Medical radiation detection bed and medical radiation detection device
By designing a medical radiation detection bed that can move up and down and rotate with the rotating arm, the problem of low image quality caused by the fixedness of the detection bed in the prior art is solved, and a flexible and applicable detection bed is realized, which improves user experience and image quality.
Patent Information
- Application Number
- CN202421669262.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-15
AI Technical Summary
In the prior art, DR equipment is usually not equipped with a medical radiation detection bed, which causes the image quality to be low when the object to be tested is moved or unstable; while CT equipment is equipped with a detection bed, the relative positional relationship of the bed is fixed and cannot move flexibly.
A medical radiation detection bed is designed, including a support assembly and a detection bed assembly. The detection bed assembly can move up and down and rotate with the rotating arm, which is suitable for different detection scenarios.
It realizes flexible movement and lifting adjustment of the detection bed, improves image quality, is suitable for a variety of detection scenarios, and has a better user experience.
Smart Images

Figure CN223026075U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of medical instruments, and particularly relates to a medical imaging detection device based on X-rays. Background Art
[0002] Explanation of Terms:
[0003] Screw jack: Also known as a screw drive mechanism. It is mainly used to convert rotational motion into linear motion or vice versa.
[0004] CT (Computed Tomography), computed tomography, is a medical imaging technique. It uses an X-ray beam to perform tomographic scans of the human body and generates detailed images of the internal structure of the body with the aid of computer processing.
[0005] DR: Digital Radiography, also known as a digital X-ray imaging system. In this application, DR refers to medical DR. Medical DR is a relatively advanced examination method in the radiology department and can be used for the diagnosis, differential diagnosis, and prognosis evaluation of diseases in multiple organ systems in clinical practice.
[0006] In a hospital, different detection devices are applied in different scenarios; for example, a DR device is used for chest radiography, and a high-resolution CT device is used for imaging the blood vessels in the head.
[0007] In the prior art, DR devices are usually relatively simple and do not have a supporting medical radiation detection bed. When the object to be measured moves or is unstable, the quality of the obtained images is not high.
[0008] In the prior art, CT devices are usually equipped with a paired detection bed. For traditional spiral CT, the bed needs to move horizontally for CT imaging. The relative position relationship between the bed and the detection host is usually fixed, and the relative position relationship between the bed and the detection host cannot be flexibly moved.
[0009] How to design a detection carrier platform that can be flexibly applied to CT devices or DR devices is a technical problem to be solved. Summary of the Invention
[0010] In this application, the inventor proposes a medical radiation detection bed and a medical radiation detection device that can be flexibly moved and adjusted in height, facilitating the movement of the object to be measured; and can be flexibly applied to different detection scenarios. The detection bed can be moved up and down to adjust the height of the detection object; in cooperation with the rotation of the rotating arm, two-dimensional and three-dimensional imaging of the detection object can be performed, which is applicable to a variety of scenarios, very convenient to use, and provides a better user experience.
[0011] The solution of the present application to solve the above technical problems is a medical radiation detection bed, including: a support assembly and a detection bed assembly; the detection bed assembly includes a detection bed part A and a detection bed part B; the detection bed part A and the detection bed part B are respectively located at both ends of the detection bed assembly; one end of the support assembly is connected to the detection bed part B; the support assembly supports the detection bed assembly; the detection bed part A is used to carry the part of the detection object that receives the radiation. During the medical radiation detection process, the part of the detection object that receives the radiation is placed on the detection bed part A.
[0012] The above detection bed assembly includes a bearing bed board and a detection bed connection part; the above bearing bed board includes a bearing bed board part A and a bearing bed board part B; the bearing bed board part A corresponds to the above detection bed part A, and the detection bed part B includes a detection bed connection part and a bearing bed board part B; the detection bed connection part is connected to the bearing bed board part B; the detection bed connection part is connected to one end of the support assembly; it includes any one of the following features, feature TA1: the detection bed connection part includes an installation guide groove, and the bearing bed board is inserted into the installation guide groove; part or all of the bearing bed board part B is inserted into the installation guide groove; feature TA2: the detection bed connection part includes a clamping device, and the clamping device clamps the bearing bed board part B; feature TA3: the bearing bed board part B includes an installation hole, and the detection bed part B is mechanically connected to the detection bed connection part through the installation hole; feature TA4: all or part of the bearing bed board is layered and made of carbon fiber material; feature TA5: the bearing surface of the bearing bed board is a plane or a curved surface; feature TA6: the detection bed connection part supports horizontal movement between the bearing bed board and the support assembly; feature TA7: it further includes a sliding connection device, the detection bed connection part is connected to the sliding part of the sliding connection device, and the support assembly is connected to the track part of the sliding connection device; feature TA8: it further includes a rolling connection device, the detection bed connection part is connected to the rolling part of the rolling connection device, and the support assembly is connected to the track part of the rolling connection device.
