X-ray inspection device for mounting on ceiling

By designing an X-ray inspection device that can be fastened on the ceiling and moved within its area, the problem of existing devices being difficult to place and move in a limited space is solved, and efficient space utilization and flexible operation are achieved.

CN222828597UActive Publication Date: 2025-05-06SIEMENS HEALTHINEERS AG
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202420505812.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-03-16
Filing Date
2024-03-15
Publication Date
2025-05-06
Estimated Expiration
2034-03-15

AI Technical Summary

Technical Problem

The existing ceiling-mounted X-ray inspection device is difficult to effectively place and move in a limited space, resulting in large space occupancy and poor flexibility.

Method used

An X-ray inspection device including a perspective section and a fastening section is designed. The perspective section can be connected to the fastening section through an adjustment device, which is disposed on the ceiling, which can move and position in the ceiling area, and can be switched between a parked state and an operating state through the adjustment device.

Benefits of technology

It realizes efficient placement and moving the X-ray inspection device in a limited space, saving space occupation, and improving the flexibility and use efficiency of the device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222828597U_ABST
    Figure CN222828597U_ABST
Patent Text Reader

Abstract

The utility model relates to an X-ray inspection device used for being installed on a ceiling, the X-ray inspection device is provided with a perspective part section and a fastening part section capable of being installed on the ceiling, the fastening part section is used for keeping the perspective part section and / or enabling the perspective part section to move, and the perspective part section comprises an arm. Wherein the arm comprises an X-ray radiator and a radiation receiver for detecting X-ray radiation emitted by the X-ray radiator, the arm defining and / or having an arm plane, an effective ray path of the X-ray radiation between the X-ray radiator and the radiation receiver being oriented identical to the arm plane, wherein a parking state and an operating state can be assumed by the perspective section, characterized in that an adjusting device is provided, the adjusting device being designed to switch between the parking state and the operating state, the arm plane forming a horizontal plane in the parking state and / or the same orientation as the ceiling plane.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to an X-ray inspection device for being installed on a ceiling. The X-ray inspection device comprises a perspective section and a fastening section which can be arranged on the ceiling. Background Art

[0002] X-ray examination devices are used for different purposes in the medical field. X-ray examination devices mounted on a ceiling are often used and / or operated as C-arms and / or angiography devices.

[0003] Angiography is an X-ray examination specifically for blood vessels. With the aid of the method, arteries (arteriography) and veins (venography) can be examined, for example, in order to diagnose vascular narrowing or bleeding. In tumor diagnosis, the vascular supply of the tumor can be made visible with the aid of angiography. In particular, angiography is used before, during and / or after vascular surgery in order to check whether the operation was successful. Many vascular problems determined during angiography can already be treated during the examination: for example, widening of vascular narrowing or sealing of vascular leaks (interventional radiology). Angiography devices are available in particular as single-plane and biplane angiography systems.

[0004] With the help of angiography, narrowing (stenosis) in blood vessels can be detected. In addition, the blood vessels supplying the tumor can be evaluated. Under certain conditions, the so-called PTA (percutaneous transluminal angioplasty) can be added to the angiography, i.e. the dilation of the narrowing with the help of a balloon. Under certain conditions, it is also possible to introduce so-called stents (vascular supports) into the blood vessels in order to keep the blood vessels open.

[0005] X-ray examination devices are usually arranged and operated at a multifunctional examination space. In particular, such X-ray examination devices are operated and / or arranged in an operating room and / or an angiography room with surgical capabilities.

[0006] An X-ray examination device in the form of a C-arm and / or in particular for angiography can be designed in the form of a ceiling-mounted system. The X-ray examination device has a high degree of flexibility when positioning the C-arm or the fluoroscopy section around the patient at any angle. The C-arm and / or the fluoroscopy section can be positioned to the left, to the right or at the head of the patient and in particular at any angle therebetween. The longitudinal movement at the ceiling provides coverage from head to toe.

