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Titlebook: Artificial Hearts; Technology and Thera Ming Yang Book 2020 Springer Nature Singapore Pte Ltd. 2020 Artificial hearts.Ventricular assist de

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Basis of Artificial Heart Technologies, these devices have different housing structures, actuation mechanism, design, and performance, they provide hemodynamic support. Progressive generations of devices have iterated to improve various aspects such as size, weight, blood-flow pattern, material, drive and control, and power supply. This
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Artificial Heart: Rotary Pump,and can operate at speeds of 7000–50,000 rpm. In comparison, CF pumps have a flow direction that is perpendicular to the central rotational axis of the impeller. Centrifugal pumps typically are larger in diameter, smaller in length, and have higher hydraulic efficiencies and the speeds are lower tha
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Total Artificial Heart,cription about the total artificial heart, where they are needed, how they are designed, performance, limitations and introduce some famous TAH devices. It is decided that the TAH devices can improve the survival of patients with biventricular dysfunction. And new technique and innovation will exten
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Evaluation of Artificial Hearts,rically modeled for optimization in terms of hydraulic and hemodynamic performances. To validate numerical results, experimental measurements at different regions were conducted using particle image velocimetry (PIV). It is worth noting that similar procedure would be applied to a centrifugal blood
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Therapy Management of VADs,According to the seventh INTERMACS data showed that more than 13,000 patients received left ventricular support from the United States in 2014, of which 955 received pulsatile flow LVADs and 12,030 continuous flow LVADs. This chapter provides an overview of the current implantable rotating left vent
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Innovation Updates for Biocompatible Ventricular Assist Devices,plores the feasibility of VADs to mimic the blood flow pattern in the left ventricle driven by ultrasonic motors, which are characterized light weight, small size, fast response with mechanical time constant less than 1 ms, high torque density, accurate speed and position control, and unaffected by
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