Automatic generation instrument for medical pipeline identification

Through the medical pipeline identification automatic generator, high-quality pipeline identification is generated and printed using built-in database and identity identification hardware devices, the problems of vague and irregularity in existing handwritten logos are solved, improving the efficiency and safety of nursing work, and reducing the risk of medical disputes.

CN119920429AInactive Publication Date: 2025-05-02THE FIRST AFFILIATED HOSPITAL OF MEDICAL COLLEGE OF XIAN JIAOTONG UNIV
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Patent Information

Application Number
CN202411854368.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-05-02
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing medical pipeline logos have blurred handwriting and irregular writing problems through handwriting, which may lead to errors in nursing records, lead to medical disputes, and it is difficult to ensure the durability and clarity of the logo.

Method used

Provides an automatic medical pipeline identification generator, and generates and prints high-quality pipeline identification through the built-in database of the printer body and a variety of identity identification hardware devices to ensure the accuracy, standardization and durability of the identification.

Benefits of technology

Effectively identify the type of drainage bottle, reduce nursing errors caused by blurred marking, improve the efficiency and safety of pipeline care work, reduce the risk of medical disputes, and improve the overall medical quality.

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Abstract

The invention relates to the technical field of pipeline nursing, and provides a medical pipeline identifier automatic generation instrument, which comprises a printer main body used for generating a to-be-printed display identifier, and a database is arranged in the printer main body so as to carry out information storage and management, and a communication module is used for receiving an identifier generation request; the identification setting module is used for setting an identification template, calling the data stored in the database to the identification template, and perfecting the content on the identification template by using an input unit; and the identifier processing module is used for reading the identity data of the current operator and converting the data into a display identifier. According to the automatic pipeline identifier generation instrument, the safety and the overall quality of pipeline nursing can be effectively improved, the standardization requirement for medical instrument management is continuously improved along with medical development no matter the work of medical staff is carried out, and the application of the automatic pipeline identifier generation instrument is beneficial to establishment of a more systematic and standard medical operation process.
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Description

Technical Field

[0001] The invention relates to the technical field of pipeline care, in particular to an automatic generator of medical pipeline markings. Background Art

[0002] Pipeline care is an important nursing content in surgery. Critically ill surgical patients often need to be placed in a variety of treatment pipes, such as various drainage tubes, gastric tubes, urinary catheters, etc. It is very easy to make mistakes in nursing operations. Once the operation is wrong, it will directly endanger the patient's life safety. In medical operations, ensuring the safety of patients is the top priority. Pipeline identification is a modern pipeline care method. Clear identification can help medical staff quickly identify and reduce operational errors. In emergency situations, clear identification can speed up the response speed of medical staff, greatly improve the convenience of nursing staff in carrying out pipeline care work, improve work efficiency, effectively reduce medical accidents caused by confusion, ensure patient safety, and improve overall medical quality. Although the labels currently used in clinical practice can distinguish different pipes by different colors, they all need to be handwritten, and there are problems such as blurred handwriting and irregular writing, which may lead to errors in the type of drainage bottle in the nursing record, causing medical disputes. The automatic pipeline identification generator provided by the present invention can set different label colors according to the type of pipeline, and select the date of pipeline replacement or replacement. It can effectively identify the type of drainage bottle, distinguish different types of drainage, and the electronic printing is not easy to be worn or rubbed off. Summary of the invention

[0003] In view of the shortcomings of the prior art, the present invention provides an automatic generator for medical pipeline identification, which can effectively improve the safety and overall quality of pipeline care, and has great application value for both the work of medical staff and the patients themselves. With the development of medicine, the standardization requirements for medical device management are also constantly improving. The application of the automatic generator for pipeline identification helps to establish a more systematic and standardized medical operation process.

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: a medical pipeline identification automatic generator, comprising:

[0005] The printer body is used to generate the display mark to be printed, and the printer body has a built-in database for information storage and management, and uses the communication module to receive the mark generation request;

[0006] The logo setting module is used to set the logo template, retrieve the data stored in the database to the logo template, and use the input unit to improve the content on the logo template;

[0007] The identification processing module is used to read the identity data of the current operator and convert the data into a display identification;

[0008] The logo conversion module is used to bind the converted display logo with the improved logo template and generate a logo map to be printed, and send a generation request using the communication module.

