Earmuff-type infiltration bone traction needle eye disinfection device and system
By designing an earmuff-type immersion bone traction needle eye disinfection device and utilizing a liquid storage barrel, a ring, and a cotton ball system, a continuous supply of iodine liquid is achieved, solving the problem of easy evaporation of iodine gauze and ensuring the disinfection effect and patient recovery.
Patent Information
- Application Number
- CN202310961793.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-02
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2043-08-02
AI Technical Summary
Iodine-containing gauze is easy to evaporate during bone traction, resulting in poor disinfection effect, increasing the workload of doctors and possibly affecting patient recovery.
An earmuff-type immersion bone traction needle eye disinfection device was designed. The device utilized a liquid storage barrel, a ring, and a cotton ball system. Iodine-containing liquid was supplied to the cotton balls in real time through a delivery tube. Combined with a liquid level and humidity detection module, the solenoid valve was automatically controlled to adjust the distribution of iodine-containing liquid, ensuring uniform humidity of the cotton balls and sufficient liquid level in the liquid storage barrel.
It achieves a continuous supply of iodine solution, avoids the frequency of gauze replacement, ensures the disinfection effect, reduces the workload of doctors, and protects the patient's recovery process.
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Figure CN117122710B_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of bone traction needle disinfection, and in particular to an earmuff-type immersion bone traction needle eye disinfection device, system, application method and electronic equipment. Background Art
[0002] Skeletal traction involves inserting a specially designed bone needle or stainless steel needle into the tough part of the bone. The needle is then pulled with the assistance of the orthopedic bed's pulley system. This type of traction is also known as "direct traction." The traction process is based on the principle of action and reaction in mechanics, leveraging the pull of gravity to act on the patient's limb, thereby relieving the tension and contraction of soft tissues caused by fractures and dislocations, thereby reducing the fracture or dislocation and ultimately achieving the treatment goal. During the traction process, the iodine-containing gauze at the traction needle eye must be kept appropriately moist. However, iodine evaporates easily from the gauze, causing it to dry out and compromising its effectiveness. Therefore, to ensure effective disinfection, the iodine-containing gauze must be replaced regularly, which undoubtedly increases the physician's workload. Furthermore, the physician may forget to replace the gauze during the procedure, which can adversely affect the patient's recovery. Summary of the Invention
[0003] In order to solve the problem that the iodine tincture is easy to evaporate on the gauze, resulting in the drying of the iodine tincture gauze, thereby affecting the disinfection effect, the present application proposes an earmuff-type immersion bone traction needle eye disinfection device, system, application method and electronic equipment.
[0004] In one aspect, the present application provides an earmuff-type immersion bone traction needle eye disinfection device, which is applied to a traction needle; the device comprises:
[0005] Liquid storage barrel, used for storing iodine solution;
[0006] A liquid filling port is provided on the liquid storage barrel;
[0007] The two rings are hollow inside and can store the iodine solution. The two rings are connected to the liquid storage barrel through a delivery pipe. The iodine solution in the liquid storage barrel can flow into the rings through the delivery pipe. A plurality of small holes are also provided around the inner side of the rings.
[0008] A plurality of cotton balls are arranged on the small holes on the inner side of the ring and are used to absorb the iodine solution.
[0009] As an optional embodiment of the present invention, optionally, the delivery pipe is a multi-way pipe, one end of which is arranged at the bottom of the liquid storage barrel for drawing out the iodine tincture in the liquid storage barrel, and the remaining ends of the delivery pipe are respectively connected to different positions on the ring for introducing the iodine tincture into the entire ring.
[0010] As an optional embodiment of the present invention, optionally, the device further includes:
[0011] A liquid level detection module is provided in the liquid storage barrel, and is used to detect the liquid level data of the iodine solution in the liquid storage barrel and send the liquid level data to the control module;
[0012] A solenoid valve assembly is provided on the delivery pipe and is used to control the on and off of the delivery pipe;
[0013] A humidity detection module is provided on the ring, and is used to detect humidity data of the cotton ball and send the humidity data to the control module;
[0014] Alarm module, used for sending out sound, light and electricity signals;
[0015] Storage module, used for storing liquid level data and humidity data;
[0016] Communication module, used for communicating with the server;
[0017] The liquid level detection module, control module, solenoid valve assembly, alarm module, storage module and control module are electrically connected. The control module is used to control the solenoid valve assembly and alarm module according to the liquid level data and humidity data.
