A surgical nursing dressing device
By designing an automated surgical nursing bandaging device, the problems of low efficiency and difficult to guarantee the quality of traditional surgical nursing bandaging are solved, and efficient, accurate and safe wound bandaging is achieved, meeting the efficient needs of modern medical care.
Patent Information
- Application Number
- CN202411855019.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2044-12-17
AI Technical Summary
Traditional surgical nursing bandaging methods are inefficient, difficult to guarantee quality, time-consuming and relying on manual operations, making it difficult to meet the needs of efficient and high standards of modern medical care, especially in batches of wounded patients or busy departments, which are likely to delay the golden treatment opportunity.
A surgical care bandaging device is designed, including automatic bandage wrapping assembly, camera assembly, disinfection assembly and support assembly. Through the controller, the work of each component is coordinated to achieve automated and precise wound bandaging. The device includes bandage storage tank, dressing storage tank, longitudinal and transverse electric push rods, drive motors, high-definition cameras, disinfection sprays, etc., and combines deep learning algorithms to generate intelligent identification and bandaging strategies.
It significantly improves bandage efficiency, shortens treatment time, improves bandage accuracy and safety, reduces infection risk, and improves the utilization efficiency of medical resources and patient rehabilitation process.
Smart Images

Figure CN119655958B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and particularly relates to a surgical nursing dressing device. Background Art
[0002] In today's complex surgical nursing field where the timeliness of treatment is highly demanded, the wound dressing link, as a key node, its efficiency and accuracy directly affect the treatment process and recovery prognosis of patients. However, the traditional surgical nursing dressing methods are deeply trapped in the dual dilemmas of efficiency and quality, and it is difficult to meet the requirements of the fast-paced and high-standard modern medical care.
[0003] Traditional dressing almost stubbornly relies on manual operations by medical staff, and the process is extremely cumbersome and complex. At the beginning of the operation, medical staff need to carefully select basic materials such as gauze, bandages, and tapes from a wide variety of consumable reserves during the busy nursing work, and match the wound characteristics with rich experience. If there is a slight mistake and the selected material specifications do not match, there will be numerous hidden dangers in the subsequent dressing.
[0004] Selecting the material is just the first step of the arduous journey. The process of cutting gauze can be described as delicate "sculpting". Facing various strange wound shapes - such as lacerations as narrow as canyons, contusions as irregular as jigsaw puzzle pieces, or burn wounds as large as lakes, medical staff must concentrate, manipulate scissors as if holding a scalpel, and carefully cut out gauze pieces with exacting dimensions. One more point will be bulky and affect limb movement, and one less point will not fully protect the wound. When folding the gauze, the fingertips need to be flexible to shape it into a form that fits every concavity and convexity of the wound. If there is a slight mistake and the wound is touched, the patient will suffer severe pain. Even worse, it may trigger a chain reaction and increase the risk of infection, making the previous debridement efforts in vain. When using tape to fix it, the pasting angle and stretching strength are as thrilling as walking on a tightrope. A deviation in the angle is likely to cause the tape to curl and fall off, and uneven strength cannot stabilize the dressing. The whole process is like a difficult long-term battle, exhausting the physical and mental strength of medical staff.
[0005] Such traditional manual bandaging operations are as time-consuming as a snail's crawl on average. Compared with the ideal state of efficient bandaging, the time taken is almost 2 to 3 times longer. At critical nodes in time-sensitive surgical treatments, such as when a sudden car accident trauma causes a large number of injured patients to flood into the emergency room and the injured urgently need to be bandaged to stop bleeding and then pushed into the operating room; or at the scene of a large-scale disaster rescue where there is a continuous stream of injured patients waiting to be treated; or in the case of continuous emergency surgeries and the postoperative wounds urgently need to be bandaged and transferred to the ward. The slowness of the traditional bandaging method is like a sluggish train, extremely likely to mercilessly delay the precious golden treatment time of patients, making the chance of survival quietly fade away as time passes by. Long-term high-intensity manual labor is like a heavy yoke, causing the energy and physical strength of medical staff to quickly drain away like sand in an hourglass. Under the shadow of fatigue, the bandaging quality fluctuates. The differences in techniques among different personnel are like the different brushstrokes of different painters, making it difficult to ensure the standardized treatment effect. The progress of wound healing sways accordingly, and the hidden danger of infection follows like a shadow, just like the Sword of Damocles hanging over the patient's head, urgently calling for an innovative bandaging device to turn the tide and reshape the efficient new situation of surgical nursing. Summary of the Invention
[0006] To solve the above problems, especially the deficiencies existing in the prior art, the present invention provides a surgical nursing bandaging device that can solve the above problems.
[0007] To achieve the above object, the present invention adopts the following technical means:
[0008] A surgical nursing bandaging device includes a workbench. On the longitudinal side of the workbench, a control box and a control screen are inlaid and connected. Inside the control box, a controller and a power supply module are connected. On the transverse side of the workbench, a bandage storage groove and a dressing storage groove are provided. Inside the bandage storage groove and the dressing storage groove, multiple groups of accommodation and storage components are connected. On the top of the workbench, an automatic bandage winding component is slidably connected. On the top of the workbench, a camera component, a disinfection component, and a support component corresponding to the automatic bandage winding component are connected;
[0009] The automatic bandage winding component includes a longitudinal moving platform slidably connected to the workbench longitudinally. On one side of the longitudinal moving platform, a longitudinal electric push rod fixedly connected to the workbench is connected. On the top of the longitudinal moving platform, an installation frame is slidably connected transversely. On one side of the installation frame, a transverse electric push rod fixedly connected to the longitudinal moving platform is connected. On one side of the installation frame, a rotating ring is connected through a guide wheel, and the rotating ring is slidably connected to the guide wheel. On the top of the installation frame, a driving motor is connected. The transmission end of the driving motor is connected with a driving wheel, and the driving wheel is in transmission connection with the rotating ring through a driven wheel. On the side of the rotating ring away from the installation frame, a bandage roll socket shell component for carrying the bandage roll is connected. On both sides of the installation frame, disinfection and sterilization lamps are connected;
[0010] The camera assembly includes camera brackets distributed on both sides of the longitudinal moving platform. The top of the camera brackets is connected with a camera support plate, and the camera support plate is connected with a camera corresponding to the mounting frame.
