Fangcang Hospital, Fangcang Medical System and Vehicle-mounted Fangcang Medical System

By introducing a space adjustment frame and partition wall structure into the cabin, the net length inside the scanning cabin is extended, which solves the problem of difficulty in transporting existing equipment and realizes the flexibility and functional integrity of the cabin during transportation and use.

CN111419261BActive Publication Date: 2025-09-23NEUSOFT MEDICAL SYST CO LTD
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Patent Information

Application Number
CN202010366217.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-04-30
Publication Date
2025-09-23
Estimated Expiration
2040-04-30

AI Technical Summary

Technical Problem

The total length of existing CT equipment cabins, MRI equipment cabins and PET-CT equipment cabins exceeds 6 meters, which cannot be adapted for standard container transportation, resulting in transportation difficulties and increased costs.

Method used

By designing retractable cabins for CT equipment, PET-CT equipment, and MRI equipment, and adopting space adjustment frames and partition wall structures, the net length inside the scanning cabin is extended to meet transportation and usage requirements.

Benefits of technology

The cabin is reduced in size during transportation, meeting the requirements of standard containers. It is fully functional, flexible to use, and can adapt to the needs of different scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a shelter, a shelter medical system, and a vehicle-mounted shelter medical system. The shelter is used to accommodate scanning equipment, which includes a scanning bed and a scanning body. The shelter includes a cabin body, which includes a scanning cabin and a first side wall. The shelter also includes a space adjustment frame, which includes a first avoidance space, and an opening is provided on one side that is connected to the first avoidance space. The shelter includes a retracted state and an expanded state. The space adjustment frame is fixed to the first side wall and protrudes outside the scanning cabin, with the opening facing the scanning cabin. The first avoidance space is connected to the scanning cabin through the opening and extends outside the scanning cabin in a first direction to allow one end of the scanning bed to move into it. And / or, the cabin body also includes a partition wall, the shelter includes an operating cabin, the partition wall includes a avoidance portion, and the avoidance portion includes a second avoidance space facing the scanning cabin. The second avoidance space extends outside the scanning cabin in a direction away from the first direction to allow the other end of the scanning bed to move into it.
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Description

Technical Field

[0001] The present application relates to the technical field of medical equipment, and in particular to a modular hospital, a modular hospital medical system, and a vehicle-mounted modular hospital medical system. Background Art

[0002] Scanning equipment is installed inside the cabin to form a medical cabin with scanning function. For example, there are various specialized cabins such as X-ray cabins, CT (Computed Tomography) cabins, MRI (Magnetic Resonance Imaging) cabins, and PET-CT cabins.

[0003] However, specialized medical shelters, such as CT, MRI, and PET-CT equipment, are equipped with a scanning bed that moves toward or away from the subject being scanned. The relevant parameters for these shelters are that the internal clear length of the scanning cabin, where the scanning equipment is located, exceeds 5 meters. In the same direction, the internal clear length of the operating cabin, separated from the scanning cabin, exceeds 1 meter. Therefore, the total length of a medical shelter with scanning functionality exceeds 6 meters, making it unsuitable for standard container transportation, resulting in transportation difficulties and increased costs. Summary of the Invention

[0004] The present application provides a modular hospital, a modular hospital medical system and a vehicle-mounted modular hospital medical system, which are convenient to transport and have complete detection functions.

[0005] Specifically, this application is implemented through the following technical solutions:

[0006] In one aspect, a cabin is provided for accommodating a scanning device, wherein the scanning device comprises a scanning bed and a scanning body, and the cabin comprises a cabin body, wherein the cabin body comprises a scanning cabin for accommodating the scanning device and a first side wall;

[0007] The cabin further includes a space adjustment frame, the space adjustment frame includes a first avoidance space, and an opening connected to the first avoidance space is provided on one side. The cabin includes a contracted state and an expanded state. The length of the cabin in the first direction in the contracted state is smaller than the length in the first direction in the expanded state. In the expanded state, the space adjustment frame is fixed to the first side wall and protrudes outside the scanning cabin in the first direction. The opening faces the scanning cabin. The first avoidance space is connected to the scanning cabin through the opening and extends outside the scanning cabin in the first direction to allow one end of the scanning bed to move into it; and / or,

[0008] The cabin body also includes a partition wall arranged opposite to the first side wall in the first direction, the first side wall extends in a second direction, the second direction intersects with the first direction, the square cabin includes an operating cabin, the partition wall separates the operating cabin and the scanning cabin, the partition wall includes an avoidance portion protruding from the partition wall toward the operating cabin, the avoidance portion includes a second avoidance space facing the scanning cabin, the second avoidance space extends outside the scanning cabin in the direction away from the first direction to allow the other end of the scanning bed to move into it.

[0009] In one embodiment, in the retracted state, the space adjustment frame is located in the scanning cabin and does not extend beyond the outer wall of the cabin body in the first direction.