[0018] As an optional embodiment of the present invention, optionally, the humidity detection module includes:
[0019] A plurality of humidity sensors are distributed on the ring and are used to detect humidity data of the cotton balls at different positions of the ring;
[0020] The preprocessing unit is connected to the humidity sensor and is used to amplify, filter and perform analog-to-digital conversion on the humidity data collected by the humidity sensor.
[0021] As an optional embodiment of the present invention, optionally, the solenoid valve assembly includes a plurality of solenoid valves, and the solenoid valves are arranged on the delivery pipe to control the humidity at different positions of the ring.
[0022] As an optional embodiment of the present invention, optionally, the control module is also used to control the solenoid valve according to the humidity data sent by different humidity sensors. When the humidity data of the cotton ball on the left side of the ring is low, the control module controls the solenoid valve on the left side to open, and the iodine liquid flows to the cotton ball on the left side of the ring; if the humidity data of the cotton ball on the right side of the ring is low, the control module controls the solenoid valve on the right side to open, and the iodine liquid flows to the cotton ball on the right side of the ring.
[0023] In another aspect, the present application provides an earmuff-type bone traction needle eye disinfection system, the system comprising:
[0024] Earmuff-type infiltration bone traction needle eye disinfection device, used to add iodine solution to the traction needle;
[0025] A server is communicatively connected to the earmuff-type immersion bone traction needle hole disinfection device, and is used to configure parameters for the control module, and to obtain and analyze liquid level data and humidity data;
[0026] The display module is electrically connected to the server and is used to display the liquid level data and humidity data obtained by the server on the screen.
[0027] As another optional embodiment of the present invention, optionally, the server is further configured to receive user instructions and configure parameters of the control module according to the instructions; the server may also generate historical curves of liquid level data and humidity data.
[0028] On the other hand, the present application further proposes an application method to implement the earmuff-type bone traction needle eye disinfection system described in Example 3, the method comprising:
[0029] S1. Place the two rings on the earmuff-type infiltration bone traction needle eye disinfection device on both ends of the traction needle, with each cotton ball close to the traction needle;
[0030] S2. Use the control module to control all solenoid valves to open. When the humidity of the cotton ball reaches the set maximum humidity value, the control module controls the corresponding solenoid valve to close. When the humidity sensor detects that the humidity data of a cotton ball is lower than the set humidity threshold, the control module controls the adjacent solenoid valve to open until the humidity value of the cotton ball is equal to the set maximum humidity value, and then the solenoid valve closes.
[0031] S3. When the liquid level detection module detects that the iodine-containing liquid in the liquid storage tank is lower than the set liquid level threshold, the control module sends an alarm signal to the alarm module, and the alarm module sends an audible and optical signal; the control module also sends the liquid level data and alarm signal of the iodine-containing liquid to the server, and the server displays the liquid level data through the display module;
[0032] S4, the control module sends the humidity data collected by all humidity sensors to the server according to the preset process. The server is equipped with a specific ring module. According to the humidity data of each point it receives, the module is colored. The area with higher humidity data in the ring is marked with dark color; and the area with lower humidity data is marked with light color, and displayed by the display module;
[0033] S5. The server sets the liquid level threshold, maximum humidity value, humidity threshold and data reporting process in the control module through the communication module, and the control module reports the liquid level data and humidity data according to the set process.
[0034] In another aspect, the present application further provides an electronic device, comprising:
[0035] processor;
[0036] a memory for storing processor-executable instructions;
[0037] Wherein, the processor is configured to execute an application method described in Example 3 when the executable instruction is executed.
[0038] The technical effect of the present invention is as follows: the circular ring of the present invention leads the iodine-containing liquid in the liquid storage barrel into the circular ring through a delivery tube. Small holes are opened around the inner side of the circular ring, and cotton balls are fixed on the small holes. The iodine-containing liquid inside the circular ring is sucked into the interior of the circular ring through the small holes by the cotton balls, thereby performing real-time disinfection on the traction needle, so that the cotton balls are always in a moist state, and there is no need for doctors to regularly change iodine-containing gauze, which provides a guarantee for the patient's recovery. In addition, a liquid level detection module is also provided on the device to detect the liquid level of the liquid storage barrel. If the iodine-containing liquid in the liquid storage barrel is too little, the control module sends alarm data to the server and the alarm module to remind the doctor or nurse to add iodine-containing liquid to the liquid storage barrel to prevent the doctor or nurse from forgetting to add iodine-containing liquid, thereby providing a guarantee for the patient's recovery. When the delivery tube is controlled by the electromagnetic valve, the humidity of the cotton balls on the circular ring is more uniform, which can prevent the waste of iodine-containing liquid.