[0011] The disinfection assembly includes a positioning tube connected to the workbench. The top of the positioning tube is rotatably connected with a support tube, the top of the support tube is connected with an inlaid groove body, and a disinfection spray is inserted into the inlaid groove body.
[0012] The support assembly includes a lateral displacement slider that is horizontally slidably connected to the workbench and corresponds to the mounting frame. One side of the lateral displacement slider is connected with a lateral displacement electric push rod fixedly connected to the workbench. The top of the lateral displacement slider is connected with a vertical electric push rod. The pushing end of the vertical electric push rod is connected with a support frame. The top of the support frame is longitudinally slidably connected with a bearing plate. One side of the bearing plate is connected with a longitudinal displacement electric push rod fixedly connected to the support frame. Multiple groups of disposable pads distributed up and down are connected to the top of the bearing plate through guiding and positioning rods.
[0013] The accommodation and storage assembly includes an accommodation storage box, and one side of the accommodation storage box is connected with an outward movement electric push rod fixedly connected to the workbench.
[0014] The control screen, longitudinal electric push rod, lateral electric push rod, drive motor, disinfection and sterilization lamp, camera, lateral displacement electric push rod, vertical electric push rod, longitudinal displacement electric push rod, outward movement electric push rod, and controller are respectively connected to an external power supply through a power module. The control screen, longitudinal electric push rod, lateral electric push rod, drive motor, disinfection and sterilization lamp, camera, lateral displacement electric push rod, vertical electric push rod, longitudinal displacement electric push rod, and outward movement electric push rod are respectively electrically connected to the controller.
[0015] A further solution of the present invention is that pulleys are respectively connected to the corners at the bottom of the workbench.
[0016] A further solution of the present invention is that handles are respectively connected to the lateral sides of the workbench.
[0017] A further solution of the present invention is that a drawer is inserted into one longitudinal side of the workbench.
[0018] A further solution of the present invention is that a storage box assembly is connected to one lateral side of the workbench. The storage box assembly includes a slot body connected to the workbench. A storage box is provided on the side of the slot body away from the workbench, and the storage box is movably inserted into the slot body through an insertion block.
[0019] A further solution of the present invention is that a control switch adjacent to the control panel is connected to one longitudinal side of the workbench, and the longitudinal electric push rod, transverse electric push rod, drive motor, disinfection and sterilization lamp, transverse displacement electric push rod, vertical electric push rod, longitudinal displacement electric push rod, and outward movement electric push rod are respectively connected to the control switch, and the control switch and power module are respectively connected to an external power supply through a power plug.
[0020] A further solution of the present invention is that a longitudinal electric push rod protective cover connected to the workbench is provided on the outer side of the longitudinal electric push rod, a transverse electric push rod protective cover connected to the longitudinal moving platform is provided on the outer side of the transverse electric push rod, a driven wheel protective cover connected to the mounting frame is provided on the outer side of the driven wheel and the driving wheel, the driven wheel is connected to the mounting frame via a driven wheel mounting frame, and a transverse displacement electric push rod protective cover connected to the workbench is provided on the outer side of the transverse displacement electric push rod.
[0021] A further solution of the present invention is that the bandage roll sleeve shell assembly is a transparent product, and the bandage roll sleeve shell assembly includes a reel, a bandage opening is opened on the side of the reel, a fixed plug rod is connected inside the reel, a sealing top cover is threadedly connected to the opening of the reel and is in contact with the fixed plug rod, and an external protruding rod is connected to the side of the sealing top cover away from the reel.
[0022] A further solution of the present invention is that a clamping ring is connected in the embedding groove body, the disinfecting spray is movably connected to the embedding groove body through the clamping ring, a socket base is socketed at the bottom of the disinfecting spray, and the socket base is connected to the embedding groove body through an elastic rope.
[0023] A further solution of the present invention is that a plurality of groups of evenly distributed partition plates are connected to the storage box.
[0024] Beneficial effects of the present invention:
[0025] 1. The bandaging work efficiency of the present invention is high. Compared with the traditional bandaging, the automated process of the present device reduces the time of a single bandaging from 15-20 minutes to 3-5 minutes, and the efficiency is increased by more than 70%. In the treatment of batches of wounded or busy departments, the treatment cycle is greatly shortened, critical time is saved for subsequent treatment, and the allocation of medical resources is optimized.
[0026] 2. The bandage of the present invention is highly accurate. Precise positioning and constant tension bandage output, combined with intelligent image monitoring, ensure that the bandage fitting accuracy error is at the millimeter level, the dressing is firmly fixed without deviation, the wound healing environment is stable, the complication rate is reduced by more than 60%, and the patient's recovery process is significantly accelerated.
[0027] 3. The present invention effectively reduces the difficulty of bandaging. The deep learning algorithm realizes intelligent wound identification and automatic generation of bandaging strategies, which reduces the reliance on experience of medical staff and allows novices to quickly get started.