[0010] In one embodiment, in the expanded state, the space adjustment frame is sealed to the outer peripheral wall of the cabin; and / or

[0011] The space adjustment frame includes a cover body and a burr protruding from the cover body toward the outside of the first avoidance space. The burr is located outside the opening. In the expanded state, the burr abuts against the inner wall of the cabin, and the cover body protrudes beyond the outer wall of the cabin.

[0012] In one embodiment, the space adjustment frame is slidably connected to the cabin in the first direction; or, the space adjustment frame is rotatably connected to the cabin, and the space adjustment frame can be rotated into the scanning cabin to a retracted state, and can be rotated out of the scanning cabin to an expanded state; or, the space adjustment frame is detachably connected to the cabin, and in the retracted state, the space adjustment frame is separated from the cabin, and in the expanded state, the space adjustment frame is fixedly assembled with the cabin.

[0013] In one embodiment, the space adjustment frame includes a cover body and a hinged portion provided on one side of the cover body, the hinged portion is rotatably connected to the cabin body, the first avoidance space is provided in the cover body, the opening is provided at one end of the cover body and the hinged portion is located outside the opening; in the unfolded state, the outer contour size of the cover body gradually decreases from the inner side wall of the cabin body to the outside of the cabin body in the first direction.

[0014] In one embodiment, the bottom edge of the second avoidance space is lower than the bottom edge of the first avoidance space in the expanded state; and / or the top edge of the second avoidance space is lower than the top edge of the first avoidance space in the expanded state.

[0015] In one embodiment, the cabin further includes a protective door and an observation window mounted on the partition wall, wherein the protective door is located on one side of the avoidance portion; the observation window is located above the avoidance portion and in the extension direction of the scanning bed moving toward the partition wall.

[0016] In one embodiment, the cabin further includes a control platform, which is located above the avoidance portion, and a dimension of the avoidance portion protruding from the partition wall is smaller than a dimension of the control platform protruding from the partition wall.

[0017] In one embodiment, the cabin includes a scanning body installation area for installing the scanning body, and the cabin also includes a target entrance and exit door and a second side wall, the second side wall extends in the first direction, the second side wall includes a first door opening, the target entrance and exit door is installed in the first door opening, and the first door opening avoids the scanning body installation area.

[0018] In one embodiment, the inner wall surface of the target entrance and exit door is away from the scanning body installation area relative to the inner wall surface of the second side wall, and the scanning body installation area extends in the second direction toward the target entrance and exit door, exceeding the inner wall surface of the second side wall.

[0019] In one embodiment, the first door opening extends away from the first direction and beyond the scanning body installation area; and / or the thickness of the target entrance and exit door is less than the thickness of the second side wall.

[0020] In one embodiment, the cabin further includes a maintenance access door and a third side wall opposite to the second side wall, the second side wall includes a second door opening, and the second door opening avoids the scanning body installation area.

[0021] In one embodiment, the inner wall surface of the maintenance access door is farther away from the scanning body installation area than the inner wall surface of the third side wall, and the scanning body extends beyond the inner wall surface of the third side wall toward the maintenance access door.

[0022] In one embodiment, the maintenance access door extends in the first direction beyond the scanning body installation area; and / or the thickness of the maintenance access door is less than the thickness of the third side wall.

[0023] In one embodiment, the cabin body can selectively install a first scanning device or a second scanning device, and the cabin body includes a bottom wall, and the bottom wall includes a plurality of first device mounting holes for installing the first scanning device and a plurality of second device mounting holes for installing the second scanning device.

[0024] On the other hand, a modular medical system is provided, comprising a scanning device and the modular hospital as described above, wherein the scanning device comprises a scanning bed and a scanning body, and the scanning bed moves in the first direction or away from the first direction.

[0025] In one embodiment, the scanning device includes one of a CT device, a PET-CT device, and an MRI device.

[0026] On the other hand, a vehicle-mounted modular medical system is provided, comprising a vehicle chassis, a scanning device, and the modular medical system as described above, wherein the modular medical system is arranged on the vehicle chassis.

[0027] In one embodiment, the scanning device includes one of a CT device, a PET-CT device, and an MRI device.

[0028] The technical solutions provided by the embodiments of the present application may have the following beneficial effects:

[0029] When the cabin is in operation, the space adjustment frame is connected to the cabin body, so that the first avoidance space serves as an expansion space for the scanning cabin, thereby expanding the internal net dimensions of the scanning cabin in the first direction, meeting the range of motion requirements of the scanning bed, and facilitating space adjustment. In the retracted state, the space adjustment frame reduces the total external dimensions of the cabin to meet the transportation requirements of the cabin. The cabin is provided with a second avoidance space in the partition wall to expand the internal net dimensions of the scanning cabin in the first direction. The scanning subject can penetrate into the second avoidance space to meet the range of motion requirements of the scanning bed. The cabin adjusts the internal net dimensions of the scanning cabin according to the usage and transportation status to meet the needs of different application scenarios, and has high flexibility in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a structural schematic diagram of a shelter according to an exemplary embodiment of the present application.

