中等收入国家心脏瓣膜患者的不同需求方面。在项目结束时,我们将(I)详细了解实现金属烧结阀架最高精度、精确度和结构完整性的最佳设置,以及(Ii)通过添加制造开发了两个新的设备概念,其中一个将专门设计用于治疗世界各地的年轻患者。
英文摘要
Degenerative heart valve disease is a growing problem in the ageing populations of Europe and North America. Further, tens of millions of both young and old people experience valve failure from bacterial infections in low- and middle-income countries such as those in South Asia and Africa.The current state of the art for the treatment of heart valve disease is rapidly moving towards transcatheter approaches, seeking to deploy replacement valves comprising frames that are laser cut from metallic tubes. However, to develop new valve concepts that can better address existing and emerging challenges globally, alternative manufacturing methods will likely be necessary. In response to this opportunity, we successfully conducted a preliminary pilot study involving additive manufacturing of valve frames using direct metal laser sintering (DMLS). In so doing, we have demonstrated the feasibility of 3D printing these type of thin strut structures.Now, it is necessary to fundamentally optimise and assess the DMLS manufacturing process for replacement heart valve frames. World-leading facilities will be used for DMLS at both partner sites. A Concept Laser machine has been operated for over three years in the Engineering Design Manufacturing Centre at the University of Southampton and the Italian industry partner, Sisma, which actually manufactures its own high precision DMLS machines which will be used by specialists within the company. Consequently, Sisma will provide the necessary expertise in additive manufacturing, something that will be invaluable for the small, thin features of heart valve frames. Also, the project will significantly benefit from the Mu-Vis Imaging Centre at the University of Southampton in which high resolution scans of the frames will help to determine manufacturing precision, accuracy and quality.Once the manufacturing process has been optimised, it will be used to manufacture and test two new frame concepts, both made possible by the additive nature of 3D printing. One of the frames will be based on patented intellectual property for a radially layered frame that produces zero change of length during deployment. The second frame will feature a concept that was devised in a Masters project at the University that came to an end in September 2018. This second concept aims to overcome the problems associated with the need to replace a previously deployed prosthetic valve that has started to fail. This can happen when prosthetic leaflets degenerate in similar ways to native valves. Currently, standard replacement valves are used in a procedure know as valve-in-valve which doesn't involve a device specifically designed for such redo procedures.In addition to these engineering tasks, we have a strong focus on our pathway to impact, particularly in relation to the contrasting needs of heart valve patients in both developed and low- and middle-income countries. At the end of the project, we will have (i) a detailed understanding of optimal settings for maximum precision, accuracy and structural integrity of metal sintered valve frames and (ii) developed two novel device concepts made possible by additive manufacturing one of which will be specifically designed for treating young patients across all territories of the world.
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Design and direct metal laser sintering of replacement heart valves
  • 批准号:
    EP/S030182/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $60.52万
  • 财政年份:
    2019
  • 负责人:
    Neil Bressloff
  • 依托单位:
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