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贝勒陀螺式永久植入式离心血泵作为双心室辅助装置的研发。

Development of the Baylor Gyro permanently implantable centrifugal blood pump as a biventricular assist device.

作者信息

Nonaka K, Linneweber J, Ichikawa S, Yoshikawa M, Kawahito S, Mikami M, Motomura T, Ishitoya H, Nishimura I, Oestmann D, Glueck J, Schima H, Wolner E, Shinohara T, Nosé Y

机构信息

Baylor College of Medicine, Michael E. DeBakey Department of Surgery, Houston, Texas, U.S.A.

出版信息

Artif Organs. 2001 Sep;25(9):675-82. doi: 10.1046/j.1525-1594.2001.06855.x.

Abstract

The Baylor Gyro permanently implantable centrifugal blood pump (Gyro PI pump) has been under development since 1995 at Baylor College of Medicine. Excellent results were achieved as a left ventricular assist device (LVAD) with survival up to 284 days. Based on these results, we are now focusing on the development of a biventricular assist device (BVAD) system, which requires 2 pumps to be implanted simultaneously in the preperitoneal space. Our hypothesis was that the Gyro PI pump would be an appropriate device for an implantable BVAD system. The Gyro PI 700 pump is fabricated from titanium alloy and has a 25 ml priming volume, pump weight of 204 g, height of 45 mm, and pump diameter of 65 mm. This pump can provide 5 L/min against 100 mm Hg at 2,000 rpm. In this study, 6 half-Dexter healthy calves have been used as the experimental model. The right pump was applied between the infundibular of the right ventricle and the main pulmonary artery. The left pump was applied between the apex of the left ventricle and the thoracic descending aorta. As for anticoagulation, heparin was administered at the first postoperative week and then converted to warfarin sodium from the second week after surgery. Both pump flow rates were controlled maintaining a pulmonary arterial flow of less than 160 ml/kg/min for the sake of avoidance of pulmonary congestion. Blood sampling was done to assess visceral organ function, and the data regarding pump performance were collected. After encountering the endpoint, which the study could not keep for any reasons, necropsy and histopathological examinations were performed. The first 2 cases were terminated within 1 week. Deterioration of the pump flow due to suction phenomenon was recognized in both cases. To avoid the suction phenomenon, a flexible conduit attached on the inlet conduit was designed and implanted. After using the flexible inflow conduit, the required power and the rotational speed were reduced. Furthermore, the suction phenomenon was not observed except for 1 case. There was no deterioration regarding visceral organ function, and pulmonary function was maintained within normal range except for 1 case. Even though the experimental animal survived up to 45 days with the flexible inflow conduit, an increase in power consumption due to thrombus formation behind the impeller became a problem. Lower rotational speed, which was probably produced by the effectiveness of the flexible inflow conduit, was speculated to be one of the reasons. And the minimum range of rotational speed was 1,950 rpm in these 6 BVAD cases and the previous 3 cases of LVAD. In conclusion, 6 cases of BVAD implantation were performed as in vivo animal studies and were observed up to 45 days. The flexible inflow conduit was applied in 4 of 6 cases, and it was effective in avoiding a suction phenomenon. The proper rotational speed of the Gyro PI 700 pump was detected from the viewpoint of antithrombogenicity, which is more than 1,950 rpm.

摘要

自1995年以来,贝勒医学院一直在研发贝勒陀螺永久植入式离心血泵(Gyro PI泵)。作为左心室辅助装置(LVAD)取得了优异的成果,最长存活时间达284天。基于这些结果,我们目前正专注于双心室辅助装置(BVAD)系统的研发,该系统需要将2个泵同时植入腹膜前间隙。我们的假设是,Gyro PI泵将是适用于可植入BVAD系统的装置。Gyro PI 700泵由钛合金制成,预充量为25毫升,泵重204克,高45毫米,泵直径65毫米。该泵在2000转/分时可提供5升/分钟的流量,对抗100毫米汞柱的压力。在本研究中,6只半德克斯特健康小牛被用作实验模型。右泵应用于右心室漏斗部与主肺动脉之间。左泵应用于左心室心尖与胸降主动脉之间。至于抗凝,术后第一周给予肝素,然后从术后第二周起转换为华法林钠。为避免肺充血,控制两个泵的流量,使肺动脉流量维持在小于160毫升/千克/分钟。进行血液采样以评估内脏器官功能,并收集有关泵性能的数据。在遇到由于任何原因研究无法继续进行的终点后,进行尸检和组织病理学检查。前2例在1周内终止。两例均发现因抽吸现象导致泵流量恶化。为避免抽吸现象,设计并植入了连接在入口导管上的柔性导管。使用柔性流入导管后,所需功率和转速降低。此外,除1例之外未观察到抽吸现象。内脏器官功能没有恶化,除1例之外肺功能维持在正常范围内。尽管使用柔性流入导管实验动物存活长达45天,但叶轮后方血栓形成导致功耗增加成为一个问题。推测柔性流入导管的有效性可能产生的较低转速是原因之一。在这6例BVAD病例和之前3例LVAD病例中,最低转速范围为1950转/分。总之,进行了6例BVAD植入的体内动物研究,并观察了45天。6例中有4例应用了柔性流入导管,其在避免抽吸现象方面有效。从抗血栓形成的角度检测到Gyro PI 700泵的合适转速大于1950转/分。

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