[0031] Figure 2 It is a schematic diagram of the internal structure of a cabin with a space adjustment frame of a sliding structure in a retracted position according to an exemplary embodiment of the present application.

[0032] Figure 3 It is a schematic diagram of the internal structure of a cabin with a space adjustment frame of a rotating structure in a retracted position according to an exemplary embodiment of the present application.

[0033] Figure 4 It is a schematic diagram of the internal structure of a cabin with a space adjustment frame of a rotating structure in an expanded position according to an exemplary embodiment of the present application.

[0034] Figure 5 It is an enlarged structural schematic diagram of a cross section of a space adjustment frame and a first side wall in an expanded position according to an exemplary embodiment of the present application.

[0035] Figure 6 It is a structural schematic diagram of a scanning bed extending to a first avoidance space of a space adjustment frame according to an exemplary embodiment of the present application.

[0036] Figure 7 This is a structural schematic diagram showing that the scanning bed is folded into the second avoidance space in the transport state and the space adjustment frame is in the folded position according to an exemplary embodiment of the present application.

[0037] Figure 8 It is a schematic cross-sectional structural diagram of a scanning body extending toward the second side wall and the third side wall according to an exemplary embodiment of the present application.

[0038] Figure 9 It is a schematic diagram of the internal structure of the cabin after removing the top wall according to an exemplary embodiment of the present application.

[0039] In the figure, there are a cabin body 10; a scanning cabin 101; an operating cabin 102; a first side wall 11; a mounting hole 111; a partition wall 12; a second avoidance space 121; a avoidance portion 122; a second side wall 13; a first door opening 131; a third avoidance space 132; a third side wall 14; a second door opening 141; a fourth avoidance space 142; a protective door 15; an observation window 16; a target access door 17; a maintenance access door 18; a wiring device 19; a space adjustment frame 20; a first avoidance space 21; a cover portion 22; a burr 23; a hinge portion 24; a scanning body 30; a scanning bed 40; a base 41; a bed board 42; and a control platform 50. DETAILED DESCRIPTION

[0040] The terms used in this invention are for the purpose of describing specific embodiments only and are not intended to limit the invention. The singular forms "a," "the," and "the" used in this invention and the appended claims are also intended to include plural forms unless the context clearly indicates otherwise. It should also be understood that the term "and / or" as used herein refers to and includes any or all possible combinations of one or more of the associated listed items.

[0041] Figure 1 It is a structural schematic diagram of a shelter in this application. Figure 2 This is a schematic diagram of the internal space structure of a shelter in this application. Figure 1 and Figure 2 As shown, the cabin is used to accommodate scanning equipment, and the scanning equipment includes a scanning bed 40 and a scanning body 30. The cabin includes a cabin body 10 and a first side wall 11. The cabin body 10 includes a scanning cabin 101 for placing the scanning equipment.

[0042] In one embodiment, the cabin further includes a space adjustment frame 20, the space adjustment frame 20 includes a first avoidance space 21, and an opening is provided on one side thereof, which is connected to the first avoidance space 21. The cabin includes a retracted state and an expanded state, and the length of the cabin in the first direction in the retracted state is smaller than the length in the first direction in the expanded state. In the expanded state, the space adjustment frame 20 is fixed to the first side wall 11 and protrudes out of the scanning cabin 101 in the first direction. The opening faces the scanning cabin 101, and the first avoidance space 21 is connected to the scanning cabin 101 through the opening, and extends out of the scanning cabin 101 in the first direction to allow one end of the scanning bed 40 to move into it.

[0043] The cabin 10 is used to accommodate scanning equipment to perform corresponding scanning functions. The scanning bed 40 moves in a first direction toward the scanning body 30. The space adjustment frame 20 is movably connected to the cabin 10 to allow the cabin's overall length to be adjusted accordingly. In the collapsed state, the cabin's length in the first direction is smaller than its length in the expanded state.

[0044] When the cabin is in the expanded state, the space adjustment frame 20 is connected and protrudes from the cabin body 10 in the first direction, so that the first avoidance space 21 exceeds the range of the cabin body 10. The first avoidance space 21 is connected to the space of the scanning cabin 101, so that the first avoidance space 21 serves as an expansion space for the scanning cabin 101, expanding the internal net size of the scanning cabin 101 in the first direction. When the scanning bed 40 moves along the first direction toward the scanning body 30, one end of the scanning bed 40 exceeds the wall of the cabin body 10 and moves into the first avoidance space 21, meeting the range of movement requirements of the scanning bed 40. The scanning equipment is fully functional, and the cabin is suitable for a wide range of medical equipment models. For example, the scanning equipment includes one of CT equipment, PET-CT equipment, and MRI equipment.

