CT shelter

By designing and repairing openings in the CT cabin, the problems of limited scanning space and unreasonable layout of the CT cabin are solved, convenient installation and maintenance of CT equipment is achieved, and the utilization rate of scanning space is improved.

CN222942583UActive Publication Date: 2025-06-06NEUSOFT MEDICAL SYST CO LTD
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Patent Information

Application Number
CN202421901844.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-06-06
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

The CT scanning space of the square cabin is limited, and the unreasonable layout leads to inconvenient installation and maintenance of CT equipment.

Method used

A CT cabin is designed, with the cabin enclosing a scanning space, and an inspection opening is provided on the first bulkhead. The CT equipment is arranged in the scanning space. The first side wall of the scanning body is opposite to the inspection opening, providing an additional maintenance space.

Benefits of technology

The scanning body is directly inspected through the maintenance opening, which reduces the requirements for the space of the cabin, improves the utilization rate and layout of the scanning space, and facilitates the installation and maintenance of CT equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shelters, and discloses a CT shelter which comprises a shelter body, a first shelter wall and a second shelter wall, the shelter body defines a scanning space and comprises the first shelter wall and the second shelter wall which extend in the length direction of the shelter body and are oppositely arranged, and a maintenance opening is formed in the first shelter wall; the CT equipment is arranged in the scanning space and comprises a scanning body, the scanning body comprises a first side wall adjacent to the first cabin wall and a second side wall adjacent to the second cabin wall, the first side wall is opposite to the overhaul opening, and the distance between the first side wall and the first cabin wall is smaller than that between the second side wall and the second cabin wall. According to the embodiment, an extra overhaul space is provided through the overhaul opening, and the requirement for the space of the square cabin is reduced.
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Description

Technical Field

[0001] The present application relates to the technical field of modular cabins, for example, to a CT modular cabin. Background Art

[0002] CT examination is a relatively advanced medical scanning technology in modern times. CT examination generally includes plain scan CT, enhanced CT and cisternography CT. CT equipment uses X-ray beams to scan a certain thickness of a certain part of the human body. The detector receives the X-rays that pass through the layer, converts them into visible light, and then converts them into electrical signals through photoelectric conversion. Then, they are converted into digital signals through analog / digital converters and input into computers for processing. CT equipment has become a popular medical device for inspection and diagnosis, and can provide the most valuable guiding information for surgical operations in emergency treatment. In recent years, the development of CT medical emergency cabins has provided a powerful tool for first aid in the field and in emergency situations.

[0003] The square cabins are mainly converted from containers, special carriages, mobile modular houses, etc. The size and space of the square cabins are restricted by the standardization of the boxes and vehicle transportation. The CT scanning space in the square cabins is limited. If the layout of the square cabins is unreasonable, the installation and maintenance of the CT equipment will be extremely inconvenient.

[0004] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present application, and therefore may include information that does not constitute the prior art known to ordinary technicians in the field. Utility Model Content

[0005] In order to provide a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. The summary is not an extensive review, nor is it intended to identify key / critical components or delineate the scope of protection of these embodiments, but rather serves as a prelude to the detailed description that follows.

[0006] The disclosed embodiment provides a CT cabin to improve the utilization rate of the cabin space and facilitate the installation and maintenance of CT equipment.

[0007] According to an embodiment provided in the present application, a CT cabin is provided, comprising: a cabin body enclosing a scanning space, comprising a first bulkhead and a second bulkhead extending along the length direction of the cabin body and arranged opposite to each other, wherein the first bulkhead is provided with an inspection opening; a CT device, arranged in the scanning space, comprising a scanning body, wherein the scanning body comprises a first side wall adjacent to the first bulkhead and a second side wall arranged adjacent to the second bulkhead, wherein the first side wall is opposite to the inspection opening, and a distance between the first side wall and the first bulkhead is smaller than a distance between the second side wall and the second bulkhead.

[0008] In some optional embodiments, in the length direction of the cabin body, the width of the inspection opening is greater than the width of the first side wall.

[0009] In some optional embodiments, the orthographic projection of the first side wall in the inspection opening is centrally disposed in the inspection opening along the length direction of the cabin.

[0010] In some optional embodiments, the minimum distance between the edge of the first side wall in the length direction of the cabin and the side wall of the inspection opening in the length direction of the cabin is greater than or equal to 30 centimeters.

[0011] In some optional embodiments, the distance between the first side wall and the first bulkhead is greater than or equal to 10 centimeters, and the distance between the second side wall and the second bulkhead is greater than or equal to 50 centimeters.

[0012] In some optional embodiments, the CT device also includes a scanning bed, and the scanning bed and the scanning body are arranged along the length direction of the cabin, and the distance between the first bulkhead and the second bulkhead is smaller than the length of the scanning bed; in the length direction of the cabin, the width of the inspection opening allows the scanning bed to enter the scanning space through the inspection opening.

[0013] In some optional embodiments, the second bulkhead is provided with an inspection opening, and the inspection opening and the inspection opening are staggered. The CT device also includes a scanning bed, and the scanning bed and the scanning body are arranged along the length direction of the cabin. Relative to the scanning body, the inspection opening is adjacent to the scanning bed of the CT device.

