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    • 1. 发明授权
    • Shunt valve locking mechanism
    • 分流阀锁定机构
    • US07771381B2
    • 2010-08-10
    • US12029818
    • 2008-02-12
    • Daniel McCuskerAlan J. DextradeurRainuka GuptaCarleton Bryan Southworth
    • Daniel McCuskerAlan J. DextradeurRainuka GuptaCarleton Bryan Southworth
    • A61M5/00F16K31/12F16K35/00
    • F16K35/025A61M27/006F16K35/04Y10T70/5615Y10T137/7069Y10T137/7225Y10T137/7256
    • A locking assembly is provided to simply and effectively prevent any unintentional adjustment of the adjustable valve mechanism in a fluid flow control device, without compromising the function of the device. The locking assembly generally includes at least one gripping arm for frictionally engaging at least a portion of the adjustable valve mechanism, and an actuating mechanism for controlling the deployment and release of the gripping arm. The locking assembly prevents unintentional adjustments that can adversely affect the pressure settings of the fluid flow control device. In particular, the locking assembly prevents unintentional adjustment, such as may be caused by the presence of a strong external magnetic field. The locking assembly can be easily disengaged, such as through the application or removal of an external mechanical force, to allow a clinician to adjust the pressure settings of the fluid flow control device as necessary.
    • 提供了一种锁定组件,以简单且有效地防止流体流量控制装置中的可调节阀机构的任何无意的调节,而不会影响装置的功能。 锁定组件通常包括至少一个夹紧臂,用于摩擦地接合可调节阀机构的至少一部分,以及用于控制夹持臂的展开和释放的致动机构。 锁定组件防止可能不利地影响流体流量控制装置的压力设置的意外调整。 特别地,锁定组件防止无意的调整,例如可能由于存在强的外部磁场而引起。 锁定组件可以容易地脱离,例如通过施加或移除外部机械力,以允许临床医生根据需要调节流体流量控制装置的压力设置。
    • 2. 发明授权
    • Shunt valve locking mechanism
    • 分流阀锁定机构
    • US07390310B2
    • 2008-06-24
    • US10192394
    • 2002-07-10
    • Daniel McCuskerAlan J. DextradeurRainuka GuptaCarleton Bryan Southworth
    • Daniel McCuskerAlan J. DextradeurRainuka GuptaCarleton Bryan Southworth
    • A61M5/00F16K31/12F16F35/00
    • F16K35/025A61M27/006F16K35/04Y10T70/5615Y10T137/7069Y10T137/7225Y10T137/7256
    • A locking assembly is provided to simply and effectively prevent any unintentional adjustment of the adjustable valve mechanism in a fluid flow control device, without compromising the function of the device. The locking assembly generally includes at least one gripping arm for frictionally engaging at least a portion of the adjustable valve mechanism, and an actuating mechanism for controlling the deployment and release of the gripping arm. The locking assembly prevents unintentional adjustments that can adversely affect the pressure settings of the fluid flow control device. In particular, the locking assembly prevents unintentional adjustment, such as may be caused by the presence of a strong external magnetic field. The locking assembly can be easily disengaged, such as through the application or removal of an external mechanical force, to allow a clinician to adjust the pressure settings of the fluid flow control device as necessary.
    • 提供了一种锁定组件,以简单且有效地防止流体流量控制装置中的可调节阀机构的任何无意的调节,而不会影响装置的功能。 锁定组件通常包括至少一个夹紧臂,用于摩擦地接合可调节阀机构的至少一部分,以及用于控制夹持臂的展开和释放的致动机构。 锁定组件防止可能不利地影响流体流量控制装置的压力设置的意外调整。 特别地,锁定组件防止无意的调整,例如可能由于存在强的外部磁场而引起。 锁定组件可以容易地脱离,例如通过施加或移除外部机械力,以允许临床医生根据需要调节流体流量控制装置的压力设置。
    • 3. 发明申请
    • Shunt Valve Locking Mechanism
    • 分流阀锁定机构
    • US20080127689A1
    • 2008-06-05
    • US12029818
    • 2008-02-12
    • Daniel McCuskerAlan J. DextradeurRainuka GuptaCarleton Bryan Southworth
    • Daniel McCuskerAlan J. DextradeurRainuka GuptaCarleton Bryan Southworth
    • F16K35/00A61M27/00
    • F16K35/025A61M27/006F16K35/04Y10T70/5615Y10T137/7069Y10T137/7225Y10T137/7256
    • A locking assembly is provided to simply and effectively prevent any unintentional adjustment of the adjustable valve mechanism in a fluid flow control device, without compromising the function of the device. The locking assembly generally includes at least one gripping arm for frictionally engaging at least a portion of the adjustable valve mechanism, and an actuating mechanism for controlling the deployment and release of the gripping arm. The locking assembly prevents unintentional adjustments that can adversely affect the pressure settings of the fluid flow control device. In particular, the locking assembly prevents unintentional adjustment, such as may be caused by the presence of a strong external magnetic field. The locking assembly can be easily disengaged, such as through the application or removal of an external mechanical force, to allow a clinician to adjust the pressure settings of the fluid flow control device as necessary.