[0045] When the cabin is in the retracted state, the space adjustment frame 20 reduces the total external dimensions of the cabin by retracting the cabin body 10 or separating from the cabin body 10 to meet the transportation requirements of the cabin. For example, the external dimensions of the cabin body 10 are basically the same as those of a 20GP standard container, wherein the external dimensions of a 20GP container are 6.058 meters long × 2.438 meters wide × 2.591 meters high, and the internal dimensions are 5.9 meters long × 2.34 meters wide × 2.37 meters high. In the retracted state, the space adjustment frame 20 is located in the scanning cabin 101 and does not extend beyond the outer wall of the cabin body 10 in the first direction. The transportation method of the cabin can be the same as that of a standard container, reducing transportation costs. The cabin adjusts its length dimension according to the usage and transportation status to meet the requirements of different application scenarios, and has high flexibility in use.

[0046] In one embodiment, the cabin body 10 includes a first sidewall 11 extending in a second direction and a partition wall 12 disposed opposite the first sidewall 11 in the first direction. The second direction intersects the first direction, and the intersection includes a perpendicular intersection or an oblique intersection. The space adjustment frame 20 is fixed to the first sidewall 11 in the deployed state. The cabin includes an operating cabin 102. The partition wall 12 separates the operating cabin 102 from the scanning cabin 101. The partition wall 12 includes an escape portion 122 protruding from the partition wall 12 toward the operating cabin 102. The escape portion 122 includes a second escape space 121 facing the scanning cabin 101. The second escape space 121 extends away from the first direction and outside the scanning cabin 101 to allow the other end of the scanning bed 40 to move into it.

[0047] The cabin 10 is divided into different functional areas to meet different usage requirements. A partition wall 12 separates the cabin 10 into an operating cabin 102 and a scanning cabin 101, enabling the cabin to fully realize its scanning functions, with high space utilization and a rational layout. A relief portion 122 protrudes toward the operating cabin 102, forming a second relief space 121 corresponding to the relief portion 122. This expands the clear space of the scanning cabin 101 in the direction away from the first, allowing the scanning bed 40 to move to its maximum position with minimal range of motion restrictions.

[0048] It is worth mentioning that the above embodiments can be implemented independently or in combination, namely: 1. The cabin may be provided with only the space adjustment frame 20 to expand the internal net size of the operating cabin 102 by means of the first avoidance space 21, wherein the scanning bed 40 moves in the first direction and has one end inserted into the first avoidance space 21. 2. The cabin may be provided with only the avoidance portion 122 to expand the internal net size of the operating cabin 102 by means of the second avoidance space 121, wherein the scanning bed 40 moves in the first direction and has one end inserted into the second avoidance space 121. 3. The cabin may be provided with both the space adjustment frame 20 and the avoidance portion 122, such that the scanning bed 40 can move within the range of the scanning cabin 101 expanded by the first avoidance space 21 and the second avoidance space 121.

[0049] In an embodiment where the cabin is equipped with a spatial adjustment frame 20, the spatial adjustment frame 20 is movably connected to the cabin body 10 and protrudes from the cabin body 10 in a first direction in the deployed state. The cabin body 10 includes a mounting hole 111. The spatial adjustment frame 20 is inserted into the mounting hole 111 and rests against the wall of the cabin body 10, thereby connecting to the cabin body 10. In the deployed state, the spatial adjustment frame 20 is sealed to the outer peripheral wall of the cabin body 10 to prevent moisture and foreign matter from entering the scanning cabin 101 through the gap between the spatial adjustment frame 20 and the mounting hole 111.

[0050] like Figure 2 and Figure 3 As shown, in one embodiment, the space adjustment frame 20 includes a cover portion 22 and a fin 23 extending from the cover portion 22 toward the outside of the first escape space 21. The fin 23 is located outside the opening. In the deployed state, the fin 23 abuts against the inner wall of the cabin 10, while the cover portion 22 protrudes beyond the outer wall of the cabin 10.

[0051] The burr 23 protrudes from the wall surface of the cover body 22 in a direction away from the first avoidance space 21 to form a flange structure. The space adjustment frame 20 is movably connected to the cabin 10 from the scanning cabin 101 and passes through the cabin 10 along the mounting hole 111. The burr 23 stops at the inner wall surface of the cabin 10 to define the fixed position of the space adjustment frame 20 and the cabin 10. The burr 23 is sealed to the cabin 10. For example, waterproof glue is filled between the planes where the burr 23 and the cabin 10 are combined with each other; or, a sealing ring is provided on the cover body 22, and the burr 23 pushes against the sealing ring and is elastically squeezed to the cabin 10, so that the burr 23 is sealed to the cabin 10.

[0052] The space adjustment frame 20 is movably connected to the cabin body 10, which includes the space adjustment frame 20 being rotatably or slidingly connected to the cabin body 10 so that the two are connected as one; or, the space adjustment frame 20 is detachably connected to the cabin body 10, and the two are independently set and locked into a whole through a matching structure.

