AI analysis interaction terminal all-in-one machine
By designing a detachable and connected AI analysis interactive terminal all-in-one machine, the problem of the risk of hospital infection and computing power upgrade during the disinfection process is solved, and the effect of facilitating disinfection and reducing procurement costs is achieved.
Patent Information
- Application Number
- CN202510622938.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-05-15
AI Technical Summary
The existing AI analysis interactive terminal all-in-one machine has hospital infection risks during the disinfection process, and the computing power upgrade requires the replacement of the whole machine, resulting in repeated procurement costs.
A detachable and connected AI analysis interactive terminal integrated machine is designed. Through the combination of protective case, locking assembly and grip, the display and the processing mechanism are easily connected and separated, and the device is electrically connected through the limiting assembly and the gold finger to ensure the stability of the equipment and the easy disinfection.
The area of the contact surface with the human body is reduced, the risk of key disinfection areas is reduced, the cost of repeated procurement of the whole machine is avoided, and the disinfection efficiency of the equipment is improved through the electrical connection components of the planar structure.
Smart Images

Figure CN120143937A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical devices, and particularly to an AI analysis interactive terminal all-in-one machine. Background Art
[0002] In the medical field, AI analysis interactive terminal all-in-one machines have been widely used in image processing tasks in various departments. However, to control costs, hospitals often deploy the same model of devices with different computing power processors in different departments. When a patient has a complex condition such as a complication, a low-computing-power processor may not be able to meet the real-time analysis requirements, resulting in delayed diagnosis and treatment.
[0003] The existing technical solutions are non-detachable structure models, and for computing power upgrade, the whole machine needs to be replaced with a high-end version, resulting in repeated procurement costs; there are also existing technical solutions that are detachable structure models. Although they support cross-department deployment of processor modules, there are significant hospital infection risks during the disassembly process. The flora environments in different departments vary significantly, such as in the operating room and the laboratory department, and complex geometric structures such as processor interfaces and heat dissipation fins are key disinfection areas where pathogens are likely to remain. There are narrow gaps and dead corners in key disinfection areas, making it difficult to disinfect. Therefore, there is a need for an AI analysis interactive terminal all-in-one machine that is easy to disinfect. Summary of the Invention
[0004] In view of this, it is necessary to provide an AI analysis interactive terminal all-in-one machine that is easy to disinfect to solve the above problems.
[0005] An embodiment of this application provides an AI analysis interactive terminal all-in-one machine, including a plurality of displays respectively configured in multiple departments of a hospital and used for displaying image algorithm processing, and a processing mechanism detachably connected thereto; the processing mechanism includes: A protective shell detachably connected to the display in any department; A locking assembly connected to the protective shell. In the locked state, the locking assembly abuts and locks with the display, and in the unlocked state, the locking assembly is unlocked and separated from the display. And after the processing mechanism is disinfected, it is connected to the display in any department; A gripping member connected to the protective shell. The locking assembly and the gripping member extend to the same side of the display, and the locking assembly is located inside the gripping member; During unlocking, the locking assembly and the gripping member in contact with the human body, and the protective shell in contact with the air flora are disinfection areas, where each processing mechanism is provided with only one locking assembly.
[0006] In at least one embodiment of this application, the locking assembly includes: An abutting member connected to the protective shell and abutting and locking with the display; A connecting member, which is connected to the protective case, and the abutting member is sleeved and slidably connected within the connecting member; A pressing member, which is perpendicular to and slidably connected to the connecting member, and part of it extends out of the display and is denoted as the pressing part, and the user presses the pressing part.
[0007] In at least one embodiment of the present application, the abutting member includes a contraction groove, the contraction groove is set as an isosceles right triangle, and one of its equal sides is arranged parallel to the connecting member, and the first 45° angle is close to the pressing part, and the second 45° angle is far from the pressing part; The pressing member includes a connecting column, the connecting column is located in the contraction groove and penetrates through the contraction groove, and the connecting column is slidably connected along one side of the contraction groove; Press the pressing part, the pressing member moves in the direction opposite to the pressing direction, the pressing member drives the connecting column to move from the second 45° angle to the first 45° angle, and the connecting column drives the connecting member to move to abut and lock with the display; Press the pressing part, the pressing member moves along the pressing direction, the pressing member drives the connecting column to move from the first 45° angle to the second 45° angle, and the connecting column drives the connecting member to move to unlock and separate from the display.
[0008] In at least one embodiment of the present application, the contraction groove includes a rounded corner part, the rounded corner parts are respectively located at the included angles of the equilateral triangle, the diameter of the rounded corner part is denoted as A1, and the diameter of the connecting column is denoted as A2, and the relational expression is satisfied: A1≥A2.
[0009] In at least one embodiment of the present application, the holding member includes: A holding part, which is connected to the user in a fitting manner, is arranged in the same direction as the pressing member, is fixedly connected to an outer surface of the protective case, and is located outside the display; A hollow part, which is formed between the holding part and the protective case, and the pressing part is located within the hollow part.
[0010] In at least one embodiment of the present application, the protective case includes: A first limiting groove, which is arranged along the pressing direction and is opened on the other outer surface of the protective case, the one outer surface and the other outer surface of the protective case are perpendicularly connected, and the opening of the first limiting groove faces the display; A second limiting groove, which is arranged along the pressing direction and is opened on the protective case and is located on the opposite side of the other outer surface of the protective case, and the holding part is located between the first limiting groove and the second limiting groove; A fixing groove, and the first limiting groove and the second limiting groove are respectively provided with the fixing groove.
