Ultrasonic probe suspension device for ultrasonic department

By designing an ultrasonic probe suspension device including a fixing plate, an adjustment plate and a connecting rod, the problem that medical staff cannot easily access it after storage is solved, and the ultrasonic probe is easily moved and highly stable storage is achieved.

CN119970080AInactive Publication Date: 2025-05-13YIYANG CENT HOSPITAL
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Patent Information

Application Number
CN202510091132.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Medical staff cannot easily access the ultrasonic probe after storing it, which increases the complexity of operation.

Method used

Design an ultrasonic probe suspension device for ultrasonic science, which can facilitate movement and storage of ultrasonic probes by combining a fixing plate, an adjustment plate and a connecting rod.

Benefits of technology

The distance between the palm of the medical staff and the ultrasonic probe is reduced, and the portability is improved, and the stability and safety of the ultrasonic probe is ensured through the design of the chain and sprocket.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of ultrasonic probes, in particular to an ultrasonic probe suspension device for the ultrasonic department, which comprises a box body, an adjusting assembly is arranged on the surface of the box body, the adjusting assembly comprises an adjusting plate and a fixing plate, a first chain wheel is fixedly connected to one side, far away from the box body, of the adjusting plate, and connecting rods are hinged to two sides of the first chain wheel; a first base is fixedly connected to the fixing plate, the ends, away from the first chain wheel, of the connecting rods are hinged to the first base, a second chain wheel is fixedly connected into the first base, and a chain is meshed between the first chain wheel and the second chain wheel. Through the fixing plate, the adjusting plate and the connecting rod, the fixing plate is fixed to the wall, the connecting rod rotates to drive the adjusting plate to move, an ultrasonic probe can move along with movement of the position of the adjusting plate, and therefore when medical workers take the ultrasonic probe, the ultrasonic probe can be taken out conveniently and rapidly. And the distance between the palm of the medical worker and the ultrasonic probe can be reduced, so that the convenience of taking the ultrasonic probe by the medical worker is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of ultrasonic probes, and in particular to an ultrasonic probe suspension device for ultrasonic department. Background Art

[0002] Ultrasonic diagnostic technology is an important non-invasive diagnostic method in modern medicine. It uses the propagation and reflection characteristics of ultrasound in the human body to obtain image information of internal tissues and organs of the human body, providing doctors with accurate diagnostic basis. In the ultrasound department, the ultrasound probe is a key component of ultrasound diagnostic equipment. Its performance and ease of use directly affect the accuracy and efficiency of diagnosis.

[0003] Generally speaking, when the ultrasound probe is not in use, medical staff usually take some measures to properly store the ultrasound probe to ensure its safety and availability. Among them, the most common practice is to hang the ultrasound probe on a dedicated storage rack, but this storage method is not conducive to the medical staff's convenient access to the ultrasound probe, and the inconvenience of the medical staff in accessing the ultrasound probe will increase the complexity of the medical staff's operation.

[0004] In summary, how to solve the problem that medical staff cannot conveniently access the ultrasound probe after storing it has become a technical problem that those skilled in the art need to solve urgently. Therefore, it is necessary to propose an ultrasound probe suspension device for ultrasound department. Summary of the invention

[0005] In order to solve the above problems, the present invention provides an ultrasound probe hanging device for ultrasound department, which is composed of a fixing plate, an adjustment plate, and a connecting rod. The fixing plate is fixed to the wall, and the position of the adjustment plate is driven to move by the rotation of the connecting rod. The ultrasound probe can move with the movement of the adjustment plate. When the medical staff uses the ultrasound probe, the distance between the palm of the medical staff and the ultrasound probe can be reduced, thereby improving the portability of the medical staff in using the ultrasound probe.

[0006] In order to achieve the above-mentioned purpose, the technical solution of the present invention is as follows: an ultrasound probe suspension device for ultrasound department, comprising a box body, a top cover detachably connected to the top of the box body, a wire inlet on one side of the box body, a wire outlet on the bottom of the box body, a controller fixedly connected to the surface of the box body, and a suspension component for hanging the ultrasound probe and an adjustment component for adjusting the position of the box body provided on the surface of the box body.

[0007] A winding assembly for winding the ultrasonic probe line is arranged in the box.

