【24h】

The helical flow total artificial heart: Implantation in goats

机译:螺旋流全人工心脏:山羊植入

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

To realize a total artificial heart (TAH) with high performance, high durability, good anatomical fitting, and good blood compatibility, the helical flow TAH (HFTAH) has been developed with two helical flow pumps having hydrodynamic levitation impeller. The HFTAH was implanted in goats to investigate its anatomical fitting, blood compatibility, mechanical stability, control stability, and so on. The size of the HFTAH was designed to be 80 mm in diameter and 84 mm wide. The maximum output was 19 L/min against 100 mmHg of pressure head. Eight adult female goats weighting from 45 to 56.3 kg (average 49.7 kg) were used. Under the extracorporeal circulation, natural heart was removed at the atrioventricular groove and the HFTAH was implanted. The HFTAH was driven with a pulsatile mode. The 1/R control was applied when the right atrial pressure recovered. The HFTAH could be implanted with good anatomical fitting in all goats. Two goats survived for more than a week. One goat is ongoing. Other goats did not survive for more than two days with various reasons. In the goats that survived for more than a week, the hydrodynamic bearing was worn and broken, which indicated that the bearing touched to the shaft. The cause was supposed to be the influence of the sucking effect. The potential of the HFTAH could be demonstrated with this study. The stability of the hydrodynamic bearing in a living body, especially the influence of the sucking effect, was considered to be very important and a further study should be necessary.
机译:为了实现具有高性能,高耐用性,良好的解剖学适应性和良好的血液相容性的全人造心脏(TAH),已经开发了具有两个具有水力悬浮叶轮的螺旋流量泵的螺旋流量TAH(HFTAH)。将HFTAH植入山羊以研究其解剖学适应性,血液相容性,机械稳定性,控制稳定性等。 HFTAH的尺寸设计为直径80毫米,宽84毫米。相对于100 mmHg的压头,最大输出为19 L / min。使用八只成年雌性山羊,体重在45至56.3千克之间(平均49.7千克)。在体外循环下,在房室沟处切除自然心脏,并植入HFTAH。 HFTAH以脉动模式驱动。当右心房压力恢复时应用1 / R对照。 HFTAH可以在所有山羊中植入良好的解剖结构。两只山羊存活了一个多星期。一只山羊正在进行中。其他山羊由于各种原因未能存活超过两天。在存活了一周以上的山羊中,流体动力轴承磨损并断裂,这表明轴承与轴接触。原因被认为是吸吮效果的影响。这项研究可以证明HFTAH的潜力。流体动力轴承在生物体内的稳定性,特别是吸力的影响,被认为是非常重要的,需要进一步研究。

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