[0028] 4. The present invention has high safety. Disinfection runs through the whole process. The disinfection lamp and the disinfection spray work together, and the risk of cross-infection is almost zero. The replacement and use of disposable linings comprehensively protect the safety of patients and strengthen the control of medical quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 is a schematic structural diagram of the present invention;
[0030] Figure 2 is an exploded schematic structural diagram of the present invention;
[0031] Figure 3 is a schematic structural diagram of the storage box assembly of the present invention;
[0032] Figure 4 is a schematic structural diagram of the automatic bandage winding assembly of the present invention
[0033] Figure 5 is a side view of the driven wheel of the present invention;
[0034] Figure 6 is a schematic structural diagram of the bandage roll socket assembly of the present invention;
[0035] Figure 7 is a schematic structural diagram of the camera assembly of the present invention;
[0036] Figure 8 is a schematic structural diagram of the disinfection assembly of the present invention;
[0037] Figure 9 is a schematic structural diagram of the support assembly of the present invention;
[0038] Figure 10 is a schematic structural diagram of the accommodation and storage assembly of the present invention
[0039] Reference numerals:
[0040] Workbench 1, pulley 2, control box 3, power plug 4, drawer 5, control panel 6, storage box assembly 7, control switch 8, automatic bandage winding assembly 9, camera assembly 10, disinfection assembly 11, support assembly 12, handle 13, accommodation and storage assembly 14, bandage storage groove 15, dressing storage groove 16, controller 17, power module 18, storage box 701, insertion block 702, slot body 703, longitudinal moving platform 901, mounting bracket 902, disinfection and sterilization lamp 903, longitudinal electric push rod 904, longitudinal electric push rod protective cover 905, transverse electric push rod 906, transverse electric push rod protective cover 907, rotating ring 908, guide wheel 909, driven wheel 910, driven wheel mounting bracket 911, driving motor 912, driving wheel 913, driving wheel protective cover 914, bandage roll socket shell assembly 915, winding drum 9151, bandage opening 9152, fixed insertion rod 9153, sealing top cover 9154, outward protruding rod 9155, camera support 1001, camera support plate 1002, camera 1003, positioning tube 1101, support tube 1102, inlaid groove body 1103, snap ring 1104, disinfection spray 1105, socket base 1106, elastic cord 1107, transverse displacement electric push rod protective cover 1201, transverse displacement electric push rod 1202, transverse displacement slider 1203, vertical electric push rod 1204, support frame 1205, longitudinal displacement electric push rod 1206, bearing plate 1207, guiding and positioning rod 1208, disposable bedding 1209, accommodation and storage box 1401, partition plate 1402, outward moving electric push rod 1403. Detailed implementation mode
[0041] The technical solutions of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0042] Embodiment 1
[0043] As Figures 1-10 shown, a surgical nursing dressing device includes a workbench 1, a control box 3 and a control panel 6 are inlaid and connected to the longitudinal side of the workbench 1. A controller 17 and a power module 18 are connected in the control box 3. A bandage storage groove 15 and a dressing storage groove 16 are opened on the transverse side of the workbench 1. Multiple groups of accommodation and storage assemblies 14 are connected in both the bandage storage groove 15 and the dressing storage groove 16. An automatic bandage winding assembly 9 is slidably connected to the top of the workbench 1. A camera assembly 10, a disinfection assembly 11 and a support assembly 12 corresponding to the automatic bandage winding assembly 9 are connected to the top of the workbench 1;
[0044] The automatic bandage winding assembly 9 includes a longitudinal moving platform 901 that is longitudinally slidably connected to the workbench 1. One side of the longitudinal moving platform 901 is connected to a longitudinal electric push rod 904 that is fixedly connected to the workbench 1. The top of the longitudinal moving platform 901 is horizontally slidably connected to a mounting frame 902. One side of the mounting frame 902 is connected to a transverse electric push rod 906 that is fixedly connected to the longitudinal moving platform 901. One side of the mounting frame 902 is connected to a rotating ring 908 through a guide wheel 909, and the rotating ring 908 is slidably connected to the guide wheel 909. The top of the mounting frame 902 is connected to a driving motor 912, and the transmission end of the driving motor 912 is connected to a driving wheel 913. The driving wheel 913 is drivingly connected to the rotating ring 908 through a driven wheel 910. The side of the rotating ring 908 away from the mounting frame 902 is connected to a bandage roll socket assembly 915 for carrying a bandage roll. Both sides of the mounting frame 902 are connected to disinfection and sterilization lamps 903;
[0045] The camera assembly 10 includes camera supports 1001 distributed on both sides of the longitudinal moving platform 901. The top of the camera support 1001 is connected to a camera support plate 1002, and the camera support plate 1002 is connected to a camera 1003 corresponding to the mounting frame 902;
[0046] The disinfection assembly 11 includes a positioning tube 1101 connected to the workbench 1. The top of the positioning tube 1101 is rotatably connected to a support tube 1102. The top of the support tube 1102 is connected to an inlay groove body 1103, and a disinfection spray 1105 is inserted into the inlay groove body 1103;
[0047] The support assembly 12 includes a transverse displacement slider 1203 that is horizontally slidably connected to the workbench 1 and corresponds to the mounting frame 902. One side of the transverse displacement slider 1203 is connected to a transverse displacement electric push rod 1202 that is fixedly connected to the workbench 1. The top of the transverse displacement slider 1203 is connected to a vertical electric push rod 1204. The pushing end of the vertical electric push rod 1204 is connected to a support frame 1205. The top of the support frame 1205 is longitudinally slidably connected to a bearing plate 1207. One side of the bearing plate 1207 is connected to a longitudinal displacement electric push rod 1206 that is fixedly connected to the support frame 1205. The top of the bearing plate 1207 is connected to a plurality of disposable pads 1209 distributed up and down through a guide positioning rod 1208;
[0048] The accommodation and storage assembly 14 includes an accommodation and storage box 1401. One side of the accommodation and storage box 1401 is connected to an outward movement electric push rod 1403 that is fixedly connected to the workbench 1;
[0049] The control panel 6, longitudinal electric push rod 904, transverse electric push rod 906, drive motor 912, disinfection and sterilization lamp 903, camera 1003, transverse displacement electric push rod 1202, vertical electric push rod 1204, longitudinal displacement electric push rod 1206, outward movement electric push rod 1403, and controller 17 are respectively connected to an external power supply through the power module 18. The control panel 6, longitudinal electric push rod 904, transverse electric push rod 906, drive motor 912, disinfection and sterilization lamp 903, camera 1003, transverse displacement electric push rod 1202, vertical electric push rod 1204, longitudinal displacement electric push rod 1206, and outward movement electric push rod 1403 are respectively electrically connected to the controller 17.