[0013] The above support assembly includes a lifting mechanism, and the lifting mechanism is used to support the detection bed assembly to move up and down; it includes any one of the following features, feature TB1: the support assembly includes a support assembly A and a support assembly B, one end of the support assembly B is connected to the detection bed part B, the other end of the support assembly B is connected to the support assembly A, and a part of the support assembly A can be retracted into the support assembly B; feature TB2: the support assembly includes a support assembly A and a support assembly B, one end of the support assembly B is connected to the detection bed part B, the other end of the support assembly B is connected to the support assembly A, and a part of the support assembly B can be retracted into the support assembly A; feature TB3: one end of the support assembly is connected to the detection bed part B, and the other end of the support assembly is fixedly installed on the ground; feature TB4: one end of the support assembly is connected to the detection bed part B, and the other end of the support assembly is fixedly installed at the use position; feature TB5: the above lifting mechanism is a screw jack.
[0014] The above-mentioned medical radiation detection bed further includes a horizontal support assembly; one end of the horizontal support assembly is connected to the support assembly, and the other end of the horizontal support assembly extends towards the A part of the detection bed.
[0015] The above-mentioned horizontal support assembly includes a rotating connection part, and the rotating connection part is used for rotatably connecting with a medical radiation detection device.
[0016] The above-mentioned medical radiation detection bed further includes one support wheel or more than two support wheels, and the support wheels are connected to the horizontal support assembly to support the movement or rotation of the medical radiation detection bed.
[0017] The horizontal support assembly includes a retractable slide rail, and the horizontal support assembly supports stretching and lengthening or shortening.
[0018] The above-mentioned medical radiation detection bed further includes a display module; including any one of the following features, Feature TC1: The display module is connected to the B part of the detection bed; Feature TC2: The display module is connected to the B part of the detection bed and the display module is not perpendicular to the ground; Feature TC3: The display module is connected to the support assembly; Feature TC4: The display screen in the display module is tilted upward.
[0019] A medical radiation detection device includes the above-mentioned medical radiation detection bed; it further includes a radiation source and an imager, and the radiation source and the imager are arranged opposite to each other; the rays emitted by the radiation source pass through the A part of the detection bed of the medical radiation detection bed and enter the imager.
[0020] The above-mentioned medical radiation detection device further includes a main body support assembly, a rotating arm, and a control module; the radiation source and the imager are respectively arranged at both ends of the rotating arm; the main body support assembly is used for carrying and supporting the rotating arm and the control module; the control module and the rotating arm are electrically connected, and the control module is used for controlling the rotating arm to drive the radiation source and the imager to rotate around the medical radiation detection bed; the control module and the lifting mechanism of the medical radiation detection bed are electrically connected, and the control module is used for controlling the lifting mechanism to move the medical radiation detection bed up and down.
[0021] The main body support assembly includes a receiving cavity; the receiving cavity is used for receiving the control module; including any one of the following technical features: TB1: The receiving cavity includes an upper receiving cavity; the upper receiving cavity is located in the upper part of the main body support assembly; TB2: The receiving cavity includes a lower receiving cavity; the lower receiving cavity is located in the lower part of the main body support assembly; TB3: The main body support assembly includes an openable door assembly, and the door assembly is used for closing or opening the receiving cavity; TB4: The rotating arm is arranged at the front of the main body support assembly; the main body support assembly includes an openable door assembly, and the door assembly is arranged at the side or rear of the main body support assembly; TB5: The main body support assembly includes an openable door assembly, and the door assembly includes a door lock, and the door lock is used for opening or closing the door assembly.