[0014] In some optional embodiments, the cabin body further includes a third bulkhead, both ends of which are respectively connected to the first bulkhead and the second bulkhead, and the CT device further includes a scanning bed, the scanning bed and the scanning body are arranged along the length direction of the cabin body, the third bulkhead is located on the side of the scanning body away from the scanning bed, and the distance between the scanning body and the third bulkhead is greater than or equal to 150 cm.

[0015] In some optional embodiments, the cabin also encloses an operating space, the cabin includes a partition wall, the partition wall is located between the operating space and the scanning space, the CT equipment also includes a scanning bed, the scanning bed and the scanning body are arranged along the length direction of the cabin, and the distance between the partition wall and the scanning bed is greater than or equal to 100 centimeters.

[0016] In some optional embodiments, the CT device further includes a shock absorber and a mounting assembly, wherein the shock absorber is disposed on the bottom plate of the cabin and supported below the CT device, and the mounting assembly is movably connected to the CT device in a buffering direction of the shock absorber; wherein the shock absorber can be removed when the mounting assembly is movably connected to the CT device.

[0017] The CT cabin provided by the embodiments of the present disclosure can achieve the following technical effects:

[0018] With this optional embodiment, the cabin body encloses a scanning space, and an inspection opening is provided on the first wall of the cabin body, and the scanning space can be connected to the outside through the inspection opening. The CT device is arranged in the scanning space, and the first side wall of the scanning body of the CT device is arranged opposite to the inspection opening. The inspection opening provides additional inspection space, and the scanning body can be directly inspected through the inspection opening, reducing the requirements for the cabin space.

[0019] The scanning body includes a first side wall adjacent to the first bulkhead and a second side wall adjacent to the second bulkhead, and the distance between the first side wall and the first bulkhead is smaller than the distance between the second side wall and the second bulkhead. The space between the first side wall and the first bulkhead can be used by maintenance personnel when inspecting and maintaining the CT equipment, and the space between the second side wall and the second bulkhead can be used by medical staff and patients to increase the range of activities of medical staff. The distance between the second side wall and the second bulkhead is greater than the distance between the first side wall and the first bulkhead, which is convenient for medical staff and patients to pass through, and improves the utilization rate of the scanning space and the rationality of the layout.

[0020] The above general description and the following description are exemplary and explanatory only and are not intended to limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] One or more embodiments are exemplarily described by corresponding drawings, and these exemplary descriptions and drawings do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings are regarded as similar elements, and the drawings do not constitute a scale limitation, and wherein:

[0022] Figure 1 It is a structural schematic diagram of a CT cabin provided by an embodiment of the present disclosure;

[0023] Figure 2 is a structural schematic diagram of another CT cabin provided by an embodiment of the present disclosure;

[0024] Figure 3 is a structural schematic diagram of another CT cabin provided in an embodiment of the present disclosure;

[0025] Figure 4 It is a partial structural schematic diagram of a CT cabin provided by an embodiment of the present disclosure;

[0026] Figure 5 It is a schematic structural diagram of a shock-absorbing component provided in an embodiment of the present disclosure.

[0027] Reference numerals:

[0028] 100. Cabin; 110. Scanning space; 111. Inspection opening; 112. Inspection opening; 113. First bulkhead; 114. Second bulkhead; 115. Third bulkhead; 120. Operating space; 121. Operating opening; 130. Partition wall; 131. Connecting opening; 132. Observation window; 200. CT equipment; 210. Scanning body; 211. Foot; 220. Scanning bed; 310. Shock absorber; 311. Disassembly and assembly notch; 320. Mounting assembly; 321. First mounting part; 322. Mounting rod; 323. Second mounting part; 324. Anti-loosening gasket; 325. Anti-loosening nut. DETAILED DESCRIPTION

[0029] In order to be able to understand the features and technical contents of the embodiments of the present disclosure in more detail, the implementation of the embodiments of the present disclosure is described in detail below in conjunction with the accompanying drawings. The attached drawings are for reference only and are not used to limit the embodiments of the present disclosure. In the following technical description, for the convenience of explanation, a full understanding of the disclosed embodiments is provided through multiple details. However, one or more embodiments can still be implemented without these details. In other cases, to simplify the drawings, well-known structures and devices can be simplified for display.

[0030] The terms "first", "second", etc. in the specification and claims of the embodiments of the present disclosure and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the terms used in this way can be interchanged where appropriate, so that the embodiments of the embodiments of the present disclosure described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions.

[0031] In the embodiments of the present disclosure, the terms "upper", "lower", "inside", "middle", "outside", "front", "back" and the like indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. These terms are mainly intended to better describe the embodiments of the present disclosure and their embodiments, and are not intended to limit the indicated devices, elements or components to have a specific direction, or to be constructed and operated in a specific direction. Moreover, in addition to being used to indicate directions or positional relationships, some of the above terms may also be used to indicate other meanings. For example, the term "upper" may also be used to indicate a certain dependency or connection relationship in certain circumstances. For those of ordinary skill in the art, the specific meanings of these terms in the embodiments of the present disclosure can be understood according to specific circumstances.

