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    • 1. 发明授权
    • Pulse tube cryocooler system for magnetic resonance superconducting magnets
    • 用于磁共振超导磁体的脉冲管低温冷却系统
    • US06807812B2
    • 2004-10-26
    • US10391872
    • 2003-03-19
    • Gregory A. LehmannRoy A. ManganoClifford J. GinfridaKathleen W. McGuinness
    • Gregory A. LehmannRoy A. ManganoClifford J. GinfridaKathleen W. McGuinness
    • F17C502
    • F25D19/006F25B9/10F25B9/145F25B2400/17G01R33/3815
    • A magnetic resonance assembly comprising, a liquid cryogen vessel, a liquid cryogen cooled conducting magnet disposed within the liquid cryogen vessel, a closed vaccum vessel surrounding the liquid cryogen vessel and spaced from the liquid cryogen vessel, a cooling device fixably attached to the vacuum vessel operable for providing cryogenic temperatures to the superconducting magnet, a heat exchanger device in thermal contact with the liquid cryogen vessel operable for heat exchange, and a bus bar in thermal contact with the cooling device and the heat exchanger device. The cooling device may be a pulse tube cryocooler capable of providing temperatures of about 4 K. A thermal bus bar of high purity aluminum or copper is used to connect and provide a spatial separation of a pulse tube cryocooler and a remote recondenser unit, thus reducing the overall height of the magnet assembly.
    • 一种磁共振组件,包括液体冷冻剂容器,设置在液体冷冻剂容器内的液体冷冻剂冷却的导电磁体,围绕液体冷冻剂容器并与液体冷冻剂容器间隔开的封闭真空容器,可固定地连接到真空容器的冷却装置 可操作以向超导磁体提供低温温度;与可操作用于热交换的液体冷冻剂容器热接触的热交换器装置,以及与冷却装置和热交换器装置热接触的汇流条。 冷却装置可以是能够提供约4K的温度的脉冲管低温冷却器。使用高纯度铝或铜的热母线连接并提供脉冲管低温冷却器和远程再冷凝器单元的空间分离,从而减少 磁体组件的整体高度。
    • 7. 发明授权
    • MRI magnet vibration induced field instability simulator
    • MRI磁体振动诱发场不稳定模拟器
    • US06822446B2
    • 2004-11-23
    • US10065037
    • 2002-09-12
    • Timothy J. HavensLongzhi JiangGregory A. Lehmann
    • Timothy J. HavensLongzhi JiangGregory A. Lehmann
    • G01V300
    • G01R33/28G01R33/3854G01R33/58
    • A Magnetic Resonance Imaging (MRI) magnet field instability simulator (80) is provided. The simulator includes a rigid body motion generator (82) that simulates motion of one or more MRI system components. An eddy current analyzer (84) generates a magnetic stiffness and damping signal and an electromagnetic transfer function in response to the motions and a cryostat material properties signal. A mechanical model generator (86) generates a mechanical disturbance signal and a mechanical model of one or more MRI system components in response to the motions and the magnetic stiffness and damping signal. A structural analyzer (88) generates a motion signal in response to the mechanical model. A field instability calculator (90) generates a field instability signal in response to the electromagnetic transfer function and the motion signal. A method of performing the same is also provided.
    • 提供磁共振成像(MRI)磁场不稳定性模拟器(80)。 模拟器包括模拟一个或多个MRI系统部件的运动的刚体运动发生器(82)。 涡流分析器(84)响应于运动和低温恒温器材料特性信号产生磁刚度和阻尼信号和电磁传递函数。 机械模型发生器(86)响应于运动和磁刚度和阻尼信号产生一个或多个MRI系统部件的机械干扰信号和机械模型。 结构分析器(88)响应于机械模型产生运动信号。 场不稳定性计算器(90)响应于电磁传递函数和运动信号产生场不稳定信号。 还提供了一种执行该方法的方法。