[0011] In at least one embodiment of the present application, the all-in-one machine further includes a limiting component for locking the protective case and the display, and the limiting component includes: Limiting parts are respectively arranged in the first limiting groove and the second limiting groove. The limiting parts are respectively slidably connected along the first limiting groove and the second limiting groove to be in fit connection with the fixing groove, and the limiting parts are used for locking; A telescopic part has one end connected to the display and the other end connected to the limiting part.
[0012] In at least one embodiment of the present application, the depth of the first limiting groove is denoted as L1, the depth of the second limiting groove is denoted as L2, and the depth of the fixing groove is denoted as L3, satisfying the relational expression: L1 = ½L3; L2 = ½L3.
[0013] In at least one embodiment of the present application, the all-in-one machine further includes a gold finger for connecting the processing mechanism and the electrical connection component of the display; The gold finger is fixedly connected to the protective case. The gold finger is arranged opposite to the holding member, and the gold finger is in pluggable connection with the display; In the locked state, the gold finger is electrically connected to the display; In the unlocked state, the gold finger is separated from the display.
[0014] In at least one embodiment of the present application, the outer surface of the protective case is set as a smooth antibacterial surface, and the smooth antibacterial surface is in contact with air.
[0015] The beneficial effects of the provided AI analysis interactive terminal all-in-one machine are as follows: By only setting one locking component, the contact surface with the human body is reduced, and the key disinfection area is reduced; In order to avoid the situation that when using one locking component, the processing mechanism will tilt during disassembly or installation, a limiting component is further provided. The limiting component is slidably connected along the limiting groove provided on the housing, and the first limiting groove and the second limiting groove opposite to the limiting groove are used to fit the limiting component to fix the disassembly direction or installation direction of the protective case; Moreover, by providing a gold finger of the electrical connection component that is more convenient for disinfection, the gold finger of the electrical connection component has more planar structures compared with other electrical connection structures, which is convenient for disinfection. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is the front view of the AI analysis interactive terminal all-in-one machine described in the present application; Figure 2 It is the three-dimensional view of the AI analysis interactive terminal all-in-one machine described in the present application; Figure 3 is Figure 1 a cross-sectional view of C-C in; Figure 4 is Figure 2 a partially enlarged view at position A in; Figure 5 is Figure 2 a partially enlarged view at position B in; Figure 6 is Figure 3 a partially enlarged view at position D in; Figure 7 a schematic connection diagram of the limit component and the protective case described in the present application; Figure 8 a perspective view of the locking component described in the present application; Figure 9 a schematic internal structure diagram of the locking component described in the present application; Figure 10 a schematic diagram of the unlocked state structure of the locking component described in the present application; Figure 11 a schematic diagram of the locked state structure of the locking component described in the present application; Figure 12 a front view of the processing mechanism described in the present application; Main Component Symbol Explanation 100, AI analysis interactive terminal all-in-one machine; 1, display; 2, processing mechanism; 21, protective case; 22, locking component; 23, abutting member; 231, contraction groove; 232, first 45° angle; 233, second 45° angle; 234, rounded corner part; 24, connecting member; 25, pressing member; 251, pressing part; 252, connecting column; 26, holding member; 261, holding part; 262, hollow part; 11, first limit groove; 12, second limit groove; 13, fixing groove; 3, limit component; 31, limiting part; 32, telescopic part; 41, gold finger. Detailed Embodiment
[0017] Next, the embodiments of the present application will be described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments.
[0018] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component present. When a component is considered to be "provided on" another component, it can be directly provided on the other component or there may be an intermediate component present. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and similar expressions used in this article are only for the purpose of illustration.
[0019] An embodiment of the present application provides an AI analysis interactive terminal all-in-one machine, which includes a plurality of displays respectively configured in multiple departments of a hospital and used for displaying image algorithm processing, and a processing mechanism detachably connected thereto. The processing mechanism includes: a protective shell, a locking assembly, and a holding member. The protective shell is detachably connected to the display in any department. The locking assembly is connected to the protective shell. In the locked state, the locking assembly abuts and locks with the display. In the unlocked state, the locking assembly is unlocked and separated from the display. And after the processing mechanism is disinfected, it is connected to the display in any department. The holding member is connected to the protective shell. The locking assembly and the holding member extend to the same side of the display, and the locking assembly is located within the holding portion. During unlocking, the locking assembly in contact with the human body and the protective shell in contact with the air flora are the disinfection areas. Among them, only one locking assembly is provided for each processing mechanism.
[0020] The beneficial effects of the above-provided AI analysis interactive terminal all-in-one machine are as follows: By only providing one locking assembly, the contact surface with the human body is reduced, and the key disinfection area is reduced; In order to avoid a situation where a single locking assembly causes the processing mechanism to tilt during disassembly or installation, a limiting component is provided. The limiting component is slidably connected along a limiting groove provided on the housing, and the first limiting groove and the second limiting groove opposite to the limiting groove fit the limiting component to fix the disassembly direction or installation direction of the protective shell; And by providing a gold finger of an electrical connection component that is more convenient for disinfection, the gold finger of the electrical connection component has more planar structures compared to other electrical connection structures, which is convenient for disinfection.
[0021] The following will describe in detail some embodiments of the present application with reference to the accompanying drawings. Without conflict, the following embodiments and the features in the embodiments can be combined with each other.