[0022] The technical effects of the above technical solution include: During the medical radiation detection process of the detection bed A part, the irradiated part of the detection object is received, enabling the detection part to have a bearing; at the same time, other structures of the bed body will not enter the radiation path, which can reduce the influence of the bed body components during imaging and improve the imaging quality. Compared with the bed body with a complex structure in the prior art, it is more concise and has better imaging quality.
[0023] The technical effects of the above technical solution include: Part or all of the bearing bed board B part is inserted into the installation guide groove, which is simple and convenient to install and has high efficiency.
[0024] The technical effects of the above technical solution include: The connection methods between the detection bed B part and the bearing bed board B part include clamping methods and installation mechanical connection methods. There are multiple connection methods, which are more flexible and convenient.
[0025] The technical effects of the above technical solution include: All or part of the bearing bed board is layered and made of carbon fiber material, which is thin in thickness and has little influence on imaging; it is light in weight and convenient to move.
[0026] The technical effects of the above technical solution include: The connection part of the detection bed supports the horizontal movement between the bearing bed board and the support assembly; it enlarges the area of the part receiving irradiation, and a larger area can be detected without changing the position of the detector.
[0027] The technical effects of the above technical solution include: The horizontal support assembly supports stretching and lengthening or shortening; it enlarges the area of the part receiving irradiation, and a larger area can be detected without changing the position of the detector.
[0028] The technical effects of the above technical solution include: The bearing surface of the bearing bed board is a plane or an arc surface, which is suitable for bearing different detection objects.
[0029] The technical effects of the above technical solution include: The medical radiation detection bed can move up and down to adjust the height of the detection object, making the imaging accuracy of the equipment better, enabling flexible adjustment of the imaging position, and facilitating detection imaging at different positions.
[0030] The technical effects of the above technical solution include: Support assembly A and support assembly B can be flexibly combined up and down to achieve lifting.
[0031] The technical effects of the above technical solution include: The other end of the support assembly is fixedly installed on the ground, enabling the medical radiation detection bed to be fixed on the ground.
[0032] The technical effects of the above technical solution include: The other end of the support assembly is fixedly installed at the use position; it is convenient to fix the medical radiation detection bed at the corresponding use position, which is more flexible and convenient.
[0033] The technical effects of the above technical solution include: One end of the horizontal support component is connected to the support component, and the other end of the horizontal support component extends towards the A part of the detection bed. The A part of the detection bed and the horizontal support component enclose a U-shaped structure with an open side, which is more stable and convenient to use.
[0034] The technical effects of the above technical solution include: The horizontal support component includes a rotating connection part, which is used for rotatably connecting with the medical radiation detection device; this enables the medical radiation detection bed to rotate and move more conveniently, facilitating detection imaging at different positions.
[0035] The technical effects of the above technical solution include: One support wheel or more than two support wheels, which are connected to the horizontal support component and support the movement or rotation of the medical radiation detection bed, making the movement of the bed more stable.
[0036] The technical effects of the above technical solution include: The display module is not perpendicular to the ground, and the display screen is tilted upward for convenient viewing.
[0037] The technical effects of the above technical solution include: The display module is connected to the B part of the detection bed or the support component, facilitating installation and setting.
[0038] The technical effects of the above technical solution include: The combination of the medical radiation detection device and the medical radiation detection bed, where the medical radiation detection bed is flexible in movement and convenient for combination with different medical radiation detection devices.
[0039] The technical effects of the above technical solution include: The combination of the medical radiation detection device and the medical radiation detection bed, where the rotating arm enables the device to perform both 2D imaging and 3D imaging, is applicable to various scenarios, is very convenient to use, and provides a better user experience.
