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    • 14. 发明申请
    • POSITIVE DISPLACEMENT FLUID LOCK PORT
    • 积极位移流体锁口
    • US20090005759A1
    • 2009-01-01
    • US12141178
    • 2008-06-18
    • Todd M. Chelak
    • Todd M. Chelak
    • A61M25/14
    • A61M39/02A61M39/26A61M2039/263
    • Positive displacement fluid lock ports for use in combination with an indwelling catheter and a syringe during a flushing/locking procedure are provided. The fluid lock port includes a housing having a distal and a proximal end; a resilient conduit supported within the housing, wherein the conduit defines a lumen therethrough; and at least one biasing member supported in the housing and being operatively associatable with the resilient conduit. The at least one biasing member has a first condition restrained from deforming the resilient conduit and a second condition operatively engaged with the resilient conduit to at least partially occlude the lumen of the resilient conduit.
    • 提供了在冲洗/锁定过程期间与留置导管和注射器组合使用的正位移流体锁定端口。 流体锁定端口包括具有远端和近端的壳体; 支撑在所述壳体内的弹性导管,其中所述导管限定通过其中的腔; 以及至少一个偏压构件,其被支撑在所述壳体中并且与所述弹性导管可操作地相关联。 所述至少一个偏置构件具有被限制使所述弹性导管变形的第一状态和与所述弹性导管可操作地接合以至少部分地封闭所述弹性导管的内腔的第二状态。
    • 17. 发明申请
    • Positive Displacement Fluid Lock Port
    • 正位移流体锁定端口
    • US20110137265A1
    • 2011-06-09
    • US13028663
    • 2011-02-16
    • Todd M. Chelak
    • Todd M. Chelak
    • A61M39/28
    • A61M39/02A61M39/26A61M2039/263
    • Positive displacement fluid lock ports for use in combination with an indwelling catheter and a syringe during a flushing/locking procedure are provided. The fluid lock port includes a housing having a distal and a proximal end; a resilient conduit supported within the housing, wherein the conduit defines a lumen therethrough; and at least one biasing member supported in the housing and being operatively associatable with the resilient conduit. The at least one biasing member has a first condition restrained from deforming the resilient conduit and a second condition operatively engaged with the resilient conduit to at least partially occlude the lumen of the resilient conduit.
    • 提供了在冲洗/锁定过程期间与留置导管和注射器组合使用的正位移流体锁定端口。 流体锁定端口包括具有远端和近端的壳体; 支撑在所述壳体内的弹性导管,其中所述导管限定通过其中的腔; 以及至少一个偏压构件,其被支撑在所述壳体中并且与所述弹性导管可操作地相关联。 所述至少一个偏置构件具有被限制使所述弹性导管变形的第一状态和与所述弹性导管可操作地接合以至少部分地封闭所述弹性导管的内腔的第二状态。
    • 18. 发明授权
    • Positive displacement fluid lock port
    • 正排量流体锁定口
    • US07896863B2
    • 2011-03-01
    • US12141178
    • 2008-06-18
    • Todd M. Chelak
    • Todd M. Chelak
    • A61M25/16A61M25/18A61M5/14F16L37/28
    • A61M39/02A61M39/26A61M2039/263
    • Positive displacement fluid lock ports for use in combination with an indwelling catheter and a syringe during a flushing/locking procedure are provided. The fluid lock port includes a housing having a distal and a proximal end; a resilient conduit supported within the housing, wherein the conduit defines a lumen therethrough; and at least one biasing member supported in the housing and being operatively associatable with the resilient conduit. The at least one biasing member has a first condition restrained from deforming the resilient conduit and a second condition operatively engaged with the resilient conduit to at least partially occlude the lumen of the resilient conduit.
    • 提供了在冲洗/锁定过程期间与留置导管和注射器组合使用的正位移流体锁定端口。 流体锁定端口包括具有远端和近端的壳体; 支撑在所述壳体内的弹性导管,其中所述导管限定通过其中的腔; 以及至少一个偏压构件,其被支撑在所述壳体中并且与所述弹性导管可操作地相关联。 所述至少一个偏置构件具有被限制使所述弹性导管变形的第一状态和与所述弹性导管可操作地接合以至少部分地封闭所述弹性导管的内腔的第二状态。
    • 19. 发明申请
    • Multi-stage microporation device
    • 多级微孔装置
    • US20080234626A1
    • 2008-09-25
    • US11796107
    • 2007-04-26
    • Todd M. Chelak
    • Todd M. Chelak
    • A61N1/30
    • A61B18/04A61B2017/00765A61N1/042A61N1/0424A61N1/327
    • A thermal treatment device for forming a micropore in a barrier has a micro-heater component with at least one micro-heater with a thermal member having a base end and a tip end. The device also has an ablation material in the at least one micro-heater and a power supply component for activating the micro-heater component. The ablation material expands in response to the activation in order to mechanically puncture the barrier to a first depth without thermally inducing ablation of the barrier and the micro-heater component enlarges the first depth of the micropore to a second depth and/or produces an improvement in at least one physiological property of the micropore.
    • 用于在屏障中形成微孔的热处理装置具有微加热器部件,该微加热器部件具有至少一个具有热部件的微加热器,该加热部件具有基端和尖端。 该装置还具有至少一个微加热器中的消融材料和用于启动微加热器部件的电源部件。 消融材料响应于激活而膨胀,以便将屏障机械地刺穿到第一深度,而不会导致屏障的消融,并且微加热器部件将微孔的第一深度扩大到第二深度和/或产生改善 在微孔的至少一个生理特性中。