[0050] Overall operation principle
[0051] The device coordinates the work of each component through the controller 17 to achieve efficient and precise wound dressing operations. The controller 17 receives command inputs from the control panel 6 or analyzes and processes the wound image information obtained by the camera component 10, and then controls the automatic bandage winding component 9, support component 12, etc. to work together according to preset programs and algorithms. The power module 18 provides a stable power supply for the entire device to ensure the normal operation of each component during the working process.
[0052] Working principle of bandage and dressing storage and transportation
[0053] 1. Bandage storage and transportation
[0054] Storage tank and pushing mechanism
[0055] Multiple groups of accommodation and storage components 14 in the bandage storage tank 15 can store bandage rolls of different specifications, and multiple groups of accommodation and storage components 14 in the dressing storage tank 16 can store different types of dressings. When a certain specification of bandage or a certain type of dressing is needed, the controller 17 sends a command to the corresponding outward movement electric push rod 1403 in the storage tank, and the outward movement electric push rod 1403 pushes the accommodation storage box 1401 outward to push the selected bandage roll or dressing to the outside for the staff to use.
[0056] 2. Bandage roll socket shell and output control
[0057] The bandage roll socket shell component 915 in the automatic bandage winding component 9 fixes the bandage roll. After the drive motor 912 at the top of the mounting frame 902 is started, it drives the rotating ring 908 to rotate through the driving wheel 913, driven wheel 910, and transmission belt, so that the bandage roll socket shell component 915 rotates accordingly to realize the output of the bandage.
[0058] By controlling the rotational speed of the drive motor 912, the controller 17 can precisely adjust the output speed of the bandage, with the speed range between 5 - 15 cm / s, and can maintain a constant tension, with the error controlled within ±3 g / cm. This is because the controller 17 continuously adjusts the torque of the motor according to the pre-set parameters and the real-time monitored data to adapt to different dressing requirements and the actual output situation of the bandage.
[0059] Working principle of the automatic bandage winding assembly 9
[0060] 1. Two-dimensional positioning principle
[0061] Longitudinal positioning
[0062] The longitudinal moving platform 901 is longitudinally slidably connected to the workbench 1 through a high-precision linear guide rail. When the controller 17 receives the longitudinal coordinate information of the dressing position, it sends an instruction to the longitudinal electric push rod 904. The longitudinal electric push rod 904 drives the longitudinal moving platform 901 to move longitudinally along the linear guide rail according to the instruction, and its stroke can reach 50 - 70 cm, so as to quickly position the automatic bandage winding assembly 9 to the approximate longitudinal position of the wound.
[0063] Transverse positioning
[0064] After the longitudinal moving platform 901 is positioned, the transverse electric push rod 906 starts to work. The transverse electric push rod 906 is installed on the longitudinal moving platform 901, and it drives the mounting bracket 902 to slide transversely on the top of the longitudinal moving platform 901, with a stroke of 40 - 60 cm. Through the coordinated work of the longitudinal and transverse electric push rods 906, the automatic bandage winding assembly 9 can achieve two-dimensional precise positioning in the plane to ensure that the bandage roll can accurately align with the wound position.
[0065] 2. Bandage winding action principle
[0066] Drive and rotation
[0067] After the drive motor 912 on the top of the mounting bracket 902 is started, it drives the rotating ring 908 to rotate at a constant speed through the driving wheel 913, the driven wheel 910 and the transmission belt. The bandage roll socket assembly 915 on the outer side of the rotating ring 908 rotates accordingly, so that the bandage roll can output the bandage evenly. During the winding process, the rotational speed and direction of the drive motor 912 are controlled by the controller 17 according to the pre-set dressing mode (such as spiral dressing, circular dressing, etc.) and the real-time monitored wound situation.
[0068] Movement and winding synchronization
[0069] With the output of the bandage, the longitudinal and transverse electric push rods 906 will drive the mounting bracket 902 to move in the longitudinal and transverse directions according to the preset winding path and the real-time instructions of the controller 17. For example, during spiral bandaging, the mounting bracket 902 will slowly move longitudinally on the longitudinal moving platform 901, and at the same time, the transverse electric push rod 906 will also fine-tune the position of the mounting bracket 902 horizontally in a timely manner, so that the bandage can be wound tightly and evenly on the wound. During this process, the disinfection and sterilization lamps 903 on both sides of the mounting bracket 902 will also work according to the set time interval and power to disinfect and sterilize the bandage clamp and the surrounding area to prevent cross-infection.
[0070] Working principle of the camera assembly 10
[0071] Image acquisition
[0072] The high-definition camera 1003 in the camera assembly 10 uses a high-resolution CMOS sensor with a pixel count of over 10 million and is equipped with optical image stabilization and autofocus functions. The camera brackets 1001 and camera support plates 1002 distributed on both sides of the longitudinal moving platform 901 ensure that the camera 1003 can stably capture images of the wound from different angles. When the bandaging program is started or the wound needs to be observed, the camera 1003 starts working under the instruction of the controller 17 to capture the image information of the wound.
[0073] At the same time, the camera 1003 is also integrated with an infrared thermal imaging module, which can obtain the temperature distribution information of the wound. These image and thermal imaging data are transmitted to the controller 17 in real time through the data cable.