[0007] In a room in which such an X-ray examination device is placed and / or arranged, for example an angiography examination room, the system suspended from the ceiling is moved to the side when the patient lies on the OP table or is approached in another way. The space requirement in the room is very large, but the available space is usually very limited. Up to now, X-ray examination devices suspended from the ceiling have been moved to specific "home positions", for example in the corners of the room, in order to be able to achieve the above-mentioned access to the patient. Utility Model Content

[0008] The invention is based on the object of providing an X-ray examination device which can be arranged in a space-saving and / or efficient manner and / or can be placed in a parking position which enables access to a patient and occupies a small active surface at the operating location.

[0009] The above object is achieved by an X-ray inspection device according to the present invention. Preferred and / or advantageous embodiments are apparent from the description and the accompanying drawings.

[0010] Regardless of the grammatical gender of a particular term, it includes people with both male and female gender identities.

[0011] An X-ray inspection device for installation on the ceiling of an examination room is proposed. The X-ray inspection device comprises a fluoroscopic section and a fastening section that can be mounted on the ceiling, wherein the fastening section is configured to hold the fluoroscopic section and / or move the fluoroscopic section, wherein the fluoroscopic section comprises an arm, wherein the arm comprises an X-ray radiator and a radiation receiver for detecting X-ray radiation emitted by the X-ray radiator, wherein the arm defines and / or has an arm plane, wherein an effective beam path of the X-ray radiation between the X-ray radiator and the radiation receiver is oriented in the same direction as the arm plane, wherein a parking state and an operating state can be assumed by the fluoroscopic section. The X-ray inspection device comprises an adjustment device, wherein the adjustment device is configured to switch the fluoroscopic section between a parking state and an operating state, wherein the arm plane forms a horizontal plane in the parking state and / or is oriented in the same direction as the ceiling plane.

[0012] The X-ray examination device is configured for fluoroscopy of a patient, in particular for recording X-ray images. In other words, the X-ray examination device is configured for medical imaging and / or recording medical images, in particular X-ray images. In particular, the X-ray examination device is configured as an angiography device and / or an angiography apparatus. Alternatively and / or in addition, the X-ray examination device forms or comprises a C-arm. Preferably, the X-ray examination device is configured to perform an X-ray examination of a patient and / or an examination area of ​​the patient before, after and in particular during an operation. For example, the X-ray examination device is used to record medical images, in particular X-ray recordings for monitoring, checking, planning and / or performing an operation and / or a surgical procedure. In particular, the X-ray examination device is used to record individual medical images and / or X-ray recordings, alternatively and / or in addition, the X-ray examination device can be configured to record and / or provide a sequence of medical images, a plurality of medical images or a video recording (image stream of medical images).

[0013] The X-ray inspection device is particularly designed and / or configured for installation, fastening and / or placement on a ceiling, in particular a ceiling of an inspection room. In other words, the weight and / or mass of the X-ray inspection device is borne by the ceiling, preferably completely, alternatively at least 80%. For example, the X-ray inspection device can include a support element for being partially supported at the floor. In particular, the main, most or all components for fastening, guiding and / or holding the X-ray inspection device are arranged at the ceiling and / or in the ceiling area. For example, a support element, a track and / or other elements for holding, fastening, moving and / or displacing, in particular a sub-segment and / or the entire perspective segment, in particular a sub-segment and / or the entire perspective segment can be arranged and / or provided at the ceiling.

[0014] The X-ray examination device is designed in particular for being arranged, positioned, fastened and / or operated in an examination room. The examination room preferably comprises and / or forms an operating room. Particularly preferably, the examination room is designed as an angiography room and / or an angiography space, wherein the angiography room and / or angiography space has surgical capabilities. The examination room is narrow, for example, wherein narrow is understood to mean that the freedom of movement and / or operation of medical personnel, such as doctors, at the patient and / or the examination bed is restricted. Narrow is also understood in particular to mean that parts of the room are occupied by objects on the floor, at hip height or head height, in particular in between. The examination room comprises in particular an examination bed for supporting the patient. The examination bed is preferably arranged in a central section and / or region of the examination room. The examination bed can be configured to be height-adjustable in the longitudinal direction and / or in the transverse direction (preferably relative to a lying patient). In particular, the inclination of the examination bed can be adjusted so that, for example, the head area of ​​the patient can be positioned higher than the foot area.

