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    • 4. 发明申请
    • APPARATUS AND METHOD FOR IDENTIFYING THE ABSOLUTE ROTATION OF A ROTATING IMAGING SYSTEM
    • 用于识别旋转成像系统的绝对旋转的装置和方法
    • US20100121604A1
    • 2010-05-13
    • US12270575
    • 2008-11-13
    • Alexander VaisburdLeonid Yakubovsky
    • Alexander VaisburdLeonid Yakubovsky
    • G01C9/00G08B21/00
    • G01C9/00A61B6/032A61B6/547A61B6/56
    • A rotating imaging system has a rotating portion, an idler, at least one sensor, a tilt sensor and a processor. The rotating portion has a diameter and rotates about a central axis. The idler rotates about an axis parallel to the central axis, and has a second diameter that is smaller than the diameter of the rotating portion. The rotating portion and the idler engage with each other such that both rotate simultaneously. The at least one sensor detects flags on the idler as the idler rotates. The tilt sensor is mounted to the rotating portion and determines a rotation angle of the rotating portion within a range of one revolution, and the processor determines an absolute rotation of the rotating portion based on at least a signal from the at least one sensor and the rotation angle determined by the tilt sensor.
    • 旋转成像系统具有旋转部分,惰轮,至少一个传感器,倾斜传感器和处理器。 旋转部分具有直径并围绕中心轴线旋转。 惰轮围绕平行于中心轴线的轴线旋转,并且具有小于旋转部分的直径的第二直径。 旋转部分和惰轮彼此接合,使得两者同时旋转。 当惰轮旋转时,至少一个传感器检测惰轮上的标志。 倾斜传感器被安装到旋转部分并且在一圈的范围内确定旋转部分的旋转角度,并且处理器至少基于来自至少一个传感器的信号确定旋转部分的绝对旋转,并且 由倾斜传感器确定的旋转角度。
    • 8. 发明授权
    • Method and apparatus for a multi-modality imaging system
    • 多模态成像系统的方法和装置
    • US08126537B2
    • 2012-02-28
    • US11051226
    • 2005-02-04
    • Leonid YakubovskyAlexander VaisburdYaron Hefetz
    • Leonid YakubovskyAlexander VaisburdYaron Hefetz
    • A61B5/05A47B23/06
    • A61B6/0457A61B6/032A61B6/037A61B6/0407A61B6/4417A61B6/5276A61B8/00A61B8/40A61B8/4416
    • An apparatus for examining a patient is provided. The apparatus includes a top plate, at least one top rail slideably coupled to said top plate, said top plate selectively positionable between a first imaging position and a second imaging position along an examination axis, a support member coupled to said at least one top rail, said support member configured to selectively change a position of said top plate along an axis perpendicular to said examination axis, said support member comprises at least one guide pin slideably coupled to said at least one rail during movement of said support member, said guide pin configured to retain said support member to said at least one top rail when said top rail is moved between a first modality position and a second modality position.
    • 提供一种用于检查患者的装置。 该装置包括顶板,至少一个可滑动地联接到所述顶板的顶部导轨,所述顶板可选择性地沿着检查轴线定位在第一成像位置和第二成像位置之间,支撑构件联接到所述至少一个顶部导轨 ,所述支撑构件被配置为沿着垂直于所述检查轴线的轴选择性地改变所述顶板的位置,所述支撑构件包括至少一个导向销,所述导向销在所述支撑构件的运动期间可滑动地联接到所述至少一个轨道,所述导向销 配置成当所述顶部轨道在第一模态位置和第二模态位置之间移动时将所述支撑构件保持在所述至少一个顶部轨道上。
    • 10. 发明授权
    • Apparatus and method for identifying the absolute rotation of a rotating imaging system
    • 用于识别旋转成像系统的绝对旋转的装置和方法
    • US08447560B2
    • 2013-05-21
    • US12270575
    • 2008-11-13
    • Alexander VaisburdLeonid Yakubovsky
    • Alexander VaisburdLeonid Yakubovsky
    • G01C9/00
    • G01C9/00A61B6/032A61B6/547A61B6/56
    • A rotating imaging system has a rotating portion, an idler, at least one sensor, a tilt sensor and a processor. The rotating portion has a diameter and rotates about a central axis. The idler rotates about an axis parallel to the central axis, and has a second diameter that is smaller than the diameter of the rotating portion. The rotating portion and the idler engage with each other such that both rotate simultaneously. The at least one sensor detects flags on the idler as the idler rotates. The tilt sensor is mounted to the rotating portion and determines a rotation angle of the rotating portion within a range of one revolution, and the processor determines an absolute rotation of the rotating portion based on at least a signal from the at least one sensor and the rotation angle determined by the tilt sensor.
    • 旋转成像系统具有旋转部分,惰轮,至少一个传感器,倾斜传感器和处理器。 旋转部分具有直径并围绕中心轴线旋转。 惰轮围绕平行于中心轴线的轴线旋转,并且具有小于旋转部分的直径的第二直径。 旋转部分和惰轮彼此接合,使得两者同时旋转。 当惰轮旋转时,至少一个传感器检测惰轮上的标志。 倾斜传感器被安装到旋转部分并且在一圈的范围内确定旋转部分的旋转角度,并且处理器至少基于来自至少一个传感器的信号确定旋转部分的绝对旋转,并且 由倾斜传感器确定的旋转角度。