[0074] Image analysis and auxiliary decision-making
[0075] The deep learning image recognition algorithm built into the controller 17 analyzes the transmitted image data. The algorithm has been trained with a large number of wound image samples and can accurately identify the type (such as laceration, contusion, burn, etc.), size, location, and boundary of the wound, and can also judge whether there is inflammation in the wound through the thermal imaging information.
[0076] Based on these analysis results, the controller 17 automatically matches the optimal bandaging mode, including calculating parameters such as the winding path, number of layers, and tension of the bandage, and sending these parameters to the automatic bandage winding assembly 9 so that it can bandage according to precise requirements. During the bandaging process, the camera 1003 continuously monitors. Once it detects a situation such as the bandage shifting, the controller 17 will immediately adjust the parameters of the automatic bandage winding assembly 9 according to the image data to ensure the accuracy of the bandaging.
[0077] Working principle of the disinfection assembly 11
[0078] The positioning tube 1101 in the disinfection component 11 is firmly connected to the workbench 1, and the support tube 1102 can be rotated and adjusted 360 degrees at the top of the positioning tube 1101. The inlaid groove body 1103 can conveniently insert and remove the disinfection spray 1105. When it is necessary to disinfect the wound or the surrounding area, medical staff can directly take out the disinfection spray 1105 from the inlaid groove body 1103, aim the nozzle of the disinfection spray 1105 at the target area for spraying, so as to disinfect the wound and the surrounding area in all directions, kill germs, and create a sterile environment.
[0079] Working principle of the support component 12
[0080] Horizontal and vertical positioning
[0081] The horizontal displacement slider 1203 in the support component 12 is horizontally slidably connected to the workbench 1 through a horizontal guide rail. When it is necessary to support the wounded limb, the controller 17 sends an instruction to the horizontal displacement electric push rod 1202, and the horizontal displacement electric push rod 1202 pushes the horizontal displacement slider 1203 to move horizontally along the guide rail, and its stroke is 30 - 50 cm, so as to quickly position the support component 12 to the horizontal position of the wounded limb.
[0082] The vertical electric push rod 1204 is installed on the horizontal displacement slider 1203. After the horizontal positioning is completed, the vertical electric push rod 1204 pushes the support frame 1205 to lift and lower under the instruction of the controller 17, and its stroke is 20 - 40 cm, so that the support frame 1205 can adapt to the positions of wounded limbs at different heights.
[0083] Longitudinal positioning and laying placement
[0084] The bearing plate 1207 longitudinally slides on the top of the support frame 1205 through the longitudinal displacement electric push rod 1206, and the stroke is 15 - 30 cm. The controller 17 drives the longitudinal displacement electric push rod 1206 according to the longitudinal position information of the wounded limb, so that the bearing plate 1207 can accurately place the disposable padding 1209 under the wounded limb. The disposable padding 1209 is made of skin-friendly, antibacterial and degradable materials, providing a good microenvironment for wound healing. During the whole dressing process, the support component 12 can keep the limb stable and facilitate the dressing operation.
[0085] Embodiment 2
[0086] Such as Figures 1-10As shown in the figure, a surgical nursing dressing device includes a workbench 1. On the longitudinal side of the workbench 1, a control box 3 and a control screen 6 are inlaid and connected. Inside the control box 3, a controller 17 and a power module 18 are connected. On the transverse side of the workbench 1, a bandage storage groove 15 and a dressing storage groove 16 are provided. Inside the bandage storage groove 15 and the dressing storage groove 16, multiple sets of accommodation and storage components 14 are connected. On the top of the workbench 1, an automatic bandage winding component 9 is slidably connected. On the top of the workbench 1, a camera component 10, a disinfection component 11, and a support component 12 corresponding to the automatic bandage winding component 9 are connected;
[0087] The automatic bandage winding component 9 includes a longitudinal moving platform 901 slidably connected to the workbench 1 longitudinally. On one side of the longitudinal moving platform 901, a longitudinal electric push rod 904 fixedly connected to the workbench 1 is connected. On the top of the longitudinal moving platform 901, a mounting frame 902 is slidably connected transversely. On one side of the mounting frame 902, a transverse electric push rod 906 fixedly connected to the longitudinal moving platform 901 is connected. On one side of the mounting frame 902, a rotating ring 908 is connected through a guide wheel 909. The rotating ring 908 is slidably connected with the guide wheel 909. On the top of the mounting frame 902, a driving motor 912 is connected. The transmission end of the driving motor 912 is connected with a driving wheel 913. The driving wheel 913 is in transmission connection with the rotating ring 908 through a driven wheel 910. On the side of the rotating ring 908 away from the mounting frame 902, a bandage roll socket component 915 for carrying the bandage roll is connected. On both sides of the mounting frame 902, disinfection and sterilization lamps 903 are connected;
[0088] The camera component 10 includes camera supports 1001 distributed on both sides of the longitudinal moving platform 901. On the top of the camera supports 1001, a camera support plate 1002 is connected. The camera support plate 1002 is connected with a camera 1003 corresponding to the mounting frame 902;
[0089] The disinfection component 11 includes a positioning pipe 1101 connected to the workbench 1. On the top of the positioning pipe 1101, a support pipe 1102 is rotatably connected. On the top of the support pipe 1102, an inlaid groove body 1103 is connected. Inside the inlaid groove body 1103, a disinfection spray 1105 is inserted;
[0090] The support assembly 12 includes a lateral displacement slider 1203 that is slidably connected to the workbench 1 in the lateral direction and corresponds to the mounting bracket 902. One side of the lateral displacement slider 1203 is connected to a lateral displacement electric push rod 1202 that is fixedly connected to the workbench 1. The top of the lateral displacement slider 1203 is connected to a vertical electric push rod 1204. The pushing end of the vertical electric push rod 1204 is connected to a support frame 1205. The top of the support frame 1205 is slidably connected to a bearing plate 1207 in the longitudinal direction. One side of the bearing plate 1207 is connected to a longitudinal displacement electric push rod 1206 that is fixedly connected to the support frame 1205. The top of the bearing plate 1207 is connected with a plurality of groups of disposable mats 1209 distributed up and down through a guiding positioning rod 1208;
[0091] The accommodation and storage assembly 14 includes an accommodation and storage box 1401. One side of the accommodation and storage box 1401 is connected to an outward movement electric push rod 1403 that is fixedly connected to the workbench 1;
[0092] The control screen 6, the longitudinal electric push rod 904, the lateral electric push rod 906, the drive motor 912, the disinfection and sterilization lamp 903, the camera 1003, the lateral displacement electric push rod 1202, the vertical electric push rod 1204, the longitudinal displacement electric push rod 1206, the outward movement electric push rod 1403, and the controller 17 are respectively connected to an external power supply through a power module 18. The control screen 6, the longitudinal electric push rod 904, the lateral electric push rod 906, the drive motor 912, the disinfection and sterilization lamp 903, the camera 1003, the lateral displacement electric push rod 1202, the vertical electric push rod 1204, the longitudinal displacement electric push rod 1206, and the outward movement electric push rod 1403 are respectively electrically connected to the controller 17.
