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    • 1. 发明授权
    • Patient support systems for use with radiation therapy systems and other applications
    • 用于放射治疗系统和其他应用的患者支持系统
    • US08020227B2
    • 2011-09-20
    • US11816976
    • 2004-10-18
    • Steven C. DimmerMatthew A. HerronEdward J. Vertatschitsch
    • Steven C. DimmerMatthew A. HerronEdward J. Vertatschitsch
    • A47B13/00
    • A61B5/06A61B6/0442
    • An apparatus for supporting a patient in radiation therapy and other applications. In one embodiment, the apparatus includes a support structure and a panel carried by the support structure. The support structure can have first and second support members, such as rigid girders or other structures comprising substantially dielectric materials. The panel is also a rigid structure comprising substantially dielectric materials. The panels can further include a pass-through zone or other type of zone that is compatible with an ionizing radiation beam. For example, the panel can have a grid or solid low-density structure that mitigates beam contamination. The support structure and the panel together are configured to position a magnetic marker implanted in the patient in a navigational zone in which a magnetic field transmitted from the marker is not affected by conductive components or loops of conductive material in the pedestals or cantilevered support structures of conventional patient systems.
    • 一种用于在放射治疗和其他应用中支持患者的装置。 在一个实施例中,该装置包括支撑结构和由支撑结构承载的面板。 支撑结构可以具有第一和第二支撑构件,例如刚性梁或包括基本介电材料的其他结构。 面板也是包括基本介电材料的刚性结构。 面板还可包括与电离辐射束兼容的通过区域或其他类型的区域。 例如,面板可以具有减轻束污染的网格或固体低密度结构。 支撑结构和面板一起构造成将植入患者体内的磁性标记定位在导航区域中,其中从标记物传输的磁场不受基座或悬臂支撑结构中的导电材料的导电部件或环的影响 常规患者系统。
    • 3. 发明授权
    • Docking module
    • 对接模块
    • US5030128A
    • 1991-07-09
    • US319200
    • 1989-03-06
    • Matthew A. HerronDan H. Wilkie
    • Matthew A. HerronDan H. Wilkie
    • G06F1/16H01R13/631H01R13/641
    • G06F1/1632H01R13/631H01R13/641
    • A docking module facilitates conversion of a portable computer between a lap-top mode of operation and a desk-top mode of operation by permitting simultaneous attachment of the computer to a plurality of electrical connectors thereby eliminating the need for individual cable connections between the computer and the respective individual apparatus. Toggle latches that attach the docking module to the computer chassis contain spring biased latches designed to emit an audible signal indicating proper alignment between the complementary connectors on the facing surfaces of the docking module and the computer chassis, whereby toggling of the latches can be undertaken without danger of damaging the connectors.
    • 对接模块通过允许将计算机同时附接到多个电连接器从而消除对计算机与计算机之间的单独电缆连接的需要,便于便携式计算机在笔记本操作模式和台式操作模式之间的转换 相应的单独设备。 将对接模块连接到计算机机箱的切换闩锁包含弹簧偏置闩锁,设计用于发出可听见的信号,指示对接模块和计算机机箱的相对表面上的互补连接器之间的正确对准,从而可以进行闩锁的切换而无需 损坏连接器的危险。
    • 6. 发明授权
    • Patient support systems for use with radiation therapy systems and other applications
    • 用于放射治疗系统和其他应用的患者支持系统
    • US08453281B2
    • 2013-06-04
    • US13216508
    • 2011-08-24
    • Steven C. DimmerMatthew A. HerronEdward J. Vertatschitsch
    • Steven C. DimmerMatthew A. HerronEdward J. Vertatschitsch
    • A47B13/00
    • A61B5/06A61B6/0442
    • An apparatus for supporting a patient in radiation therapy and other applications. In one embodiment, the apparatus includes a support structure and a panel carried by the support structure. The support structure can have first and second support members, such as rigid girders or other structures comprising substantially dielectric materials. The panel is also a rigid structure comprising substantially dielectric materials. The panel can further include a pass-through zone or other type of zone that is compatible with an ionizing radiation beam. For example, the panel can have a grid or solid low-density structure that mitigates beam contamination. The support structure and the panel together are configured to position a magnetic marker implanted in the patient in a navigational zone in which a magnetic field transmitted from the marker is not affected by conductive components or loops of conductive material in the pedestals or cantilevered support structures of conventional patient support systems.