[0008] The adjustment assembly includes an adjustment plate and a fixing plate for contacting the wall for fixing. The adjustment plate is fixedly connected to the side wall of the box body. The side of the adjustment plate away from the box body is fixedly connected to a first sprocket, and connecting rods are hinged on both sides of the first sprocket.

[0009] The fixing plate is fixedly connected with a first base, one end of the connecting rod away from the first sprocket is hinged to the first base, a second sprocket is fixedly connected inside the first base, and a chain is meshed between the first sprocket and the second sprocket.

[0010] A first driving member is fixedly connected to one side of the fixing plate close to the first base. The controller is used to control the operation of the first driving member. The output shaft of the first driving member is fixedly connected to the side wall of the connecting rod adjacent to it.

[0011] The technical principle of the above scheme is as follows: medical staff can suspend the ultrasound probe through the hanging component, and wind the ultrasound probe wire in an orderly manner through the winding component to reduce the occurrence of disorderly ultrasound probe wires.

[0012] The connecting rod is driven to rotate by the first driving member, and the position of the adjusting plate is driven to move by the rotation of the connecting rod, thereby moving the position of the box. When the position of the box changes, the ultrasonic probe will change with the change of the position of the box.

[0013] The second sprocket is fixedly connected to the first base through the first sprocket, the second sprocket and the chain. When the connecting rod rotates, the first sprocket is driven to rotate under the tension of the chain. As the first sprocket continues to rotate, the adjustment plate will always be in a vertical state, thereby improving the stability of the ultrasonic probe during storage.

[0014] The above scheme has the following beneficial effects:

[0015] 1. The present invention drives the position of the adjustment plate to move by rotating the connecting rod, so that medical staff can easily adjust the position of the ultrasound probe, so that the distance between the palm and the ultrasound probe can be reduced when taking the ultrasound probe, thereby improving the portability of taking.

[0016] 2. The present invention uses the interaction between the first sprocket, the second sprocket and the chain. When the connecting rod rotates, the first sprocket will rotate accordingly, so that the adjustment plate can always be in a vertical state. This vertical state ensures the stability of the ultrasonic probe during the suspension process and reduces the safety hazards caused by shaking or tilting.

[0017] 3. The present invention drives the connecting rod to rotate by the first driving member. When the medical staff does not use the ultrasonic probe, the medical staff can rotate the connecting rod to the uppermost position. At this time, the space required for storing the ultrasonic probe can be significantly reduced, thereby allowing the medical staff to have more working space.

[0018] Furthermore, a second base is symmetrically fixedly connected to one side of the fixing plate close to the first base, and a pull rod is rotatably connected inside the second base.

[0019] The connecting rods are all L-shaped, one end of the pull rod away from the second base is fixedly connected to the first spring, and the other end of the first spring is fixedly connected to the vertical end of the connecting rod adjacent to it.

[0020] Beneficial effect: By arranging a pull rod in the second base and arranging a first spring between the pull rod and the connecting rod, a stable support structure is formed between the pull rod and the connecting rod. This design can effectively prevent the box from shaking or shifting when the box position is adjusted, thereby enhancing the stability of the entire device. Through the pulling force of the first spring on the connecting rod, when the connecting rod rotates, the first spring can buffer the rotation of the connecting rod, thereby facilitating the stability of the connecting rod when it rotates.

[0021] Furthermore, the suspension assembly includes a plurality of fixing frames for placing the ultrasonic probes, and the fixing frames are all fixedly connected to the side walls of the box body.

[0022] Beneficial effects: The design of the fixing frame allows the ultrasound probe to be placed neatly and orderly on the side wall of the box, reducing the confusion and damage caused by the random stacking of ultrasound probes in the traditional way. Medical staff can easily find and take the required ultrasound probes, improving work efficiency. The fixing frame provides a stable support platform for the ultrasound probe, reducing the damage caused by collision or falling of the ultrasound probe during movement or storage.

[0023] Furthermore, the winding assembly includes a movable frame and a support plate, the support plate is fixedly connected to the inner wall of the box body, a second driving member is fixedly connected to the support plate, the controller is used to control the operation of the second driving member, the output shaft of the second driving member is coaxially fixedly connected to a rotating shaft, a first bevel gear is provided at one end of the rotating shaft away from the second driving member, the rotating shaft passes through the first bevel gear and is slidably matched with the first bevel gear, the first bevel gear is meshed with the second bevel gear; the first bevel gear is rotatably connected to the top of the movable frame.

