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    • 55. 发明授权
    • Railgun system
    • 轨道系统
    • US08387509B1
    • 2013-03-05
    • US13240751
    • 2011-09-22
    • George Arthur Proulx
    • George Arthur Proulx
    • F41F1/00
    • F41B6/006F42B6/00H02K41/00
    • A system for accelerating an armature to launch a projectile by injecting liquid aluminum between the armature and a pair of electrically conductive rails. A system for accelerating an armature by injecting liquid metal between the armature a plurality of electrically conductive rails and collecting the liquid metal. The liquid metal or liquid aluminum can comprise solid particles. A railgun structure with mechanical guide rails. A railgun structure with a film stack of alternating copper and nickel layers. An armature with guide rail supports. A method of using the system by placing liquid metal in the armature, placing the armature between conductive rails, and applying an electric current to the rails.
    • 一种用于通过在电枢和一对导电轨之间注入液态铝来加速电枢以发射抛射体的系统。 一种用于通过在电枢之间注入液态金属来加速电枢的系统,所述衔铁多个导电轨道并收集液态金属。 液态金属或液态铝可以包括固体颗粒。 具有机械导轨的轨道结构。 具有交替铜和镍层的薄膜堆叠的轨道结构。 带导轨支架的电枢。 一种通过将液态金属放置在电枢中来使用该系统的方法,将电枢放置在导电轨道之间,以及向轨道施加电流。
    • 60. 发明授权
    • Digital magnetic system for magnetic surgery
    • 磁性手术数字磁系统
    • US06311082B1
    • 2001-10-30
    • US09251164
    • 1999-02-17
    • Francis M. Creighton, IVBevil J. HoggRogers C. Ritter
    • Francis M. Creighton, IVBevil J. HoggRogers C. Ritter
    • A61B505
    • A61B1/00158A61B34/20A61B34/73A61B90/10A61B2034/733A61B2090/376H02K41/00
    • A device and a method for guiding or applying force to a magnetic implant within the body of a patient. The device includes a bed for support of the patient, a set of separately energizable electromagnets or separately controllable permanent magnets so arranged to produce magnetic fields of varying orientations in a treatment region of the patient, and a processor that controls the currents in the electromagnets, or shutters on the permanent magnets to produce a selected magnetic field and/or gradient for guiding or moving the implant. The magnets are configured to allow a medical imaging device to be used to provide a real-time display of an operating procedure in which magnetic guidance is used. The method for guiding the implant includes the placing of the body on the bed, which may be servo-controlled, inserting a magnetically-guided implant into the treatment region, arranging the magnets around the body so that they can supply the necessary magnetic fields and/or gradients through appropriate energization of subsets of the magnets, and applying current or shutter control to subsets of the magnets to provide a guiding magnetic field for the implant, which may occur while real-time medical imaging of the procedure is occurring. The bed may be moved under servo control to provide further control of the direction and magnitude of the magnetic field affecting the implant.
    • 用于引导或施加力到患者体内的磁性植入物的装置和方法。 该装置包括用于支撑患者的床,一组单独可激励的电磁体或单独控制的永磁体,其被布置成产生患者治疗区域中具有不同取向的磁场,以及控制电磁体中的电流的处理器, 或快门以产生用于引导或移动植入物的选定的磁场和/或梯度。 磁体被配置为允许医疗成像装置用于提供其中使用磁性引导的操作过程的实时显示。 用于引导植入物的方法包括将身体放置在可以被伺服控制的床上,将磁引导植入物插入治疗区域中,将磁体布置在身体周围,使得它们可以提供必要的磁场和 /或通过磁体的子集的适当激励梯度,以及将电流或快门控制施加到磁体的子集,以为在该过程的实时医学成像发生时可能发生的植入物提供引导磁场。 床可以在伺服控制下移动,以进一步控制影响植入物的磁场的方向和幅度。