[0093] Pulleys 2 are respectively connected to the corners at the bottom of the workbench 1. This setting can facilitate the movement of the workbench 1 and can effectively improve the movement efficiency and use effect of the workbench 1.
[0094] Handles 13 are respectively connected to the lateral sides of the workbench 1. The handles 13 can facilitate the user to push the pulleys 2 and can effectively improve the work efficiency and work effect of the pulleys 2.
[0095] A drawer 5 is inserted into one longitudinal side of the workbench 1. The drawer 5 can facilitate the user to store spare items and can effectively improve the storage performance of the workbench 1.
[0096] A storage box assembly 7 is connected to the lateral side of the workbench 1. The storage box assembly 7 includes a slot body 703 connected to the workbench 1. A storage box 701 is provided on the side of the slot body 703 away from the workbench 1. The storage box 701 is movably inserted into the slot body 703 through an insertion block 702. The storage box assembly 7 can be used to store spare nursing supplies such as bandage rolls and disinfected cotton balls, facilitating the medical staff to access them at any time. The structural setting of the storage box assembly 7 can facilitate the disassembly and assembly of the storage box assembly 7 and the workbench 1, effectively improving the use efficiency and effect of the storage box assembly 7.
[0097] A control switch 8 adjacent to the control screen 6 is connected to the longitudinal side of the workbench 1. The longitudinal electric push rod 904, the transverse electric push rod 906, the drive motor 912, the disinfection lamp 903, the transverse displacement electric push rod 1202, the vertical electric push rod 1204, the longitudinal displacement electric push rod 1206, and the outward movement electric push rod 1403 are respectively connected to the control switch 8. The control switch 8 and the power supply module 18 are respectively connected to an external power supply through a power plug 4. This setting can facilitate the user to control each electrical structure manually, effectively increasing the control methods of the device and facilitating it to serve as an emergency means when the controller 17 fails.
[0098] Embodiment 3
[0099] As Figures 1-10 shown, a surgical nursing dressing device includes a workbench 1. A control box 3 and a control screen 6 are inlaid and connected to the longitudinal side of the workbench 1. A controller 17 and a power supply module 18 are connected inside the control box 3. A bandage storage groove 15 and a dressing storage groove 16 are provided on the lateral side of the workbench 1. Multiple sets of accommodation and storage components 14 are connected inside the bandage storage groove 15 and the dressing storage groove 16. An automatic bandage winding component 9 is slidably connected to the top of the workbench 1. A camera component 10, a disinfection component 11, and a support component 12 corresponding to the automatic bandage winding component 9 are connected to the top of the workbench 1;
[0100] The automatic bandage winding assembly 9 includes a longitudinal moving platform 901 that is longitudinally slidably connected to the workbench 1. One side of the longitudinal moving platform 901 is connected to a longitudinal electric push rod 904 that is fixedly connected to the workbench 1. The top of the longitudinal moving platform 901 is transversely slidably connected to a mounting frame 902. One side of the mounting frame 902 is connected to a transverse electric push rod 906 that is fixedly connected to the longitudinal moving platform 901. One side of the mounting frame 902 is connected to a rotating ring 908 through a guide wheel 909, and the rotating ring 908 is slidably connected to the guide wheel 909. The top of the mounting frame 902 is connected to a driving motor 912, and the transmission end of the driving motor 912 is connected to a driving wheel 913. The driving wheel 913 is drivingly connected to the rotating ring 908 through a driven wheel 910. The side of the rotating ring 908 away from the mounting frame 902 is connected to a bandage roll socket assembly 915 for carrying a bandage roll. Disinfection and sterilization lamps 903 are connected to both sides of the mounting frame 902;
[0101] The camera assembly 10 includes camera supports 1001 distributed on both sides of the longitudinal moving platform 901. The top of the camera support 1001 is connected to a camera support plate 1002, and the camera support plate 1002 is connected to a camera 1003 corresponding to the mounting frame 902;
[0102] The disinfection assembly 11 includes a positioning tube 1101 connected to the workbench 1. The top of the positioning tube 1101 is rotatably connected to a support tube 1102. The top of the support tube 1102 is connected to an inlay groove body 1103, and a disinfection spray 1105 is inserted into the inlay groove body 1103;
[0103] The support assembly 12 includes a transverse displacement slider 1203 that is transversely slidably connected to the workbench 1 and corresponds to the mounting frame 902. One side of the transverse displacement slider 1203 is connected to a transverse displacement electric push rod 1202 that is fixedly connected to the workbench 1. The top of the transverse displacement slider 1203 is connected to a vertical electric push rod 1204. The pushing end of the vertical electric push rod 1204 is connected to a support frame 1205. The top of the support frame 1205 is longitudinally slidably connected to a bearing plate 1207. One side of the bearing plate 1207 is connected to a longitudinal displacement electric push rod 1206 that is fixedly connected to the support frame 1205. The top of the bearing plate 1207 is connected to multiple groups of disposable pads 1209 distributed up and down through a guiding and positioning rod 1208;
[0104] The accommodation and storage assembly 14 includes an accommodation and storage box 1401. One side of the accommodation and storage box 1401 is connected to an outward movement electric push rod 1403 that is fixedly connected to the workbench 1;
[0105] The control screen 6, the longitudinal electric push rod 904, the transverse electric push rod 906, the drive motor 912, the disinfection lamp 903, the camera 1003, the transverse displacement electric push rod 1202, the vertical electric push rod 1204, the longitudinal displacement electric push rod 1206, the outward displacement electric push rod 1403, and the controller 17 are respectively connected to the external power supply through the power module 18, and the control screen 6, the longitudinal electric push rod 904, the transverse electric push rod 906, the drive motor 912, the disinfection lamp 903, the camera 1003, the transverse displacement electric push rod 1202, the vertical electric push rod 1204, the longitudinal displacement electric push rod 1206, and the outward displacement electric push rod 1403 are respectively electrically connected to the controller 17.