[0024] The moving frame is rotatably connected with a first transmission rod, the top of the first transmission rod penetrates the moving frame and is fixedly connected with the second bevel gear, and the outer shell of the first transmission rod is fixedly connected with a winding roller for winding the ultrasonic probe line.

[0025] The moving frame is slidably matched with the bottom wall of the box body, and a moving component for adjusting the position of the moving frame is arranged between the moving frame and the supporting plate.

[0026] Beneficial effect: Through the winding roller on the mobile frame, medical staff can easily and orderly wind the ultrasound probe line. This design not only improves the storage efficiency of the ultrasound probe line, but also makes the working environment of medical staff more tidy, thereby improving the work efficiency of medical staff.

[0027] The second driving member drives the first transmission rod and the winding roller to rotate through the transmission of the first bevel gear and the second bevel gear. This design allows medical staff to adjust the speed and tightness of the winding roller as needed.

[0028] Furthermore, the moving assembly includes a plurality of T-shaped plates, which are all fixedly connected to the side of the support plate close to the moving frame. A third bevel gear is also fixedly connected to the rotating shaft, and the third bevel gear is meshed with a fourth bevel gear.

[0029] A second transmission rod is rotatably connected between adjacent T-shaped plates, and the top of the second transmission rod penetrates the adjacent T-shaped plates and is fixedly connected with the fourth bevel gear.

[0030] A cam is fixedly connected to the middle of the second transmission rod, and a pulley is rotatably connected to one side of the moving frame close to the second transmission rod, and the cam and the pulley are in contact with each other.

[0031] One end of the T-shaped plate close to the moving frame is fixedly connected with a sliding rod, and one end of the sliding rod away from the T-shaped plate extends into the moving frame and is slidably matched with the moving frame.

[0032] The T-shaped plate is provided with a reset component for resetting the moving frame and a pressure component for monitoring the pressure on the ultrasonic probe line.

[0033] Beneficial effect: The meshing of the third bevel gear and the fourth bevel gear realizes the driving of the second driving member to the second transmission rod. The design of the cam and the pulley contacting each other enables the cam to push the pulley to move when the second transmission rod rotates, thereby driving the moving frame to slide along the sliding rod. The sliding of the moving frame along the sliding rod driven by the cam is conducive to improving the sliding stability of the moving frame.

[0034] Furthermore, the reset assembly includes a plurality of second springs, one end of each of the second springs is fixedly connected to the T-shaped plate adjacent thereto, and the other end of each of the second springs is fixedly connected to the side wall of the movable frame.

[0035] Beneficial effect: Through the rotation of the cam and the elastic restoring force of the second spring, the stability and reliability of the mobile frame during the reciprocating motion can be ensured. The cam can smoothly push the pulley to avoid sudden acceleration or deceleration of the mobile frame; and the second spring can quickly and stably pull the mobile frame back to the initial position to ensure the continuous and stable operation of the equipment.

[0036] Furthermore, the pressure assembly includes a plurality of line blocking blocks, each of which is fixedly connected to the top of the fixing frame, and each of which is fixedly connected to the surface of the line blocking blocks with a pressure sensor, and the controller is used to receive pressure data monitored by the pressure sensor.

[0037] Beneficial effect: The pressure sensor is fixedly connected to the surface of the wire block, and can monitor the pressure changes of the ultrasonic probe wire during the winding process in real time. As the mobile frame reciprocates, the ultrasonic probe wire will be tightened and loosened accordingly. The tightening pressure of the ultrasonic probe wire is monitored by the pressure sensor. When the tightening pressure exceeds the threshold set by the pressure sensor, the controller will automatically control the winding roller to stop winding. This automatic control function reduces the safety hazards caused by excessive tension of the wire.

[0038] Furthermore, the surface of the winding roller is engraved with anti-skid patterns.

[0039] Beneficial effect: The anti-slip pattern design effectively increases the friction between the winding roller and the ultrasonic probe line by adding uneven textures on the winding roller surface. This increased friction can prevent the ultrasonic probe line from slipping due to looseness or external force during the winding process, thereby ensuring the stability and safety of the ultrasonic probe line.