[0022] Please refer to Figures 1-12, an embodiment of the present application provides an AI analysis interactive terminal all-in-one machine 100, which includes a plurality of displays 1 respectively configured in multiple departments of a hospital and used for displaying image algorithm processing, and a processing mechanism 2 detachably connected thereto. The processing mechanism 2 includes: a protective shell 21, a locking assembly 22, and a holding member 26. The protective shell 21 is detachably connected to the display 1 in any department. The locking assembly 22 is connected to the protective shell 21. In the locked state, the locking assembly 22 and the display 1 are abutted and locked. In the unlocked state, the locking assembly 22 is unlocked and separated from the display 1. And after the processing mechanism 2 is disinfected, it is connected to the display 1 in any department. The holding member 26 is connected to the protective shell 21. The locking assembly 22 and the holding member 26 extend to the same side of the display 1, and the locking assembly 22 is located within the holding portion 261. During unlocking, the locking assembly 22 in contact with the human body and the protective shell 21 in contact with the air flora are the disinfected areas. Among them, only one locking assembly 22 is provided for each processing mechanism 2.
[0023] Specifically, the AI interactive terminal all-in-one machine is composed of two parts: a plurality of fixed displays 1 distributed in different departments of the hospital and one or more movable AI processing mechanisms 2. The processing mechanism 2 is only connected to one display 1 for use each time. Through the structure of the display 1 and the processing mechanism 2, different departments can take turns using the AI processing ability without repeating the purchase of AI modules, and support data isolation and system quick switching.
[0024] A plurality of display 1 modules are fixedly configured in multiple departments of the hospital, such as the radiology department, the endoscopy center, the cardiology department, etc., and are used for image display, doctor-patient communication, display of artificial intelligence-assisted analysis results, etc. The display 1 internally integrates an image transmission and control interface and reserves a standardized connection port.
[0025] The detachable processing mechanism 2 is the core computing module of this system, and is built-in with an AI chipset or an algorithm acceleration module such as GPU / TPU / FPGA, etc., and is used for processing medical images such as CT / MRI / ultrasound images and outputting analysis results. This module can be detached from one department according to the doctor's needs, moved to another display 1 and continue to be used after connection. By means of "detachable connection between the computing module and the display module", hardware reuse is realized, redundant layout is avoided, and the hospital informatization cost is reduced.
[0026] The outside of the processing mechanism 2 is covered with a protective shell 21, which is used for mechanical docking with the connection surface of any display 1. It is also used to encapsulate components such as the internal main board, interface module, and computing unit of the processing mechanism 2. It is also used to isolate the air flora, that is, the protective shell 21 is the outer shell area "in contact with the air" and belongs to the non-contact type pollution area that needs surface treatment in the medical disinfection specification.
[0027] The processing mechanism 2 is provided with a unique locking component 22 for firmly engaging with the display 1 to ensure stable structure and safe operation in the connected state. The locking component 22 is arranged on one side of the protective shell 21 and adopts mechanical / electronically controlled locking structures such as an embedded knob press lock, a push-pull hook, and a magnetic lock.
[0028] When locking, the locking component 22 extends out and presses against the card slot of the display 1 to form a tightly butted structure. When unlocking, the component is released manually by the doctor or through a release button and separated from the display 1. The material of the locking component 22 is selected as an antibacterial alloy or medical plastic, and the surface is smooth and can withstand repeated scrubbing with disinfectant solution. Through the design of the unique locking component 22, rapid installation / removal of the processing module can be achieved and cross-contamination of multiple components can be avoided. Some areas of the locking component 22 need to be operated by hand and belong to the area in contact with the human body. To meet the requirements of the cleaning partition of medical devices, this part is defined as the human contact area that needs to be disinfected.
[0029] The holding member 26 is used to improve the manual handling efficiency of the processing mechanism 2 at the bottom of the processing mechanism 2. The holding member 26 can be an integrally formed arc-shaped or ring-shaped handle. The surface is covered with an anti-slip material (such as a medical silicone coating) to facilitate operation while wearing gloves. The surface of the holding member 26 and the locking component 22 are both located in the disinfection area, and the doctor needs to wipe and disinfect the surface after contact. The structure supports methods such as rapid spraying and ultraviolet irradiation. The processing mechanism 2 realizes an integrated process of grasping - inserting - locking - operating - removing - disinfecting through a single-sided integrated design.
[0030] In a specific embodiment, the locking component 22 includes: an abutting member 23, a connecting member 24, and a pressing member 25. The abutting member 23 is connected to the protective shell 21, and the abutting member 23 abuts and locks with the display 1. The connecting member 24 is connected to the protective shell 21, and the abutting member 23 is sleeved and slidably connected within the connecting member 24. The pressing member 25 is perpendicular to the connecting member 24 and slidably connected. A part of the pressing member 25 extends out of the display 1 and is denoted as the pressing portion 251. The user presses the pressing portion 251.
[0031] Specifically, the locking component 22 is arranged on one side of the protective shell 21 of the processing mechanism 2. The locking component 22 and the holding member 26 are on the same surface. The locking component 22 is mainly composed of the abutting member 23 as the locking end member, the connecting member 24 as the guiding and supporting member, and the pressing member 25 as the release mechanism.
[0032] The abutting member 23, the connecting member 24, and the pressing member 25 form a combined relationship of sleeved sliding connection + perpendicular sliding unlocking in structure, which can not only achieve rapid plugging and unplugging but also be firmly fixed and resistant to seismic detachment in the plugged state.