[0039] Further features and aspects of the present disclosure will become apparent from the following detailed description of exemplary embodiments with reference to the attached drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate exemplary embodiments, features, and aspects of the disclosure and, together with the description, serve to explain the principles of the disclosure.
[0041] Figure 1 A schematic structural diagram of an earmuff-type immersion bone traction needle eye disinfection device according to embodiment 1 of the present invention is shown;
[0042] Figure 2 A schematic structural diagram of an earmuff-type immersion bone traction needle eye disinfection device according to embodiment 1 of the present invention is shown;
[0043] Figure 3 FIG2 is a partial structural diagram of an earmuff-type immersion bone traction needle eye disinfection device according to embodiment 1 of the present invention;
[0044] Figure 4 FIG2 is a schematic structural diagram of an earmuff-type bone traction needle eye disinfection system according to embodiment 2 of the present invention;
[0045] Figure 5 Shown is a schematic diagram of an application of the electronic device of the present invention;
[0046] Figure 6Shown is a structural schematic diagram of another earmuff-type immersion bone traction needle eye disinfection device according to embodiment 1 of the present invention.
[0047] In the figure: 1. Liquid storage barrel; 2. Liquid filling port; 3. Delivery pipe; 4. Solenoid valve; 5. Cotton ball; 6. Ring; 7. Liquid level sensor; 8. Pull-on needle. DETAILED DESCRIPTION
[0048] Various exemplary embodiments, features, and aspects of the present disclosure will be described in detail below with reference to the accompanying drawings. The same reference numerals in the accompanying drawings represent elements with the same or similar functions. Although various aspects of the embodiments are shown in the accompanying drawings, the drawings are not necessarily drawn to scale unless otherwise indicated.
[0049] The word “exemplary” is used exclusively herein to mean “serving as an example, example, or illustration.” Any embodiment described herein as “exemplary” is not necessarily to be construed as preferred or advantageous over other embodiments.
[0050] In addition, numerous specific details are provided in the following detailed description to better illustrate the present disclosure. Those skilled in the art will appreciate that the present disclosure can be practiced without certain specific details. In some instances, methods, components, and circuits well known to those skilled in the art are not described in detail in order to highlight the main points of the present disclosure.
[0051] Example 1
[0052] like Figure 1 As shown, an earmuff-type bone traction needle 8 eye disinfection device is applied to the traction needle 8; the device comprises:
[0053] The liquid storage barrel 1 is used to store iodine-containing liquid; in the present embodiment, the material and shape of the liquid storage barrel 1 are not specifically limited, and the bottom of the liquid storage barrel 1 is provided with two or more delivery pipe 3 mounting interfaces. Preferably, in the present embodiment, two delivery pipe 3 mounting interfaces are provided, and one end of the delivery pipe 3 is connected to the interface sealing pipe to draw out the iodine-containing liquid in the liquid storage barrel 1.
[0054] The liquid adding port 2 is provided on the liquid storage barrel 1; the liquid adding port 2 can be installed on the top or side of the liquid storage barrel 1. In the present embodiment, the liquid adding port 2 is installed on the top of the liquid storage barrel 1, and the iodine-containing liquid is added into the liquid storage barrel 1 from the liquid adding port 2 at the top. The liquid adding port 2 is provided with a thread. After the iodine-containing liquid is added, the liquid adding port 2 is sealed by screwing a threaded cover on the liquid adding port 2. A sealing ring or a sealing gasket can also be provided in the threaded cover to prevent the iodine-containing liquid in the liquid storage barrel 1 from overflowing during use.
