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    • 2. 发明授权
    • Catheter connection hub
    • 导管连接中心
    • US08500715B2
    • 2013-08-06
    • US13317330
    • 2011-10-14
    • N. Sandor RaczGary Bullard
    • N. Sandor RaczGary Bullard
    • A61M25/16A61M25/18A61M5/178
    • A61M25/0097A61M5/158A61M2005/1587
    • Fluid communication to an end of a catheter is afforded through a connection hub selectively attachable thereto. The connection hub includes a catheter receiving element and a fluid coupling element that are relatively rotatable coaxially between a catheter receiving condition and a catheter capture condition of the connection hub. The catheter capture condition, a compressible sealing sleeve disposed interior of the connection hub between a pair of clamping jaws projecting from the catheter receiving element is urged into sealing engagement with the exterior of the catheter, catheter is gripped mechanically through the sealing sleeve by the clamping jaws. The exteriors of each of the catheter receiving element and the fluid coupling element are formed into planar actuation handles that facilitate relative rotation of the catheter receiving element and the fluid coupling element into coplanar alignment in the catheter capture condition of the connection hub.
    • 通过可选择性地附接到导管的连接毂提供到导管端部的流体连通。 连接毂包括导管接收元件和流体联接元件,其可在导管接收状态和连接毂的导管捕获状态之间同轴地相对旋转。 导管捕获状态,设置在连接毂内部的可从该导管接收元件突出的一对夹爪之间的可压缩密封套被推动与导管的外部密封接合,导管通过夹紧机械地通过密封套被夹紧 颚。 每个导管接收元件和流体耦合元件的外部形成平面致动手柄,其促进导管接收元件和流体连接元件在连接毂的导管捕获状态下的共面对准。
    • 5. 发明授权
    • Efficient flow control in a radio network controller (RNC)
    • 无线网络控制器(RNC)中的高效流量控制
    • US08369221B2
    • 2013-02-05
    • US12740499
    • 2008-10-29
    • Sandor RaczZoltan C. NagySzilveszter NadasPeter Lundh
    • Sandor RaczZoltan C. NagySzilveszter NadasPeter Lundh
    • H04J1/16
    • H04W28/0284H04L1/1825H04L1/1832H04L47/10H04L47/11H04L47/12H04L47/14H04L47/225H04L47/25H04W28/12
    • A mechanism is provided to resolve the Iub transport network congestion efficiently for HSDPA by dynamic adjustment of the transmit window of the RLC. The RLC protocol is extended with congestion control functionality. The Iub TN and Uu congestion detection method in the Node-B (120) signals the congestion to the RNC (110), and this congestion indication is used by RLC to react on the congestion situation. In the RNC (110), the transmission window of the RLC is adjusted to control the flow rate. When congestion is detected, the RLC transmission window size is decreased. When there is no congestion, then the RLC transmission window size is increased automatically. Different types of congestion are distinguished and are handled in different ways. Alternatively, congestion control is achieved without any modification in the RLC layer from the existing standard. Here, RLC STATUS PDUs are used to change the RLC transmission window size.
    • 提供了通过RLC的发送窗口的动态调整来有效解决HSDPA的Iub传输网络拥塞的机制。 RLC协议通过拥塞控制功能扩展。 NodeB(120)中的Iub TN和Uu拥塞检测方法向RNC(110)发出拥塞信令,并且使用该拥塞指示对拥塞情况作出反应。 在RNC(110)中,调整RLC的发送窗口以控制流量。 当检测到拥塞时,RLC传输窗口大小减小。 当没有拥塞时,RLC传输窗口大小自动增加。 区分不同类型的拥塞,并以不同的方式处理。 或者,实现拥塞控制,而无需RLC层中的任何修改与现有标准。 这里,RLC状态PDU用于改变RLC传输窗口大小。
    • 7. 发明授权
    • Flow elements for use with flexible spinal needles, needle assemblies for manufacture and methods therefor
    • 用于柔性脊椎针,用于制造的针组件的流动元件及其方法
    • US08202461B2
    • 2012-06-19
    • US12735451
    • 2009-01-14
    • N. Sandor Racz
    • N. Sandor Racz
    • A61M5/32
    • A61B17/3401A61M5/329Y10T29/49826
    • A flow element (50) for use with flexible needles and flexible needle assemblies (10) to minimize flow occlusion within a flexible needle (15) is provided. The flow element (50) is particularly suited for uses with a flexible needle (15) for minimizing incidence of post-dural puncture headache. The flow element (50) includes a body having an internal flow path for conducting a fluid through a flexible needle, and an anti-restriction member (56). The anti-restriction member (56) includes an elongated body (58), a proximal end (70) coupled to the body within the internal flow path, and a distal end (60) for positioning at least a portion of the elongated body within a flexible needle. A flexible spinal needle assembly (10) for minimizing flow occlusion through an internal flow path of a flexible needle (15) by unintended kinking that is potentially caused by ligament or muscle layer movements is also provided, hi other embodiments, a flexible spinal needle assembly (10), a flexible spinal needle assembly kit, a method for installing a flexible spinal needle assembly, and a process for producing a flow element are provided.
    • 提供了一种用于柔性针和柔性针组件(10)以使柔性针(15)内的流动阻塞最小化的流动元件(50)。 流动元件(50)特别适用于使用柔性针(15)以最小化硬膜外穿刺性头痛的发生率。 流动元件(50)包括具有用于通过柔性针引导流体的内部流路的主体和防止限制构件(56)。 抗限制构件(56)包括细长主体(58),在内部流动路径内联接到主体的近端(70)和用于将细长体的至少一部分定位在其内的远端(60) 柔性针。 还提供了一种柔性脊椎针头组件(10),用于通过可能由韧带或肌肉层运动引起的意外扭结来最小化通过柔性针(15)的内部流动路径的流动闭塞。在其他实施例中,柔性脊椎针头组件 (10),柔性脊椎针头组装套件,安装柔性脊椎针头组件的方法以及用于制造流动元件的方法。