[0040] Furthermore, an observation window is provided on the side wall of the box.

[0041] Beneficial effects: The observation window allows medical staff to directly observe the status inside the box without opening the box, including the winding of the ultrasound probe line, the position of the mobile frame, and the working status of the pressure component. This real-time monitoring function helps medical staff to find problems in time and take corresponding measures to ensure the normal operation of the equipment and the safe use of the ultrasound probe.

[0042] Furthermore, a disinfection lamp is fixedly connected to the side wall of the box, the ultrasonic probes are all located within the disinfection range of the disinfection lamp, and the controller is used to control the operation of the disinfection lamp.

[0043] Beneficial effects: The disinfection lamp can emit ultraviolet rays or light of a specific wavelength with bactericidal effects, which can be directly irradiated onto the ultrasound probe, thereby effectively killing bacteria, viruses and other microorganisms attached to the probe surface. And because the ultrasound probe can be disinfected in a suspended state, there is no need for additional disassembly or movement, which further improves the disinfection efficiency.

[0044] Additional aspects and advantages of the present invention will be given in part in the following description and in part will be obvious from the following description, or will be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] Figure 1 The figure is an axonometric diagram of the ultrasonic probe suspension device for ultrasonic department of the present invention.

[0046] Figure 2 The present invention is an axonometric diagram of a winding assembly and a moving assembly in the ultrasonic probe suspension device for ultrasonic surgery.

[0047] Figure 3It is a front cross-sectional view of the ultrasonic probe suspension device for ultrasound department of the present invention.

[0048] The figure marks in the drawings of the specification include: 1, box body; 2, top cover; 3, wire inlet; 4, fixed frame; 5, adjustment plate; 6, first spring; 7, pull rod; 8, connecting rod; 9, first base; 10, fixed plate; 11, second base; 12, second sprocket; 13, chain; 14, support plate; 15, T-plate; 16, second drive motor; 17, third bevel gear; 18, fourth bevel gear; 19, first bevel gear; 20, second bevel gear; 21, first transmission rod; 22, winding roller; 23, moving frame; 24, second spring; 25, sliding rod; 26, second transmission rod; 27, pulley; 28, cam; 29, first sprocket; 30, first drive motor; 31, disinfection lamp; 32, wire block; 33, pressure sensor. DETAILED DESCRIPTION

[0049] The following is further described in detail through specific implementation methods:

[0050] Embodiment 1:

[0051] As attached Figure 1-Figure 3 As shown: an ultrasound probe suspension device for ultrasound department, including a box body 1, a top cover 2 is detachably connected to the top of the box body 1, a wire inlet 3 is opened on one side of the box body 1, a wire outlet is opened on the bottom of the box body 1, a controller is fixedly connected to the surface of the box body 1 by screws, and a suspension component for suspending the ultrasound probe and an adjustment component for adjusting the position of the box body 1 are provided on the surface of the box body 1.

[0052] A winding assembly for winding the ultrasonic probe wire is arranged in the box body 1 .

[0053] The adjustment assembly includes an adjustment plate 5 and a fixing plate 10 for fixing in contact with a wall. The adjustment plate 5 is fixedly connected to the side wall of the box body 1 by bolts. The side of the adjustment plate 5 away from the box body 1 is fixedly connected to a first sprocket 29 by bolts. Both sides of the first sprocket 29 are hinged with connecting rods 8.

[0054] The fixing plate 10 is bolted to a first base 9 , one end of the connecting rod 8 away from the first sprocket 29 is hinged to the first base 9 , a second sprocket 12 is bolted to the first base 9 , and a chain 13 is meshed between the first sprocket 29 and the second sprocket 12 .

[0055] A first driving member is bolted fixedly connected to the fixed plate 10 on one side close to the first base 9. In this embodiment, the first driving member is selected as a first driving motor 30. The controller is used to control the operation of the first driving motor 30. The output shaft of the first driving motor 30 is bolted fixedly connected to the side wall of the connecting rod 8 adjacent to it.

[0056] The suspension assembly includes a plurality of fixing frames 4 for placing ultrasonic probes, and the fixing frames 4 are all fixedly connected to the side walls of the box body 1 by bolts.