[0015] The X-ray inspection device comprises a fastening section and a perspective section. The two sections are preferably connected to each other, for example mechanically and / or kinematically. In particular, the perspective section and the fastening section form two conceptual modules of the X-ray inspection device. The fastening section is configured, for example, to fasten, install and / or hold the X-ray inspection device on a ceiling. The perspective section is configured for imaging and / or positioning around and / or at a patient.

[0016] The fastening section is preferably configured as a ceiling holding device. The fastening section is configured to arrange and / or fix the X-ray examination device, especially the perspective section, on the ceiling of the examination room in a form-fitting, force-fitting and / or material-fitting manner. For example, the fastening section is configured and / or configured to be screwed to the ceiling of the examination section of the examination room. The fastening section can, for example, include a track, such as a guide rail, wherein the track enables the movement and / or movement of the perspective section. Preferably, the track is arranged in the longitudinal direction and / or the transverse direction and / or is configured to travel in the said direction, wherein the longitudinal direction and the transverse direction can be understood with respect to the geometry of the examination bed, the patient and / or the examination room. The fastening section can be configured in particular as a part or a kinematic chain for positioning, moving and / or arranging a section and / or perspective section of the X-ray examination device. In particular, the fastening section includes an element for pivoting and / or rotating a section of the X-ray examination device, such as a perspective section, wherein the pivoting and / or rotation is configured around a vertical axis.

[0017] The perspective section comprises in particular an element for X-ray recording to record medical images, in particular X-ray images. The perspective section is designed to be arranged, positioned around or at a patient. For example, the perspective section comprises and / or forms an arm, for example a C-shaped arm. In particular, the perspective section comprises and / or forms a C-shaped arm. The perspective section is preferably pivotable and / or movable and / or positionable in height, longitudinal direction or transverse direction. The perspective section preferably comprises and / or forms an actuator and / or a kinematic chain for translational and / or rotational positioning and / or movement.

[0018] The perspective section, in particular the arm, comprises an X-ray radiator and a radiation receiver. In particular, the X-ray radiator and the radiation receiver are arranged opposite to each other. In other words, the radiation receiver is arranged, positioned and / or oriented to detect the X-ray radiation emitted by the X-ray radiator. In particular, a ray path, also referred to as an effective ray path, extends between the X-ray radiator and the radiation receiver. A patient, in particular an examination section, can be arranged and / or positioned between the X-ray radiator and the radiation receiver so that an X-ray image and / or a medical image of the section and / or region can be recorded. The X-ray radiator is configured to emit and / or send X-rays to record a medical X-ray image. The X-ray radiator can form or include a single-energy or multi-energy X-ray source. The radiation receiver is preferably configured as a planar detector. The ray path between the X-ray radiator and the radiation source is in particular perpendicular to the image plane of the recorded X-ray image and / or the recorded medical image.

[0019] The arm has an arm plane and / or defines the arm plane. The arm plane is, for example, a planar plane that can be defined by the arm, for example, the arm forms an open or particularly closed frame for the arm plane. In other words, the arm plane is arranged between the X-ray radiator and the radiation receiver. The ray path between the X-ray radiator and the radiation receiver is parallel to the arm plane and / or oriented in the same manner, and in particular, the ray path is in the arm plane. The arm plane is an uncurved and / or flat plane. In order to record X-ray images and / or medical images, the examination area and / or the patient should be arranged in a sub-area of ​​the arm plane and / or intersect with the arm plane. The arm plane is particularly perpendicular to the image plane of the recorded X-ray image and / or medical image. In particular, the X-ray radiator and / or the radiation receiver can be moved and / or positioned in the arm plane. In other words, the movement limit of the radiation detector of the X-ray radiator can also be used as a limit and / or condition for the arm plane.

