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The Role of Computational Modeling and Simulation in the Total Product Life Cycle of Peripheral Vascular Devices

机译:计算建模和仿真在外围血管设备总产品生命周期中的作用

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摘要

The total product life cycle (TPLC) of medical devices has been defined by four stages: discovery and ideation, regulatory decision, product launch, and postmarket monitoring. Manufacturers of medical devices intended for use in the peripheral vasculature, such as stents, inferior vena cava (IVC) filters, and stent-grafts, mainly use computational modeling and simulation (CM&S) to aid device development and design optimization, supplement bench testing for regulatory decisions, and assess postmarket changes or failures. For example, computational solid mechanics and fluid dynamics enable the investigation of design limitations in the ideation stage. To supplement bench data in regulatory submissions, manufactures can evaluate the effects of anatomical characteristics and expected in vivo loading environment on device performance. Manufacturers might also harness CM&S to aid root-cause analyses that are necessary when failures occur postmarket, when the device is exposed to broad clinical use. Once identified, CM&S tools can then be used for redesign to address the failure mode and re-establish the performance profile with the appropriate models. The Center for Devices and Radiological Health (CDRH) wants to advance the use of CM&S for medical devices and supports the development of virtual physiological patients, clinical trial simulations, and personalized medicine. Thus, the purpose of this paper is to describe specific examples of how CM&S is currently used to support regulatory submissions at different phases of the TPLC and to present some of the stakeholder-led initiatives for advancing CM&S for regulatory decision-making.
机译:医疗设备的整个产品生命周期(TPLC)分为四个阶段:发现和构想,监管决策,产品发布以及上市后监测。打算在外围脉管系统中使用的医疗设备(例如支架,下腔静脉(IVC)过滤器和支架移植物)的制造商主要使用计算模型和仿真(CM&S)来帮助设备开发和设计优化,以及补充台式测试。监管决策,并评估上市后的变化或失败。例如,通过计算固体力学和流体动力学,可以研究构想阶段的设计局限性。为了补充法规文件中的实验台数据,制造商可以评估解剖特征和预期的体内负载环境对设备性能的影响。制造商还可以利用CM&S来进行根本原因分析,而这些问题在售后故障发生且设备具有广泛的临床用途时是必需的。一旦确定,CM&S工具就可以用于重新设计,以解决故障模式并使用适当的模型重新建立性能配置文件。设备和放射卫生中心(CDRH)希望促进CM&S在医疗设备中的使用,并支持虚拟生理患者的发展,临床试验模拟和个性化医学。因此,本文的目的是描述当前如何使用CM&S在TPLC的不同阶段支持监管提交的特定示例,并提出一些由利益相关者主导的举措,以促进CM&S促进监管决策。

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