[0032] In addition, the terms "disposed", "connected", and "fixed" should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection, or an electrical connection; it can be a direct connection, or an indirect connection through an intermediate medium, or it can be an internal connection between two devices, elements, or components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present disclosure can be understood according to specific circumstances.

[0033] The term "and / or" is a description of the association relationship between objects, indicating that three relationships can exist. For example, A and / or B means: A or B, or, A and B.

[0034] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present disclosure may be combined with each other.

[0035] The present disclosure provides a CT cabin, such as Figures 1 to 3 As shown, the CT cabin includes a cabin 100 and a CT device 200. The cabin 100 encloses a scanning space 110. The cabin 100 includes a first bulkhead 113 and a second bulkhead 114 extending along the length direction of the cabin 100 and arranged opposite to each other. The first bulkhead 113 is provided with an inspection opening 111. The CT device 200 is arranged in the scanning space 110. The CT device 200 includes a scanning body 210. The scanning body 210 includes a first side wall adjacent to the first bulkhead 113 and a second side wall adjacent to the second bulkhead 114. The first side wall is arranged opposite to the inspection opening 111, and the distance L between the first side wall and the first bulkhead 113 is 1 / 4. 1 is smaller than the distance L between the second side wall and the second bulkhead 114 2 .

[0036] In this optional embodiment, the cabin 100 encloses a scanning space 110, and a first wall 113 of the cabin 100 is provided with an inspection opening 111, and the scanning space 110 can be connected to the outside through the inspection opening 111. The CT device 200 is disposed in the scanning space 110, and a first side wall of a scanning body 210 of the CT device 200 is disposed opposite to the inspection opening 111, and the inspection opening provides an additional inspection space.

[0037] The scanning body 210 includes a first side wall adjacent to the first bulkhead 113 and a second side wall adjacent to the second bulkhead 114. The distance L between the first side wall and the first bulkhead 113 is 1 is smaller than the distance L between the second side wall and the second bulkhead 114 2The space between the first side wall and the first bulkhead 113 can be used by maintenance personnel when performing maintenance on the CT device 200, and the space between the second side wall and the second bulkhead 114 can be used by medical personnel and patients to increase the range of activities of medical personnel. The distance L between the second side wall and the second bulkhead 114 2 Greater than the distance L between the first side wall and the first bulkhead 113 1 , making it convenient for medical staff and patients to pass through, and improving the utilization rate of the scanning space 110 and the rationality of the layout.

[0038] In this embodiment, the direction from the first bulkhead 113 to the second bulkhead 114 may be the width direction of the cabin 100, and the length direction of the cabin 100 is a direction perpendicular to the width direction on a horizontal plane. The scanning body of the CT device has a scanning cavity, and the scanning bed of the CT device can send the patient to the scanning cavity for examination. Therefore, the extension direction of the scanning cavity is generally the length direction of the cabin.

[0039] Optionally, the CT cabin further includes an inspection door, which is openably and closably disposed at the inspection opening 111 .

[0040] Optionally, the inspection door is opened and closed in a push-pull manner, or the inspection door is opened outwardly along the scanning space 110 toward the outside world.

[0041] In some optional embodiments, in the length direction of the cabin body 100 , the width of the inspection opening 111 is greater than the width of the first side wall.

[0042] In this embodiment, the width of the inspection opening 111 is greater than the width of the first side wall, providing a larger inspection space. In addition, the CT device 200 can be placed in the scanning space 110 through the inspection opening 111, so as to facilitate the installation of the CT device 200. The scanning body 210 is arranged opposite to the inspection opening 111, which can reduce the movement and handling work of the scanning body 210 after entering the scanning space 110, and when the CT device 200 is maintained and inspected, the scanning body 210 can be directly inspected through the inspection opening 111, thereby improving the efficiency of inspection and maintenance and facilitating the installation and maintenance of the CT device 200. The scanning body 210 can be transported to the scanning space 110 through the inspection opening 111, which is convenient for the installation of the scanning body 210.

[0043] Exemplarily, the orthographic projection of the first side wall in the inspection opening 111 is centered in the inspection opening 111 along the length direction of the cabin body 100 .

[0044] In this embodiment, the orthographic projection of the first side wall in the inspection opening 111 is centered in the inspection opening 111 along the length direction of the cabin 100. That is, along the length direction of the cabin 100, there is a space between the two side edges of the first side wall and the corresponding inspection opening 111, so that the distance L between the first side wall and the first bulkhead 113 is 1 In a smaller case, the maintenance personnel can also move to the edge of the first side wall, thereby increasing the range of movement of the maintenance personnel and facilitating the installation and maintenance of the CT device 200 .

[0045] In some optional implementations, the minimum distance L between the edge of the first side wall in the length direction of the cabin 100 and the side wall of the inspection opening 111 in the length direction of the cabin 100 is 3 Greater than or equal to 30 cm.