[0053] like Figure 2 As shown, in one embodiment, the space adjustment frame 20 is slidably connected to the cabin body 10 in the first direction so that the space adjustment frame 20 can be movably assembled on the cabin body 10. In the retracted state, the space adjustment frame 20 slides back into the cabin body 10 to reduce the total length of the cabin in the first direction and meet the transportation size requirements. In the expanded state, the space adjustment frame 20 extends and retracts into the cabin body 10 along the first direction to expand the total length of the cabin in the first direction, and then expands the net size of the internal space of the scanning cabin 101. In an optional embodiment, the cover body 22 of the space adjustment frame 20 is provided with a slide groove, which is parallel to the first direction, and the hole wall of the mounting hole 111 is provided with a guide slider matching the slide groove, and the space adjustment frame 20 slides along the guide slider. Optionally, the cover body 22 is a columnar structure to guide the space adjustment frame 20 to slide back and forth in a straight line along the first direction.

[0054] like Figure 3 and Figure 4As shown, in another embodiment, the spatial adjustment frame 20 is rotatably connected to the cabin 10. The spatial adjustment frame 20 can be rotated into the scanning cabin 101 to a retracted state and rotated out of the scanning cabin 101 to an expanded state. The spatial adjustment frame 20 is pivotally connected to the cabin 10, and the cover portion 22 can be rotated to be inserted into the mounting hole 111 and close the opening of the mounting hole 111. Alternatively, the cover portion 22 can be rotated away from the mounting hole 111 to reduce the overall external dimensions of the cabin.

[0055] In an optional embodiment, the space adjustment frame 20 includes a cover portion 22 and a hinge portion 24 disposed on one side of the cover portion 22, the hinge portion 24 being rotatably connected to the cabin 10. The first escape space 21 is provided in the cover portion 22, the opening being located at one end of the cover portion 22, and the hinge portion 24 being located outside the opening. In the deployed state, the outer dimensions of the cover portion 22 gradually decrease in the first direction from the inner sidewall of the cabin 10 toward the exterior of the cabin 10.

[0056] The cover portion 22 has a frustoconical structure, with a first clearance space 21 extending from the larger end of the cover portion 22 toward the smaller end. Its larger end is pivotally connected to the cabin 10 via a hinge 24, while its smaller end can be inserted into the mounting hole 111 of the cabin 10. The conical surface of the cover portion 22 avoids interference with the mounting hole 111 during rotation, allowing for flexible rotation. Optionally, a fin 23 is provided at the larger end of the cover portion 22 and can abut against the cabin 10 to close the mounting hole 111. Optionally, a hinge 24 is provided on the fin 23.

[0057] In another embodiment, the space adjustment frame 20 is detachably connected to the cabin body 10 , and in a retracted state, the space adjustment frame 20 is separated from the cabin body 10 . In an expanded state, the space adjustment frame 20 is fixedly assembled to the cabin body 10 .

[0058] The space adjustment frame 20 and the cabin 10 are configured as two independent entities. The space adjustment frame 20 is assembled to the cabin 10 by fastener connection, plug-in connection, connector connection, etc. to form a whole. Optionally, the space adjustment frame 20 is located outside the cabin 10 and covers the mounting hole 111, and is then locked and connected to the cabin 10 by fasteners for assembly connection. Optionally, the cover portion 22 of the space adjustment frame 20 extends from the scanning cabin 101 in a first direction and is plugged into the mounting hole 111 until the burr 23 stops at the cabin 10. The burr 23 and the cabin 10 are then locked by fasteners so that the space adjustment frame 20 is assembled to the cabin 10, which is convenient for assembly.

[0059] like Figure 5As shown, the first avoidance space 21 and the scanning bed 40 are of compatible sizes, and the scanning body 30 is configured with a scanning aperture for the scanning bed 40 to move through. In one embodiment, the first dimension of the first avoidance space 21 of the space adjustment frame 20 is greater than or equal to the aperture of the scanning aperture, and the second dimension of the first avoidance space 21 and the scanning aperture is greater than zero, wherein the first dimension is the spacing between the opposite walls of the first avoidance space 21 perpendicular to the first direction, and the second dimension is the minimum distance between the lower wall of the first avoidance space 21 perpendicular to the first direction and the scanning aperture. The third dimension of the first avoidance space 21 of the space adjustment frame 20 is greater than the width of the bed plate 42 of the scanning bed 40, so that the scanning bed 40 can move along the first avoidance space 21. See Figure 5 As shown, the aperture of the scanning hole is D, the first dimension is H, the second dimension is h, the width of the bed plate 42 is W1, and the third dimension is W2, wherein H is greater than D, h is greater than zero, and W1 is less than W2.