[0040] The technical effects of the above technical solution include: The main body support component includes a receiving cavity; the receiving cavity is used to accommodate the control module, facilitating the maintenance and management of the control module. Description of the Drawings
[0041] Figure 1 is a side view schematic of the medical radiation detection bed Figure 1 ;
[0042] Figure 2 is a perspective view of the bearing bed board;
[0043] Figure 3 is a top view of the bearing bed board;
[0044] Figure 4 is a side view schematic of the medical radiation detection bed Figure 2 ;
[0045] Figure 5 is a side view schematic of the medical radiation detection bedFigure 3 ;
[0046] Figure 6 is a side view schematic of a medical radiation detection device Figure 1 ;
[0047] Figure 7 is a side view schematic of a medical radiation detection device Figure 2 ;
[0048] Figure 8 is a side view schematic of a medical radiation detection device Figure 3 ;
[0049] Figure 9 is a three - dimensional schematic of a medical radiation detection device Figure 1 ;
[0050] Figure 10 is a three - dimensional schematic of the main body support assembly Figure 1 ;
[0051] Figure 11 is a side view schematic of a medical radiation detection bed Figure 4 ;
[0052] Figure 12 is a side view schematic of a medical radiation detection bed Figure 5 ;
[0053] Figure 13 is a three - dimensional schematic of a part of the medical radiation detection bed Figure 1 ;
[0054] Figure 14 is a three - dimensional schematic of a part of the medical radiation detection bed Figure 2 。 Detailed implementation manners
[0055] The following further details the content of the present application in conjunction with each drawing. It should be noted that the following is an illustration of the preferred embodiments of the present invention and does not constitute any limitation to the present invention. The illustration of the preferred embodiments of the present invention is only for the illustration of the general principles of the present invention. The numbers such as "first", "second", "A", and "B" involved in the present invention are only for the convenience of illustration and do not represent the order relationship in time or space. The combinations of letters and numbers "TA", "TB", "H" involved in the present invention are only for the convenience of illustration, and the specific meanings are determined by the specific words they represent.
[0056] Such as Figures 1 to 5, In an embodiment of a medical radiation detection bed, it includes: a support assembly 100 and a detection bed assembly 300; the detection bed assembly 300 includes a detection bed part A 310 and a detection bed part B 320; the detection bed part A 310 and the detection bed part B 320 are respectively located at both ends of the detection bed assembly 300; one end of the support assembly 100 is connected to the detection bed part B 320; the support assembly 100 supports the detection bed assembly 300; the detection bed assembly 300 is used to carry a detection object; the detection bed part A 310 is used to carry the part of the detection object that receives radiation irradiation. During the medical radiation detection process, the part of the detection object that receives radiation irradiation is placed on the detection bed part A 310.
[0057] As Figures 1 to 3 , the above detection bed assembly 300 includes a load-bearing bed board 330 and a detection bed connection part 350; the above load-bearing bed board 330 includes a load-bearing bed board part A 331 and a load-bearing bed board part B 332; the load-bearing bed board part A 331 corresponds to the above detection bed part A 310; the detection bed part B 320 includes a detection bed connection part 350 and a load-bearing bed board part B 332; the detection bed connection part 350 is connected to the load-bearing bed board part B 332; the detection bed connection part 350 is connected to one end of the support assembly 100.
[0058] As Figure 2 and Figure 3 , the load-bearing bed board part B 332 includes mounting holes 3325, and the detection bed part B 320 is mechanically connected to the load-bearing bed board part B 332 through the mounting holes 3325. All or part of the load-bearing bed board 330 is layered and made of carbon fiber material; the bearing surface of the load-bearing bed board 330 is an arc surface. In embodiments not shown in some drawings, the bearing surface of the load-bearing bed board 330 is a flat surface. Fasteners are provided on the mounting holes 3325 for connection and fixation.
[0059] In embodiments not shown in some drawings, the detection bed part B 320 includes a mounting guide groove, and the load-bearing bed board is inserted into the above mounting guide groove; part or all of the load-bearing bed board part B 332 is inserted into the above mounting guide groove.
[0060] In embodiments not shown in some drawings, the load-bearing bed board is mechanically connected to the detection bed part B 320, and the detection bed part B 320 includes a clamping device, and the clamping device clamps the load-bearing bed board part B 332.
[0061] As Figures 11 to 12 , the detection bed connection part 350 supports horizontal movement between the load-bearing bed board and the support assembly 100; Figure 11 In Figure 12 relative to Figure 11 , the support assembly 100 is farther away from the load-bearing bed board part A 331.
[0062] As Figures 13 to 14, the medical radiation detection bed further includes a sliding connection device 150. The detection bed connection part 350 is slidably connected to the sliding member of the sliding connection device 150, and the support assembly 100 is connected to the track member of the sliding connection device 150. The sliding connection device 150 supports horizontal movement between the bearing bed board and the support assembly 100. The horizontal relative positions of the support assembly 100 and the bearing bed board can be adjusted to facilitate small-range movement during detection. The movement travel distance can be 10, 20, 30 centimeters or other travel distances corresponding to the bed size.
