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    • 1. 发明授权
    • Preconditioned illuminator system and method
    • 预处理照明系统及方法
    • US08542962B2
    • 2013-09-24
    • US12540755
    • 2009-08-13
    • Ronald T. SmithDean Y. LinJack R. AuldTimothy C. Ryan
    • Ronald T. SmithDean Y. LinJack R. AuldTimothy C. Ryan
    • G02B6/32A61B1/07
    • B23P11/025A61B90/30A61B2090/306A61F9/007Y10T29/49865
    • Embodiments of endo-illuminators and related methods are disclosed. One embodiment of an illuminator can comprise a cannula defining a passage, an optical element disposed at an end of the cannula, and an optical fiber running through the passage with the distal end of the optical fiber in contact with the optical element. The optical fiber includes at least a heat preconditioned distal portion that terminates in the distal end that is in contact with the optical element. One embodiment of a method can comprise inserting an optical fiber through a proximal portion of a cannula and optical element assembly until the distal end of the optical fiber contacts the optical element, heating a distal portion of the optical fiber to between a softening temperature and a melting temperature for a period of time to cause the distal portion to axially shrink and moving the optical element so that the optical element is in contact with the distal end of the optical fiber when the distal portion of the optical fiber has axially shrunk. Moving the optical element so that the optical element is in contact with the distal end of the optical fiber when the distal portion of the optical fiber has axially shrunk can comprise applying a force to the cannula and optical element assembly to maintain the optical element in continuous contact with the distal end of the optical fiber while the optical fiber axially shrinks.
    • 公开了内照射器和相关方法的实施例。 照明器的一个实施例可以包括限定通道的插管,设置在插管端部的光学元件以及穿过通道的光纤,其中光纤的远端与光学元件接触。 光纤至少包括热预处理的远端部分,其终止于与光学元件接触的远端。 方法的一个实施例可以包括通过套管和光学元件组件的近端部分插入光纤,直到光纤的远端接触光学元件,将光纤的远端部分加热到软化温度和 熔化温度一段时间,使得远端部分轴向收缩并移动光学元件,使得当光纤的远端部分轴向收缩时,光学元件与光纤的远端接触。 当光纤的远端轴向收缩时,移动光学元件使得光学元件与光纤的远端接触可包括向套管和光学元件组件施加力以将光学元件保持连续 当光纤轴向收缩时,与光纤的远端接触。
    • 4. 发明申请
    • Preconditioned Illuminator System and Method
    • 预处理照明系统和方法
    • US20100042080A1
    • 2010-02-18
    • US12540755
    • 2009-08-13
    • Ronald T. SmithDean Y. LinJack R. AuldTimothy C. Ryan
    • Ronald T. SmithDean Y. LinJack R. AuldTimothy C. Ryan
    • A61B18/00
    • B23P11/025A61B90/30A61B2090/306A61F9/007Y10T29/49865
    • Embodiments of endo-illuminators and related methods are disclosed. One embodiment of an illuminator can comprise a cannula defining a passage, an optical element disposed at an end of the cannula, and an optical fiber running through the passage with the distal end of the optical fiber in contact with the optical element. The optical fiber includes at least a heat preconditioned distal portion that terminates in the distal end that is in contact with the optical element. One embodiment of a method can comprise inserting an optical fiber through a proximal portion of a cannula and optical element assembly until the distal end of the optical fiber contacts the optical element, heating a distal portion of the optical fiber to between a softening temperature and a melting temperature for a period of time to cause the distal portion to axially shrink and moving the optical element so that the optical element is in contact with the distal end of the optical fiber when the distal portion of the optical fiber has axially shrunk. Moving the optical element so that the optical element is in contact with the distal end of the optical fiber when the distal portion of the optical fiber has axially shrunk can comprise applying a force to the cannula and optical element assembly to maintain the optical element in continuous contact with the distal end of the optical fiber while the optical fiber axially shrinks.
    • 公开了内照射器和相关方法的实施例。 照明器的一个实施例可以包括限定通道的插管,设置在插管端部的光学元件以及穿过通道的光纤,其中光纤的远端与光学元件接触。 光纤至少包括热预处理的远端部分,其终止于与光学元件接触的远端。 方法的一个实施例可以包括通过套管和光学元件组件的近端部分插入光纤,直到光纤的远端接触光学元件,将光纤的远端部分加热到软化温度和 熔化温度一段时间,使得远端部分轴向收缩并移动光学元件,使得当光纤的远端部分轴向收缩时,光学元件与光纤的远端接触。 当光纤的远端轴向收缩时,移动光学元件使得光学元件与光纤的远端接触可包括向套管和光学元件组件施加力以将光学元件保持连续 当光纤轴向收缩时,与光纤的远端接触。
    • 5. 发明授权
    • Pressure infusion pump
    • 压力输液泵
    • US5954696A
    • 1999-09-21
    • US990362
    • 1997-12-15
    • Timothy C. Ryan
    • Timothy C. Ryan
    • A61M5/148A61M5/168A61M5/142
    • A61M5/16831A61M5/1483A61M2205/8225Y10S128/12
    • A portable, ambulatory infusion pump for use with standard pre-filled infusion medicament containers is powered by a miniature compressed gas cylinder coupled to a mechanical pressure regulator which supplies regulated gas at a substantially constant pressure to an inflatable bladder. The bladder is positioned between a substantially rigid pressure surface and a moveable pressure transfer plate and pushes against the transfer plate when inflated. A pre-filled medicament container is positioned over the pressure transfer plate and is squeezed between the transfer plate and the pump housing cover as the plate is displaced in response to inflation of the flexible bladder. A safety interlock assembly is connected between the pressure regulator and the inflatable bladder and prevents inflation of the bladder unless the housing cover is completely closed. Upon inadvertent opening of the pump, the internal pressurization system is vented to atmosphere.
    • 用于与标准预灌注输液药物容器一起使用的便携式移动式输液泵由联接到机械压力调节器的微型压缩气瓶提供动力,所述机械压力调节器以基本上恒定的压力向被充气的气囊提供调节气体。 气囊位于基本上刚性的压力表面和可移动的压力传递板之间,并且在充气时推动传递板。 预填充的药物容器位于压力传递板上方,并随着弹性囊的膨胀而使板移动而在传递板和泵壳体盖之间被挤压。 安全联锁组件连接在压力调节器和可膨胀气囊之间,并防止气囊膨胀,除非外壳盖完全关闭。 在无意中打开泵时,内部加压系统排放到大气中。