Indwelling catheter management module and indwelling catheter management system
By designing an indwelling urinary catheter management module and using a Bluetooth transceiver module to automatically send urine volume data, the problems of untimely and inconvenient urine volume monitoring in the existing technology are solved, the timeliness and convenience of urine volume monitoring are achieved, and the needs of urine volume change monitoring in intensive care units and postoperative patients are met.
Patent Information
- Application Number
- CN202422409784.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing technology lacks timely and convenient urine volume monitoring equipment, which cannot meet the needs of monitoring urine volume changes in intensive care units, postoperative patients and patients with uremia.
A management module for indwelling urinary catheters is designed, which includes a Bluetooth transceiver module, a urinary catheter opening and closing module, a measurement module, and a display module. Urine volume data is automatically sent through the Bluetooth transceiver module, reducing dependence on medical staff and achieving timeliness and convenience in urine volume monitoring.
It improves the timeliness and convenience of urine volume monitoring, reduces dependence on medical staff, and provides real-time monitoring and data analysis capabilities of urine volume changes.
Smart Images

Figure CN223429769U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to indwelling urinary catheter technical field especially, it relates to a kind of indwelling urinary catheter management module and indwelling urinary catheter management system. BACKGROUND
[0002] The use rate of current indwelling urinary catheter is higher and higher, especially in intensive care unit, postoperative patient and uremia patient need to monitor urine volume change closely, to assess in vivo fluid, electrolyte, kidney function etc. However, there is no related equipment to monitor the urine volume change of patient in time for clinical actual use (such as urine volume determination, drawing curve, to assess etc.) to provide corresponding convenience.
[0003] Therefore, a kind of technical scheme based on indwelling urinary catheter urine volume monitoring with good timeliness and convenience is needed. UTILITY MODEL CONTENT
[0004] To solve the above technical problems, the utility model provides a kind of indwelling urinary catheter management module and indwelling urinary catheter management system.
[0005] The utility model solves technical scheme that it adopts to solve its technical problem: a kind of indwelling urinary catheter management module, including bluetooth transceiver module, urinary catheter opening and closing module, measurement module, display module;
[0006] The bluetooth transceiver module is electrically connected with the urinary catheter opening and closing module;
[0007] The urinary catheter opening and closing module is electrically connected with the measurement module and the display module respectively;
[0008] The urinary catheter opening and closing module is used for the detachable connection with the urinary catheter of the extracorporeal part of target patient's indwelling urinary catheter, and is used for controlling the pinch and opening of the indwelling urinary catheter;
[0009] The measurement module is loaded with the urine bag connected with the indwelling urinary catheter through its bearing area, and the urine bag is weighed.
[0010] Further, the urinary catheter opening and closing module includes single-chip microcomputer and urinary catheter switch piece;
[0011] The single-chip microcomputer is electrically connected with the urinary catheter switch piece;
[0012] The single-chip microcomputer is electrically connected with the bluetooth transceiver module, measurement module, display module respectively;
[0013] The urinary catheter switch piece is used for the detachable connection with the urinary catheter of the extracorporeal part of target patient's indwelling urinary catheter, and is used for controlling the pinch and opening of the indwelling urinary catheter.
[0014] Further, the urinary catheter opening and closing module further includes storage unit;
[0015] The storage unit is electrically connected with the single-chip microcomputer.
[0016] Further, the display module comprises a driving circuit and a display screen.
[0017] The display screen is electrically connected with the single-chip microcomputer through the driving circuit.
[0018] Further, the urinary tube opening and closing module further comprises an adjusting button.
[0019] The adjusting button is electrically connected with the single-chip microcomputer.
[0020] Further, the urinary tube opening and closing module further comprises a code scanner.
[0021] The code scanner is electrically connected with the single-chip microcomputer.
[0022] Further, a power module is further comprised.
[0023] The power module is electrically connected with the Bluetooth transceiver module, the urinary tube opening and closing module, the measuring module and the display module respectively.
[0024] The application further provides a urinary tube management system, comprising a control host and at least one urinary tube management module.
[0025] The urinary tube management module comprises a Bluetooth transceiver module, a urinary tube opening and closing module, a measuring module and a display module.
[0026] The Bluetooth transceiver module is electrically connected with the urinary tube opening and closing module.
[0027] The urinary tube opening and closing module is electrically connected with the measuring module and the display module respectively.
[0028] The urinary tube opening and closing module is used for detachably connecting with the urinary tube of the extracorporeal part of the urinary tube of the target patient, and is used for controlling the clamping and opening of the urinary tube.
[0029] The measuring module bears a urine bag connected with the urinary tube through the bearing area thereof, and weighs the urine bag.
[0030] The control host is communicatively connected with the Bluetooth transceiver module in the urinary tube management module through a main Bluetooth module.