[0063] The medical radiation detection bed further includes a rolling connection device. The detection bed connection part 350 is connected to the rolling member of the rolling connection device, and the support assembly 100 is connected to the track member of the rolling connection device.
[0064] Such as Figures 4 to 5 , in the above support assembly 100, a lifting mechanism is included. The lifting mechanism is used to support the up and down movement of the detection bed assembly 300; the support assembly 100 includes a support assembly A120 and a support assembly B. One end of the support assembly B is connected to the detection bed B part 320, and the other end of the support assembly B is connected to the support assembly A120. A part of the support assembly A120 can be retracted into the support assembly B; in some embodiments, the above lifting mechanism is a screw jack.
[0065] In embodiments not shown in some of the drawings, the support assembly 100 includes a support assembly A120 and a support assembly B130. One end of the support assembly B130 is connected to the detection bed B part 320, and the other end of the support assembly B130 is connected to the support assembly A120. A part of the support assembly B130 can be retracted into the support assembly A120;
[0066] In embodiments not shown in some of the drawings, one end of the support assembly 100 is connected to the detection bed B part 320, and the other end of the support assembly 100 is fixedly installed on the ground;
[0067] In embodiments not shown in some of the drawings, one end of the support assembly 100 is connected to the detection bed B part 320, and the other end of the support assembly 100 is fixedly installed at the use position;
[0068] Such as Figures 4 to 6 , in an embodiment of a medical radiation detection bed, a horizontal support assembly 200 is further included; one end of the horizontal support assembly 200 is connected to the support assembly, and the other end of the horizontal support assembly 200 extends toward the detection bed A part 310.
[0069] Such as Figure 6 , in an embodiment of a medical radiation detection bed, the above horizontal support assembly 200 includes a rotating connection part 230, and the above rotating connection part 230 is used for rotatably connecting with a medical radiation detection device.
[0070] Such asFigure 5 and Figure 6 In an embodiment of a medical radiation detection bed, there is also one support wheel 290 or more than two support wheels 290. The above support wheels 290 are connected to the horizontal support assembly 200 to support the movement or rotation of the medical radiation detection bed.
[0071] Such as Figure 5 and Figure 4 In an embodiment of a medical radiation detection bed, the display module 500 is connected to the B part 320 of the detection bed; the display module 500 is not perpendicular to the ground; the display screen in the display module 500 is inclined upward.
[0072] In embodiments not shown in some of the drawings, the display module 500 is connected to the support assembly; the display module 500 is not perpendicular to the ground; the display screen in the display module 500 is inclined upward.
[0073] Such as Figures 6 to 9 In an embodiment of a medical radiation detection device, it includes the above-mentioned medical radiation detection bed; it also includes a radiation source 610 and an imager 620. The radiation source 610 and the imager 620 are arranged opposite to each other; the rays emitted by the radiation source 610 pass through the A part 310 of the detection bed of the medical radiation detection bed and enter the imager 620. Such as Figures 6 to 9 In, the label C is the medical radiation detection bed.
[0074] Such as Figures 6 to 9 In an embodiment of a medical radiation detection device, it also includes a main body support assembly 630, a rotating arm 640, and a control module 650; the radiation source 610 and the imager 620 are respectively arranged at both ends of the rotating arm 640; the main body support assembly 630 is used to carry and support the rotating arm 640 and the control module 650; the control module 650 is electrically connected to the rotating arm 640, and the control module 650 is used to control the rotating arm 640 to drive the radiation source 610 and the imager 620 to rotate around the medical radiation detection bed; the control module 650 is electrically connected to the lifting mechanism of the medical radiation detection bed, and the control module 650 is used to control the lifting mechanism to move the medical radiation detection bed up and down.
[0075] Such as Figure 6 The medical radiation detection bed is parallel to the transverse central axis of the rotating arm 640. Such as Figure 7 and Figure 8 The medical radiation detection bed is Figure 6 rotated by 90°, and the medical radiation detection bed is perpendicular to the transverse central axis of the rotating arm 640. The medical radiation detection bed is rotationally connected to the medical radiation detection device by means of a rotational connection part 230. It is convenient to adjust the relative position between the two and convenient for detection.