[0033] The abutting member 23 is a structure where the locking mechanism makes direct mechanical contact with the display 1. The main function of the abutting member 23 is to abut against the preset locking groove or the edge of the slot of the display 1 in the locked state. The material of the abutting member 23 is antibacterial rigid engineering plastic or stainless steel, and its smooth surface is conducive to disinfection. A flexible buffer ring or anti-slip pattern is provided at the abutting edge between the abutting member 23 and the display 1, which not only enhances the tight fit but also prevents scratching the outer shell of the display 1. One end of the abutting member 23 is slidably connected to the connecting member 24 through a chute structure, and the sliding direction is perpendicular to the insertion direction of the protective shell 21, realizing the guiding action during locking and releasing.
[0034] The connecting member 24 is the core for fixing the sliding guide rail and ensuring structural stability. As an intermediate structure, the connecting member 24 is mainly fixedly connected to the main body of the protective shell 21 in forms such as screws, buckles or slots.
[0035] The main technical functions of the connecting member 24 include internally setting a guiding chute and a limiting structure for the abutting member 23 to be embedded and slide. And a vertical chute is provided for the pressing member 25 to be embedded and slide up and down. It bears the structural rigidity and stability of the entire locking assembly 22, preventing the assembly from deforming or displacing during use. The connecting member 24 can be integrally injection-molded or use multi-section assembled modules for easy repair and replacement. Through the overall framework constructed by the connecting member 24, each component of the locking assembly 22 cooperates with each other precisely and supports the mechanical stress brought by repeated operations.
[0036] The pressing member 25 is the core triggering element for the user to unlock the operation. The pressing member 25 is arranged on one side of the connecting member 24 and is connected to the connecting member 24 in a vertical sliding manner. A part of the structure of the pressing member 25 protrudes from the outer shell of the processing mechanism 2 to form an operable pressing part 251 for doctors or operators to complete the unlocking operation with a single finger.
[0037] After the pressing member 25 is pressed down, it will push the internal cam or tongue mechanism to open the stuck structure, so that the abutting member 23 pops out or loosens in the chute, thereby realizing the release of the locking mechanism. The spring return, magnetic adsorption return and other methods can be used for the spring-back structure of the pressing member 25 to ensure automatic return after each operation.
[0038] During the locking stage, the doctor inserts the processing mechanism 2 into the port of the display 1 and presses the pressing member 25, driving the abutting member 23 to automatically slide under the guidance of the guiding structure and lock with the boundary of the card slot of the display 1. In the locked state, the abutting member 23 is stuck into the structural groove, and the whole machine is stable and reliable. During the unlocking stage, the user's finger presses the pressing part 251. The pressing member 25 drives the abutting member 23 to disengage from the display 1 and releases the abutting member 23. After the abutting member 23 is withdrawn, the processing mechanism 2 can be pulled outwards for subsequent disinfection and transfer. The abutting member 23, the pressing member 25 and their contact areas are key disinfection areas.
[0039] In a specific embodiment, the abutting member 23 includes a contraction groove 231. The contraction groove 231 is provided as an isosceles right triangle. One side of the contraction groove 231 is arranged in parallel with the connecting member 24. And the first 45° angle 232 is close to the pressing portion 251, and the second 45° angle 233 is far from the pressing portion 251. The pressing member 25 is connected with a connecting column 252. The connecting column 252 is located in the contraction groove 231 and penetrates through the contraction groove 231, and the connecting column 252 is slidably connected along one side of the contraction groove 231. Press the pressing portion 251, the pressing member 25 moves in the direction opposite to the pressing direction. The pressing member 25 drives the connecting column 252 to move from the second 45° angle 233 to the first 45° angle 232. The connecting column 252 drives the connecting member 24 to move to abut and lock with the display 1. Press the pressing portion 251, the pressing member 25 moves along the pressing direction. The pressing member 25 drives the connecting column 252 to move from the first 45° angle 232 to the second 45° angle 233. The connecting column 252 drives the connecting member 24 to move to abut and lock with the display 1.
[0040] Specifically, a contraction groove 231 is formed inside the abutting member 23. The contraction groove 231 has a standard isosceles right triangle cross-sectional structure. One of its equal sides is arranged in parallel with the connecting member 24, which constitutes the basic reference side for the movement of the connecting column 252.
[0041] The two 45° included angles are respectively defined as the first 45° angle 232 close to the pressing portion 251 and the second 45° angle 233 far from the pressing portion 251. When the connecting column 252 slides along the contraction groove 231, the triangular geometric structure naturally guides it to transition from one angle to another. At the same time, the triangular structure can form a structural "dead corner", where the connecting column 252 is forced to be stuck and immovable at a certain angle position to achieve the locking function. And the isosceles right structure has low processing difficulty and is suitable for mold injection molding or CNC grooving, which is convenient for large-scale production. This structure is particularly suitable for the usage scenarios with limited space and frequent operations in medical devices, effectively reducing the complexity of the mechanism.
[0042] The pressing member 25 is provided with a connecting column 252, which is horizontally arranged through the contraction groove 231. The connecting column 252 slides along one side of the groove. Its end is fixed to the connecting member 24 or controls the movement of the connecting member 24 through a linkage structure.
