CABLE ROUTING FOR A COMPUTED TOMOGRAPHY SYSTEM

    公开(公告)号:US20240032883A1

    公开(公告)日:2024-02-01

    申请号:US18359130

    申请日:2023-07-26

    Inventor: Stefan GROSS

    CPC classification number: A61B6/56 A61B6/035 A61B6/4464 A61B6/4435 H02G3/0456

    Abstract: A cable routing system for a computed tomography system having a gantry configured to be adjusted in a movement direction extending perpendicular to the gantry, the cable routing system comprising: a vertical column arranged on the gantry and extending vertically from a base of the computed tomography system; and a first and a second articulated arm. The first articulated arm is rotatably attached to an upper end of the vertical column above the gantry via a first point of articulation. The first articulated arm is also rotatably attached to the second articulated arm, which is also arranged above the gantry, via a second point of articulation. The vertical column and the first and the second articulated arm are configured to route at least one supply line at least in part along their respective longitudinal axes.

    Aerodynamic rail covers
    2.
    发明授权

    公开(公告)号:US11872165B2

    公开(公告)日:2024-01-16

    申请号:US18086723

    申请日:2022-12-22

    Abstract: An aerodynamic rail cover for an operating room with laminar airflow is provided. The rail cover comprises a rail cover component configured to be movably attached to a support rail of a ceiling mounted support arrangement of a medical imaging system. The rail cover component comprises a base element and an air guiding surface element connected to the base element. The base element is configured to be attached to a portion of the support rail of the ceiling mounted support arrangement. The air guiding surface element forms an air guide to be mounted at least temporarily to cover a portion of the support rail of the ceiling mounted support arrangement. The air guiding surface element comprises two surface parts that extend from starting edges on opposite sides of the base element to a common trailing edge.

    METHOD FOR OPERATING A COLLIMATOR OF AN X-RAY DEVICE AND X-RAY DEVICE

    公开(公告)号:US20190150874A1

    公开(公告)日:2019-05-23

    申请号:US16190270

    申请日:2018-11-14

    Abstract: A method is for a medical imaging X-ray device including an X-ray generator, to which the collimator is assigned, an X-ray detector, a patient table for positioning a patient to be X-rayed, and a wireless, hand-held operator device including a touchscreen. In an embodiment, the method includes generating a display, visualizing a current setting of the collimator, on the touchscreen; adjusting the collimator according to operating data describing a manipulation of display elements of the display; determining position information, describing at least one of a position and orientation of the operator, from sensor data of at least one sensor; selecting a perspective, using the position information determined, corresponding at least approximately to a viewing angle of an operator with respect to the patient table; and generating the display for three-dimensionally visualizing, showing an X-ray beam with the collimator settings adjusted, at the perspective selected.

    X-ray recording system
    10.
    发明授权

    公开(公告)号:US09924914B2

    公开(公告)日:2018-03-27

    申请号:US15003842

    申请日:2016-01-22

    Abstract: An x-ray recording system contains an x-ray emitter for generating a beam used for imaging, an imaging x-ray detector with a two-dimensional or three-dimensional recording geometry for determining the attenuation of the rays of the beam, a patient bearing and/or positioning device for a patient in a recording region of the x-ray recording system between the x-ray emitter and the x-ray detector. A time of flight (TOF) camera is arranged for establishing the contour of the patient and a computer with a memory and software stored therein is present, which computer unit is embodied, during operation, to generate a three-dimensional wire model of the patient with joint locations arranged therein from the contour of the patient recorded by the TOF camera and to simulate and display at least one anatomical structure scaled to the wire model.

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