[0076] Such as Figure 9, in an embodiment of a medical radiation detection device, the main body support assembly 630 includes a receiving cavity; the receiving cavity is used to receive the control module 650. The receiving cavity includes an upper receiving cavity 631; the upper receiving cavity 631 is located in the upper part of the main body support assembly 630; the receiving cavity includes a lower receiving cavity 635; the lower receiving cavity 635 is located in the lower part of the main body support assembly 630; the main body support assembly 630 includes an openable and closable door assembly, and the door assembly is used to close or open the receiving cavity; an independent upper receiving cavity door assembly 6315 is provided on the upper receiving cavity 631, and an independent lower receiving cavity door assembly 6355 is provided on the lower receiving cavity 635.
[0077] As Figure 9 , in an embodiment of a medical radiation detection device, the rotating arm 640 is provided at the front of the main body support assembly 630; the main body support assembly 630 includes an openable and closable door assembly, and the door assembly is provided on the side or rear of the main body support assembly 630; in an embodiment not shown in some drawings, the door assembly includes a door lock, and the door lock is used to open or close the door assembly.
[0078] In this application, a medical radiation detection bed and a medical radiation detection device include: a support assembly, a detection bed assembly 300; the detection bed assembly 300 includes a detection bed A part 310 and a detection bed B part 320; the detection bed A part 310 and the detection bed B part 320 are respectively located at both ends of the detection bed assembly 300; one end of the support assembly is connected to the detection bed B part 320; the support assembly supports the detection bed assembly 300; the detection bed assembly 300 is used to carry a detection object; during a medical radiation detection process, the part of the detection object that receives the ray irradiation is placed on the detection bed A part 310. The radiation source 610 and the imager 620 are oppositely arranged; the rays emitted by the radiation source 610 pass through the detection bed A part 310 of the medical radiation detection bed and enter the imager 620. It can be flexibly moved and lifted and adjusted, and it is convenient to carry the target to be measured for position movement; it can be flexibly applied to different detection scenarios. The detection bed can be moved up and down to adjust the height of the detection object; in cooperation with the rotation of the rotating arm 640, two-dimensional imaging and three-dimensional imaging can be performed on the detection object, which is applicable to a variety of scenarios, very convenient to use, and provides a better user experience.
[0079] Although the present invention is described and illustrated according to preferred embodiments and several alternative solutions, the invention will not be limited by the specific descriptions in this specification. Other additional alternatives or equivalent components can also be used to practice the present invention.
Claims
1. A medical radiation detection bed, characterized in that: include: Support components, testing bed components; The detection bed assembly includes a detection bed part A and a detection bed part B; The detection bed section A and the detection bed section B are respectively located at two ends of the detection bed assembly; One end of the support assembly is connected to the detection bed portion B; the support assembly supports the detection bed assembly; The detection bed assembly is used to carry the detection object; Part A of the inspection bed is used to carry the part of the inspection object that receives radiation irradiation.
2. The medical radiation detection bed according to claim 1, characterized in that: The detection bed assembly includes a bearing bed plate and a detection bed connecting part; The load-bearing bed board comprises a load-bearing bed board part A and a load-bearing bed board part B; The bearing bed plate part A corresponds to the detection bed part A; The detection bed part B includes the detection bed connection part and the bearing bed plate part B; The detection bed connection part is connected to the bearing bed plate B; the detection bed connection part is connected to one end of the support assembly; Includes any of the following characteristics, Feature TA1: The detection bed connection portion includes a mounting guide groove, and the bed support plate is inserted into the mounting guide groove; the bed support plate B part is partially or completely inserted into the mounting guide groove; Feature TA2: The connection portion of the detection bed includes a clamping device, and the clamping device clamps the load-bearing bed plate portion B; Feature TA3: The bearing bed plate B includes a mounting hole, through which the detection bed B is mechanically connected to the detection bed connection part; Feature TA4: All or part of the layers of the load-bearing bed plate are made of carbon fiber material; Feature TA5: The bearing surface of the bed plate is a flat surface or a curved surface; Feature TA6: The detection bed connection supports horizontal movement between the load-bearing bed plate and the support assembly; Feature TA7: Also includes a sliding connection device, the detection bed connection portion is connected to the sliding component of the sliding connection device, and the support assembly is connected to the track component of the sliding connection device; Feature TA8: It also includes a rolling connection device, the detection bed connection part is connected to the rolling part of the rolling connection device, and the support assembly is connected to the track part of the rolling connection device.