[0043] In the initial state, the connecting column 252 is located at the second 45° angle 233, corresponding to the unlocked state. When the user releases the pressing part 251, the pressing piece 25 bounces up due to the elastic structure, driving the connecting column 252 to slide along the contraction groove 231 towards the first 45° angle 232. After sliding to the first 45° angle 232, the connecting column 252 abuts against the dead corner position of the triangular groove wall, pushing the connecting piece 24 to move forward. After the connecting piece 24 moves forward, it abuts against the display 1, completing the locking action. Similarly, when the user presses the pressing part 251 again, the connecting column 252 slides back from the first 45° angle 232 to the second 45° angle 233, driving the connecting piece 24 to retract inward, completing the unlocking and separation.
[0044] Utilize the triangular groove geometric structure to achieve force path guidance, eliminating the need for a complex slide rail system. The sliding path is naturally limited, making the operation smoother. Avoid mechanical over jamming or misinsertion problems, enhancing the user's operating feel.
[0045] The user inserts the processing mechanism 2 into the insertion port of the display 1; after insertion, release the pressing part 251, and the internal spring resets to push the pressing piece 25 to rebound. The rebound of the pressing piece 25 drives the connecting column 252 to slide in the contraction groove 231 from the second 45° angle 233 towards the first 45° angle 232. The connecting column 252 pushes against the connecting piece 24, and the connecting piece 24 moves forward to abut and lock against the edge of the card slot of the display 1. After use, the user presses the pressing part 251, and the connecting column 252 slides back to the second 45° angle 233 in the reverse direction. The connecting piece 24 is pulled back, and the structure is disengaged from the lock, and the processing module can be removed.
[0046] In a specific embodiment, the contraction groove 231 includes a rounded corner portion 234, and the rounded corner portions 234 are respectively located at the included angles of the equilateral triangle. The diameter of the rounded corner portion 234 is denoted as A1, and the diameter of the connecting column 252 is denoted as A2, satisfying the relationship: A1≥A2.
[0047] Specifically, the body of the contraction groove 231 is an isosceles right triangle through groove structure for guiding the connecting column 252 to slide along its side. The following problems are likely to occur at the traditional right or acute angle boundaries during use: mechanical jamming and internal residual foreign objects or difficult cleaning occur when sliding to the corner point, affecting disinfection, and fatigue cracks or fractures occur at the corner point during repeated use, reducing the service life.
[0048] Therefore, in this embodiment, the included angles of the triangle, such as the first 45° angle 232, the second 45° angle 233 or the right angle, are subjected to a rounded corner transition treatment to form an R corner or an arc surface edge, avoiding mechanical dead corners and wear accumulation.
[0049] The rounded corner part 234 transitions to a two-dimensional arc cross-section to form an arc-shaped corner. Preferably, the radius of curvature is between 1 - 1.5 times the diameter of the connecting column 252, which neither affects the guiding function nor causes "empty sliding" or jumping of the connecting member 24. The diameter A1 of the rounded corner part 234 is set to be ≥ the diameter A2 of the connecting column 252, and the purpose is to ensure that the connecting column 252 will not get stuck due to dimensional interference when sliding to the corner.
[0050] A1≥A2 is the minimum geometric sliding constraint condition. If the rounded corner diameter is smaller than the diameter of the connecting column 252, the column will be blocked during turning and sliding, and external force is required to strongly push it, which affects the operating feel. Repeated impacts between the column and the edge will cause microcracks, grooving, and even corner chipping. The condition of A1≥A2 can reduce the impact force. Whether sliding from the first 45° angle 232 to the second 45° angle 233 or operating in the reverse direction, the column is always allowed to smoothly pass through the corner.
[0051] In a specific embodiment, the holding member 26 includes a holding part 261 and a hollow part 262. The holding part 261 is connected to the user in a fitting manner. The holding part 261 is arranged in the same direction as the pressing member 25. The holding part 261 is fixedly connected to an outer surface of the protective shell 21, and the holding part 261 is located outside the display 1. The hollow part 262 is formed between the holding part 261 and the protective shell 21, and the pressing part 251 is located inside the hollow part 262.
[0052] Specifically, the holding part 261 is an external structure that the user directly contacts when holding the device. It is fixedly connected to the outer surface of the protective shell 21 and can be constructed by means of screws, buckles, or integral injection molding. The hollow part 262 is arranged between the holding part 261 and the protective shell 21 and is a cavity area with permeability. The pressing member 25 is embedded inside it, forming a concentrated area for vision and operation.
[0053] The holding part 261 is located on the outer shell surface of the entire processing mechanism 2 and protrudes outward, facilitating the doctor to directly grasp it during operation. The hollow part 262 is arranged below or in the center of the holding part 261 to form a window-like area, and a space is left inside it for accommodating the pressing part 251. The overall structure of the hollow part 262 and the pressing member 25 faces outward together and is exposed in the direction opposite to the docking surface with the display 1, which is conducive to single-sided operation and quick disassembly.
[0054] The holding part 261 is the main area for the user to hold by hand and must conform to the ergonomics and hygiene specifications of medical devices. The holding part 261 can adopt profiles such as arcs, ellipses, or "T-shaped grooves" to adapt to the holding arc of the human hand and prevent slipping. The holding part 261 uses medical-grade ABS + antibacterial coating, supports wiping with alcohol and peracetic acid, and prevents cross-infection. The hollow part 262 is in the same direction as the pressing member 25, facilitating the user's thumb to naturally fall on the pressing part 251 to achieve synchronous operations of "holding + unlocking".