[0106] A longitudinal electric push rod protective cover 905 connected to the workbench 1 is provided on the outside of the longitudinal electric push rod 904, a transverse electric push rod protective cover 907 connected to the longitudinal moving platform 901 is provided on the outside of the transverse electric push rod 906, a driven wheel protective cover 914 connected to the mounting frame 902 is provided on the outside of the driven wheel 910 and the driving wheel 913, the driven wheel 910 is connected to the mounting frame 902 through the driven wheel mounting frame 911, and a transverse displacement electric push rod protective cover 1201 connected to the workbench 1 is provided on the outside of the transverse displacement electric push rod 1202. This arrangement can improve the safety of the longitudinal electric push rod 904, the transverse electric push rod 906, the driven wheel 910, the driving wheel 913, and the transverse displacement electric push rod 1202 when in use; and can facilitate the positioning and installation of the driven wheel 910.
[0107] The bandage roll sleeve shell assembly 915 is a transparent product, which includes a reel 9151. A bandage opening 9152 is opened on the side of the reel 9151. A fixed plug rod 9153 is connected inside the reel 9151. A sealing top cover 9154 that is in contact with the fixed plug rod 9153 is threadedly connected to the opening of the reel 9151. The sealing top cover 9154 is connected to the side away from the reel 9151 with an external protruding rod 9155. The transparent product can make it easy for medical staff to observe the remaining amount of the bandage roll in the bandage roll housing assembly 915 at any time, so as to replace the bandage roll in time; the reel 9151 is used to carry the bandage roll, the bandage mouth 9152 can facilitate the pulling of the bandage outward, the fixed plug rod 9153 can facilitate the fixing of the bandage roll, the sealing top cover 9154 can facilitate the positioning of the bandage roll, and the external protruding rod 9155 can facilitate the rotation of the sealing top cover 9154. The above-mentioned arrangement can effectively improve the use efficiency and effect of the bandage roll housing assembly 915.
[0108] A snap ring 1104 is connected inside the inlaid groove body 1103. The disinfection spray 1105 is movably inserted into the inlaid groove body 1103 through the snap ring 1104. A socket base 1106 is sleeved at the bottom of the disinfection spray 1105. The socket base 1106 is connected to the inlaid groove body 1103 through an elastic cord 1107. The setting of the snap ring 1104 can facilitate the insertion of the disinfection spray 1105 and improve the stability of the disinfection spray 1105 after insertion; the settings of the socket base 1106 and the elastic cord 1107 can prevent the disinfection spray 1105 from being lost and effectively improve the use effect of the disinfection spray 1105.
[0109] A plurality of evenly distributed partition plates 1402 are connected inside the accommodation storage box 1401. This setting can facilitate the accommodation storage box 1401 to organize the stored items and effectively improve the working efficiency and use effect of the accommodation storage box 1401.
[0110] The examples given in the present invention are illustrative rather than limiting the embodiments. For those of ordinary skill in the art, other different forms of changes or variations can be made based on the above description. It is not necessary and impossible to enumerate all the embodiments here, and the obvious changes or variations derived therefrom are still within the protection scope of the present invention.