[0009] Preferably, the printer body comprises:

[0010] Printing unit: used to print the processed identification information onto label paper to form the final identification display;

[0011] Database management unit: responsible for storing, retrieving, updating and deleting data in the database, ensuring effective management and access of information, and automatically backing up the database to external storage devices or cloud servers on a regular basis, while using data encryption algorithms to encrypt stored information;

[0012] Communication processing unit: supports multiple communication protocols to receive requests for generating display logos, and feeds back relevant information to other associated modules or devices after the logo is generated.

[0013] Preferably, the identification setting module includes:

[0014] Template generation unit: provides a visual template editing interface, supports custom settings for multiple graphic elements, font styles and color combinations, and has a built-in library of rich industry standard logo templates, which users can directly select and fine-tune;

[0015] Data retrieval unit: Based on the data types and keywords required by the identification template, it interacts with the database management unit, uses multi-threaded data query technology, obtains multiple data fields in parallel for data retrieval, and has a data cache function to temporarily store the recently frequently used data in the high-speed cache area;

[0016] Content improvement unit: Integrates multiple input methods, and performs real-time verification and intelligent prompts on the input content. When entering pipeline parameters, a drop-down list of parameters is provided for users to select based on existing database information.

[0017] Preferably, the identification processing module includes:

[0018] Identity recognition unit: equipped with a variety of identity recognition hardware devices and deeply integrated with the medical institution's personnel management system to achieve real-time synchronization and update of identity data;

[0019] Data conversion unit: According to the preset coding rules and encryption algorithms, the identity data obtained by the identity recognition unit is converted and processed, and added to the corresponding position according to the requirements of the identification template, and detailed log information of the identity conversion is recorded.

[0020] Preferably, the identification conversion module includes:

[0021] Binding unit: uses precise image synthesis algorithm to overlay the identity information converted by the identification processing module with the template content improved by the identification setting module. During the binding process, the overlaid identification is verified;

[0022] Request sending unit: Build a stable and reliable message queue mechanism, send the print request after generating the display mark to be printed to the printer body in order of priority, monitor the status and feedback the sent request, and when the printer body receives the request and starts processing.

[0023] Preferably, the display mark is printed in the form of a barcode or a QR code.

[0024] The method for automatically generating a medical pipeline identifier comprises the following steps:

[0025] Step 1: Create or select a suitable logo template through the template generation unit in the logo setting module, and make fine adjustments in the visual editing interface according to actual needs;

[0026] Step 2: using the data retrieval unit of the identification setting module to interact with the database management unit in the printer body according to the type and keywords of the data required by the identification template, and to perform multi-threaded query and retrieve relevant data;

[0027] Step 3: Through the content improvement unit of the identification setting module, with the help of multiple integrated input methods, other specific information on the template is supplemented, and the input content is verified and prompted in real time according to the database information;

[0028] Step 4: The identity data of the current operator is read through the identity recognition hardware device, and is synchronized and updated in real time with the medical institution personnel management system. Then, the data conversion unit converts and processes the identity data according to the pre-set encoding rules and encryption algorithms;

[0029] Step 5. Use the binding unit to overwrite and merge the identity information converted by the identification processing module with the template content improved by the identification setting module, and perform verification. If the verification is correct, the request sending unit will build a stable message queue mechanism and send the print request after generating the display identification to be printed to the printer body in priority order.

[0030] Preferably, the identity recognition hardware device in step 4 adopts any one of fingerprint recognition and RFID card reader.

[0031] Preferably, the identity data in step 4 includes any one of fingerprint recognition, work number and password verification, and identity card.

[0032] Preferably, in step five, the pipeline type can be selected during printing, and custom pipeline information can be input, wherein the custom pipeline information includes any one of retention time, replacement time, and retention depth.

