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    • 4. 发明申请
    • CONTROLLING PRESSURE IN ADJUSTABLE RESTRICTION DEVICES
    • 在可调节的限制装置中控制压力
    • US20090216255A1
    • 2009-08-27
    • US12037261
    • 2008-02-26
    • Jonathan A. CoeThomas E. AdamsMark D. Overmyer
    • Jonathan A. CoeThomas E. AdamsMark D. Overmyer
    • A61B17/08
    • A61F5/0053
    • Methods and devices are provided for regulating a hydraulic restriction system. In general, the methods and devices can allow for non-invasive pressure control using a flow control mechanism. The flow control mechanism can be disposed between an implantable restriction device and a fluid source and include an adjustable, variably-sized fluid communication member in fluid communication with the restriction device and the fluid source. The geometry of the fluid communication member can control a rate of fluid flow between the restriction device and the fluid source, thereby also regulating a rate at which a pressure of fluid within the restriction device changes. Alternatively, the fluid flow control mechanism can include a biasing mechanism that can control the rate of fluid flow between the restriction device and the fluid source.
    • 提供了用于调节液压限制系统的方法和装置。 通常,方法和装置可以允许使用流量控制机构的非侵入性压力控制。 流量控制机构可以设置在可植入的限制装置和流体源之间,并且包括与限制装置和流体源流体连通的可调节的可变尺寸的流体连通构件。 流体连通构件的几何形状可以控制限制装置和流体源之间的流体流动速率,从而也可以调节限制装置内的流体的压力变化的速率。 或者,流体流动控制机构可以包括偏置机构,其可以控制限制装置和流体源之间的流体流动速率。
    • 5. 发明授权
    • Controlling pressure in adjustable restriction devices
    • 在可调节限制装置中控制压力
    • US08034065B2
    • 2011-10-11
    • US12037261
    • 2008-02-26
    • Jonathan A. CoeThomas E. AdamsMark D. Overmyer
    • Jonathan A. CoeThomas E. AdamsMark D. Overmyer
    • A61B17/08
    • A61F5/0053
    • Methods and devices are provided for regulating a hydraulic restriction system. In general, the methods and devices can allow for non-invasive pressure control using a flow control mechanism. The flow control mechanism can be disposed between an implantable restriction device and a fluid source and include an adjustable, variably-sized fluid communication member in fluid communication with the restriction device and the fluid source. The geometry of the fluid communication member can control a rate of fluid flow between the restriction device and the fluid source, thereby also regulating a rate at which a pressure of fluid within the restriction device changes. Alternatively, the fluid flow control mechanism can include a biasing mechanism that can control the rate of fluid flow between the restriction device and the fluid source.
    • 提供了用于调节液压限制系统的方法和装置。 通常,方法和装置可以允许使用流量控制机构的非侵入性压力控制。 流量控制机构可以设置在可植入的限制装置和流体源之间,并且包括与限制装置和流体源流体连通的可调节的可变尺寸的流体连通构件。 流体连通构件的几何形状可以控制限制装置和流体源之间的流体流动速率,从而也可以调节限制装置内的流体的压力变化的速率。 或者,流体流动控制机构可以包括偏置机构,其可以控制限制装置和流体源之间的流体流动速率。