    • 提供了一种锁定组件,以简单且有效地防止流体流量控制装置中的可调节阀机构的任何无意的调节,而不会影响装置的功能。 锁定组件通常包括至少一个夹紧臂,用于摩擦地接合可调节阀机构的至少一部分,以及用于控制夹持臂的展开和释放的致动机构。 锁定组件防止可能不利地影响流体流量控制装置的压力设置的意外调整。 特别地,锁定组件防止无意的调整,例如可能由于存在强的外部磁场而引起。 锁定组件可以容易地脱离,例如通过施加或移除外部机械力,以允许临床医生根据需要调节流体流量控制装置的压力设置。
    • 5. 发明授权
    • Framework for belt conveyor
    • 皮带输送机框架
    • US06662939B1
    • 2003-12-16
    • US09890468
    • 2001-09-10
    • Daniel McCuskerNeil Suitor
    • Daniel McCuskerNeil Suitor
    • B65G2110
    • B65G41/002
    • A framework for a belt conveyor comprising a base structure having a three point mounting arrangement in which the mountings are in a substantial triangular displacement with one upper mounting and two lower mountings. A boom structure has its inward end pivotally connected to the base structure through the three mountings and has an elongate boom member and an elongate support member. The boom member is pivoted to the upper mounting with the support member being pivoted to one of the lower mountings. The support member underlies the boom member and towards its mounted inward end is cranked outwardly and has outer end pivotally connected to the boom structure. A mounting plate is provided near to the crank between which and the second of the lower mountings, a ram and cylinder arrangement is connected. The mountings are displayed angularly to enable the boom structure to be capable of articulation between an outbound upwardly inclined horizontal orientation and an inward substantially vertical orientation.
    • 一种用于带式输送机的框架,其包括具有三点安装布置的基座结构,其中所述安装件具有一个上部安装件和两个下部安装件的大致三角形位移。 动臂结构的内端通过三个安装件枢转地连接到基座结构,并且具有细长的悬臂构件和细长的支撑构件。 悬臂构件枢转到上安装件,支撑构件枢转到下安装件之一。 悬臂构件下方并且朝向其安装的内端的支撑构件向外弯曲并具有与悬臂结构枢转连接的外端。 一个安装板设置在曲柄附近,在其下和第二个下部安装件之间连接一个压头和气缸装置。 安装件以角度方式显示,以使得悬臂结构能够在出站向上倾斜的水平取向和向内基本垂直的方向之间进行铰接。
    • 7. 发明申请
    • Cradled Sensor Assembly
    • 摇臂传感器组件
    • US20090005701A1
    • 2009-01-01
    • US11770998
    • 2007-06-29
    • Alan DextradeurStephen WilsonDaniel McCusker
    • Alan DextradeurStephen WilsonDaniel McCusker
    • A61B5/03A61B5/01
    • A61M27/00A61B5/031A61M27/006
    • Various methods and devices are provided for removably coupling a sensor assembly to a catheter to measure conditions surrounding the catheter when the catheter is implanted in a patient. In one embodiment, a modular sensor assembly is provided and includes a housing having an antenna therein adapted to be removably coupled to at least a portion of a catheter. The housing can be a closed loop having an opening therethrough. One or more sensors can be coupled to the antenna for measuring conditions surrounding the catheter when the catheter is implanted in a patient. In one embodiment, the housing can be adapted to removably couple to a distal end of the catheter, and the opening of the housing can be adapted to receive the catheter. The antenna can be a loop disposed within the housing.
    • 提供了各种方法和装置,用于将传感器组件可移除地联接到导管,以当将导管植入患者时测量导管周围的状况。 在一个实施例中,提供了模块化传感器组件,并且包括其中具有天线的壳体,其适于可移除地联接到导管的至少一部分。 壳体可以是具有穿过其中的开口的闭合回路。 当将导管植入患者时,一个或多个传感器可耦合到天线,用于测量导管周围的状况。 在一个实施例中,壳体可以适于可拆卸地联接到导管的远端,并且壳体的开口可以适于接收导管。 天线可以是设置在壳体内的环路。
    • 10. 发明申请
    • High pressure range hydrocephalus valve system
    • 高压范围脑积水阀系统
    • US20060074371A1
    • 2006-04-06
    • US10955258
    • 2004-09-30
    • Daniel McCuskerAlan Dextradeur
    • Daniel McCuskerAlan Dextradeur
    • A61M5/00
    • A61M27/006Y10T137/0508
    • A valve for use in a shunt system to drain fluid from one part of a patient's body to another is provided. In an exemplary embodiment, the valve is operable at a threshold pressure that is selectively adjustable up to at least about 400 mm H2O at increments in the range of about 10 mm H2O to 40 mm H2O. The ability of the valve to operate at a high threshold pressure and to be adjusted at relatively small increments renders the valve particularly advantageous for use in younger hydrocephalus patients. In particular, the operating pressure of the valve can be gradually limited in small increments over a period of time to slowly force the patient's own resorption system to circulate cerebrospinal fluid. At high operating pressures of at least about 400 mm H2O shunt independence can be achieved thereby allowing the shunt to be successfully removed.
    • 提供了用于分流系统以将流体从患者身体的一部分排出到另一部分的阀。 在一个示例性实施例中,阀可操作在阈值压力,该阈值压力可选择性地调节至高达至少约400mm H 2 O,其增量在约10mmH 2 / SUB> O至40mm H 2 O。 阀在高阈值压力下操作并以相对小的增量进行调节的能力使得瓣膜特别有利于在年轻脑积水患者中使用。 特别地,可以在一段时间内以小增量逐渐限制阀的操作压力,以缓慢地迫使患者自己的吸收系统循环脑脊液。 在至少约400mm的高操作压力下,可以实现H分流独立性,从而允许分流器被成功地移除。