[0057] like Figure 2 As shown, the winding assembly includes a moving frame 23 and a support plate 14, the support plate 14 is bolted fixedly connected to the inner wall of the box body 1, and a second driving member is bolted fixedly connected to the support plate 14. In this embodiment, the second driving member is selected as a second driving motor 16, and the controller is used to control the operation of the second driving motor 16. The output shaft of the second driving motor 16 is coaxially bolted and fixedly connected with a rotating shaft, and a first bevel gear 19 is provided at one end of the rotating shaft away from the second driving motor 16. The rotating shaft passes through the first bevel gear 19 and slides with the first bevel gear 19, and the first bevel gear 19 is meshed with a second bevel gear 20; the first bevel gear 19 is rotatably connected to the top of the moving frame 23.

[0058] The first transmission rod 21 is rotatably connected to the moving frame 23 . The top of the first transmission rod 21 passes through the moving frame 23 and is fixedly connected to the second bevel gear 20 by bolts. A winding roller 22 for winding the ultrasonic probe line is connected to the outer shell of the first transmission rod 21 .

[0059] The moving frame 23 is slidably matched with the inner bottom wall of the box body 1 , and a moving component for adjusting the position of the moving frame 23 is provided between the moving frame 23 and the supporting plate 14 .

[0060] The moving assembly includes a plurality of T-shaped plates 15 , which are all welded to the side of the support plate 14 close to the moving frame 23 . A third bevel gear 17 is bolted and fixedly connected to the rotating shaft, and the third bevel gear 17 is meshed with a fourth bevel gear 18 .

[0061] A second transmission rod 26 is rotatably connected between adjacent T-shaped plates 15 , and a top of the second transmission rod 26 passes through the adjacent T-shaped plates 15 and is fixedly connected to the fourth bevel gear 18 by bolts.

[0062] A cam 28 is fixedly connected with a bolt in the middle of the second transmission rod 26 , and a pulley 27 is rotatably connected to a side of the moving frame 23 close to the second transmission rod 26 , and the cam 28 and the pulley 27 are in contact with each other.

[0063] Combination Figure 3 As shown, one end of the T-shaped plate 15 close to the moving frame 23 is bolted and fixedly connected with a sliding rod 25 , and one end of the sliding rod 25 away from the T-shaped plate 15 extends into the moving frame 23 and slidably cooperates with the moving frame 23 .

[0064] The T-shaped plate 15 is provided with a reset component for resetting the moving frame 23 and a pressure component for monitoring the pressure on the ultrasonic probe line.

[0065] like Figure 2As shown, the reset assembly includes a plurality of second springs 24 , one end of each second spring 24 is fixedly connected to the adjacent T-shaped plate 15 by screws, and the other end of each second spring 24 is fixedly connected to the side wall of the moving frame 23 by screws.

[0066] like Figure 1 As shown, the pressure assembly includes a plurality of line blocking blocks 32, which are all screw-fixedly connected to the top of the fixing frame 4, and the surfaces of the line blocking blocks 32 are all screw-fixedly connected to pressure sensors 33, and the controller is used to receive the pressure data monitored by the pressure sensors 33.

[0067] The specific implementation process is as follows: first, the medical staff needs to select a suitable position in the ultrasound examination room to fix the fixing plate 10, and then the medical staff can open the top cover 2, insert the ultrasound probe line from the line inlet 3, wind it on the winding roller 22, and then pass it out from the line outlet.

[0068] Afterwards, the medical staff can place the ultrasound probe on the fixing frame 4 and then hang the ultrasound probe for storage.

[0069] by Figure 1 and Figure 3 For example, when medical staff need to use an ultrasonic probe, they can control the first drive motor 30 to start through the controller, and use the first drive motor 30 to drive the connecting rod 8 to rotate. As the connecting rod 8 rotates, the adjustment plate 5 will change position with the rotation of the connecting rod 8. At the same time, since the second sprocket 12 is fixedly connected to the first base 9, the first sprocket 29 is fixedly connected to the adjustment plate 5. When the connecting rod 8 rotates, the second sprocket 12 is always fixed. Since the first sprocket 29 is hinged to the connecting rod 8, driven by the chain 13, the first sprocket 29 will move with the rotation of the connecting rod 8. At this time, the adjustment plate 5 will continuously adjust its angle with the movement of the first sprocket 29. Under the tension of the chain 13, the adjustment plate 5 can always be in a vertical state.