[0055] Two circular rings 6, each of which is a hollow structure inside, can store the iodine liquid. The two circular rings 6 are connected to the liquid storage barrel 1 through a delivery pipe 3. The iodine liquid in the liquid storage barrel 1 can flow into the circular ring 6 through the delivery pipe 3. The inner side of the circular ring 6 is also provided with several small holes. The delivery pipe is made of a rubber tube, which is elastic and retractable. The delivery pipe 3 can be a three-way pipe or a multi-way pipe. In the present embodiment, the delivery pipe 3 adopts a three-way pipe, a liquid inlet and two liquid outlets. The liquid inlet is installed on the interface at the bottom of the liquid storage barrel 1, and the liquid outlet is symmetrically arranged on the circular ring 6. The ring 6 is connected, and two interfaces of the delivery tube 3 are also provided on the circular ring 6. The delivery tube 3 is sealed and connected to the circular ring 6 through this interface. The two circular rings 6 are connected to the liquid storage barrel 1 in this way; the circular ring 6 is made of elastic clinker tube, and its diameter is equal to or smaller than the diameter of the traction needle 8. When in use, it can be firmly fixed on the traction needle 8 to prevent it from falling off. A plurality of small openings are opened around the inner side of the circular ring 6, and the cotton ball 5 is installed on the small opening. The cotton ball 5 can suck out the iodine tincture inside the circular ring 6, so that the iodine tincture can always fill the cotton ball 5 with the iodine tincture to continuously disinfect the patient.
[0056] A plurality of cotton balls 5 are arranged on the small holes on the inner side of the ring 6 for absorbing the iodine solution; the cotton balls 5 are fixed on the ring 6 by glue or other means.
[0057] In summary, when in use, the two rings 6 in this embodiment are put on the traction needle 8, so that the cotton ball 5 is in full contact with the surface of the traction needle 8, and the iodine tincture in the liquid storage barrel 1 is introduced into the interior of the ring 6 through the delivery tube 3. The cotton ball 5 rotated on the small hole sucks out the iodine tincture in the ring 6, and the traction needle 8 is continuously disinfected to prevent the iodine tincture on the cotton ball 5 from being evaporated. There is no need for the doctor to regularly change the iodine tincture gauze, which provides a guarantee for the patient's recovery.
[0058] As an optional embodiment of the present invention, optionally, the delivery pipe 3 is a multi-way pipe, one end of which is arranged at the bottom of the liquid storage barrel 1, for drawing out the iodine tincture liquid in the liquid storage barrel 1, and the remaining ends of the delivery pipe 3 are respectively connected to different positions on the ring 6, for introducing the iodine tincture liquid into the entire ring 6.
[0059] It should be noted that the two liquid outlets of the delivery tube 3 are symmetrically installed on the circular ring 6, and each cotton ball 5 on the circular ring 6 is evenly added in real time to ensure that each cotton ball 5 can absorb the iodine liquid; when using the present invention again, most of the circular rings 6 are used vertically. In order to allow the cotton balls 5 near the top of the circular ring 6 to absorb the iodine liquid, the delivery tube 3 can be installed near the top of the circular ring 6 to ensure that the cotton balls 5 near the top of the circular ring 6 can also absorb the iodine liquid.
[0060] As an optional embodiment of the present invention, optionally, the device further includes:
[0061] The liquid level detection module is arranged in the liquid storage barrel 1, and is used to detect the liquid level data of the iodine-containing liquid in the liquid storage barrel 1 and send the liquid level data to the control module; the liquid level detection module is a liquid level sensor 7, which is fixed on the liquid storage barrel 1, can monitor the liquid level data of the iodine-containing liquid in the liquid storage barrel 1 in real time, and implement feedback of the liquid level data of the iodine-containing liquid to the control module.
[0062] The electromagnetic valve assembly is provided on the delivery pipe 3 to control the on-off of the delivery pipe 3; the electromagnetic assembly includes a plurality of electromagnetic valves 4. In the present invention, the number of liquid outlets of the delivery pipe 3 is equal to the number of electromagnetic valves 4. Figure 2 As shown, the solenoid valve 4 is installed at the liquid outlet of the infusion tube to control the on / off of each liquid outlet. The solenoid valve 4 is also electrically connected to the control module, and the control module controls the switch of the solenoid valve 4.
[0063] The humidity detection module is arranged on the ring 6 and is used to detect the humidity data of the cotton balls 5 and send the humidity data to the control module. The humidity detection module includes multiple humidity sensors distributed at different positions of the ring 6 to detect the humidity data of the cotton balls 5 at different positions. If the humidity data at a humidity sensor is lower than a set humidity threshold, the control module controls the nearest solenoid valve 4 to open according to the position of the humidity sensor, and iodine-containing liquid flows to the humidity sensor to provide iodine-containing liquid to the cotton balls 5, so that the humidity data of the cotton balls 5 meets the humidity threshold set in the control module.