[0060] like Figure 6 and Figure 7 As shown, the second escape space 121 is used to accommodate the end of the scanning bed 40 away from the scanning body 30 when the cabin is in the collapsed state. The scanning bed 40 includes a base 41 and a bed plate 42 movably mounted to the base 41. The base 41 rotates relative to the cabin body 10, and the bed plate 42 is inserted into the second escape space 121 at an angle parallel to the first direction. To reduce the spatial size of the second escape space 121 while accommodating the movement requirements of the scanning bed 40, in an optional embodiment, the bottom edge of the second escape space 121 is lower than the bottom edge of the first escape space 21 in the expanded state, thereby preventing interference with the scanning bed 40 and reducing the relative height of the second escape space 121. In another optional embodiment, the top edge of the second escape space 121 is lower than the top edge of the first escape space 21 in the expanded state, thereby reducing the height of the second escape space 121 perpendicular to the first direction, which helps improve the spatial layout within the operating cabin 102 and the device layout on the partition wall 12.

[0061] In one embodiment, the cabin 10 further includes a protective door 15 and an observation window 16 mounted on the partition wall 12. The protective door 15 is located on one side of the escape portion 122. The observation window 16 is located above the escape portion 122 and in the direction of movement of the scanning bed 40 toward the partition wall 12. The protective door 15 is mounted on the partition wall 12 and spaced apart from the escape portion 122 to facilitate operator movement. The observation window 16 is located above the escape portion 122 to facilitate observation of conditions within the scanning cabin 101, creating a strategically designed layout. The observation window 16 is located in the direction of movement of the scanning bed 40 toward the partition wall 12, allowing for easy observation of the bed's operation.

[0062] In one embodiment, the cabin further includes a control platform 50, which is located above the clearance portion 122. The clearance portion 122 protrudes less than the control platform 50 from the partition wall 12. The control platform 50 communicates with the scanning body 30 and the scanning bed 40 to control various operating parameters and acquire image data. The control platform 50 is located above the clearance portion 122 and aligns with the observation window 16, facilitating operation and observation. The clearance portion 122 protrudes less than the control platform 50, conserving space, increasing the operator's leg range of motion, and improving user comfort.

[0063] like Figure 8 As shown, the cabin 10 is also equipped with various entrance and exit passages, each of which is sealed by a door. In one embodiment, the cabin 10 includes a scanning body 30 installation area for mounting the scanning body 30. The cabin 10 also includes a target entrance and exit door 17 and a second side wall 13. The second side wall 13 extends in the first direction and includes a first door opening 131. The target entrance and exit door 17 is installed in the first door opening 131, and the first door opening 131 avoids the scanning body 30 installation area.

[0064] The second sidewall 13 intersects with the first sidewall 11 and defines a first doorway 131 for personnel entry and exit. The first doorway 131 avoids the installation area of ​​the scanning body 30, allowing one side of the scanning body 30 to be exposed through the first doorway 131. This facilitates inspection and assembly of the scanning body 30 into the cabin 10. In an optional embodiment, the inner wall of the target access door 17 is positioned away from the installation area of ​​the scanning body 30 relative to the inner wall of the second sidewall 13. This allows the inner wall of the target access door 17 and the inner wall of the second sidewall 13 to form a recessed third clearance space 132 in the second direction. The installation area of ​​the scanning body 30 extends in the second direction toward the target access door 17, extending beyond the inner wall of the second sidewall 13. The installation area of ​​the scanning body 30 extends into the third clearance space 132, ensuring sufficient installation space for the scanning body 30 in the second direction and placing the scanning body 30 close to the first doorway 131 for easy inspection.

[0065] Optionally, the thickness of the target access door 17 is less than that of the second sidewall 13, thereby forming a third clearance space 132 between the target access door 17 and the second sidewall 13. Optionally, the outer wall of the target access door 17 is substantially flush with the outer surface of the second sidewall 13 to minimize the impact of the target access door 17 on the spatial dimensions of the cabin 10. In an optional embodiment, the first door opening 131 extends away from the first direction beyond the installation area of ​​the scanning body 30 to facilitate personnel access to the scanning cabin 101 on the side where the scanning bed 40 is located. Optionally, the minimum distance between the edge of the first door opening 131 facing away from the first direction and the scanning body 30 is greater than 0.5 meters to facilitate user movement.

[0066] In one embodiment, the cabin 10 further includes a maintenance access door 18 and a third sidewall 14 opposite the second sidewall 13. The second sidewall 13 includes a second door opening 141. The second door opening 141 avoids the installation area of ​​the scanning body 30, allowing the other side of the scanning body 30 to be exposed through the second door opening 141, facilitating inspection and assembly of the scanning body 30 into the cabin 10. The inner wall of the maintenance access door 18 is spaced away from the installation area of ​​the scanning body 30 relative to the inner wall of the third sidewall 14. The scanning body 30 extends beyond the inner wall of the third sidewall 14 toward the maintenance access door 18, forming a fourth recessed space 142 between the inner walls of the maintenance access door 18 and the inner walls of the third sidewall 14 in the second direction. The installation area of ​​the scanning body 30 extends into the fourth recessed space 142, ensuring sufficient installation space for the scanning body 30 in the second direction and placing the scanning body 30 close to the second door opening 141 for easy inspection. The first door opening 131 and the second door opening 141 are dispersedly disposed on different side walls of the cabin body 10 to improve the overall structural strength of the cabin body 10 and maintain the structural stability of the cabin during transportation or hoisting.