[0046] In this embodiment, there are two distances between the edge of the first side wall along the length direction of the cabin 100 and the side wall of the inspection opening 111 along the length direction of the cabin 100, one of which is the distance L between the edge of the first side wall and the side wall of the inspection opening 111 opposite thereto (i.e., there is no obstruction between the edge of the first side wall and the side wall of the inspection opening 111). 3 , and the other is the distance between the edge of the first side wall and the side wall of the other inspection opening 111 (there is a scanning body 210 between the edge of the first side wall and the side wall of the inspection opening 111). In this embodiment, the minimum distance L between the edge of the first side wall and the side wall of the inspection opening 111 3 It refers to the distance between the edge of the first side wall and the side wall of the opposite inspection opening 111 .

[0047] The distance L between the edge of the first side wall and the side wall of the inspection opening 111 3 When the scanning body 210 is disposed at the inspection opening 111, the maintenance personnel can also enter the scanning space 110 through the space between the edge of the first side wall and the side wall of the inspection opening 111, thereby reducing the distance L between the first side wall and the first bulkhead 113. 1 , so that maintenance personnel can enter the scanning space 110, the compactness of the components in the scanning space 110 is improved, unnecessary space waste is reduced, and the utilization rate of the scanning space 110 is improved.

[0048] Optionally, the width L of the inspection opening 111 is 4 Greater than or equal to cm. Among them, L 3 is the minimum distance between the edge of the first side wall and the side wall of the inspection opening 111, L 1 is the distance between the first side wall and the first bulkhead 113 along the direction from the first bulkhead 113 to the second bulkhead 114, L5 is the width of the scanning body 210 .

[0049] In this embodiment, the distance L between the edge of the first side wall and the side wall of the inspection opening 111 is 3 is the set value, the width L of the inspection opening 111 4 Greater than or equal to cm, so that the side wall of the inspection opening 111 can correspond to the edge of the first side wall, thereby satisfying the distance L 3 Settings.

[0050] In this embodiment, the width L of the inspection opening 111 is 4 The distance L between the edge of the first side wall and the side wall of the inspection opening 111 3 , the distance L between the scanning body 210 and the first bulkhead 113 1 and the width L of the scanning body 210 5 Compared with the width and volume of the CT cabin, the inspection opening 111 of the CT cabin is flexible in design and can be obtained by determining L 1 , L 5 and L 3 Then, determine the width L of the inspection opening 111 4 , to meet the needs of maintenance personnel.

[0051] In some optional embodiments, the distance L between the first side wall and the first bulkhead 113 is 1 greater than or equal to 10 cm, the distance L between the second side wall and the second bulkhead 114 2 Greater than or equal to 50 cm.

[0052] In this embodiment, maintenance personnel or medical personnel can pass through the space between the edge of the first side wall and the side wall of the inspection opening 111 or the inspection opening 111 is located on the side of the scanning body 210 facing the inspection opening 111. 1 Greater than or equal to 10 centimeters, the space between the first side wall and the first bulkhead 113 can be reduced on the basis that maintenance personnel and inspection personnel can be located on the side of the scanning body 210 facing the inspection opening 111, thereby improving the compactness of the component arrangement in the scanning space 110 and improving the utilization rate of the scanning space 110.

[0053] Optionally, the second side wall is provided with an inspection opening 112, through which medical personnel and patients can enter the scanning space 110. In the direction from the first bulkhead 113 to the second bulkhead 114, the distance L between the second side wall and the second bulkhead 114 is 2Greater than or equal to 50 centimeters, so that medical staff can go around to the side of the scanning body 210 away from the inspection opening 112 through the space between the scanning body 210 and the second bulkhead 114, thereby increasing the range of movement of medical staff and maintenance personnel, making it easier for medical staff to operate the CT device 200 and for maintenance personnel to inspect and maintain the CT device 200.

[0054] In some optional embodiments, the CT device 200 further includes a scanning bed 220. The scanning bed 220 and the scanning body 210 are arranged along the length direction of the cabin 100. The distance L between the first cabin wall 113 and the second cabin wall 114 is 6 Less than the length L of the scanning bed 220 8 In the length direction of the cabin 100, the width L of the inspection opening 111 4 The scanning bed 220 is allowed to enter the scanning space 110 through the access opening 111 .

[0055] In this embodiment, the scanning bed 220 and the scanning body 210 are arranged along the length direction of the cabin body 100, and the distance L between the first cabin wall 113 and the second cabin wall 114 is 6 Less than the length L of the scanning bed 220 8 , which can reduce the width of the cabin 100 and improve the utilization of the scanning space 110. In the length direction of the cabin 100, the width of the inspection opening 111 allows the scanning bed 220 to enter the scanning space 110 through the inspection opening 111. The scanning body 210 is arranged opposite to the inspection opening 111. When installing the CT device 200, the scanning bed 220 can be moved into the scanning space 110 through the inspection opening 111, and the scanning bed 220 can be rotated in the scanning space 110 to match the length of the scanning space 110. The scanning bed 220 and the scanning body 210 are arranged along the length direction of the cabin 100. Figure 2 As shown, the arrow direction in the figure is the movement direction of the scanning bed 220.

[0056] The width L of the inspection opening 111 4 Greater than or equal to 0.7×(L 8 -L 6 )+L 5 Among them, L 6 is the width of the scanning space 110, L 8 is the length of the scanning bed 220, L 5 is the width of the scanning body 210 .