[0020] The X-ray inspection device, in particular the perspective section, can occupy an operating state and a parking state. In particular, it is possible to switch between the parking state and the operating state, and vice versa. The transfer between the states can be carried out manually and / or mechanically, motor-supported, pneumatically and / or force-supported. The operating state is in particular a state in which the perspective section is arranged and / or can be arranged at the patient. In particular, the operating state is a state set for using, X-ray recording and / or medical imaging of the inspection object, for example, a patient positioned on the examination bed. For example, when the perspective section and / or medical imaging are planned to be used, the operating state is occupied. The parking state is a state in which the perspective section, in particular medical imaging and / or X-ray recording, is not planned or stopped. For example, when it is necessary to approach the patient at the examination bed, a larger room for movement is required for this purpose and / or the perspective section is deactivated, the parking state is occupied. For example, the parking state is a state in which the fluoroscopy section and / or the X-ray examination device are in the state when the patient is not lying on the examination bed and the fluoroscopy section and / or the X-ray examination device should be placed and / or parked in a space-saving and / or efficient manner. In the parking state, the fluoroscopy section, in particular the X-ray source and / or the radiation receiver cannot be positioned, arranged and / or applied at the patient, around the patient and / or on the patient and / or at the examination bed, around the examination bed and / or on the examination bed. In particular, the X-ray radiator and / or the radiation receiver are in a disabled, for example, currentless state or standby mode in the parking state. In the operating state, the X-ray radiator and / or the radiation receiver are in a ready state, for example, supplied with current and / or activated.

[0021] The X-ray inspection device comprises an adjustment device. The adjustment device is particularly a mechanical adjustment device. Alternatively and / or supplementally, the adjustment device can also be a pneumatic, electric and / or force-supported adjustment device. The adjustment device can be a part of a perspective section or a part of a fastening section. Particularly preferably, the adjustment device is a part of a perspective section and a fastening section, for example, the adjustment device connects the perspective section and the fastening section. The adjustment device is constituted and / or configured to switch and / or enable switching between a parking state and an operating state and in opposite directions. For example, a user can place the X-ray inspection device, particularly in the perspective section, from a parking state to an operating state, and / or from an operating state to a parking state by means of the adjustment device. The switching between these two states can be performed manually, for example, by muscle force.

[0022] The arm plane is a horizontal plane in the parked state. In other words, the arm plane is in a state parallel and / or oriented in the same direction relative to the ceiling of the examination room, the floor of the examination room and / or the ceiling plane in the parked state. The user beam path is parallel and / or oriented in the same direction as the ceiling plane and / or the horizontal plane in the parked state. In other words, the arm in which elements for medical imaging such as X-ray radiators and radiation detectors are arranged, the frame defined by the arm and / or the arm plane are parallel to the ceiling and / or the horizontal plane, so that access to the patient, the examination bed is simple and feasible and / or a large room for maneuver is feasible for movement and / or execution of the method at the examination bed. In other words, the main sections and / or elements of the X-ray examination device are in the ceiling area and / or at the ceiling in the parked state, so that the sections and / or elements do not occupy additional space in the floor area and / or on the operating plane and / or on the examination bed in the plane.

[0023] The utility model is based on the following consideration: by providing an adjustment device, the X-ray examination device and / or the fluoroscopy section can be placed in a space-saving parking state, wherein a simple switch between the parking state and the operating state is possible. Thus, if a user, in particular a doctor, wishes to record and / or, for example, image-assisted monitoring, planning and / or execution of medical images, the user, in particular the doctor, can simply switch from the parking state to the operating state. At the same time, in the case of a higher space requirement, room for maneuver and / or better access to the patient on the examination couch, the user, in particular the doctor, can place the X-ray examination device, in particular the fluoroscopy section, in the parking state.

