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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >A novel method for measuring the torque on implantable cardiovascular devices in MR static fields.
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A novel method for measuring the torque on implantable cardiovascular devices in MR static fields.

机译:一种用于测量MR静态场中植入式心血管设备上扭矩的新颖方法。

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摘要

PURPOSE: To propose a novel quantitative method for measuring the torque acting on mechanical heart valve prostheses subjected to a high static magnetic field in a MR scanner. MATERIALS AND METHODS: Torque measurements were performed with a torsion balance, implemented with a copper wire. The reaction torque exerted by the static magnetic field on the device was measured optically from the deflection angle of a laser beam spot on a graduate scale. Three different types of mechanical valves (two bileaflet and one monoleaflet) were tested at different locations of a small bore 4.7 tesla system. RESULTS: The method proved to be particularly sensitive (detectability limit lower than 10(-6) N x m), reliable and yielded quantitative reproducible results. The equivalent force of the torque measured for the three valves was at least 10(3)-fold lower than the force exerted by the beating heart. CONCLUSION: The proposed method provides a quantitative evaluation of the torque induced on prosthetic device by a MR scanner operating at high magnetic field.
机译:目的:提出一种新颖的定量方法,用于测量在MR扫描仪中受到高静磁场作用的机械心脏瓣膜假体上的扭矩。材料与方法:扭矩测量是用铜线实现的扭力平衡进行的。由静态磁场施加在装置上的反作用扭矩是根据激光束光斑在刻度尺上的偏转角进行光学测量的。在小口径4.7特斯拉系统的不同位置测试了三种不同类型的机械阀(两个双叶和一个单叶)。结果:该方法被证明是特别灵敏的(可检测限低于10(-6)N x m),可靠且可定量定量重现。为这三个瓣膜测得的扭矩的等效力至少比跳动的心脏所施加的力低10(3)倍。结论:所提出的方法提供了对在强磁场下工作的MR扫描仪在假体装置上感应的扭矩的定量评估。

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