[0057] Optionally, the width L of the inspection opening 111 is 4 Greater than or equal to 0.7×(L 8 -L 6 )+L 5In this way, the scanning bed 220 can use the inspection opening 111 or even the external space during the rotation process, thereby reducing the width L of the scanning space 110. 6 In a larger case, the compactness and layout rationality of the scanning space 110 are improved, and the installation of the CT device 200 is facilitated.

[0058] In some optional embodiments, the second bulkhead 114 is provided with an inspection opening 112, and the inspection openings 112 are arranged alternately with the inspection openings 112. The CT device 200 also includes a scanning bed 220. The scanning bed 220 and the scanning body 210 are arranged along the length direction of the cabin 100. Relative to the scanning body 210, the inspection opening 112 is adjacent to the scanning bed 220 of the CT device 200.

[0059] In this embodiment, the inspection opening 112 and the scanning space 110 are arranged alternately. Along the length direction of the cabin 100, relative to the scanning body 210, the inspection opening 112 is adjacent to the scanning bed 220 of the CT device 200, that is, the scanning bed 220 is arranged on the side of the scanning body 210 facing the inspection opening 112. In this way, after the patient enters the scanning space 110 through the inspection opening 112, the distance between the patient and the scanning bed 220 is smaller than the distance between the patient and the scanning body 210, so the patient can lie directly on the scanning bed 220, which reduces the moving distance of the patient and improves the efficiency of diagnosis.

[0060] Optionally, the CT cabin further includes an inspection door body, which is openably and closably disposed at the inspection opening 112 .

[0061] In some optional embodiments, the cabin 100 further includes a third bulkhead 115, both ends of which are connected to the first bulkhead 113 and the second bulkhead 114 respectively, and the CT device 200 further includes a scanning bed 220, the scanning bed 220 and the scanning body 210 are arranged along the length direction of the cabin 100, the third bulkhead 115 is located on the side of the scanning body 210 away from the scanning bed 220, and the distance L between the scanning body 210 and the third bulkhead 115 is 7 Greater than or equal to 150 cm.

[0062] In this embodiment, the third bulkhead 115 is located on the side of the scanning body 210 away from the scanning bed 220, and the distance L between the scanning body 210 and the third bulkhead 115 is 7 Greater than or equal to 150 cm. In this way, there is a certain space between the scanning body 210 and the third bulkhead 115, and multiple components can be placed between the scanning body 210 and the third bulkhead 115 to meet the functional requirements of the CT cabin and improve space utilization. It also reduces the situation where the space is too large and causes space waste.

[0063] Optionally, the cabin 100 further encloses an operating space 120, the cabin 100 includes a partition wall 130, the partition wall 130 is located between the operating space 120 and the scanning space 110, the CT device 200 further includes a scanning bed 220, the scanning bed 220 and the scanning body 210 are arranged along the length direction of the cabin 100, and the distance L between the partition wall 130 and the scanning bed 220 is 9 Greater than or equal to 100 cm.

[0064] In this embodiment, the cabin 100 also encloses an operating space 120, which is separated from the scanning space 110 by a partition wall 130 to provide an independent and safe working environment for medical staff. The partition wall 130 provides a physical barrier, reduces direct radiation to medical staff, and effectively improves the safety of medical staff. In addition, the partition wall 130 reduces external interference with the scanning process and improves the stability and safety of the operating environment. The distance L between the partition wall 130 and the CT device 200 is 9 It is greater than or equal to 100 centimeters, so that medical staff and patients can go around to the other side of the scanning bed 220 through the space between the partition wall 130 and the CT device 200, thereby increasing the movement path of the medical staff and facilitating their work.

[0065] Optionally, the cabin body 100 is provided with an operation opening 121 capable of connecting the operation space 120 with the outside.

[0066] In this embodiment, medical personnel can enter and exit the operating space 120 alone through the operating opening 121 , thereby reducing interference with the operation of the CT device 200 in the scanning space 110 and improving the stability of the working environment of the CT device 200 .

[0067] Optionally, the CT cabin further includes an operating door body, which is openable and closable and is disposed at the operating opening 121 .

[0068] Optionally, the partition wall 130 is provided with a communication opening 131 , and the communication opening 131 can connect the operation space 120 and the scanning space 110 .

[0069] In this embodiment, medical staff can move in the operating space 120 and the scanning space 110 through the connecting opening 131, which reduces the paths for medical staff to move in the scanning space 110 and the operating space 120 and improves work efficiency. The scanning space 110 and the operating space 120 are independent of each other but can be connected through the connecting opening 131, making the internal space of the CT cabin more efficient and flexible, and improving the user experience of medical staff.

[0070] Optionally, the CT cabin further includes a connecting door body, which is openable and closable and is disposed at the connecting opening 131 .

[0071] Exemplarily, the partition wall 130 is provided with an observation window 132 , and medical personnel can observe the scanning space 110 or the operation of the CT device 200 through the observation window 132 in the operating space 120 .

[0072] Optionally, the observation window 132 is a lead glass window to shield radiation generated by the CT device 200 .