[0024] It is particularly preferred that the adjustment device includes and / or defines a pivot axis. It is particularly preferred that the pivot axis is formed and / or defined by a mechanical axis. The pivot axis can also be understood as a rotation axis. For example, the pivot axis is defined by a rotary joint or a pivot joint. The pivot axis preferably extends through a rotation point. The adjustment device is configured to rotate and / or pivot a perspective section, in particular an arm, around a pivot axis. In particular, the arm and / or the arm plane can be rotated and / or pivoted around the pivot axis. In other words, it is preferred to propose a switch between an operating state and a parking state, and vice versa. In other words, the switch between these two states can be carried out and / or realized by pivoting the arm plane, the perspective section and / or the arm around the pivot axis by means of the adjusted device, i.e. the adjustment device.

[0025] In particular, it is proposed that the pivot axis encloses an angle of at least 20°, preferably at least 40° and in particular at least 50° with the horizontal plane and / or the ceiling plane in the operating state. Furthermore, it is preferably proposed that the pivot axis encloses an angle of less than 80°, preferably less than 70° and in particular less than 60° with the horizontal plane and / or the ceiling plane in the operating state. In the parking state, the pivot axis is preferably oriented in the same direction and / or parallel to the ceiling plane and / or the horizontal plane. Therefore, in other words, the switching between the operating state and the parking state is carried out by pivoting and / or rotating the pivot axis or changing the orientation of the pivot axis or changing the angle enclosed between the pivot axis and the horizontal plane or the ceiling plane. Preferably, the pivot axis encloses an angle of between 20 degrees and 70 degrees with the horizontal line and / or the ceiling plane in the operating state.

[0026] The adjusting device preferably comprises a joint, in particular a swivel joint. The swivel joint, for example, defines a pivot axis and / or the pivot axis extends through the swivel joint. The swivel joint and / or the joint is designed to pivot and / or rotate an arm plane, an arm, a perspective section and / or a pivot axis. The joint can, for example, be in the form of a swivel joint, a threaded joint, a rotary sliding joint and / or a ball joint. In particular, the joint and / or the swivel joint comprises and / or forms a bearing, for example a shaft and / or a rolling bearing. In particular, the joint and / or the swivel joint can be designed as an elastic hinge.

[0027] In particular, it is proposed that the adjustment device connects the see-through section and the fastening section, in particular mechanically, rotatably and / or pivotably. The adjustment device can be associated with both the see-through section and the fastening section, for example. The connection between the see-through section and the fastening section is in particular rotatable and / or pivotable. In particular, the adjustment device connects the fastening section and an arm of the see-through section.

[0028] It is particularly preferred that the arm and / or the perspective section is designed to be C-shaped and / or include and / or form a C-shaped arm. The arm, in particular the C-shaped arm, comprises two ends, wherein an X-ray emitter is preferably arranged at one end and a radiation receiver is arranged at the other end. The arm plane is defined and / or determined, for example, by the arm of the C. For example, the arm plane is defined by the interior of the "C" or the interior of the arm of the C.

[0029] It is particularly preferred that the fastening section includes a mechanism and / or element for moving, displacing and / or rotating the perspective section. For example, the fastening section includes a guide rail for moving and / or displacing the perspective section fastened to and / or connected to the fastening section. The mechanism for movement, rotation and / or movement included by the fastening section can be operated and / or operated based on physical force, for example, alternatively and / or supplementally, the mechanism for movement, rotation and / or movement is configured to be force-supported, for example, by a motor, a movement mechanism or a hydraulic device.

[0030] Furthermore, it is preferably proposed that the fluoroscopy section comprises means and / or elements for moving, pivoting and / or displacing the X-ray radiator and / or the radiation receiver. The means for moving, pivoting and / or displacing the X-ray radiator and / or the radiation receiver are particularly designed to move, pivot and / or displace the X-ray radiator and / or the radiation receiver in an arm plane, for example along a C-shaped arm and / or a C-shaped contour.