[0064] The alarm module is used to send out sound, light and electricity signals; the alarm module is a speaker in this embodiment, which is controlled by the control module. When the iodine solution in the liquid storage barrel 1 is too low, the control module sends an alarm signal to the alarm module, the alarm module starts to alarm, and the control module also sends an alarm to the server through the communication module to inform medical staff.
[0065] The storage module is used to store liquid level and humidity data. Its primary function is to store collected liquid level and humidity data when needed. When needed, the data can be easily retrieved from the storage module, facilitating subsequent data analysis. The storage module can be an external storage device, such as a hard drive, USB flash drive, or SD card, or an internal storage device, such as an embedded system's memory.
[0066] The communication module is used to communicate with the server; the communication module is a wireless network such as 3G or 4G, which is used to realize data interaction with the server.
[0067] The liquid level detection module, control module, solenoid valve assembly, alarm module, storage module and control module are electrically connected. The control module is used to control the solenoid valve assembly and alarm module according to the liquid level data and humidity data.
[0068] In summary, if Figure 2 and Figure 3 As shown, the present invention utilizes a liquid level sensor 7 to monitor the iodine liquid data in the liquid storage barrel 1, and implements feedback to the control module. If the capacity of the iodine liquid in the liquid storage barrel 1 is lower than the warning line, the control module sends an alarm signal to the alarm module, and the alarm module starts to alarm. The control module also alarms the server through the communication module, notifying medical personnel, and ensuring that there is iodine liquid in the liquid storage barrel 1 at all times; a plurality of humidity sensors are also utilized to detect the humidity data of the cotton balls 5 at multiple locations of the ring 6. If the humidity data of the cotton balls 5 near the humidity sensors are lower than the humidity threshold value set by the control module, the control module controls the nearest electromagnetic valve 4 to open according to the position of the humidity sensor. The iodine liquid flows to the humidity sensor, and the iodine liquid is provided to the cotton balls 5 so that the humidity data of the cotton balls 5 meet the humidity threshold value set in the control module. When the electromagnetic valve 4 controls the on-off of the delivery pipe 3, the humidity of the cotton balls 5 on the ring 6 is more uniform, and waste of iodine liquid can also be prevented.
[0069] As an optional embodiment of the present invention, optionally, the humidity detection module includes:
[0070] Multiple humidity sensors are distributed on the ring 6 and are used to detect the humidity data of the cotton balls 5 at different positions of the ring 6; the multiple humidity sensors are evenly fixed on the ring 6 by pasting, fully detecting the humidity data of the cotton balls 5 at multiple positions on the ring 6, and feeding back the humidity data to the control module.
[0071] A preprocessing unit is connected to the humidity sensor and is configured to amplify, filter, and perform analog-to-digital conversion on the humidity data collected by the humidity sensor. The preprocessing unit includes an amplifier circuit, a filter circuit, and an analog-to-digital conversion circuit. When the humidity sensor detects a humidity signal, the amplifier circuit amplifies the humidity signal, then filters the signal using the filter circuit. Finally, the analog-to-digital conversion circuit converts the analog signal into a digital signal to generate the humidity data. The amplifier circuit, filter circuit, and analog-to-digital conversion circuit are all conventional technologies and are not described in detail herein.
[0072] As an optional embodiment of the present invention, the solenoid valve assembly optionally includes a plurality of solenoid valves 4, each of which is disposed on the delivery tube 3 and configured to control the humidity at different positions of the ring 6. The control module controls the on / off switching of the corresponding solenoid valve 4 based on humidity data transmitted by the corresponding humidity sensor, thereby controlling the humidity of the cotton balls 5 at different positions on the ring 6.
[0073] like Figure 2As shown, as an optional embodiment of the present invention, optionally, the control module is also used to control the solenoid valve 4 according to the humidity data sent by different humidity sensors. When the humidity data of the cotton ball 5 on the left side of the ring 6 is low, the control module controls the solenoid valve 4 on the left side to open, and the iodine-containing liquid flows to the cotton ball 5 on the left side of the ring 6; if the humidity data of the cotton ball 5 on the right side of the ring 6 is low, the control module controls the solenoid valve 4 on the right side to open, and the iodine-containing liquid flows to the cotton ball 5 on the right side of the ring 6.