[0073] Optionally, the width of the observation window 132 is greater than or equal to 110 centimeters.

[0074] In this embodiment, the width of the observation window 132 is greater than or equal to 110 centimeters, so as to increase the area of ​​the CT device 200 that can be observed by medical personnel.

[0075] In some optional embodiments, such as Figure 3 and Figure 4 As shown, the CT cabin further includes a shock absorber 310 and a mounting assembly 320. The shock absorber 310 is disposed on the bottom plate of the cabin body 100, and the shock absorber 310 is supported below the CT device 200. The mounting assembly 320 is movably connected to the CT device 200 in the buffering direction of the shock absorber 310; wherein the shock absorber 310 can be removed when the mounting assembly 320 is movably connected to the CT device 200.

[0076] With this optional embodiment, the shock absorber 310 is disposed on the bottom plate of the cabin 100, and the shock absorber 310 is supported below the CT device 200, and can effectively support the CT device 200. The mounting assembly 320 is movably connected to the CT device 200 in the buffering direction of the shock absorber 310, and the CT device 200 can move relative to the mounting assembly 320, so that the shock absorber 310 can perform seismic isolation protection for the CT device 200 during transportation, reduce the impact of vibration on the precision components of the CT device 200, reduce the impact and vibration that the CT device 200 may be subjected to during movement, reduce the occurrence of damage to the CT device 200, and improve the stability and safety of the equipment during transportation.

[0077] In this embodiment, during transportation, a shock absorber 310 can be installed under the CT device 200 to provide shock isolation protection for the CT device 200 through the shock absorber 310, thereby reducing the occurrence of damage to the CT device 200 during transportation. In addition, the mounting assembly 320 is movably connected to the CT device 200 in the buffering direction of the shock absorber 310, and the mounting assembly 320 can locate the installation position of the CT device 200 in other directions. The shock absorber 310 can be removed when the mounting assembly 320 is movably connected to the CT device 200. When the CT device 200 is transported to the set position and used, the shock absorber 310 can be removed, so that the CT device 200 moves downward relative to the mounting assembly 320, and the CT device 200 is directly placed on the ground of the cabin 100, thereby increasing the installation speed of the CT device 200 in the cabin 100, reducing the deployment time, and improving the efficiency of emergency treatment.

[0078] Optionally, the shock absorbing member 310 is supported below a frame of the scanning body 210 , and / or the shock absorbing member 310 is supported below a frame of the scanning bed 220 .

[0079] In some optional embodiments, such as Figure 4 As shown, the mounting assembly 320 includes a first mounting member 321 and a mounting rod 322, the mounting rod 322 extends along the buffering direction of the shock absorber 310, the mounting rod 322 is passed through the frame of the CT device 200, and is connected to the bottom plate of the cabin 100. The first mounting member 321 is arranged on a side of the CT device 200 away from the bottom plate of the cabin, is sleeved on the outside of the mounting rod 322, and is threadedly connected to the mounting rod 322.

[0080] The frame of the CT device 200 includes a frame of a scanning body 210 and / or a frame of a scanning bed 220 .

[0081] In this embodiment, during the transportation of the CT cabin 100, due to the bumpy road, the vibration of the CT cabin is mainly in the up and down direction. Taking the buffering direction of the shock absorber 310 as the up and down direction as an example, the first mounting member 321 is arranged on the side of the CT device 200 away from the bottom plate of the cabin body 100, that is, the first mounting member 321 is arranged above the CT device 200. The mounting assembly 320 can be inserted into the frame of the CT device 200, and the first mounting member 321 is sleeved on the outside of the mounting rod 322. The first mounting member 321 can limit the frame of the CT device 200 to move upward relative to the first mounting member 321, so as to improve the fixing effect of the CT device 200 and improve the stability and reliability of the CT device 200 during use.

[0082] The first mounting member 321 is threadedly connected to the mounting rod 322 , and the relative positions of the first mounting member 321 and the mounting rod 322 can be adjusted by relative rotation of the first mounting member 321 and the mounting rod 322 , thereby adjusting the fixing height of the CT device 200 and improving the flexibility of setting the CT device 200 .

[0083] The mounting rod 322 is connected to the bottom plate of the cabin body 100. The mounting rod 322 can limit the installation position of the CT device 200. When using or transporting the cabin 100, it is only necessary to move the CT device 200 in the buffering direction of the shock absorber 310 and install or remove the shock absorber 310, which simplifies the installation and adjustment process of the CT device 200 and improves the installation efficiency of the CT device 200.

[0084] Optionally, the mounting rod 322 includes a first screw rod, and the first mounting member 321 includes a first bolt, and the first bolt is threadedly connected to the first screw rod.

[0085] In some optional embodiments, such as Figure 4 and Figure 5 As shown, the shock absorbing member 310 includes a shock absorbing pad, and a disassembly and assembly notch 311 is provided on the circumferential side wall of the shock absorbing pad, and the installation rod 322 is passed through the disassembly and assembly notch 311.

[0086] In this embodiment, the shock absorbing member 310 includes a shock absorbing pad, which is arranged between the bottom plate of the cabin 100 and the frame of the CT device 200 to improve the placement stability of the CT device 200. The shock absorbing pad can reduce the vibration and impact of the CT device 200 and improve the seismic isolation protection effect of the CT device 200.