[0033] The present invention provides an automatic generator for medical pipeline identification, which has the following beneficial effects:

[0034] 1. The present invention has a built-in database in the printer body and is effectively managed by the database management unit. The data retrieval unit adopts multi-threaded query and cache technology to ensure accurate and fast data retrieval, reduce information errors that may be caused by manual handwriting, and provide rich custom settings and standard template libraries. Combined with the multiple input methods and real-time verification intelligent prompt function of the content improvement unit, it is helpful to generate a logo with a unified format and accurate and standardized content, avoiding irregular writing.

[0035] 2. The present invention integrates a variety of identity recognition hardware devices with the medical institution personnel management system to achieve real-time synchronous updating of identity data, accurately record operator information, encode identity data and record detailed logs. When problems occur, the source of the operation can be quickly traced, responsibilities can be clarified, and the safety and management level of medical operations can be improved.

[0036] 3. The present invention can quickly generate labels, reduce the time spent by medical staff on label production, and improve the efficiency of pipeline nursing work. It adopts barcode or QR code form, which can maintain clarity longer than handwritten labels, effectively reduce nursing errors caused by blurred labels, and standardize pipeline nursing work from the source of label generation, making medical operations more standardized and normalized.

[0037] 4. The present invention ultimately binds the operator to the pipeline identifier, which plays a deterrent and reminder role, prompting them to strictly follow the operating procedures during the operation process, reducing operational errors caused by negligence or arbitrariness, thereby directly ensuring the safety of patients during pipeline care. In addition, by collecting and analyzing the data bound to the operator and the pipeline identifier, the performance and operating habits of medical staff in pipeline care can be fully understood, which helps to discover potential operational risk points and irregular behavior patterns, so as to carry out targeted training in a timely manner and improve the overall quality of medical services. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] Figure 1 is a system diagram of the present invention;

[0039] Figure 2 It is a system diagram of the printer body in the present invention;

[0040] Figure 3 A system schematic diagram of an identification setting module in the present invention;

[0041] Figure 4 A system schematic diagram of an identification processing module in the present invention;

[0042] Figure 5 A system schematic diagram of an identification conversion module in the present invention;

[0043] Figure 6 It is a flow chart of the present invention. DETAILED DESCRIPTION

[0044] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0045] Example:

[0046] Please see attached Figure 1 The embodiment of the present invention provides a medical pipeline identification automatic generating device, comprising:

[0047] Please see attached Figure 2 The printer body receives the request for generating the display mark through the communication processing unit that supports multiple communication protocols, and feeds back the relevant information to the printing unit after the mark is generated. The printing unit prints the processed mark information on the label paper to form the final mark display; the database management unit is responsible for storing, retrieving, updating and deleting data in the database to ensure the effective management and call of information, and automatically backs up the database to an external storage device or a cloud server regularly, and uses a data encryption algorithm to encrypt the stored information. The type of the display mark printed is any one of a barcode or a QR code. The operator is bound to the pipeline mark to reduce operational errors caused by negligence or arbitrariness, thereby directly ensuring the safety of patients during pipeline care. In addition, the performance and operating habits of medical staff in pipeline care can be fully understood through the collection and analysis of the data bound to the operator and the pipeline mark, which helps to discover potential operational risk points and irregular behavior patterns, so as to carry out targeted training in a timely manner and improve the overall quality of medical services;

[0048] Please see attached Figure 3, the logo setting module provides a visual template editing interface through the template generation unit, supports custom settings for a variety of graphic elements, font styles and color combinations, and has a built-in rich industry standard logo template library, which users can directly select and fine-tune. The data retrieval unit interacts with the database management unit according to the data type and keywords required by the logo template, adopts multi-threaded data query technology, and obtains multiple data fields in parallel for data retrieval. At the same time, it has a data caching function to temporarily store the recently frequently used data in the cache area; and adopts a content improvement unit with multiple input methods, and performs real-time verification and intelligent prompts on the input content. When entering pipeline parameters, a drop-down list of parameters is provided for users to choose based on the existing database information. The database is built into the printer body and effectively managed by the database management unit. The data retrieval unit adopts multi-threaded query and caching technology to ensure accurate and fast data retrieval, reduce information errors that may be caused by manual handwriting, and provide rich custom settings and standard template libraries. Combined with the multiple input methods and real-time verification intelligent prompt functions of the content improvement unit, it is helpful to generate logos with unified formats and accurate and standardized content, and avoid irregular writing;