[0031] Further, the urinary tube opening and closing module comprises a single-chip microcomputer and a urinary tube switch.
[0032] The single-chip microcomputer is electrically connected with the urinary tube switch.
[0033] The single-chip microcomputer is electrically connected with the Bluetooth transceiver module, the measuring module and the display module respectively.
[0034] The urinary tube switch is used for detachable connection with an extracorporeal part of an indwelling urinary tube of a target patient, and is used for controlling clamping and opening of the indwelling urinary tube.
[0035] Further, the urinary tube opening and closing module further comprises a storage unit.
[0036] The storage unit is electrically connected with the single-chip microcomputer.
[0037] The utility model discloses beneficial effects:
[0038] By the Bluetooth transceiver module and urinary tube opening and closing module electric connection, and urinary tube opening and closing module are connected with measurement module and display module respectively, can the urine volume data that measurement module measured is in time through the Bluetooth transceiver module automatic sending, reduced the dependence to medical staff, effectively improved the timeliness and convenience of urine volume monitoring. BRIEF DESCRIPTION OF DRAWINGS
[0039] Figure 1 The utility model provides a kind of indwelling urinary tube management module connection diagram for the utility model;
[0040] Figure 2 The utility model provides a kind of indwelling urinary tube and urine bag connection schematic view for the utility model;
[0041] Figure 3 The utility model provides a kind of indwelling urinary tube management module connection schematic view including single-chip microcomputer and urinary tube switch for the utility model;
[0042] Figure 4 The utility model provides a kind of indwelling urinary tube management module connection schematic view including storage unit for the utility model;
[0043] Figure 5 The utility model provides a kind of indwelling urinary tube management module connection schematic view including drive circuit and display screen for the utility model;
[0044] Figure 6 The utility model provides a kind of indwelling urinary tube management module connection schematic view including adjustment key for the utility model;
[0045] Figure 7 The utility model provides a kind of indwelling urinary tube management module connection schematic view including code scanner for the utility model;
[0046] Figure 8 The utility model provides a kind of indwelling urinary tube management module connection schematic view including power module for the utility model;
[0047] In the drawings, 11, Bluetooth transceiver module; 12, urinary catheter opening and closing module; 13, measurement module; 14, display module; 15, power module; 100, indwelling urinary catheter management module; 101, indwelling urinary catheter; 102, urine bag; 121, single-chip microcomputer; 122, urinary catheter opening and closing piece; 123, storage unit; 124, adjustment button; 125, code scanner; 141, drive circuit; 142, display screen. DETAILED DESCRIPTION
[0048] In order to deepen the understanding of the utility model, the utility model will be further described in detail below in combination with the drawings and examples, the examples are only used to explain the utility model, and do not constitute the limitation of the protection scope of the utility model.
[0049] Please refer to Figure 1 And Figure 2 The embodiment disclosed in the application relates to an indwelling urinary catheter management module 100, comprising a Bluetooth transceiver module 11, a urinary catheter opening and closing module 12, a measurement module 13, a display module 14;
[0050] The Bluetooth transceiver module 11 is electrically connected with the urinary catheter opening and closing module 12;
[0051] The urinary catheter opening and closing module 12 is electrically connected with the measurement module 13 and the display module 14 respectively;
[0052] The urinary catheter opening and closing module 12 is used for detachable connection with the extracorporeal part of the indwelling urinary catheter 101 of a target patient, and is used for controlling the clamping and opening of the indwelling urinary catheter 101;
[0053] The measurement module 13 carries a urine bag 102 connected with the indwelling urinary catheter 101 through the bearing area thereof, and weighs the urine bag 102.
[0054] It should be noted that the indwelling urinary catheter management module 100 can be used in combination with the service host through Bluetooth in formal use, or can be used alone. The service host can be any one or more of a computer host, a mobile terminal, and a server, and needs to be controlled and processed based on a software program when implementing corresponding functions. In this embodiment, the Bluetooth transceiver module 11 adopts a conventional Bluetooth module, which is mainly responsible for receiving external instructions (such as external instructions from the service host) and sending measurement data (obtained by the measurement module 13). After receiving the external instructions, the Bluetooth transceiver module 11 transmits them to the urinary catheter opening and closing module 12. The urinary catheter opening and closing module 12 can decode the received external instructions to obtain control instructions, and execute clamping and opening operations on the indwelling urinary catheter 101 based on the control instructions, while controlling the measurement module 13 to perform a weighing operation on the urine bag 102 to obtain measurement data. The measurement module 13 adopts a conventional measurement tool to dynamically measure the weight of the urine bag 102 in real time. The display module 14 can display external instructions, measurement data, indwelling time of the indwelling urinary catheter 101, etc., which can be adjusted according to actual needs. In specific implementation, assuming that the nurse station is provided with a service host, the indwelling urinary catheter management module 100 can be arranged in a general ward or an intensive care unit, a hemodialysis room, an endocrinology department, a urology department, etc., and the indwelling urinary catheter management module 100 can establish a Bluetooth communication connection with the service host through the Bluetooth transceiver module 11. The measurement data obtained by the measurement module 13 by weighing the urine bag 102 can be transmitted to the service host of the nurse station in real time through Bluetooth, and the service host can analyze the measurement data after registration, thereby realizing dynamic monitoring of the urine volume of the patient, and based on the measurement data, a urine volume curve can be drawn to provide objective indexes for clinical treatment and nursing. The service host can also send instructions to open or clamp the indwelling urinary catheter 101 to the indwelling urinary catheter management module 100 through Bluetooth at regular time intervals, and the display module 14 can display the urine volume obtained based on the measurement data in real time to play a prompting role.