[0087] The shock-absorbing pad is provided with a disassembly notch 311, and the mounting rod 322 is passed through the disassembly notch. The mounting rod 322 can position the shock-absorbing pad laterally through the disassembly notch, thereby reducing the possibility of the shock-absorbing pad falling off when subjected to vibration and impact, and improving the shock-absorbing reliability of the shock-absorbing pad. The disassembly notch 311 extends inward from the circumferential side wall of the shock-absorbing pad, and the disassembly notch 311 provides a deformation space, which helps to improve the elasticity of the shock-absorbing pad, thereby better absorbing and buffering vibrations and improving the shock-absorbing effect.

[0088] Furthermore, one end of the disassembly notch 311 is located on the circumferential side wall of the shock-absorbing pad. When the shock-absorbing pad is disassembled, the shock-absorbing pad can be moved along the extension direction of the disassembly notch 311, so that the mounting rod 322 can be inserted into or disassembled from the disassembly notch 311, thereby simplifying the installation and disassembly process and improving the installation efficiency of the CT device 200.

[0089] In this embodiment, taking the buffering direction of the shock absorber 310 as the up-down direction as an example, the mounting rod 322 extends in the up-down direction, and the first mounting member 321 and the frame of the CT device 200 can move up and down relative to the mounting rod 322. When the shock absorber 310 is connected to the mounting assembly 320, the shock absorbing pad is arranged below the frame of the CT device 200, the installation height of the CT device 200 is increased, and the CT device 200 and the first mounting member 321 can move upward relative to the mounting rod 322, so that the shock absorber 310 can be arranged below the frame of the CT device 200 to reduce the shock of the CT device 200. When the shock absorber 310 is removed, the CT device 200 moves downward along the mounting rod 322 with the frame, so that the frame of the CT device 200 is placed on the bottom plate of the cabin 100, and the first mounting member 321 can move downward synchronously through the threaded rotation to fix the CT device 200.

[0090] In some optional embodiments, the mounting assembly 320 further includes a second mounting member 323, which is disposed between the shock absorbing member 310 and the CT device 200, and is sleeved on the outside of the mounting rod 322, and the second mounting member 323 is threadedly connected to the mounting rod 322, and the second mounting member 323 is used to fix the shock absorbing member 310.

[0091] In this embodiment, the second mounting member 323 is disposed between the shock absorbing member 310 and the frame of the CT device 200, that is, above the shock absorbing member 310. The second mounting member 323 can be used to fix the shock absorbing member 310, reduce the occurrence of the shock absorbing member 310 falling off when subjected to vibration and impact, and improve the reliability of the shock absorbing member 310.

[0092] The second mounting member 323 is sleeved on the outside of the mounting rod 322, and the second mounting member 323 is threadedly connected to the mounting rod 322, that is, the second mounting member 323 can move up and down relative to the mounting rod 322 by rotating the thread. In this way, after the shock absorbing member 310 is removed, the CT device 200 moves downward along the mounting rod 322, and the second mounting member 323 can move up and down relative to the mounting rod 322, so as to reduce the situation where the second mounting member 323 hinders the movement of the CT device 200, thereby improving the installation reliability of the CT cabin.

[0093] Optionally, the second mounting member 323 includes a second bolt, and the second bolt is threadedly connected to the first screw rod.

[0094] In some optional embodiments, the frame of the CT device 200 includes a foot 211, and the mounting rod 322 is passed through the foot 211. Along the buffering direction of the shock absorber 310, the distance between the second mounting member 323 and the first mounting member 321 is greater than the thickness of the frame of the CT device 200 through which the mounting rod 322 passes.

[0095] In this embodiment, the mounting rod 322 is passed through the foot 211 to be connected to the frame of the CT device 200. A first mounting member 321 is provided above the frame of the CT device 200, and a second mounting member 323 is provided below the frame of the CT device 200. When the shock absorber 310 is connected to the mounting assembly 320, the distance between the second mounting member 323 and the first mounting member 321 is greater than the thickness of the frame of the CT device 200 through which the mounting rod 322 passes. In this way, during the transportation of the CT device 200, the frame of the CT device 200 can move relative to the mounting rod 322 along the buffering direction of the shock absorber 310, that is, move up and down relative to the mounting rod 322, thereby reducing the vibration transmitted from the CT cabin to the mounting assembly 320 and transmitting it to the CT device 200 through the foot 211, thereby improving the shock absorption protection effect of the shock absorber 310.

[0096] Exemplarily, the shock absorbing member 310 is independent of the mounting assembly 320 , and the shock absorbing member 310 is detachably connected to the bottom plate of the cabin 100 .

[0097] In this embodiment, the shock absorber 310 is independent of the mounting assembly 320, and the shock absorber 310 can be removed when the mounting assembly 320 is movably connected to the frame of the CT device 200, and the shock absorber 310 is detachably connected to the bottom plate of the cabin body 100. In this way, when the shock absorber 310 is removed, it can be completely separated from the CT cabin to reduce the interference of the shock absorber 310 on the CT device 200 during the operation of the CT device 200, thereby improving the working stability and reliability of the CT cabin.