[0055] The hollowed-out part 262 visually guides the user to naturally place the finger on the pressing part 251. The hollowing-out process can reduce the total weight of the structure, facilitating long-term holding. Eliminating redundant gaps and dark grooves reduces bacterial residue and improves the overall cleaning efficiency; the pressing member 25 extends from the inside through the hollowed-out area, making the locking structure more precise and aligning with the card slot of the display 1.
[0056] The hollowed-out part 262 can be completed by one-time injection molding or modular assembly splicing. Dust-proof small arcs can be provided around the hollowed-out part 262 to prevent finger scratching and improve the comfort level; In a specific embodiment, the protective shell 21 includes a first limiting groove 11, a second limiting groove 12, and a fixing groove 13.
[0057] The first limiting groove 11 is opened on the other outer surface of the protective shell 21. One outer surface of the protective shell 21 and the other outer surface of the protective shell 21 are perpendicularly connected, and the opening of the first limiting groove 11 faces the display 1; The second limiting groove 12 is opened on the protective shell 21 and is located on the opposite side of the other outer surface of the protective shell 21. The holding part 261 is located between the first limiting groove 11 and the second limiting groove 12; The fixing groove 13 is respectively provided in the first limiting groove 11 and the second limiting groove 12.
[0058] Specifically, the protective shell 21 has a plurality of outer surfaces, one of which corresponds to the side connected to the holding part 261. The other outer surface is an insertion and docking surface perpendicular to this side and facing the display 1. The opposite surface refers to the rear structure opposite to the other outer surface. The openings of the second limiting groove 12 and the first limiting groove 11 face the display 1.
[0059] The first limiting groove 11 is opened along the pressing direction, that is, the direction perpendicular to the connection surface of the display 1, and is located on one outer surface of the protective shell 21. The second limiting groove 12 is also arranged along the pressing direction, but is located on the opposite outer surface of the protective shell 21. The fixing grooves 13 are respectively arranged inside the first limiting groove 11 and the second limiting groove 12, and form limit stops and structural positioning with the limiting blocks on the display 1. The holding part 261 is embedded or located between the first and second limiting grooves 12 and is in the central clamping area of the two grooves.
[0060] The first limiting groove 11 is arranged on the outer surface of the protective shell 21 close to the display 1, with an opening facing the display 1. Its main function is to provide the primary alignment guiding function during insertion, control the insertion depth and angular error of the control processing mechanism 2 in the direction close to the display 1, prevent tilting installation, and cooperate with the external plugging guide rail or the side-edge slider of the holding part 261 to form a structural slide rail assistance. The groove body is of a U-shaped structure, and chamfering can be provided inside to avoid jamming during insertion. The first limiting groove 11 and the second limiting groove 12 respectively leave an elastic installation gap of 0.2–0.5 mm from the display 1. The surface is sprayed with a medical corrosion-resistant coating to support high-frequency disinfection.
[0061] The setting of the second limiting groove 12 forms a clamping path symmetry with the first limiting groove 11. The second limiting groove 12 is arranged on the opposite side of the first limiting groove 11, that is, on the other outer surface of the protective shell 21 (the direction away from the display 1), and is arranged face to face with the first limiting groove 11 along the pressing direction.
[0062] The second limiting groove 12 and the first limiting groove 11 jointly form a clamping track structure for embedding the holding part 261 or the slider clip. The second limiting groove 12 provides a two-way limiting support structure for the device during the plugging and unplugging process, improving the lateral anti-sway ability. The second limiting groove 12 controls the sliding section of the holding part 261 on the protective shell 21 to prevent the structural parts from loosening or shifting.
[0063] It is suitable for the high-frequency plugging and unplugging requirements in medical places, especially to ensure the automatic positioning and mechanical stop of the device without error in the glove operation and limited vision environment.
[0064] The fixing groove 13 is a notch structure opened inside the above two limiting grooves for installation or engagement. It precisely fixes the structural position of the holding part 261 between the two limiting grooves. It forms a stop point for the "snapping - locking" action and cooperates with the release mechanism of the pressing part 25 to form a closed-loop structure. It prevents the holding part 261 from moving in a non-preset direction or shaking during the plugging and unplugging process.
[0065] A transition groove is provided between the fixing groove 13 and the first limiting groove 11, and the depth of the transition groove is between the depth of the first limiting groove 11 and the depth of the fixing groove 13. A transition groove is also provided between the fixing groove 13 and the second limiting groove 12.
[0066] The transition groove can be a linear ramp-shaped groove or a stepped transition structure. The groove wall of the transition groove is provided with an arc chamfer or an inner wall chamfer of R to prevent jamming. The transition groove can form a progressive plugging process of "pilot guide - then slide in - finally lock" with the limiting part 31 and the slider.
[0067] In a specific embodiment, the all-in-one machine further includes a limiting component 3 for locking the protective case 21 and the display 1. The limiting component 3 includes a limiting portion 31 and a telescopic portion 32. The limiting portion 31 is respectively arranged in the first limiting groove 11 and the second limiting groove 12. The limiting portion slides along the first limiting groove 11 and the second limiting groove 12 respectively and is in fit connection with the fixing groove 13. The limiting portion 31 is used for locking. One end of the telescopic portion 32 is connected to the display 1, and the other end of the telescopic portion 32 is connected to the limiting portion 31.