[0074] Example 2
[0075] like Figure 6 As shown, on the basis of Example 1, the three-way infusion tube is replaced with a four-way tube delivery tube 3, including a liquid inlet and three liquid outlets, the three liquid outlets are installed on the ring 6, and the liquid inlet is turned on the interface at the bottom of the liquid storage barrel 1, sealed and connected, and iodine tincture is added to three points of the ring 6 so that the humidity of all cotton balls 5 is more uniform.
[0076] Example 3
[0077] like Figure 4 As shown, on the other hand, the present application provides an earmuff-type bone traction needle 8-hole disinfection system, the system comprising:
[0078] The earmuff type bone traction needle 8 eye disinfection device is used to add iodine tincture liquid to the traction needle 8; the principle of adding iodine tincture liquid to the traction needle 8 by the earmuff type bone traction needle 8 eye disinfection device has been explained clearly in Example 1 and will not be repeated here.
[0079] The server is communicatively connected to the earmuff-type bone traction needle 8-eye disinfection device and is used to configure parameters for the control module and to obtain and analyze liquid level data and humidity data. The server can configure the humidity threshold and the liquid level threshold in the liquid storage barrel 1, i.e., the liquid level warning line, for the control module. The server can also prompt medical staff to add iodine solution to the liquid storage barrel 1 based on the alarm data sent by the control module. The server is also provided with a model of two circular rings 6 and cotton balls 5. The control module sends the humidity data collected by all humidity sensors to the server according to a preset process. The server is provided with a specific circular ring 6 module. According to the humidity data received at each point, the module is colored. Areas with higher humidity data in the circular ring 6 are marked with dark colors; areas with lower humidity data are marked with light colors and displayed through the display module, fully reflecting the humidity data of the cotton balls 5 on the circular ring 6 to the medical staff in real time.
[0080] The display module is electrically connected to the server and is used to display the liquid level data and humidity data obtained by the server on a screen. The display module can display the liquid level data and humidity data, and can prompt medical staff through the data on the screen. For example, if the liquid level is below the warning line, the display module can display it and prompt the medical staff to add iodine solution. At the same time, the humidity data can also be displayed through the data on the screen, allowing medical staff to know the current humidity conditions and better adjust the disinfection plan. The display module can adjust the display content in real time based on the configuration parameters of the server, as well as the liquid level data and humidity data, so that medical staff can better understand the operation of the disinfection system.
[0081] Based on the implementation principles of Example 1, the modules or steps of the present invention described above can be implemented using a general-purpose computing device. They can be centralized on a single computing device or distributed across a network of multiple computing devices. Alternatively, they can be implemented using program code executable by the computing device, and thus, stored in a storage device and executed by the computing device, or they can be fabricated into separate integrated circuit modules, or multiple modules or steps can be fabricated into a single integrated circuit module for implementation. Thus, the present invention is not limited to any specific combination of hardware and software.
[0082] As another optional embodiment of the present invention, the server is further configured to receive user instructions and configure parameters of the control module according to the instructions. The server may also generate historical curves of liquid level and humidity data. The server stores the humidity and liquid level data uploaded by the control module and generates a curve showing the changes in humidity and liquid level data over a certain period of time. The combination of the model and the curve allows medical staff to fully understand the changes in liquid level and humidity data. If any liquid level or humidity data is lost, it can be retrieved through the storage module.
[0083] Example 4
[0084] On the other hand, the present application further proposes an application method to implement the earmuff-type bone traction needle 8-hole disinfection system described in Example 3, the method comprising:
[0085] S1. Put the two rings 6 on the earmuff-type bone traction needle 8 eye disinfection device on the two ends of the traction needle 8, and each cotton ball 5 is close to the traction needle 8;
[0086] S2. Use the control module to control all the solenoid valves 4 to open. When the humidity of the cotton ball 5 reaches the set maximum humidity value, the control module controls the corresponding solenoid valve 4 to close. When the humidity sensor detects that the humidity data of a cotton ball 5 is lower than the set humidity threshold, the control module controls the adjacent solenoid valve 4 to open until the humidity value of the cotton ball 5 is equal to the set maximum humidity value, and then the solenoid valve 4 is closed.