[0031] It is particularly preferred that the X-ray examination device is designed for performing angiography. In particular, the X-ray examination device forms an angiography device and / or comprises an angiography device, and / or the fluoroscopy section is designed for angiographic monitoring and / or angiographic recording. Furthermore, it can be provided, for example, that the fluoroscopy section is designed for performing angiography, comprises and / or forms a C-arch. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Further advantages, effects and embodiments are apparent from the drawings and their description. Here, it is shown:

[0033] Figure 1 An X-ray inspection device is shown in an operating state;

[0034] Figure 2 Shown in the parked state Figure 1 X-ray inspection device in. DETAILED DESCRIPTION

[0035] Figure 1 The fluoroscopic section 2, also called a C-arm unit, and a fastening section 3 are shown in a spatial view of an X-ray examination device 1. The fluoroscopic section 2 comprises an X-ray radiator 4 and a radiation receiver 5. The fluoroscopic section 2 comprises rollers, which are not visible, for supporting the X-ray radiator 4 and the radiation receiver 5 so that they can rotate in a direction of rotation 6 of the track about a track axis 7.

[0036] The fastening section 3 is designed for fastening, mounting on a ceiling and / or connecting to a ceiling. The fastening section 3 can be screwed on the ceiling, for example. The fastening section 3 comprises a guide rail 8 mounted on the ceiling for moving and / or displacing the perspective section 2. For this purpose, the fastening section comprises, for example, a slide suspended on rollers running in the guide rail 8.

[0037] The patient lies on an examination bed 9, which comprises a reclining board 10, which can be supported on a support unit. In particular, the examination bed 9 and / or the reclining board can be moved in height, can be varied in inclination and / or can be positioned in a transverse direction and / or in a longitudinal direction, preferably by means of a support unit.

[0038] The perspective section 3 includes a C-shaped arm 11, also referred to as a C-arm. The arm 11 includes two ends, wherein an X-ray radiator 4 is provided at one end and a radiation receiver 5 is provided at the other end. The arm 11 defines an arm plane 12 and / or defines the arm plane 12. The arm plane 12 is in particular an imaginary plane, in particular, the arm plane is partially defined by a middle area or a region surrounded by the arm 11. The arm plane 12 is in particular a virtual plane and / or an auxiliary structure for defining an orientation, position and / or state. The arm plane 12 can be defined, for example, by an effective beam path 13 and / or by the arm 11 itself or the contour of the arm 11. The arm plane 12 is oriented in the same manner as the effective beam path 13, and / or the effective beam path 13 is in the arm plane 12. The arm 11 is constructed in a C-shaped manner, wherein the C-shape can be understood as a contour and / or a frame. As the arm plane 12, a plane that is oriented in the same manner, parallel and / or includes a plane or a surface in a contour and / or a frame can be understood.

[0039] The X-ray examination device 1 shown is in an operating state. The operating state is a state in which the X-ray emitter 3 and / or the detector 4 are ready for operation. In particular, the fluoroscopy section 2 can be used in the operating state for positioning around and / or on a patient.

[0040] The X-ray examination device 1 comprises an adjustment device 14. The adjustment device 14 is arranged between the fastening section 3 and the fluoroscopy section 2, in particular, the adjustment device 14 connects the sections 2 and 3. The connection of the fluoroscopy section 2 to the fastening section 3 by means of the adjustment device 14 is a mechanical connection, in particular a rotatable and / or pivotable connection.

[0041] The X-ray examination device 1 comprises a pivot axis S. The pivot axis S extends in particular through the adjustment device 14, the fastening section 3 and / or the fluoroscopy section 2. The fluoroscopy section 2 can be pivoted about the pivot axis S, in particular the arm 11 can be pivoted about the pivot axis S. In the operating state, the pivot axis S encloses an angle α of between 20° and 80° with the ceiling or the ceiling plane. By pivoting the arm 11 about the pivot axis S, the X-ray radiator 4 and the radiation receiver 5 can be positioned around or on the patient.

[0042] Figure 2 The X-ray examination device 1 is shown in the parking state. The parking state is a state in which the X-ray emitter 3 and / or the detector 4 are preferably deactivated and / or switched off. In particular, the fluoroscopy section 2 cannot be used for positioning around and / or on a patient in the parking state. For positioning around and / or on a patient, it must first be switched to the operating state.