[0068] Specifically, the limiting portions 31 are respectively arranged in the first limiting groove 11 and the second limiting groove 12, and can slide along the limiting grooves to the corresponding positions of the fixing groove 13. One end of the telescopic portion 32 is fixed to the structure of the display 1, and the other end is connected to the limiting portion 31, playing a role of sliding guidance and elastic return release. The limiting portion 31 can be any structure such as a T-shaped slider, an L-shaped clamping plate or an elastic tongue piece, and its size is adapted to the guiding channel of the limiting groove. A slide rail flange / guiding rib is arranged at the bottom of the limiting portion 31, and a limiting bump or a stop edge is arranged at the top, which is used for fitting with the fixing groove 13. The material of the limiting portion 31 can be high-strength engineering plastic or stainless steel elastic sheet, taking into account both rigidity and flexibility.
[0069] After the plugging action is completed, the limiting portion 31 slides into the corresponding fixing groove 13 along the first and second limiting grooves 12, forming a physical locking state. When it is necessary to remove the processing mechanism 2, by stretching the telescopic portion 32 or releasing the structure control part, the limiting portion 31 is withdrawn from the fixing groove 13. The bilateral limiting design enables the device to obtain balanced clamping force and good lateral support stability.
[0070] The telescopic portion 32 is connected to one side of the display 1, and can adopt forms such as a spring sleeve structure, a telescopic guide rod, a flexible snake-shaped piece, a compression spring slider, etc. It supports axial compression and elongation, and the length change range is controlled between 5–20 mm, with self-adaptive buffering ability. Structure elastic sheets or magnetic adsorption elements can be integrated to provide automatic reset and adsorption positioning functions.
[0071] In a specific embodiment, the depth of the first limiting groove 11 is denoted as L1, the depth of the second limiting groove 12 is denoted as L2, and the depth of the fixing groove 13 is denoted as L3, satisfying the relationship: L1 = ½L3; L2 = ½L3.
[0072] Specifically, the depth L1 of the first limiting groove 11 = ½L3, and the depth L2 of the second limiting groove 12 = ½L3, where L3 is the depth of the fixing groove 13, and L1 and L2 are the depths of the limiting grooves respectively. Ensure that during the process of the limiting portion 31 sliding into the fixing groove 13, both ends enter symmetrically and stop at the middle, which can not only improve the sliding accuracy, but also relieve the structural damage caused by misalignment or stress concentration during the plugging and unplugging process.
[0073] In a specific embodiment, the all-in-one machine further includes an electrical connection component for connecting the processing mechanism 2 and the display 1. The electrical connection component includes: A gold finger 41 connects the processing mechanism 2 and the display 1. When the processing mechanism 2 and the display 1 are unlocked and separated, the gold finger 41 is connected to the protective shell 21.
[0074] Specifically, the gold finger 41 serves as an electrical connection contact of the processing mechanism 2 and is fixedly connected to the outer side of the protective shell 21 or the end face of the inner slot.
[0075] The gold finger 41 is paired with the interface at the display 1 end, such as a connection slot or a circlip structure. The interface at the display 1 end is embedded with a contact elastic piece, which is inserted and matched with the gold finger 41 to realize an electrical path. In the locked state, the gold finger 41 is fully inserted into the card slot of the display 1, and the corresponding electrical connection is completed. When the processing mechanism 2 is not inserted or the locking component 22 is released, the gold finger 41 is physically disconnected from the port of the display 1, avoiding accidental touch or short circuit of the circuit.
[0076] The user presses the pressing part 251 to release the locking structure. The gold finger 41 automatically exits the slot under the action of the contact elastic piece. All electrical contacts are disconnected to prevent electrostatic breakdown, arc damage and misoperation.
[0077] The user inserts the processing mechanism 2 into the display 1. As the insertion action progresses, the gold finger 41 is inserted into the port of the display 1, and the contact terminal elastically presses the surface of the gold finger 41. At the same time, the limiting groove and the limiting component 3 lock the processing mechanism 2. The locking component 22 acts to lock the processing mechanism 2. At this time, the electrical connection is completed, and the AI processing module can start functions such as data exchange and image analysis.
[0078] In a specific embodiment, the outer surface of the protective shell 21 is set as a smooth antibacterial surface, and the smooth antibacterial surface is in contact with the air.
[0079] Specifically, the smooth antibacterial surface refers to a continuous, flat and low-roughness material covering layer provided on the outer surface of the protective shell 21, and has the functions of inhibiting bacteria, sterilizing bacteria or blocking the attachment of bacteria.
[0080] The surface roughness Ra of the outer surface of the protective shell 21 is ≤0.2 μm, meeting the medical surface standard. It has a continuous surface structure, seamless, no depression and no splicing gap. The smooth antibacterial surface is the part of the device that is not exposed to the air environment during normal operation. Only when the processing mechanism 2 and the display 1 are unlocked and separated, the smooth antibacterial surface is the part exposed to the air environment, that is, it can directly contact the air microbiota.
[0081] The antibacterial surface covers the entire externally exposed area of the protective shell 21, including the outer edge of the holding portion 261, the side wall of the pressing portion 251, and the side and top of the housing that are in direct contact with the air. The antibacterial surface can be formed by integral injection molding, followed by surface spraying or lamination of multi-layer composite materials.
