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    • 14. 发明授权
    • Remotely adjustable gastric banding system
    • 可远程调节胃束带系统
    • US09050165B2
    • 2015-06-09
    • US13905019
    • 2013-05-29
    • Apollo Endosurgery, Inc.
    • Christian Y. Perron
    • A61F5/00
    • A61F5/0059A61F5/0056
    • A fluid reservoir for use in a remotely adjustable gastric banding system comprises a housing and a flexible reservoir pouch positioned within the housing. The flexible reservoir pouch is coupled to an inflatable portion of a gastric band via flexible tubing. A pump coupled to the flexible reservoir pouch facilitates filling and draining the inflatable portion of the gastric band. The pump may be located within or outside of the housing. A receiving coil may be coupled to the housing, and the receiving coil forms a loop around the housing. The receiving coil receives radio frequency signals to drive the pump. A circuit board may be disposed in the housing for driving the pump to move the fluid between the flexible reservoir pouch and the inflatable portion of the gastric band. A portion of the circuit board may be a flexible circuit board to allow the housing to flex.
    • 用于可远程调节的胃束带系统的流体储存器包括壳体和位于壳体内的柔性储存袋。 柔性贮存袋通过柔性管连接到胃带的可充气部分。 耦合到柔性储存器袋的泵有助于填充和排出胃带的可充气部分。 泵可以位于壳体内部或外部。 接收线圈可以联接到壳体,并且接收线圈围绕壳体形成环。 接收线圈接收射频信号以驱动泵。 电路板可以设置在壳体中,用于驱动泵以使柔性储存器袋和胃带的可充气部分之间的流体移动。 电路板的一部分可以是柔性电路板,以允许外壳弯曲。
    • 15. 发明授权
    • System and methods for accelerating simulation of radiation treatment
    • 加速辐射治疗模拟的系统和方法
    • US09044601B2
    • 2015-06-02
    • US13125132
    • 2009-10-19
    • Fred CurrellMarcus Mendenhall
    • Fred CurrellMarcus Mendenhall
    • A61N5/10G06F17/50A61B6/03
    • A61N5/1031A61B6/03A61N2005/1034G06F17/5009
    • A method for estimating a radiation dose and distribution for a target volume is provided. The method includes receiving a simulated dose array (606) describing a plurality of simulated dose values for a plurality of voxels in the target volume, generating an energy deposition coefficient function for the plurality of voxels (608), and obtaining a raw fluence array based at least on the simulated dose array and the energy deposition coefficient function (612). The method also includes generating an adjusted fluence array (613) based on the raw fluence array and at least one adjustment criteria, and generating an adjusted dose array (622) for the target volume based on the adjusted fluence array and the energy deposition coefficient function.
    • 提供了用于估计目标体积的辐射剂量和分布的方法。 该方法包括:接收描述目标体积中的多个体素的多个模拟剂量值的模拟剂量阵列(606),产生用于多个体素的能量沉积系数函数(608),并且获得原始注量阵列 至少在模拟剂量阵列和能量沉积系数函数上(612)。 该方法还包括基于原始注量阵列和至少一个调整标准生成调整后的注量阵列(613),并且基于经调整的注量阵列和能量沉积系数函数产生用于目标体积的调整剂量阵列(622) 。
    • 17. 发明授权
    • Biomass monitor probes and bioreactors incorporating such probes
    • 结合了这种探针的生物质监测探头和生物反应器
    • US08988082B2
    • 2015-03-24
    • US13091263
    • 2011-04-21
    • Jonathan SelmanJohn Carvell
    • Jonathan SelmanJohn Carvell
    • G01R27/28G01N33/487C12M1/34
    • G01N33/48735C12M41/36
    • A bioreactor includes a plastic enclosure for containing a biological medium, the enclosure being integrally formed to have one or more elongate port extensions projecting outwardly from the enclosure and communicating from the exterior to the interior of the enclosure. A biomass impendence monitor probe is provided for use in conjunction with the bioreactor. The probe is pushed into one or more of the elongate ports in order to have an electrode arrangement positioned internally of the container. The probe has an elongate housing having an outer surface extending along and contiguous with the elongate inner surface of the port extension. The housing extends from the electrode end of the probe to a remote end. The housing is provided with an electrical connector connected to the electrode arrangement.
    • 生物反应器包括用于容纳生物介质的塑料外壳,所述外壳整体地形成为具有一个或多个细长端口延伸部,其从所述外壳向外突出并且从所述外壳到所述外壳的内部连通。 提供生物质阻力监测探头以与生物反应器结合使用。 将探针推入一个或多个细长端口中,以便具有位于容器内部的电极布置。 探针具有细长壳体,其外表面沿端口延伸部的细长内表面延伸并与其邻接。 壳体从探头的电极端延伸到远端。 壳体设置有连接到电极装置的电连接器。