[0043] In the parked state, the pivot axis S is oriented identically and / or parallel to the ceiling or the ceiling plane. In particular, in the parked state, the arm 11 and / or the arm plane 12 are parallel and / or oriented identically to the ceiling and / or the ceiling plane. In the parked state, the arm 11, the X-ray radiator 4 and / or the radiation receiver 5 are located in the ceiling area. The ceiling area is the area below the ceiling, which extends from the ceiling to the floor for less than 20% of the room height.

[0044] The adjusting device 14 is designed to enable a switch between the operating state and the parking state and vice versa by manual interaction or an actuator. The adjusting device 14 comprises, for example, a swivel joint 15. The swivel joint 15 is designed to pivot the pivot axis S of the operating state, i.e., the pivot axis S which is not parallel to the ceiling plane, into a pivot axis S which is parallel to the ceiling plane or oriented in the same direction, in particular also in the opposite direction. Thus, a switch between the two states (operating state, parking state) can be easily performed by pivoting the pivot axis S in the swivel joint 15.

Claims

1. An X-ray inspection device (1) for installation on a ceiling, the X-ray inspection device comprising a fluoroscopy section (2) and a fastening section (3) which can be attached to the ceiling, wherein the fastening section (3) is designed to hold the fluoroscopy section (2) and / or to move the fluoroscopy section (2), wherein the fluoroscopy section (2) comprises an arm (11), wherein the arm (11) comprises an X-ray radiator (4) and a radiation receiver (5) for detecting X-ray radiation emitted by the X-ray radiator (4), wherein the arm (11) defines and / or has an arm plane (12), wherein an effective beam path (13) of the X-ray radiation between the X-ray radiator (4) and the radiation receiver (5) is oriented in the same direction as the arm plane (12), wherein the fluoroscopy section (2) can assume a parked state and an operating state, characterized in that An adjusting device (14) is provided, wherein the adjusting device (14) is designed to switch between a parking state and an operating state, wherein the arm plane (12) forms a horizontal plane in the parking state and / or is oriented in the same direction as a ceiling plane.

2. The X-ray inspection device (1) for installation on a ceiling according to claim 1, characterized in that The adjustment device (14) comprises and / or defines a pivot axis (S) for pivoting the perspective section (2) and / or the arm plane (12).

3. The X-ray inspection device (1) for installation on a ceiling according to claim 2, characterized in that In the operating state, the pivot axis (S) encloses an angle (α) of between 20 degrees and 70 degrees with the horizontal and / or the ceiling plane.

4. The X-ray inspection device (1) for installation on a ceiling according to claim 2 or 3, characterized in that The adjustment device (14) comprises a swivel joint (15) for pivoting the arm plane (12), the perspective section (2), the arm (11) and / or the pivot axis (S).

5. The X-ray inspection device (1) for installation on a ceiling according to any one of claims 1 to 3, characterized in that: The adjustment device (14) connects the see-through section (2) and the fastening section (3).

6. The X-ray inspection device (1) for installation on a ceiling according to any one of claims 1 to 3, characterized in that: The adjustment device (14) is comprised by the see-through section (2) and / or the fastening section (3).

7. The X-ray inspection device (1) for installation on a ceiling according to any one of claims 1 to 3, characterized in that: The arm (11) forms a C-shaped arm.

8. The X-ray inspection device (1) for installation on a ceiling according to any one of claims 1 to 3, characterized in that: The fastening section (3) comprises a mechanism for moving and / or displacing the see-through section (2).

9. The X-ray inspection device (1) for installation on a ceiling according to any one of claims 1 to 3, characterized in that: The fluoroscopy section (2) comprises means for moving, pivoting and / or displacing the X-ray radiator (4) and / or the radiation receiver (5) in the arm plane (12).

10. The X-ray inspection device (1) for installation on a ceiling according to any one of claims 1 to 3, characterized in that: The X-ray examination device (1) forms an angiography device and / or the fluoroscopy section (2) is designed for angiographic monitoring and / or angiographic recording.