[0067] Optionally, the thickness of the maintenance access door 18 is less than that of the third sidewall 14, thereby forming a third avoidance space 132 between the maintenance access door 18 and the third sidewall 14. Optionally, the outer wall of the maintenance access door 18 is substantially flush with the outer surface of the third sidewall 14 to reduce the impact of the target access door 17 on the spatial dimensions of the cabin 10. The maintenance access door 18 extends in the first direction beyond the installation area of ​​the scanning body 30, allowing personnel to enter the scanning cabin 101 space between the scanning body 30 and the first sidewall 11, facilitating the operation of adjusting the status of the space adjustment frame 20. Optionally, the minimum distance between the edge of the first door opening 131 along the first direction and the scanning body 30 is greater than 0.3 meters to facilitate user entry and exit.

[0068] In one embodiment, the cabin 10 can selectively accommodate either a first scanning device or a second scanning device. The cabin 10 includes a bottom wall with a plurality of first device mounting holes 111 for mounting the first scanning device and a plurality of second device mounting holes 111 for mounting the second scanning device. The bottom wall, located at the bottom of the cabin 10, supports and secures the scanning devices. The first and second device mounting holes 111, 111, accommodate various medical devices, facilitating device assembly and enhancing compatibility.

[0069] like Figure 9 As shown, in an optional embodiment, the cabin 10 is equipped with a wiring device 19 for assembling cables. The wiring device 19 extends from the bottom wall along the second side wall 13 or the third side wall 14, extending away from the bottom wall and avoiding the first hole or the second space. The wiring device 19 extends from the scanning cabin 101 to the operating cabin 102 and connects to the control platform 50 to transmit electrical signals, resulting in an aesthetically pleasing layout and a highly flat bottom wall.

[0070] The modular shelter disclosed in the above embodiment is applied to a modular medical system to improve the transport convenience of the modular medical system and meet the spatial operation requirements of medical equipment. In one embodiment, a modular medical system includes a scanning device and the modular shelter described above. The scanning device includes a scanning bed 40 and a scanning body 30. The scanning bed 40 moves in the first direction or away from the first direction. Optionally, the scanning device includes a CT device, a PET-CT device, or an MRI device.

[0071] The modular medical cabin disclosed in the above embodiment is applied to a vehicle-mounted modular medical system to improve the ease of installation and mobility of the vehicle-mounted modular medical system. In one embodiment, the vehicle-mounted modular medical system includes a vehicle chassis, a scanning device, and the modular cabin described above, with the modular cabin being mounted on the vehicle chassis. Optionally, the scanning device includes a CT device, a PET-CT device, or an MRI device.

[0072] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, and the true scope and spirit of the present application are indicated by the following claims.

[0073] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.

Claims

1. A shelter, characterized in that: The cabin is used to accommodate a scanning device, wherein the scanning device includes a scanning bed and a scanning body, wherein the scanning body is provided with a scanning hole for the scanning bed to move through, and the cabin includes a cabin body, wherein the cabin body includes a scanning cabin for placing the scanning device and a first side wall; The cabin further includes a space adjustment frame, the space adjustment frame having a first avoidance space and an opening communicating with the first avoidance space. The cabin includes a retracted state and an expanded state. The length of the cabin in the retracted state in the first direction is smaller than the length in the expanded state in the first direction. The scanning bed moves toward the scanning body in the first direction, and the first direction is arranged along the length of the scanning bed. In the expanded state, the space adjustment frame is fixed to the first side wall and protrudes out of the scanning cabin in the first direction, the opening faces the scanning cabin, the first avoidance space is connected to the scanning cabin through the opening, and the first avoidance space extends out of the scanning cabin in the first direction to allow one end of the scanning bed to move into the first avoidance space; The first side wall is provided with a mounting hole, and the space adjustment frame is movably arranged in the mounting hole. The first size of the first avoidance space is greater than or equal to the aperture of the scanning hole, and the first size is the spacing distance between the relative walls of the first avoidance space perpendicular to the first direction.

2. The shelter according to claim 1, wherein: In the retracted state, the space adjustment frame is located in the scanning cabin and does not extend beyond the outer wall of the cabin body in the first direction.