[0070] By adjusting the position of the adjustment plate 5, the medical staff can freely adjust the position of the ultrasonic probe. When the medical staff uses the ultrasonic probe, the ultrasonic probe can be adjusted to the vicinity of the medical staff's palm, so as to facilitate the medical staff's use. When the medical staff stops using the ultrasonic probe, the adjustment plate 5 can be moved to the top by the first drive motor 30. At this time, the floor space of the device will be greatly reduced, thereby increasing the activity space of the medical staff. And because the adjustment plate 5 will always be in a vertical state under the rotation of the first sprocket 29 and the tension of the chain 13, when the medical staff adjusts the position of the ultrasonic probe, the movement of the ultrasonic probe can be made more stable.

[0071] by Figure 2For example, when the medical staff completes the adjustment of the position of the adjustment plate 5, the medical staff can control the second drive motor 16 to start through the controller, and use the rotation of the second drive motor 16 to drive the first bevel gear 19 to rotate. Since the first bevel gear 19 is meshed with the second bevel gear 20, the second bevel gear 20 will rotate. When the second bevel gear 20 rotates, the second bevel gear 20 will drive the first transmission rod 21 to rotate. At this time, the winding roller 22 mounted on the first transmission rod 21 will start to rotate, releasing the ultrasound probe line. At this time, the medical staff can pick up the ultrasound probe from the fixing frame 4 to perform ultrasound detection on the patient.

[0072] When the medical staff completes the ultrasonic examination of the patient, the ultrasonic probe can be put back on the fixed frame 4. At this time, the medical staff can control the second drive motor 16 to reverse through the controller, and use the reverse rotation of the second drive motor 16 to drive the first transmission rod 21 to rotate in the reverse direction, and re-wind the ultrasonic probe line on the winding roller 22.

[0073] While the ultrasound probe line is wound around the winding roller 22, the rotation of the second drive motor 16 will drive the third bevel gear 17 to rotate, and the rotation of the third bevel gear 17 will drive the fourth bevel gear 18 to rotate. The rotation of the fourth bevel gear 18 will drive the second transmission rod 26 to rotate. When the second transmission rod 26 rotates, the cam 28 will push the pulley 27 to move to the left. At this time, the movable frame 23 will also move to the left as the pulley 27 moves to the left. When the movable frame 23 moves out of the rotation range of the cam 28, the first spring 6 will pull the movable frame 23 to return to its initial position, and then the cam 28 can push the movable frame 23 to move again.

[0074] With the continuous rotation of the cam 28 and the pulling of the first spring 6 , the movable frame 23 will continuously reciprocate in the box body 1 . With the reciprocating motion of the movable frame 23 , the winding roller 22 will also move with the movement of the movable frame 23 .

[0075] At this time, in the process of the winding roller 22 winding the ultrasonic probe wire, when the winding roller 22 moves to the right, the ultrasonic probe wire will be tightened accordingly, and when the winding roller 22 moves to the left, the ultrasonic probe wire will be loosened accordingly.

[0076] Combination Figure 1As shown, the pressure sensor 33 can monitor in real time the pressure on the ultrasound probe line during the tightening and loosening process. The medical staff can preset the tightening threshold of the ultrasound probe line in the controller. When the pressure sensor 33 detects that the pressure on the ultrasound probe line during the tightening process exceeds the preset tightening threshold, it means that the ultrasound probe line has been completely tightened. At this time, the controller will control the second drive motor 16 to stop rotating. Then the medical staff can control the first drive motor 30 to start through the controller, and use the first drive motor 30 to drive the connecting rod 8 to rotate, so as to complete the suspension and storage of the ultrasound probe.

[0077] By monitoring the pressure on the ultrasonic detection line, the safety of the ultrasonic probe line during use can be ensured, and the breakage of the ultrasonic probe line caused by excessive tension on the ultrasonic probe line can be reduced, thereby improving the accuracy and safety of the ultrasonic probe during use.

[0078] Embodiment 2:

[0079] like Figure 1 As shown, the difference from the above embodiment is that the fixing plate 10 is symmetrically fixedly connected to the second base 11 on one side close to the first base 9 , and the pull rod 7 is rotatably connected inside the second base 11 .