Claims
1. A surgical nursing dressing device, characterized in that, It includes a workbench (1), on the longitudinal side of which a control box (3) and a control screen (6) are inlaid and connected. A controller (17) and a power supply module (18) are connected inside the control box (3). On the transverse side of the workbench (1), a bandage storage groove (15) and a dressing storage groove (16) are provided. A plurality of accommodation and storage components (14) are connected in both the bandage storage groove (15) and the dressing storage groove (16). An automatic bandage winding component (9) is slidably connected to the top of the workbench (1). A camera component (10), a disinfection component (11), and a support component (12) corresponding to the automatic bandage winding component (9) are connected to the top of the workbench (1); The automatic bandage winding component (9) includes a longitudinal moving platform (901) slidably connected to the workbench (1) longitudinally. On one side of the longitudinal moving platform (901), a longitudinal electric push rod (904) fixedly connected to the workbench (1) is connected. A mounting frame (902) is slidably connected transversely to the top of the longitudinal moving platform (901). On one side of the mounting frame (902), a transverse electric push rod (906) fixedly connected to the longitudinal moving platform (901) is connected. A rotating ring (908) is connected to one side of the mounting frame (902) through a guide wheel (909). The rotating ring (908) is slidably connected to the guide wheel (909). A driving motor (912) is connected to the top of the mounting frame (902). The driving end of the driving motor (912) is connected to a driving wheel (913). The driving wheel (913) is in transmission connection with the rotating ring (908) through a driven wheel (910). A bandage roll socket shell component (915) for carrying a bandage roll is connected to the side of the rotating ring (908) away from the mounting frame (902). Disinfection and sterilization lamps (903) are connected to both sides of the mounting frame (902); The camera component (10) includes camera supports (1001) distributed on both sides of the longitudinal moving platform (901). A camera support plate (1002) is connected to the top of the camera support (1001). A camera (1003) corresponding to the mounting frame (902) is connected to the camera support plate (1002); The disinfection component (11) includes a positioning pipe (1101) connected to the workbench (1). A support pipe (1102) is rotatably connected to the top of the positioning pipe (1101). An inlaid groove body (1103) is connected to the top of the support pipe (1102). A disinfection spray (1105) is inserted into the inlaid groove body (1103); The support assembly (12) includes a lateral displacement slider (1203) that is slidably connected to the workbench (1) in the lateral direction and corresponds to the mounting frame (902). One side of the lateral displacement slider (1203) is connected to a lateral displacement electric push rod (1202) fixedly connected to the workbench (1). The top of the lateral displacement slider (1203) is connected to a vertical electric push rod (1204). The pushing end of the vertical electric push rod (1204) is connected to a support frame (1205). The top of the support frame (1205) is slidably connected to a bearing plate (1207) in the longitudinal direction. One side of the bearing plate (1207) is connected to a longitudinal displacement electric push rod (1206) fixedly connected to the support frame (1205). The top of the bearing plate (1207) is connected to multiple groups of disposable pads (1209) distributed up and down through a guiding and positioning rod (1208); The accommodation and storage assembly (14) includes an accommodation and storage box (1401). One side of the accommodation and storage box (1401) is connected to an outward movement electric push rod (1403) fixedly connected to the workbench (1); The control screen (6), longitudinal electric push rod (904), lateral electric push rod (906), drive motor (912), disinfection and sterilization lamp (903), camera (1003), lateral displacement electric push rod (1202), vertical electric push rod (1204), longitudinal displacement electric push rod (1206), outward movement electric push rod (1403), and controller (17) are respectively connected to an external power supply through a power module (18). The control screen (6), longitudinal electric push rod (904), lateral electric push rod (906), drive motor (912), disinfection and sterilization lamp (903), camera (1003), lateral displacement electric push rod (1202), vertical electric push rod (1204), longitudinal displacement electric push rod (1206), and outward movement electric push rod (1403) are respectively electrically connected to the controller (17).
2. The surgical care dressing device according to claim 1, wherein, Pulleys (2) are respectively connected to the corners at the bottom of the workbench (1).
3. The surgical care dressing device according to claim 2, wherein, Handles (13) are respectively connected to the lateral sides of the workbench (1).
4. The surgical care dressing device according to claim 3, characterized in that, A drawer (5) is inserted into one longitudinal side of the workbench (1).
5. A surgical care dressing device according to claim 4, characterized in that, A storage box assembly (7) is connected to one lateral side of the workbench (1). The storage box assembly (7) includes a slot body (703) connected to the workbench (1). A storage box (701) is provided on the side of the slot body (703) away from the workbench (1). The storage box (701) is movably inserted into the slot body (703) through an insertion block (702).
6. The surgical care dressing device according to claim 5, characterized in that, A control switch (8) adjacent to the control screen (6) is connected to the longitudinal side of the workbench (1). The longitudinal electric push rod (904), the transverse electric push rod (906), the driving motor (912), the disinfection and sterilization lamp (903), the transverse displacement electric push rod (1202), the vertical electric push rod (1204), the longitudinal displacement electric push rod (1206), and the outward movement electric push rod (1403) are respectively connected to the control switch (8). The control switch (8) and the power supply module (18) are respectively connected to an external power supply through a power plug (4).
7. The surgical care dressing device according to claim 1, characterized in that, A longitudinal electric push rod protective cover (905) connected to the workbench (1) is provided on the outer side of the longitudinal electric push rod (904). A transverse electric push rod protective cover (907) connected to the longitudinal moving platform (901) is provided on the outer side of the transverse electric push rod (906). A moving wheel protective cover (914) connected to the mounting frame (902) is provided on the outer sides of the driven wheel (910) and the driving wheel (913). The driven wheel (910) is connected to the mounting frame (902) through a driven wheel mounting frame (911). A transverse displacement electric push rod protective cover (1201) connected to the workbench (1) is provided on the outer side of the transverse displacement electric push rod (1202).
8. The surgical care dressing device according to claim 7, characterized in that, The bandage roll socket assembly (915) is a transparent product. The bandage roll socket assembly (915) includes a reel (9151). A bandage opening (9152) is formed in the side of the reel (9151). A fixed insertion rod (9153) is connected inside the reel (9151). A sealing top cover (9154) that abuts against the fixed insertion rod (9153) is threadedly connected to the opening of the reel (9151). An outward protruding rod (9155) is connected to the side of the sealing top cover (9154) away from the reel (9151).
9. The surgical care dressing device according to claim 1, wherein, A snap ring (1104) is connected inside the inlay groove body (1103). The disinfection spray (1105) is movably inserted into the inlay groove body (1103) through the snap ring (1104). A socket base (1106) is sleeved at the bottom of the disinfection spray (1105). The socket base (1106) is connected to the inlay groove body (1103) through an elastic cord (1107).
10. A surgical care dressing device according to claim 1, characterized in that, A plurality of evenly distributed partition plates (1402) are connected inside the accommodation storage box (1401).
Citation Information
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