    • 一种用于在放射治疗和其他应用中支持患者的装置。 在一个实施例中,该装置包括支撑结构和由支撑结构承载的面板。 支撑结构可以具有第一和第二支撑构件,例如刚性梁或包括基本介电材料的其他结构。 面板也是包括基本介电材料的刚性结构。 面板还可以包括与电离辐射束相容的通过区域或其他类型的区域。 例如,面板可以具有减轻束污染的网格或固体低密度结构。 支撑结构和面板一起构造成将植入患者体内的磁性标记定位在导航区域中,其中从标记物传输的磁场不受基座或悬臂支撑结构中的导电材料的导电部件或环的影响 常规患者支持系统。
    • 7. 发明申请
    • Patient Support Systems for Use with Radiation Therapy Systems and Other Applications
    • 用于放射治疗系统和其他应用的患者支持系统
    • US20090211027A1
    • 2009-08-27
    • US11816976
    • 2004-10-18
    • Steven C. DimmerMatthew A. HerronEdward J. Vertatschitsch
    • Steven C. DimmerMatthew A. HerronEdward J. Vertatschitsch
    • A47B13/00
    • A61B5/06A61B6/0442
    • An apparatus for supporting a patient in radiation therapy and other applications. In one embodiment, the apparatus includes a support structure and a panel carried by the support structure. The support structure can have first and second support members, such as rigid girders or other structures comprising substantially dielectric materials. The panel is also a rigid structure comprising substantially dielectric materials. The panel can further include a pass-through zone or other type of zone that is compatible with an ionizing radiation beam. For example, the panel can have a grid or solid low-density structure that mitigates beam contamination. The support structure and the panel together are configured to position a magnetic marker implanted in the patient in a navigational zone in which a magnetic field transmitted from the marker is not affected by conductive components or loops of conductive material in the pedestals or cantilevered support structures of conventional patient systems.
    • 一种用于在放射治疗和其他应用中支持患者的装置。 在一个实施例中,该装置包括支撑结构和由支撑结构承载的面板。 支撑结构可以具有第一和第二支撑构件,例如刚性梁或包括基本介电材料的其他结构。 面板也是包括基本介电材料的刚性结构。 面板还可以包括与电离辐射束相容的通过区域或其他类型的区域。 例如,面板可以具有减轻束污染的网格或固体低密度结构。 支撑结构和面板一起构造成将植入患者体内的磁性标记定位在导航区域中,其中从标记物传输的磁场不受基座或悬臂支撑结构中的导电材料的导电部件或环的影响 常规患者系统。
    • 9. 发明授权
    • Wheelchair operated by hand pedalled reciprocating motion
    • 轮椅由手动踏板往复运动
    • US4560181A
    • 1985-12-24
    • US576068
    • 1984-01-30
    • Matthew A. Herron
    • Matthew A. Herron
    • B62M1/16A61G5/02B62M1/14
    • A61G5/023A61G5/025Y10S297/04
    • A wheelchair and drive mechanism powered by reciprocating operation of a drive lever. The drive mechanism provides a continuously variable gear ratio allowing wheelchair operation at varying speeds and on differing inclines; and is readily fitted to a standard wheelchair by a drive-associated bayonet mount. A drive mechanism ratchet wheel includes an upper and lower radial crank secured for rotation thereabout by an axle. Each crank includes a pawl assembly that engages with circumferential ratchet wheel teeth to transfer drive energy supplied to the radial cranks from connecting arms to the ratchet wheel. The connecting arms are coupled to a reciprocating lever arm and operate in concert with the pawls to alternately engage with and transfer energy to the ratchet wheel, or disengage therefrom. While one connecting arm and associated pawl is transferring energy to the ratchet wheel, the other connecting arm is disengaging an associated pawl from the ratchet wheel. Energy is transferred during both a forward and rearward stroke of the lever arm to effect efficient wheelchair and drive operation.
    • 轮椅和驱动机构由驱动杆的往复运动驱动。 驱动机构提供了连续可变的齿轮比,允许轮椅在不同速度和不同倾斜度下操作; 并且通过驱动器相关的卡口安装件容易地安装到标准轮椅上。 驱动机构棘轮包括固定用于通过轴在其周围旋转的上下径向曲柄。 每个曲柄包括棘爪组件,其与周向棘轮齿啮合,以将从径向曲柄供应的驱动能量从连接臂传递到棘轮。 连接臂联接到往复式杠杆臂并与棘爪一致地操作以与棘轮交替地接合和传递能量,或者将其从其上脱离。 当一个连接臂和相关的棘爪将能量传递到棘轮时,另一个连接臂将相关棘爪与棘轮分离。 在杠杆臂的向前和向后行程期间能量传递以实现有效的轮椅和驾驶操作。