[0080] The connecting rods 8 are all L-shaped, and one end of the pull rod 7 away from the second base 11 is fixedly connected to the first spring 6, and the other end of the first spring 6 is fixedly connected to the vertical end of the connecting rod 8 adjacent thereto.

[0081] The specific implementation process is as follows: when the connecting rod 8 rotates, a stable supporting structure can be formed by arranging the pull rod 7 in the second base 11 and arranging the first spring 6 between the pull rod 7 and the connecting rod 8. This design can enhance stability. When the adjustment plate 5 moves under the rotation of the connecting rod 8, the first spring 6 can play a role of buffering and shock absorption, thereby improving the stability of the adjustment plate 5 when moving.

[0082] Embodiment 3:

[0083] The difference from the above embodiment is that the surface of the winding roller 22 is engraved with anti-slip patterns.

[0084] The specific implementation process is as follows: when the winding roller 22 winds the ultrasonic probe wire, the anti-slip texture can significantly increase the friction between the winding roller 22 and the ultrasonic probe wire, thereby reducing the occurrence of the ultrasonic probe wire falling off during the winding process and improving the tightness and stability of the ultrasonic probe wire during the winding process.

[0085] Embodiment 4:

[0086] The difference from the above embodiment is that an observation window is provided on the side wall of the box body 1 .

[0087] The specific implementation process is as follows: when the medical staff releases the ultrasound probe line and stores the ultrasound probe line, the medical staff can observe the working status of the winding roller 22 through the observation window. At the same time, the medical staff can also observe the moving status of the movable frame 23 through the observation window. When the movable frame 23 and the winding roller 22 are operating abnormally, the medical staff can promptly discover and deal with these abnormal situations.

[0088] Embodiment 5:

[0089] like Figure 1 As shown, the difference from the above embodiment is that a disinfection lamp 31 is fixedly connected to the side wall of the box body 1, the ultrasonic probes are all located within the disinfection range of the disinfection lamp 31, and the controller is used to control the operation of the disinfection lamp 31.

[0090] The specific implementation process is as follows: the disinfection lamp 31 can emit ultraviolet rays of a specific wavelength, which can destroy the DNA or RNA structure of microorganisms such as bacteria and viruses, thereby achieving the purpose of sterilization and disinfection. When the medical staff completes the ultrasound examination of the patient and places the ultrasound probe on the fixing frame 4, the staff can turn on the disinfection lamp 31 through the controller and use the disinfection lamp 31 to disinfect the ultrasound probe on the fixing frame 4, thereby reducing the risk of cross infection.

[0091] Obviously, the above embodiments are merely examples for the purpose of clear explanation, and are not intended to limit the implementation methods. For those skilled in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation methods here. The obvious changes or modifications derived therefrom are still within the scope of protection of the invention.

Claims

1. An ultrasound probe suspension device for ultrasound department, comprising a box (1), a top cover (2) detachably connected to the top of the box (1), a wire inlet (3) on one side of the box (1), and a wire outlet on the bottom of the box (1), characterized in that: A controller is fixedly connected to the surface of the box (1); The surface of the box (1) is provided with a suspension component for suspending the ultrasonic probe and an adjustment component for adjusting the position of the box (1); A winding assembly for winding an ultrasonic probe wire is provided in the box (1); The adjustment assembly comprises an adjustment plate (5) and a fixing plate (10) for fixing in contact with a wall surface; the adjustment plate (5) is fixedly connected to a side wall of the box body (1); a first sprocket (29) is fixedly connected to the side of the adjustment plate (5) away from the box body (1); and connecting rods (8) are hinged on both sides of the first sprocket (29); A first base (9) is fixedly connected to the fixed plate (10); one end of the connecting rod (8) away from the first sprocket (29) is hinged to the first base (9); a second sprocket (12) is fixedly connected inside the first base (9); and a chain (13) is meshed between the first sprocket (29) and the second sprocket (12); A first driving member is fixedly connected to one side of the fixed plate (10) close to the first base (9); a controller is used to control the operation of the first driving member; and an output shaft of the first driving member is fixedly connected to a side wall of a connecting rod (8) adjacent thereto.