3. The shelter according to claim 1, characterized in that: In the expanded state, the space adjustment frame is sealed to the outer peripheral wall of the cabin; and / or The space adjustment frame includes a cover body and a burr protruding from the cover body toward the outside of the first avoidance space. The burr is located outside the opening. In the expanded state, the burr abuts against the inner wall of the cabin, and the cover body protrudes beyond the outer wall of the cabin.

4. The shelter according to claim 1, characterized in that: The space adjustment frame is connected to the cabin body in a sliding manner in the first direction; or, the space adjustment frame is rotatably connected to the cabin body, and the space adjustment frame can be rotated into the scanning cabin to a retracted state, and can be rotated out of the scanning cabin to an expanded state; or, the space adjustment frame is detachably connected to the cabin body, and in the retracted state, the space adjustment frame is separated from the cabin body, and in the expanded state, the space adjustment frame is fixedly assembled with the cabin body.

5. The shelter according to claim 4, characterized in that: The space adjustment frame includes a cover body and a hinged portion provided on one side of the cover body, the hinged portion is rotatably connected to the cabin body, the first avoidance space is provided in the cover body, the opening is provided at one end of the cover body, and the hinged portion is located outside the opening; In the expanded state, the outer contour dimension of the cover portion gradually decreases from the inner side wall of the cabin toward the outside of the cabin in the first direction.

6. The shelter according to any one of claims 1 to 5, characterized in that: The cabin body also includes a partition wall arranged opposite to the first side wall in the first direction, the first side wall extends in a second direction, the second direction intersects with the first direction, the cabin also includes an operating cabin, the partition wall separates the operating cabin and the scanning cabin, the partition wall includes an avoidance portion protruding from the partition wall toward the operating cabin, the avoidance portion is provided with a second avoidance space connected to the scanning cabin, the second avoidance space extends away from the first direction to the outside of the scanning cabin to allow the other end of the scanning bed to move into it.

7. The shelter according to claim 6, characterized in that: The bottom edge of the second avoidance space is lower than the bottom edge of the first avoidance space in the expanded state; and / or the top edge of the second avoidance space is lower than the top edge of the first avoidance space in the expanded state.

8. The shelter according to claim 6, characterized in that: The cabin further includes a protective door and an observation window mounted on the partition wall. The protective door is located on one side of the avoidance portion. The observation window is located above the avoidance portion and in the extending direction of the scanning bed moving toward the partition wall.

9. The shelter according to claim 6, characterized in that: The shelter further includes a control platform, which is located above the avoidance portion. The dimension of the avoidance portion protruding from the partition wall is smaller than the dimension of the control platform protruding from the partition wall.

10. The shelter according to claim 6, characterized in that: The cabin includes a scanning body installation area for installing the scanning body, and the cabin also includes a target entrance and exit door and a second side wall, the second side wall extends in the first direction, the second side wall includes a first door opening, the target entrance and exit door is installed in the first door opening, and the first door opening avoids the scanning body installation area.

11. The shelter according to claim 10, characterized in that: The inner wall surface of the target entrance door is away from the scanning body installation area relative to the inner wall surface of the second side wall, and the scanning body installation area extends toward the target entrance door in the second direction and exceeds the inner wall surface of the second side wall.

12. The shelter according to claim 10, characterized in that: The first door opening extends away from the first direction and exceeds the scanning body installation area; and / or the thickness of the target entrance and exit door is less than the thickness of the second side wall.

13. The shelter according to claim 10, characterized in that: The cabin body further includes a maintenance access door and a third side wall opposite to the second side wall. The second side wall includes a second door opening, and the second door opening avoids the scanning body installation area.

14. The shelter according to claim 13, characterized in that: The inner wall surface of the maintenance access door is farther away from the scanning body installation area than the inner wall surface of the third side wall, and the scanning body extends beyond the inner wall surface of the third side wall toward the maintenance access door.

15. The shelter according to claim 13, characterized in that: The maintenance access door extends in the first direction beyond the scanning body installation area; and / or the thickness of the maintenance access door is less than the thickness of the third side wall.

16. The shelter according to claim 1, characterized in that: The cabin body can selectively install a first scanning device or a second scanning device. The cabin body includes a bottom wall. The bottom wall includes a plurality of first device installation holes for installing the first scanning device and a plurality of second device installation holes for installing the second scanning device.

17. A modular medical system, characterized in that: The invention comprises a scanning device and the shelter according to any one of claims 1 to 16, wherein the scanning device comprises a scanning bed and a scanning body, and the scanning bed moves in the first direction or away from the first direction.

18. The modular medical system according to claim 17, characterized in that: The scanning device includes one of a CT device, a PET-CT device, and an MRI device.

19. A vehicle-mounted modular medical system, characterized in that: The invention comprises a car chassis, a scanning device and a shelter according to any one of claims 1 to 16, wherein the shelter is arranged on the car chassis.

20. The vehicle-mounted modular medical system according to claim 19, characterized in that: The scanning device includes one of a CT device, a PET-CT device, and an MRI device.

Citation Information

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