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Anatomic fitting of total artificial hearts for in vivo evaluation

机译:全人工心脏的解剖拟合以用于体内评估

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摘要

Successful anatomic fitting of a total artificial heart (TAH) is vital to achieve optimal pump hemodynamics after device implantation. Although many anatomic fitting studies have been completed in humans prior to clinical trials, few reports exist that detail the experience in animals for in vivo device evaluation. Optimal hemodynamics are crucial throughout the in vivo phase to direct design iterations and ultimately validate device performance prior to pivotal human trials. In vivo evaluation in a sheep model allows a realistically sized representation of a smaller patient, for which smaller third-generation TAHs have the potential to treat. Our study aimed to assess the anatomic fit of a single device rotary TAH in sheep prior to animal trials and to use the data to develop a three-dimensional, computer-aided design (CAD)-operated anatomic fitting tool for future TAH development. Following excision of the native ventricles above the atrio-ventricular groove, a prototype TAH was inserted within the chest cavity of six sheep (28–40 kg). Adjustable rods representing inlet and outlet conduits were oriented toward the center of each atrial chamber and the great vessels, with conduit lengths and angles recorded for future analysis. A three-dimensional, CAD-operated anatomic fitting tool was then developed, based on the results of this study, and used to determine the inflow and outflow conduit orientation of the TAH. The mean diameters of the sheep left atrium, right atrium, aorta, and pulmonary artery were 39, 33, 12, and 11 mm, respectively. The center-to-center distance and outer-edge-to-outer-edge distance between the atria, found to be 39 ± 9 mm and 72 ± 17 mm in this study, were identified as the most critical geometries for successful TAH connection. This geometric constraint restricts the maximum separation allowable between left and right inlet ports of a TAH to ensure successful alignment within the available atrial circumference.
机译:对整个人工心脏(TAH)进行成功的解剖拟合对于在植入设备后实现最佳的泵血流动力学至关重要。尽管在临床试验之前已经完成了许多人体解剖学研究,但很少有报道详细介绍动物体内设备评估的经验。在整个体内阶段,最佳的血液动力学对指导设计迭代并在关键的人体试验之前最终验证设备性能至关重要。在绵羊模型中进行体内评估可对较小的患者进行实际大小的表征,而较小的第三代TAH可能具有治疗潜力。我们的研究旨在在动物试验之前评估单设备旋转式TAH在绵羊中的解剖拟合,并使用该数据开发三维计算机辅助设计(CAD)操作的解剖拟合工具,以用于将来的TAH开发。切除房室沟上方的天然心室后,将TAH原型插入六只绵羊(28-40 kg kg)的胸腔内。代表进口和出口导管的可调节杆对准每个心房和大血管的中心,并记录导管的长度和角度以备将来分析。然后,根据这项研究的结果,开发了三维CAD操作的解剖拟合工具,并用于确定TAH的流入和流出导管方向。绵羊左心房,右心房,主动脉和肺动脉的平均直径分别为39、33、12和11 mm。心房之间的中心到中心距离和外边缘到外边缘的距离在本研究中被发现是39±9mm和72 17mm,是成功进行TAH连接的最关键的几何形状。这种几何约束限制了TAH的左入口和右入口之间允许的最大间隔,以确保在可用的心房周长内成功对齐。

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