[0049] Please see attached Figure 4 , identification processing module, equipped with any one of the identification hardware devices such as fingerprint recognition and RFID card reader, and deeply integrated with the medical institution's personnel management system to achieve real-time synchronization and update of identity data; the identity data obtained by the identification unit is converted and processed according to the encoding rules and encryption algorithms pre-set by the data conversion unit, and added to the corresponding position according to the requirements of the identification template, and detailed log information of the identity conversion is recorded at the same time. Through the integration of various identity recognition hardware devices with the medical institution's personnel management system, real-time synchronization and update of identity data is achieved, which can accurately record operator information, encode identity data and record detailed logs. When problems occur, the source of the operation can be quickly traced, responsibilities can be clarified, and the safety and management level of medical operations can be improved;

[0050] Please see attached Figure 5, the identification conversion module, through the binding unit using the precise image synthesis algorithm, overwrites the identity identification information converted by the identification processing module with the template content improved by the identification setting module. During the binding process, the overwritten identification is verified. The request sending unit builds a stable and reliable message queue mechanism, and sends the print request after the display identification to be printed to the printer body in order of priority. The status of the sent request is monitored and feedback is processed. When the printer body receives the request and starts processing, it can quickly generate the identification, reduce the time spent by medical staff on identification production, and improve the efficiency of pipeline nursing work. The barcode or QR code form can maintain clarity longer than handwritten identification, effectively reduce nursing errors caused by blurred identification, and standardize pipeline nursing work from the source of identification generation, making medical operations more standardized and normalized.

[0051] Please see attached Figure 6 Based on the above-mentioned medical pipeline identification automatic generation instrument, a medical pipeline identification automatic generation method is proposed, which includes the following steps:

[0052] Step 1: Create or select a suitable logo template through the template generation unit in the logo setting module, and make fine adjustments in the visual editing interface according to actual needs, such as adjusting the size of graphic elements, changing font color, etc.;

[0053] Step 2: Using the data retrieval unit of the identification setting module, according to the type and keywords of the data required by the identification template, the data is interacted with the database management unit in the printer body, multi-threaded query and retrieval of relevant data, and the data cache function is used to quickly obtain the recently frequently used data, and fill these data into the corresponding position of the identification template;

[0054] Step 3: Through the content improvement unit of the identification setting module, with the help of multiple integrated input methods, such as keyboard, touch screen, voice or code scanning input, other specific information on the template is supplemented, such as the retention time, replacement time, retention depth, etc. of the pipeline, and the input content is verified and prompted in real time according to the database information to ensure the accuracy and standardization of the input information;

[0055] Step 4: The identity data of the current operator is read through the identity recognition hardware device, and is synchronized and updated in real time with the medical institution personnel management system. Then, the data conversion unit converts the identity data according to the pre-set coding rules and encryption algorithms, and adds the converted identity data to the corresponding position according to the identification template requirements, and records the identity conversion log information in detail;

[0056] Step 5. Use the binding unit to overwrite and merge the identity information converted by the identification processing module with the template content improved by the identification setting module, and perform verification. If the verification is correct, the request sending unit will build a stable message queue mechanism, and send the print request after generating the display identification to be printed to the printer body in order of priority. At the same time, the status of the sending request is monitored and feedback is processed. When the printer main body module receives the request and starts processing, it obtains the printer's status information (such as printing progress, remaining ink, remaining paper, etc.) and feeds back to the user interface or other related systems, so that the user can monitor and manage the printing process in real time.

[0057] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. Medical pipeline identification automatic generator, characterized by: include: The printer body is used to generate the display mark to be printed, and the printer body has a built-in database for information storage and management, and uses the communication module to receive the mark generation request; The logo setting module is used to set the logo template, retrieve the data stored in the database to the logo template, and use the input unit to improve the content on the logo template; The identification processing module is used to read the identity data of the current operator and convert the data into a display identification; The logo conversion module is used to bind the converted display logo with the improved logo template, generate the display logo to be printed, and send the generation request by using the communication module.