[0087] S3, when the liquid level detection module detects that the iodine-containing liquid in the liquid storage barrel 1 is lower than the set liquid level threshold, the control module sends an alarm signal to the alarm module, and the alarm module sends an acoustic and optical signal; the control module also sends the liquid level data and alarm signal of the iodine-containing liquid to the server, and the server displays the liquid level data through the display module;
[0088] S4, the control module sends the humidity data collected by all humidity sensors to the server according to the preset process. The server is equipped with a specific ring 6 module. According to the humidity data of each point it receives, the module is colored. The area with higher humidity data in the ring 6 is marked with a dark color; and the area with lower humidity data is marked with a light color and displayed through the display module;
[0089] S5. The server sets the liquid level threshold, maximum humidity value, humidity threshold and data reporting process in the control module through the communication module, and the control module reports the liquid level data and humidity data according to the set process.
[0090] The above process is that the control module sends humidity data and liquid level data to the server in the time sequence set by the server. For example, the control module reports the humidity data of the cotton ball 5 to the server every five minutes, and sends the liquid level data detected by the liquid level sensor 7 to the server every hour.
[0091] It should be noted that although the above is described as an example, those skilled in the art will understand that the present disclosure should not be limited thereto. In fact, users can flexibly set it according to the actual application scenario, as long as the technical functions of this application can be achieved according to the above technology.
[0092] Obviously, those skilled in the art should understand that the implementation of all or part of the processes in the above embodiments can be completed by instructing the relevant hardware through a computer program, and the program can be stored in a computer-readable storage medium. When the program is executed, it can include the processes of the above-mentioned control embodiments. Those skilled in the art can understand that the implementation of all or part of the processes in the above embodiments can be completed by instructing the relevant hardware through a computer program, and the program can be stored in a computer-readable storage medium. When the program is executed, it can include the processes of the above-mentioned control embodiments. Among them, the storage medium can be a magnetic disk, an optical disk, a read-only memory (ROM), a random access memory (RAM), a flash memory (Flash Memory), a hard disk (Hard Disk Drive, abbreviated: HDD) or a solid-state drive (SSD), etc.; the storage medium can also include a combination of the above-mentioned types of memory.
[0093] Example 5
[0094] like Figure 5 As shown, on the other hand, the present application also provides an electronic device, including:
[0095] processor;
[0096] a memory for storing processor-executable instructions;
[0097] Wherein, the processor is configured to execute an application method described in Example 3 when the executable instruction is executed.
[0098] The electronic device according to the embodiment of the present disclosure includes a processor and a memory for storing processor-executable instructions, wherein the processor is configured to implement any one of the above-mentioned methods when executing the executable instructions.
[0099] It should be noted that the number of processors can be one or more. Furthermore, the electronic device in the embodiments of the present disclosure may also include an input device and an output device. The processor, memory, input device, and output device may be connected via a bus or other means, which are not specifically limited here.
[0100] Memory, as a computer-readable storage medium, can be used to store software programs, computer-executable programs, and various modules, such as the program or module corresponding to one embodiment of the present disclosure. The processor executes the software programs or modules stored in the memory to perform various functional applications and data processing of the electronic device.
[0101] The input device can be used to receive input numbers or signals. The signals can be key signals related to user settings and function control of the device / terminal / server. The output device can include a display device such as a display screen.
[0102] While various embodiments of the present disclosure have been described above, the foregoing description is intended to be illustrative, non-exhaustive, and not limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is selected to best explain the principles of the embodiments, their practical applications, or technical improvements to existing technologies, or to enable others skilled in the art to understand the embodiments disclosed herein.
Claims
1. An earmuff-type infiltration bone traction needle eye disinfection device, characterized in that: The device is applied to a traction needle; the device comprises: Liquid storage barrel, used for storing iodine solution; A liquid filling port is provided on the liquid storage barrel; The two rings are hollow inside and can store the iodine solution. The two rings are connected to the liquid storage barrel through a delivery pipe. The iodine solution in the liquid storage barrel can flow into the rings through the delivery pipe. A plurality of small holes are also provided around the inner side of the rings. A plurality of cotton balls are arranged on the small holes on the inner side of the ring and used to absorb the iodine solution; The delivery pipe is a multi-way pipe, one end of which is arranged at the bottom of the liquid storage barrel for drawing out the iodine-containing liquid in the liquid storage barrel, and the remaining ends of the delivery pipe are respectively connected to different positions on the ring for introducing the iodine-containing liquid into the entire ring; The device further comprises: a humidity detection module, disposed on the ring, for detecting humidity data of the cotton balls and sending the humidity data to the control module; The humidity detection module includes: A plurality of humidity sensors are distributed on the ring and are used to detect humidity data of the cotton balls at different positions of the ring.