[0082] Thus, the beneficial effects of the AI analysis and interaction terminal all-in-one machine 100 provided above are as follows: By only setting one locking component 22, the contact surface with the human body is reduced, and the key disinfection area is reduced; In order to prevent the handling mechanism 2 from tilting when a single locking component 22 is used for disassembly or installation, a limiting component 3 is provided. The limiting component 3 is slidably connected along the limiting groove provided on the housing, and the first limiting groove 11 and the second limiting groove 12 provided opposite to the limiting groove are used to fit the limiting component 3 to fix the disassembly or installation direction of the protective shell 21. Moreover, by providing the gold finger 41 of the electrical connection component, which is more convenient for disinfection, the gold finger 41 of the electrical connection component has more planar structures compared to other electrical connection structures, making it convenient for disinfection.
[0083] The above are only the embodiments of the present application. It should be noted that for those of ordinary skill in the art, without departing from the inventive concept of the present application, improvements can still be made, but these all fall within the protection scope of the present application.
Claims
1. An AI analysis interactive terminal integrated machine, comprising a plurality of displays respectively arranged in a plurality of departments of a hospital and used to display image algorithm processing, and a processing mechanism detachably connected thereto; characterized in that: The processing mechanism comprises: A protective shell detachably connected to the display of any department; A locking assembly connected to the protective shell, wherein the locking assembly and the display are abutted and locked in a locked state, and the locking assembly and the display are unlocked and separated in an unlocked state, and the processing mechanism is connected to the display of any department after disinfection; A gripping member connected to the protective shell, the locking assembly and the gripping member extending to the same side of the display, and the locking assembly is located in the gripping member; In the unlocked state, the locking assembly and the holding piece in contact with the human body, and the protective shell in contact with air flora are disinfection areas, wherein each processing mechanism is only provided with one locking assembly.
2. The AI analysis interactive terminal according to claim 1, characterized in that: The locking assembly comprises: An abutment member connected to the protective shell and abutted and locked with the display; A connecting piece connected to the protective shell, and the abutting piece is sleeved and slidably connected inside the connecting piece; The pressing member is vertically and slidably connected to the connecting member, and partially extends outside the display and is referred to as a pressing portion, and a user presses the pressing portion.
3. The AI analysis interactive terminal according to claim 2 is characterized in that: The abutment member includes a contraction groove, the contraction groove is set as an isosceles right triangle, and an equilateral side is arranged parallel to the connecting member, and a first 45° angle is close to the pressing portion, and a second 45° angle is away from the pressing portion; The pressing member includes a connecting column, the connecting column is located in the shrinkage groove and passes through the shrinkage groove, and the connecting column is slidably connected along one side of the shrinkage groove; The pressing portion is pressed, and the pressing member moves in a direction opposite to the pressing direction, and the pressing member drives the connecting column to move from the second 45° angle to the first 45° angle, and the connecting column drives the connecting member to move to abut against and lock with the display; The pressing portion is pressed, and the pressing member moves along the pressing direction, and the pressing member drives the connecting column to move from a first 45° angle to a second 45° angle, and the connecting column drives the connecting member to move to be unlocked and separated from the display.
4. The AI analysis interactive terminal according to claim 3 is characterized in that: The contraction groove includes a rounded corner portion, and the rounded corner portions are respectively located at the angles of an equilateral triangle. The diameter of the rounded corner portion is recorded as A1, and the diameter of the connecting column is recorded as A2, which satisfies the relationship: A1≥A2.
5. The AI analysis interactive terminal according to claim 3 is characterized in that: The holding member comprises: A grip portion, which is closely connected to the user, is arranged in the same direction as the pressing member, is fixedly connected to an outer surface of the protective shell, and is located outside the display; A hollow portion is formed between the grip portion and the protective shell, and the pressing portion is located in the hollow portion.
6. The AI analysis interactive terminal according to claim 5, characterized in that: The protective shell comprises: A first limiting groove is arranged along the pressing direction and is opened on the other outer surface of the protective shell, the first outer surface of the protective shell is vertically connected to the other outer surface of the protective shell, and the notch of the first limiting groove faces the display; A second limiting groove is provided in the protective shell along the pressing direction and is located on the opposite side of the other outer surface of the protective shell, and the gripping portion is located between the first limiting groove and the second limiting groove; A fixing groove, wherein the first limiting groove and the second limiting groove are respectively provided with the fixing groove.
7. The AI analysis interactive terminal according to claim 6, characterized in that: The all-in-one machine further includes a limiting component for locking the protective shell and the display, and the limiting component includes: A limiting part, which is respectively arranged at the first limiting groove and the second limiting groove, wherein the limiting part is respectively slidably connected along the first limiting groove and the second limiting groove to be fitted and connected with the fixing groove, and the limiting part is used for locking; The telescopic part has one end connected to the display and the other end connected to the limiting part.
8. The AI analysis interactive terminal according to claim 6, characterized in that: The depth of the first limiting groove is recorded as L1, the depth of the first limiting groove is recorded as L2, and the depth of the fixing groove is recorded as L3, which satisfies the relationship: L1=½L3; L2=½L3.
9. The AI analysis interactive terminal according to claim 1, characterized in that: The all-in-one machine also includes a gold finger for connecting the processing mechanism and the electrical connection component of the display; The gold finger is fixedly connected to the protective shell, the gold finger is arranged opposite to the holding piece, and the gold finger is plug-in connected to the display; In the locked state, the gold finger is electrically connected to the display; In the unlocked state, the gold finger is separated from the display.
10. The AI analysis interactive terminal according to claim 1, characterized in that: The outer surface of the protective shell is set as a smooth antibacterial surface, which is in contact with the air.
Citation Information
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