2. The medical pipeline identification automatic generator according to claim 1, characterized in that: The printer body comprises: Printing unit: used to print the processed identification information onto label paper to form the final identification display; Database management unit: responsible for storing, retrieving, updating and deleting data in the database, ensuring effective management and access of information, and automatically backing up the database to external storage devices or cloud servers on a regular basis, while using data encryption algorithms to encrypt stored information; Communication processing unit: supports multiple communication protocols to receive requests for generating display logos, and feeds back relevant information to other associated modules or devices after the logo is generated.

3. The medical pipeline identification automatic generator according to claim 1, characterized in that: The identification setting module includes: Template generation unit: provides a visual template editing interface, supports custom settings for multiple graphic elements, font styles and color combinations, and has a built-in library of rich industry standard logo templates, which users can directly select and fine-tune; Data retrieval unit: Based on the data types and keywords required by the identification template, it interacts with the database management unit, uses multi-threaded data query technology, obtains multiple data fields in parallel for data retrieval, and has a data cache function to temporarily store the recently frequently used data in the high-speed cache area; Content improvement unit: Integrates multiple input methods, and performs real-time verification and intelligent prompts on the input content. When entering pipeline parameters, a drop-down list of parameters is provided for users to select based on existing database information.

4. The medical pipeline identification automatic generator according to claim 1, characterized in that: The identification processing module includes: Identity recognition unit: equipped with a variety of identity recognition hardware devices and deeply integrated with the medical institution's personnel management system to achieve real-time synchronization and update of identity data; Data conversion unit: According to the preset coding rules and encryption algorithms, the identity data obtained by the identity recognition unit is converted and processed, and added to the corresponding position according to the requirements of the identification template, and detailed log information of the identity conversion is recorded.

5. The medical pipeline identification automatic generator according to claim 1, characterized in that: The identification conversion module includes: Binding unit: uses precise image synthesis algorithm to overlay the identity information converted by the identification processing module with the template content improved by the identification setting module. During the binding process, the overlaid identification is verified; Request sending unit: Build a stable and reliable message queue mechanism, send the print request after generating the display mark to be printed to the printer body in order of priority, monitor the status and feedback the sent request, and when the printer body receives the request and starts processing.

6. The medical pipeline identification automatic generator according to claim 1, characterized in that: The display mark is printed in the form of a barcode or a two-dimensional code.

7. A method for automatically generating a medical pipeline identifier, using the method for automatically generating a medical pipeline identifier as claimed in any one of claims 1 to 6, characterized in that: The following steps are involved: Step 1: Create or select a suitable logo template through the template generation unit in the logo setting module, and make fine adjustments in the visual editing interface according to actual needs; Step 2: using the data retrieval unit of the identification setting module to interact with the database management unit in the printer body according to the type and keywords of the data required by the identification template, and to perform multi-threaded query and retrieve relevant data; Step 3: Through the content improvement unit of the identification setting module, with the help of multiple integrated input methods, other specific information on the template is supplemented, and the input content is verified and prompted in real time according to the database information; Step 4: The identity data of the current operator is read through the identity recognition hardware device, and is synchronized and updated in real time with the medical institution personnel management system. Then, the data conversion unit converts and processes the identity data according to the pre-set encoding rules and encryption algorithms; Step 5. Use the binding unit to overwrite and merge the identity information converted by the identification processing module with the template content improved by the identification setting module, and perform verification. If the verification is correct, the request sending unit will build a stable message queue mechanism and send the print request after generating the display identification to be printed to the printer body in priority order.

8. The method for automatically generating medical pipeline identification according to claim 6, characterized in that: In the step 4, the identity recognition hardware device adopts any one of fingerprint recognition and RFID card reader.

9. The method for automatically generating medical pipeline identification according to claim 6, characterized in that: The identity data in step 4 includes any one of fingerprint recognition, work number and password verification, and identity card.

10. The method for automatically generating medical pipeline identification according to claim 6, characterized in that: In the step 5, the pipeline type can be selected during printing, and custom pipeline information can be input, wherein the custom pipeline information includes any one of the retention time, replacement time, and retention depth.