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小儿血流儿科心室辅助装置第二版的体外和体内性能评估

In Vitro and In Vivo Performance Evaluation of the Second Developmental Version of the PediaFlow Pediatric Ventricular Assist Device.

作者信息

Maul Timothy M, Kocyildirim Ergin, Johnson Carl A, Daly Amanda R, Olia Salim E, Woolley Joshua R, Snyder Shaun, Bengston Shawn G, Kameneva Marina V, Antaki James F, Wagner William R, Borovetz Harvey S, Wearden Peter D

机构信息

Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

Cardiovasc Eng Technol. 2011 Dec;2(4):253-262. doi: 10.1007/s13239-011-0061-7.

Abstract

Ventricular assist devices (VADs) have significantly impacted the treatment of adult cardiac failure, but few options exist for pediatric patients. This has motivated our group to develop an implantable magnetically levitated rotodynamic VAD (PediaFlow®) for 3-20 kg patients. The second prototype design of the PediaFlow (PF2) is 56% smaller than earlier prototypes, and achieves 0.5-1.5 L/min blood flow rates. In vitro hemodynamic performance and hemolysis testing were performed with analog blood and whole ovine blood, respectively. In vivo evaluation was performed in an ovine model to evaluate hemocompatibility and end-organ function. The in vitro normalized index of hemolysis was 0.05-0.14 g/L over the specified operating range. In vivo performance was satisfactory for two of the three implanted animals. A mechanical defect caused early termination at 17 days of the first in vivo study, but two subsequent implants proceeded without complication and electively terminated at 30 and 70 days. Serum chemistries and plasma free hemoglobin were within normal limits. Gross necropsy revealed small, subclinical infarctions in the kidneys of the 30 and 70 day animals (confirmed by histopathology). The results of these experiments, particularly the biocompatibility demonstrated in vivo encourage further development of a miniature magnetically levitated VAD for the pediatric population. Ongoing work including further reduction of size will lead to a design freeze in preparation for of clinical trials.

摘要

心室辅助装置(VADs)对成人心力衰竭的治疗产生了重大影响,但儿科患者的选择却很少。这促使我们团队为体重3 - 20千克的患者开发一种可植入的磁悬浮旋转动力VAD(PediaFlow®)。PediaFlow(PF2)的第二代原型设计比早期原型小56%,并实现了0.5 - 1.5升/分钟的血流速度。分别使用模拟血液和全羊血进行了体外血液动力学性能和溶血测试。在羊模型中进行了体内评估,以评估血液相容性和终末器官功能。在指定的操作范围内,体外溶血标准化指数为0.05 - 0.14克/升。三只植入动物中的两只体内表现令人满意。在首次体内研究的第17天,一个机械缺陷导致研究提前终止,但随后的两次植入没有并发症,并在第30天和第70天选择性终止。血清化学指标和血浆游离血红蛋白均在正常范围内。大体尸检显示,30天和70天动物的肾脏有小的亚临床梗死(经组织病理学证实)。这些实验结果,特别是体内表现出的生物相容性,鼓励进一步开发用于儿科人群的微型磁悬浮VAD。正在进行的工作,包括进一步减小尺寸,将导致设计冻结,为临床试验做准备。

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