Yamazaki K, Umezu M, Koyanagi H, Outa E, Ogino S, Otake Y, Shiozaki H, Fujimoto T, Tagusari O, Kitamura M
Department of Cardiovascular Surgery, Tokyo Women's Medical College, Heart Institute of Japan.
ASAIO J. 1993 Jul-Sep;39(3):M224-30.
A new intraventricular axial flow blood pump has been designed and developed as a totally implantable left ventricular assist device (LVAD). This pump consists of an impeller combined with a guide-vane, a tube housing, and a DC motor. The pump is introduced into the LV cavity through the LV apex, and the outlet cannula is passed antegrade across the aortic valve. Blood is withdrawn from the LV through the inlet ports at the pump base, and discharged to the ascending aorta. Our newly developed axial flow pump system has the following advantages: 1) it is a simple and compact system, 2) minimal blood stasis both in the device and the LV cavity, 3) minimal blood contacting surface of the pump, 4) easy accessibility with a less invasive surgical procedure, and 5) low cost. A pump flow > 5 L/min was obtained against 100 mmHg differential pressure in the mock circulatory system. The pump could produce a passive pulsatile flow effect with a beating heart more efficiently than other non-pulsatile pumps because of minimal pressure drop and inertia along the bypass tract. Anatomic fit studies using dissected hearts of dilated cardiomyopathy (DCM) cadavers showed that this pump could smoothly pass through the aortic valve without any interference with mitral valve function. Recently, a dynamic pressure groove bearing and a miniature lip seal have been developed. The dynamic pressure groove bearing has a simple structure and acts as a pressure resistant sealing mechanism.(ABSTRACT TRUNCATED AT 250 WORDS)
一种新型的脑室内轴流血泵已被设计并开发出来,作为一种完全可植入的左心室辅助装置(LVAD)。该泵由一个与导叶相结合的叶轮、一个管状外壳和一个直流电机组成。泵通过左心室心尖被引入左心室腔,出口插管向前穿过主动脉瓣。血液从泵底部的入口端口从左心室抽出,并被排放到升主动脉。我们新开发的轴流血泵系统具有以下优点:1)它是一个简单紧凑的系统;2)装置和左心室腔内的血液淤积最少;3)泵的血液接触表面最小;4)通过侵入性较小的手术程序易于操作;5)成本低。在模拟循环系统中,在100 mmHg的压差下获得了大于5 L/min的泵流量。由于旁路通道的压降和惯性最小,该泵与其他非搏动泵相比,能更有效地与跳动的心脏产生被动搏动血流效应。使用扩张型心肌病(DCM)尸体解剖心脏进行的解剖适配研究表明,该泵可以顺利通过主动脉瓣,而不会对二尖瓣功能产生任何干扰。最近,还开发了一种动压槽轴承和一种微型唇形密封。动压槽轴承结构简单,起到耐压密封机制的作用。(摘要截短于250字)