2. The earmuff-type immersion bone traction needle eye disinfection device according to claim 1, characterized in that: The device further comprises: A liquid level detection module is provided in the liquid storage barrel, and is used to detect the liquid level data of the iodine solution in the liquid storage barrel and send the liquid level data to the control module; A solenoid valve assembly is provided on the delivery pipe and is used to control the on and off of the delivery pipe; Alarm module, used for sending out sound, light and electricity signals; Storage module, used for storing liquid level data and humidity data; Communication module, used for communicating with the server; The liquid level detection module, control module, solenoid valve assembly, alarm module, storage module and control module are electrically connected. The control module is used to control the solenoid valve assembly and alarm module according to the liquid level data and humidity data.
3. The earmuff-type immersion bone traction needle eye disinfection device according to claim 2, characterized in that: The humidity detection module also includes: The preprocessing unit is connected to the humidity sensor and is used to amplify, filter and perform analog-to-digital conversion on the humidity data collected by the humidity sensor.
4. The earmuff-type immersion bone traction needle eye disinfection device according to claim 3, characterized in that: The solenoid valve assembly includes a plurality of solenoid valves, which are arranged on the delivery pipe and are used to control the humidity at different positions of the ring.
5. The earmuff-type immersion bone traction needle eye disinfection device according to claim 4, characterized in that: The control module is also used to control the solenoid valve according to the humidity data sent by different humidity sensors. When the humidity data of the cotton ball on the left side of the ring is low, the control module controls the solenoid valve on the left side to open, and the iodine liquid flows to the cotton ball on the left side of the ring; if the humidity data of the cotton ball on the right side of the ring is low, the control module controls the solenoid valve on the right side to open, and the iodine liquid flows to the cotton ball on the right side of the ring.
6. An earmuff-type bone traction needle eye disinfection system, characterized in that: The system comprises: The earmuff-type immersion bone traction needle eye disinfection device according to any one of claims 1 to 5, which is used to add iodine solution to the traction needle; A server is communicatively connected to the earmuff-type immersion bone traction needle hole disinfection device, and is used to configure parameters for the control module, and to obtain and analyze liquid level data and humidity data; The display module is electrically connected to the server and is used to display the liquid level data and humidity data obtained by the server on the screen.
7. The earmuff-type bone traction needle hole disinfection system according to claim 6, characterized in that: The server is further configured to receive user instructions and configure parameters of the control module according to the instructions; the server can also generate historical curves of liquid level data and humidity data.
8. An application method for realizing the earmuff-type bone traction needle hole disinfection system according to any one of claims 6-7, characterized in that: The method comprises: S1. Place the two rings on the earmuff-type infiltration bone traction needle eye disinfection device on both ends of the traction needle, with each cotton ball close to the traction needle; S2. Use the control module to control all solenoid valves to open. When the humidity of the cotton ball reaches the set maximum humidity value, the control module controls the corresponding solenoid valve to close. When the humidity sensor detects that the humidity data of a cotton ball is lower than the set humidity threshold, the control module controls the adjacent solenoid valve to open until the humidity value of the cotton ball is equal to the set maximum humidity value, and then the solenoid valve closes. S3. When the liquid level detection module detects that the iodine-containing liquid in the liquid storage tank is lower than the set liquid level threshold, the control module sends an alarm signal to the alarm module, and the alarm module sends an audible and optical signal; the control module also sends the liquid level data and alarm signal of the iodine-containing liquid to the server, and the server displays the liquid level data through the display module; S4, the control module sends the humidity data collected by all humidity sensors to the server according to the preset process. The server is equipped with a specific ring module. According to the humidity data of each point it receives, the module is colored. The area with higher humidity data in the ring is marked with dark color; and the area with lower humidity data is marked with light color, and displayed by the display module; S5. The server sets the liquid level threshold, maximum humidity value, humidity threshold and data reporting process in the control module through the communication module, and the control module reports the liquid level data and humidity data according to the set process.
9. An electronic device, characterized in that: include: processor; a memory for storing processor-executable instructions; Wherein, the processor is configured to implement an application method according to claim 8 when executing the executable instructions.
Citation Information
Patent Citations
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