Search Results - "Kakuta, Yukihide"
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Influence of a novel electrocardiogram-synchronized rotational-speed-change system of an implantable continuous-flow left ventricular assist device (EVAHEART) on hemolytic performance
Published in Journal of artificial organs (01-12-2014)“…We developed a novel controller for a continuous-flow left ventricular assist device (EVAHEART) that can change the pump’s rotational speed (RS) in…”
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Effects of feeding state on anticoagulation in adult goats treated with warfarin
Published in Journal of artificial organs (01-09-2016)“…For the continued development of improved mechanical circulatory systems, longer term evaluation of new devices in animal model experiments may be critical…”
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Development of a compact wearable pneumatic drive unit for a ventricular assist device
Published in Journal of artificial organs (01-12-2008)“…The purpose of this study was to develop a compact wearable pneumatic drive unit for a ventricular assist device (VAD). This newly developed drive unit, 20 ×…”
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Effects of mechanical valve orifice direction on the flow pattern in a ventricular assist device
Published in Journal of artificial organs (01-06-2007)“…We have been developing a pneumatic ventricular assist device (PVAD) system consisting of a diaphragm-type blood pump. The objective of the present study was…”
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Development of an electrohydraulic total artificial heart system: Improvement of pump unit
Published in Electronics and communications in Japan (01-09-2010)“…An electrohydraulic total artificial heart (EHTAH) system has been developed. The EHTAH system consists of diaphragm‐type blood pumps, and electrohydraulic…”
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Current status of development and in vivo evaluation of the National Cardiovascular Center electrohydraulic total artificial heart system
Published in Journal of artificial organs (01-09-2000)“…We have been developing an electrohydraulic total artificial heart system. The system has a pumping unit, consisting of diaphragm-type blood pumps and an…”
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In vitro and in vivo evaluation of a left-right balancing capacity of an interatrial shunt in an electrohydraulic total artificial heart system
Published in ASAIO journal (1992) (01-09-1997)“…The authors evaluated the basic performance of an interatrial shunt (IAS) made by punching a hole in the atrial septum, in accommodating the left-right…”
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In Vivo Evaluation of the National Cardiovascular Center Electrohydraulic Total Artificial Heart
Published in Artificial organs (01-03-1999)“…We have been developing an electrohydraulic total artificial heart system. The system comprises an intrathoracic pumping unit composed of diaphragm type…”
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A NEW MONITORING METHOD OF DIAPHRAGM POSITIONS OF AN ARTIFICIAL HEART WITH ULTRASOUND TECHNIQUES
Published in ASAIO journal (1992) (01-03-2002)Get full text
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The National Cardiovascular Center Electrohydraulic Total Artificial Heart and Ventricular Assist Device Systems: Current Status of Development
Published in ASAIO journal (1992) (01-05-2003)“…Electrohydraulic total artificial heart (EHTAH) and electrohydraulic ventricular assist device (EHVAD) systems have been developed in our institute. The EHTAH…”
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Development of an Ultracompact Integrated Heart-Lung Assist Device
Published in Artificial organs (01-06-1999)“…A novel integrated heart‐lung assist device has been developed as a simple to use portable cardiopulmonary support system. The device comprises a centrifugal…”
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FLOW DYNAMIC ANALYSIS IN A PNEUMATIC VENTRICULAR ASSIST DEVICE: EFFECTS OF VALVE ORIFICE DIRECTION ON STAGNATION REGION
Published in ASAIO journal (1992) (01-03-2006)Get full text
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Mixed Venous Oxygen Saturation as a Promising Parameter for Physiologic Control of Total Artificial Heart
Published in ASAIO journal (1992) (01-11-2000)“…Mixed venous oxygen saturation (SvO2) has been proposed as one of the suitable parameters for physiologic control of a total artificial heart (TAH). To…”
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Control of a total artificial heart using mixed venous oxygen saturation
Published in ASAIO journal (1992) (01-09-1999)“…We developed a control of the total artificial heart (TAH) using mixed venous oxygen saturation (SvO2). With this method, the TAH output was controlled by…”
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