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    • 1. 发明授权
    • Implantable infusion device and reservoir for same
    • 植入式输液装置和储罐相同
    • US06652510B2
    • 2003-11-25
    • US10033377
    • 2001-12-26
    • Peter C. LordWilliam A. BrandtScott R. Gibson
    • Peter C. LordWilliam A. BrandtScott R. Gibson
    • A61K922
    • A61M5/14276A61M5/14224A61M5/14244A61M5/14586Y10S128/12
    • An implantable infusion device includes of a disc-shaped housing that is made from a biocompatible material and contains a reservoir. The reservoir defines a chamber that contains at least one flexible diaphragm. A ring is provided in alignment with the peripheral edge of each diaphragm. The ring has a central opening that is aligned with the convolution and central portion of each diaphragm, to allow the diaphragm to flex within the ring. In this manner, the volume on one side of each diaphragm may be varied to correspond to a varying volume of infusion medium. Similarly, the volume within the reservoir chamber on the other side of the diaphragms is varied as the diaphragms flex, to correspond to the expansion and contraction of a propellant medium within the reservoir.
    • 植入式输注装置包括由生物相容性材料制成且包含储存器的圆盘形壳体。 储存器限定包含至少一个柔性隔膜的室。 提供与每个隔膜的周缘对准的环。 环具有与每个隔膜的卷积和中心部分对准的中心开口,以允许隔膜在环内弯曲。 以这种方式,每个隔膜的一侧上的体积可以变化以对应于输注介质的变化体积。 类似地,当膜片弯曲时,膜片另一侧的储存室内的体积随着储存器内的推进剂介质的膨胀和收缩而变化。
    • 5. 发明授权
    • Medical infusion device with a source of controlled compliance
    • 具有受控依从性的输液装置
    • US06537268B1
    • 2003-03-25
    • US09335936
    • 1999-06-18
    • Scott R. GibsonPeter C. LordEric M. LorenzenSusan M. McConnellJohn F. GrayRobert W. Bosley
    • Scott R. GibsonPeter C. LordEric M. LorenzenSusan M. McConnellJohn F. GrayRobert W. Bosley
    • A61K922
    • A61M5/14276A61M2209/045
    • Embodiments of medical infusion pumps are provided that include structural elements for providing sources of compliance within a fluid path within the pump. Some preferred embodiments provide implantable infusion pumps with compliance positioned between an exit port of a pumping mechanism and an outlet (e.g. an opening in a catheter) of the infusion pump. Other embodiments provide compliance in fluid path in proximity to entrance port of the pumping mechanism. Insertion of compliance in a flow path that is down stream of the pumping mechanism may aid in minimizing negative effects associated with attempting to force fluid through a restricted flow path that is further down-stream, such as that offered by a catheter or other outlet component. Insertion of compliance before the pumping mechanism may aid in reducing negative effects associated with an up stream restricted flow path, such as that which might be offered by a rigid filter located between the reservoir and the pumping mechanism. Several structural components, assemblies, or configurations may be used as sources of compliance. For example, compressible structures (e.g. pillows, drums) are used within a side port of the infusion pump. The compressible structures may quickly distort to accommodate for a large impulse of fluid into the flow path that can not otherwise be readily dealt with. The compression, in turn, results in a restoring force being exerted that returns the structure substantially to its original volume so as to slowly force fluid from the flow path.
    • 提供了医用输液泵的实施例,其包括用于在泵内的流体路径内提供顺应性源的结构元件。 一些优选的实施方案提供了植入式输注泵,其具有定位在泵送机构的出口与输液泵的出口(例如导管中的开口)之间的顺应性。 其他实施例提供了靠近泵送机构的入口的流体路径中的顺应性。 在泵送机构下游的流动路径中插入顺应性可以有助于最小化与试图迫使流体进一步向下流动的受限流动路径相关联的负面影响,例如由导管或其他出口部件 。 在泵送机构之前插入顺应性可以有助于减少与向上流限制的流动路径相关联的负面影响,例如位于储存器和泵送机构之间的刚性过滤器可能提供的负面影响。 可以使用几种结构组件,组件或配置作为遵守来源。 例如,在输注泵的侧端口内使用可压缩结构(例如,枕头,鼓)。 可压缩结构可以快速变形以适应大流量的流体进入流动路径,否则不能容易地处理。 压缩又导致施加的恢复力,使得结构基本上返回到其原始体积,以便缓慢地迫使来自流动路径的流体。