3. The medical radiation detection bed according to claim 1, characterized in that: The support assembly includes a lifting mechanism, which is used to support the detection bed assembly to move up and down; Includes any of the following characteristics, Feature TB1: The support assembly includes a support assembly A and a support assembly B, one end of the support assembly B is connected to the B portion of the detection bed, the other end of the support assembly B is connected to the support assembly A, and a portion of the support assembly A can be retracted into the support assembly B; Feature TB2: The support assembly includes a support assembly A and a support assembly B, one end of the support assembly B is connected to the B portion of the detection bed, the other end of the support assembly B is connected to the support assembly A, and a portion of the support assembly B can be retracted into the support assembly A; Feature TB3: One end of the support assembly is connected to the B part of the testing bed, and the other end of the support assembly is fixed to the ground; Feature TB4: One end of the support assembly is connected to the B part of the test bed, and the other end of the support assembly is fixedly installed at the use position; Feature TB5: The lifting mechanism is a screw lift.
4. The medical radiation detection bed according to claim 1, characterized in that: Also included is a horizontal support assembly; One end of the horizontal support assembly is connected to the support assembly, and the other end of the horizontal support assembly extends toward the A portion of the detection bed.
5. The medical radiation detection bed according to claim 4, characterized in that: The horizontal support assembly comprises a rotation connection portion, and the rotation connection portion is used for rotation connection with the medical radiation detection device.
6. The medical radiation detection bed according to claim 4 or 5, characterized in that: It also includes a supporting wheel or more than two supporting wheels, which are connected to the horizontal supporting assembly to support the movement or rotation of the medical radiation detection bed.
7. The medical radiation detection bed according to claim 6, characterized in that: The horizontal support assembly includes a retractable slide rail, and the horizontal support assembly supports stretching, lengthening or shortening.
8. The medical radiation detection bed according to claim 1, characterized in that: Also includes a display module; including any of the following features, Feature TC1: The display module is connected to part B of the test bed; Feature TC2: The display module is connected to the B part of the inspection bed, and the display module is not perpendicular to the ground; Feature TC3: Display module is connected to the support assembly; Feature TC4: The display screen in the display module is tilted upward.
9. A medical radiation detection device, characterized in that: A medical radiation detection bed comprising any one of claims 1 to 7; It also includes a transmitting source and an imager, wherein the transmitting source and the imager are arranged relative to each other; The radiation emitted by the emission source passes through the detection bed A part of the medical radiation detection bed and enters the imager.
10. The medical radiation detection device according to claim 9, characterized in that: It also includes a main support assembly, a rotating arm, and a control module; The emission source and the imager are respectively arranged at two ends of the rotating arm; The main support assembly is used to carry and support the rotating arm and the control module; The control module is connected to the rotating arm by electrical signals, and the control module is used to control the rotating arm to drive the emission source and the imager to rotate around the medical radiation detection bed; The control module is connected to the lifting mechanism of the medical radiation detection bed by electrical signals. The control module is used to control the lifting mechanism to move the medical radiation detection bed up and down.
11. The medical radiation detection device according to claim 10, characterized in that: The main body support assembly includes a receiving cavity; the receiving cavity is used to receive the control module; Including any of the following technical features: TB1: the accommodating cavity includes an upper accommodating cavity; the upper accommodating cavity is located at the upper part of the main body support assembly; TB2: the accommodating cavity includes a lower accommodating cavity; the lower accommodating cavity is located at the lower part of the main body support assembly; TB3: The main body support assembly includes an openable door assembly, and the door assembly is used to close or open the receiving cavity; TB4: The rotating arm is arranged at the front of the main body support assembly; the main body support assembly includes an openable and closable door assembly, and the door assembly is arranged at the side or rear of the main body support assembly; TB5: The main support assembly includes an openable and closable door assembly, and the door assembly includes a door lock, and the door lock is used to open or close the door assembly.