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    • 21. 发明申请
    • DETECTING A FULL RESERVOIR OF AN IMPLANTABLE INFUSION DEVICE
    • 检测可植入式输液装置的完整储存器
    • US20120265141A1
    • 2012-10-18
    • US13088619
    • 2011-04-18
    • Scott L. KalpinJames M. Haase
    • Scott L. KalpinJames M. Haase
    • A61M5/14
    • A61M5/14276A61M5/1684A61M2205/3523A61M2209/045
    • An implantable infusion device includes a housing and a collapsible member and an interference member disposed within the housing. The collapsible member defines a reservoir for containing fluid and has an outer surface that moves between an empty position and a full position in response to a change in volume of fluid contained in the reservoir. The interference member is configured to engage the outer surface of the collapsible member as the reservoir approaches the full position and to cause pressure in the reservoir to increase following engagement with the surface of the collapsible member and concomitant fluid introduction into the reservoir. The infusion device further includes a pressure sensor in communication with the reservoir, which can be used to determine whether the reservoir is full by measuring characteristic pressures associated with the interference member engaging the outer surface of the collapsible member and concomitant fluid introduction into the reservoir.
    • 植入式输注装置包括壳体和可折叠构件以及设置在壳体内的干涉构件。 可折叠构件限定用于容纳流体的储存器,并且具有响应于容纳在容器中的流体的体积变化而在空位置和满位置之间移动的外表面。 干涉构件构造成当储存器接近整个位置时接合可收缩构件的外表面,并且使储存器中的压力随着与可折叠构件的表面的接合以及伴随的流体引入储存器而增加。 输液装置还包括与储存器连通的压力传感器,其可用于通过测量与可收缩构件的外表面接合的干涉构件和伴随的流体引入储存器的特征压力来确定储存器是否满。
    • 29. 发明授权
    • Detecting a full reservoir of an implantable infusion device
    • 检测植入式输液装置的完整容器
    • US08512286B2
    • 2013-08-20
    • US13088619
    • 2011-04-18
    • Scott L. KalpinJames M. Haase
    • Scott L. KalpinJames M. Haase
    • A61M37/00
    • A61M5/14276A61M5/1684A61M2205/3523A61M2209/045
    • An implantable infusion device includes a housing and a collapsible member and an interference member disposed within the housing. The collapsible member defines a reservoir for containing fluid and has an outer surface that moves between an empty position and a full position in response to a change in volume of fluid contained in the reservoir. The interference member is configured to engage the outer surface of the collapsible member as the reservoir approaches the full position and to cause pressure in the reservoir to increase following engagement with the surface of the collapsible member and concomitant fluid introduction into the reservoir. The infusion device further includes a pressure sensor in communication with the reservoir, which can be used to determine whether the reservoir is full by measuring characteristic pressures associated with the interference member engaging the outer surface of the collapsible member and concomitant fluid introduction into the reservoir.
    • 植入式输注装置包括壳体和可折叠构件以及设置在壳体内的干涉构件。 可折叠构件限定用于容纳流体的储存器,并且具有响应于容纳在容器中的流体的体积变化而在空位置和满位置之间移动的外表面。 干涉构件构造成当储存器接近整个位置时接合可收缩构件的外表面,并且使储存器中的压力随着与可折叠构件的表面的接合以及伴随的流体引入储存器而增加。 输液装置还包括与储存器连通的压力传感器,其可用于通过测量与可收缩构件的外表面接合的干涉构件和伴随的流体引入储存器的特征压力来确定储存器是否满。
    • 30. 发明授权
    • Capacitive pressure sensor assembly
    • 电容式压力传感器组件
    • US08397578B2
    • 2013-03-19
    • US12793459
    • 2010-06-03
    • Keith A. MieselJames M. HaaseChris J. PaidoshDarren A. JanzigTimothy J. Denison
    • Keith A. MieselJames M. HaaseChris J. PaidoshDarren A. JanzigTimothy J. Denison
    • G01L9/12A61M5/14
    • G01L9/0072G01L19/142G01L19/143G01L19/147H01L2224/48472Y10T29/49002Y10T29/53265
    • The disclosure is directed to a capacitive pressure sensor, and the assembly of a capacitive pressure sensor, that may be used within an implantable medical pump. In one example, a housing ferrule that encloses one capacitive plate and includes at least one protrusion for attaching a support structure of the capacitive plate. The at least one protrusion defines a smaller inner diameter as a reference point for securing the support structure while the ferrule provides a larger inner diameter to allow the support structure to tilt inside the ferrule to orient the capacitive plate into a desired plane. Despite manufacturing irregularities, the capacitive plate can be mounted in the desired plane parallel to another capacitive plate, a diaphragm, mounted to an edge of the ferrule. In another example, an assembly tool provides a stage to orient the capacitive plate and support structure within the ferrule at a desired depth.
    • 本公开涉及电容式压力传感器以及可在可植入医疗泵内使用的电容式压力传感器的组件。 在一个示例中,壳体套圈包围一个电容板并且包括用于附接电容板的支撑结构的至少一个突起。 所述至少一个突出部限定较小的内径作为用于固定支撑结构的参考点,同时套圈提供更大的内径以允许支撑结构在套圈内部倾斜以将电容板定向到期望的平面。 尽管制造不规则,但是电容板可以安装在平行于另一个电容板的所需平面中,该电容板安装在套圈的边缘上。 在另一示例中,组装工具提供了将电容板和支撑结构定位在套圈内的阶段,以期望的深度。