[0098] The mounting assembly 320 can position the CT device 200 laterally through the frame, and the CT device 200 can be moved up and down through the frame. When the cabin 100 needs to be transferred again, the shock-absorbing component 310 can be quickly installed to improve the seismic isolation protection effect of the CT device 200 during transportation. After the transfer, the shock-absorbing component 310 can be removed again and the CT device 200 can be reinstalled, reducing the difficulty and time cost of repeated installation.

[0099] In some optional embodiments, such as Figure 4 As shown, the mounting assembly 320 further includes an anti-loosening member, which is sleeved on the mounting rod 322 and located between the first mounting member 321 and the CT device 200 , and is used to prevent the first mounting member 321 and the mounting rod 322 from loosening.

[0100] In this embodiment, the anti-loosening member is sleeved on the mounting rod 322 and is located between the first mounting member 321 and the CT device 200 to prevent the first mounting member 321 from loosening, thereby improving the installation stability of the first mounting member 321 and improving the fixing effect of the frame of the CT device 200.

[0101] Optionally, the anti-loosening component includes an anti-loosening gasket 324 , and the anti-loosening gasket 324 is pressed between the first mounting component 321 and the frame of the CT device 200 .

[0102] Optionally, the anti-loosening member includes an anti-loosening nut 325 , and the anti-loosening nut 325 is arranged on a side of the first mounting member 321 facing the frame of the CT device 200 .

[0103] The above description and the accompanying drawings sufficiently illustrate the embodiments of the present disclosure to enable those skilled in the art to practice them. Other embodiments may include structural and other changes. The embodiments represent only possible variations. Unless explicitly required, individual components and functions are optional, and the order of operations may vary. Portions and features of some embodiments may be included in or replace portions and features of other embodiments. The embodiments of the present disclosure are not limited to the structures described above and shown in the accompanying drawings, and various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims

1. A CT cabin, characterized in that: include: A cabin body encloses a scanning space and includes a first cabin wall and a second cabin wall extending along the length direction of the cabin body and arranged opposite to each other, and an inspection opening is arranged on the first cabin wall; The CT device is arranged in a scanning space and includes a scanning body. The scanning body includes a first side wall adjacent to a first bulkhead and a second side wall adjacent to a second bulkhead. The first side wall is opposite to an inspection opening, and a distance between the first side wall and the first bulkhead is smaller than a distance between the second side wall and the second bulkhead.

2. The CT cabin according to claim 1, characterized in that: In the length direction of the cabin body, the width of the inspection opening is greater than the width of the first side wall.

3. The CT cabin according to claim 2, characterized in that: The orthographic projection of the first side wall in the inspection opening is centrally arranged in the inspection opening along the length direction of the cabin body.

4. The CT cabin according to claim 2, characterized in that: The minimum distance between the edge of the first side wall in the length direction of the cabin body and the side wall of the inspection opening in the length direction of the cabin body is greater than or equal to 30 centimeters.

5. The CT cabin according to claim 1, characterized in that: The distance between the first side wall and the first bulkhead is greater than or equal to 10 centimeters, and the distance between the second side wall and the second bulkhead is greater than or equal to 50 centimeters.

6. The CT cabin according to any one of claims 1 to 5, characterized in that: The CT device also includes a scanning bed, which is arranged along the length of the cabin and a scanning body. The distance between the first cabin wall and the second cabin wall is smaller than the length of the scanning bed. In the length direction of the cabin, the width of the inspection opening allows the scanning bed to enter the scanning space through the inspection opening.

7. The CT cabin according to any one of claims 1 to 5, characterized in that: The second bulkhead is provided with an inspection opening, which is staggered with the inspection opening. The CT device also includes a scanning bed. The scanning bed and a scanning body are arranged along the length direction of the cabin. Relative to the scanning body, the inspection opening is adjacent to the scanning bed.

8. The CT cabin according to any one of claims 1 to 5, characterized in that: The cabin body also includes a third bulkhead, the two ends of which are respectively connected to the first bulkhead and the second bulkhead. The CT equipment also includes a scanning bed. The scanning bed and the scanning body are arranged along the length direction of the cabin body. The third bulkhead is located on the side of the scanning body away from the scanning bed, and the distance between the scanning body and the third bulkhead is greater than or equal to 150 centimeters.

9. The CT cabin according to any one of claims 1 to 5, characterized in that: The cabin also encloses an operating space, and the cabin includes a partition wall, which is located between the operating space and the scanning space. The CT equipment also includes a scanning bed, and the scanning bed and the scanning body are arranged along the length direction of the cabin. The distance between the partition wall and the scanning bed is greater than or equal to 100 centimeters.

10. The CT cabin according to any one of claims 1 to 5, characterized in that: The CT device also includes a shock absorber and a mounting assembly. The shock absorber is arranged on the bottom plate of the cabin and is supported below the CT device. The mounting assembly is movably connected to the CT device in the buffering direction of the shock absorber. The shock absorber can be removed when the mounting assembly is movably connected to the CT device.