首页> 外文期刊>Cardiovascular Engineering and Technology >PediaFlow™ Maglev Ventricular Assist Device: A Prescriptive Design Approach
【24h】

PediaFlow™ Maglev Ventricular Assist Device: A Prescriptive Design Approach

机译:PediaFlow™磁悬浮心室辅助设备:一种规范性的设计方法

获取原文
获取原文并翻译 | 示例
           

摘要

This report describes a multi-disciplinary program to develop a pediatric blood pump, motivated by the critical need to treat infants and young children with congenital and acquired heart diseases. The unique challenges of this patient population require a device with exceptional biocompatibility, miniaturized for implantation up to 6 months. This program implemented a collaborative, prescriptive design process, whereby mathematical models of the governing physics were coupled with numerical optimization to achieve a favorable compromise among several competing design objectives. Computational simulations of fluid dynamics, electromagnetics, and rotordynamics were performed in two stages: first using reduced-order formulations to permit rapid optimization of the key design parameters; followed by rigorous CFD and FEA simulations for calibration, validation, and detailed optimization. Over 20 design configurations were initially considered, leading to three pump topologies, judged on the basis of a multi-component analysis including criteria for anatomic fit, performance, biocompatibility, reliability, and manufacturability. This led to fabrication of a mixed-flow magnetically levitated pump, the PF3, having a displaced volume of 16.6 cc, approximating the size of a AA battery and producing a flow capacity of 0.3–1.5 L/min. Initial in vivo evaluation demonstrated excellent hemocompatibility after 72 days of implantation in an ovine. In summary, combination of prescriptive and heuristic design principles have proven effective in developing a miniature magnetically levitated blood pump with excellent performance and biocompatibility, suitable for integration into chronic circulatory support system for infants and young children; aiming for a clinical trial within 3 years.
机译:这份报告描述了一个多学科的计划,旨在开发儿童血液泵,其迫切需求在于治疗先天性和后天性心脏病的婴幼儿。这种患者群体的独特挑战是需要一种具有出色生物相容性的设备,该设备必须微型化才能植入多达6个月。该计划实施了一个协作的,规定性的设计过程,通过该过程,将控制物理的数学模型与数值优化相结合,从而在几个相互竞争的设计目标之间取得了良好的折衷。流体动力学,电磁学和转子动力学的计算仿真分两个阶段进行:第一,使用降阶公式以快速优化关键设计参数;然后进行严格的CFD和FEA仿真,以进行校准,验证和详细的优化。最初考虑了20多种设计配置,导致了三种泵的拓扑结构,这是基于多组件分析(包括解剖结构,性能,生物相容性,可靠性和可制造性标准)进行判断的。这就导致了混合流磁悬浮泵PF3的制造,该泵的排量为16.6 cc,接近AA电池的大小,流量为0.3-1.5 L / min。最初的体内评估表明,在绵羊体内植入72天后具有出色的血液相容性。总而言之,结合说明性和启发式设计原理已被证明可有效地开发出一种微型磁悬浮血泵,该泵具有出色的性能和生物相容性,适合集成到婴幼儿的慢性循环支持系统中;旨在在3年内进行临床试验。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号