2. The ultrasonic probe suspension device for ultrasound department according to claim 1, characterized in that: The fixing plate (10) is symmetrically fixedly connected to a second base (11) on one side close to the first base (9), and a pull rod (7) is rotatably connected inside the second base (11); The connecting rods (8) are all L-shaped, and one end of the pull rod (7) away from the second base (11) is fixedly connected to the first spring (6), and the other end of the first spring (6) is fixedly connected to the vertical end of the connecting rod (8) adjacent to it.

3. The ultrasonic probe suspension device for ultrasound department according to claim 2, characterized in that: The suspension assembly comprises a plurality of fixing frames (4) for placing ultrasonic probes, and the fixing frames (4) are all fixedly connected to the side walls of the box body (1).

4. The ultrasonic probe suspension device for ultrasound department according to claim 3, characterized in that: The winding assembly comprises a moving frame (23) and a supporting plate (14), wherein the supporting plate (14) is fixedly connected to the inner wall of the box body (1), a second driving member is fixedly connected to the supporting plate (14), a controller is used to control the operation of the second driving member, an output shaft of the second driving member is coaxially fixedly connected to a rotating shaft, an end of the rotating shaft away from the second driving member is provided with a first bevel gear (19), the rotating shaft passes through the first bevel gear (19) and is slidably matched with the first bevel gear (19), and the first bevel gear (19) is meshed with a second bevel gear (20); the first bevel gear (19) is rotatably connected to the top of the moving frame (23); A first transmission rod (21) is rotatably connected to the movable frame (23); the top of the first transmission rod (21) passes through the movable frame (23) and is fixedly connected to the second bevel gear (20); a winding roller (22) for winding an ultrasonic probe line is fixedly connected to the outer surface of the first transmission rod (21); The movable frame (23) is slidably matched with the inner bottom wall of the box body (1), and a movable component for adjusting the position of the movable frame (23) is provided between the movable frame (23) and the support plate (14).

5. The ultrasonic probe suspension device for ultrasound department according to claim 4, characterized in that: The moving assembly comprises a plurality of T-shaped plates (15), each of the T-shaped plates (15) being fixedly connected to a side of the support plate (14) close to the moving frame (23), and a third bevel gear (17) being fixedly connected to the rotating shaft, and the third bevel gear (17) being meshed with a fourth bevel gear (18); A second transmission rod (26) is rotatably connected between adjacent T-shaped plates (15), and the top of the second transmission rod (26) passes through the adjacent T-shaped plate (15) and is fixedly connected to the fourth bevel gear (18); A cam (28) is fixedly connected to the middle of the second transmission rod (26), and a pulley (27) is rotatably connected to one side of the moving frame (23) close to the second transmission rod (26), and the cam (28) and the pulley (27) are in contact with each other; One end of the T-shaped plate (15) close to the moving frame (23) is fixedly connected to a sliding rod (25), and one end of the sliding rod (25) away from the T-shaped plate (15) extends into the moving frame (23) and slides with the moving frame (23); The T-shaped plate (15) is provided with a reset component for resetting the movable frame (23) and a pressure component for monitoring the pressure exerted on the ultrasonic probe line.

6. The ultrasonic probe suspension device for ultrasound department according to claim 5, characterized in that: The reset assembly comprises a plurality of second springs (24), one end of each second spring (24) is fixedly connected to the adjacent T-shaped plate (15), and the other end of each second spring (24) is fixedly connected to the side wall of the movable frame (23).

7. The ultrasonic probe suspension device for ultrasound department according to claim 6, characterized in that: The pressure assembly comprises a plurality of line blocking blocks (32), each of which is fixedly connected to the top of a fixing frame (4), and each of which is fixedly connected to a pressure sensor (33) on its surface, and the controller is used to receive pressure data monitored by the pressure sensor (33).

8. The ultrasonic probe suspension device for ultrasound department according to claim 7, characterized in that: The surface of the winding roller (22) is engraved with anti-skid patterns.

9. The ultrasonic probe suspension device for ultrasound department according to claim 8, characterized in that: The side wall of the box body (1) is provided with an observation window.

10. The ultrasonic probe suspension device for ultrasound department according to claim 9, characterized in that: A disinfection lamp (31) is fixedly connected to the side wall of the box body (1), and the ultrasonic probes are all located within the disinfection range of the disinfection lamp (31). The controller is used to control the operation of the disinfection lamp (31).