[0055] Further, please refer to Figure 3 The urinary catheter opening and closing module 12 comprises a single-chip microcomputer 121 and a urinary catheter switch element 122.
[0056] The single-chip microcomputer 121 is electrically connected with the urinary catheter switch element 122.
[0057] The single-chip microcomputer 121 is electrically connected with the Bluetooth transceiver module 11, the measurement module 13, and the display module 14, respectively.
[0058] The urinary catheter switch element 122 is used for detachably connecting with the extracorporeal part of the indwelling urinary catheter 101 of the target patient, and is used for controlling clamping and opening of the indwelling urinary catheter 101.
[0059] It should be noted that the microcontroller 121 requires coordination with corresponding peripheral circuits during its operation, and these peripheral circuits can employ conventional circuit design methods. In this embodiment, the microcontroller 121 can be electrically connected to the catheter switch 122, the Bluetooth transceiver module 11, the measurement module 13, and the display module 14 via corresponding pins. The pins can be selected based on actual needs. In specific implementations, the catheter switch 122 can achieve clamping and opening actions using high and low voltage levels. The specific logic relationship can be adjusted based on actual needs. For example, if the microcontroller 121 sends a high voltage level to the catheter switch 122, the catheter switch 122 clamps the catheter at the junction with it. The catheter switch 122 applies pressure to the junction, causing the catheter to deform under the external force until it closes. If the microcontroller 121 sends a low voltage level to the catheter switch 122, the catheter switch 122 opens the catheter at the junction with it. The catheter switch 122 removes the pressure, causing the catheter to return to the conductive state due to the deformation recovery force. The urinary catheter switch 122 can achieve closing and opening actions using either a pulley or clamping structure. Both pulley and clamping structures are conventional. The urinary catheter switch 122 is detachably connected to the extracorporeal portion of the target patient's indwelling urinary catheter 101, thereby enhancing the ease of use of the indwelling urinary catheter management module 100. The detachable connection can be a snap-fit structure, or other existing structures can be selected based on actual needs.
[0060] For further information, please refer to Figure 4 , the urinary catheter opening and closing module 12 further includes a storage unit 123;
[0061] The storage unit 123 is electrically connected to the single chip computer 121 .
[0062] In this embodiment, the storage unit 123 can be a conventional storage chip, and the storage unit 123 receives and stores relevant data from the single-chip microcomputer 121. The storage unit 123 is preferably a storage chip that can still save data after power failure. The single-chip microcomputer 121 can retrieve the data stored in the storage unit 123 at any time as needed. For example, the measurement data can be transmitted to the storage unit 123 in real time through the single-chip microcomputer 121 for storage, and the measurement parameters configured based on the patient information can also be saved. Based on the measurement parameters configured based on the patient information, the measurement module 13 can be controlled to implement different measurement methods for different patients, and the obtained measurement data is more targeted. The measurement parameters can be generated by a remote service host and sent to the indwelling urinary catheter management module 100 via Bluetooth. Setting up the storage unit 123 separately can also prevent the indwelling urinary catheter management module 100 from losing data due to power failure abnormalities, thereby improving data security.
[0063] For further information, please refer to Figure 5 , the display module 14 includes a driving circuit 141 and a display screen 142;
[0064] The display screen 142 is electrically connected with the single-chip microcomputer 121 through the driving circuit 141.
[0065] In the embodiment, the driving circuit 141 is used to drive the display screen 142. The specific circuit of the driving circuit 141 is determined according to the type, model, specification, etc. of the display screen 142. The display screen 142 can adopt an LED display screen or an LCD display screen, etc.
[0066] Further, referring to Figure 6 , the urinary catheter opening and closing module 12 further comprises an adjusting button 124;
[0067] The adjusting button 124 is electrically connected with the single-chip microcomputer 121.
[0068] In the embodiment, the adjusting button 124 can send an adjusting signal to the single-chip microcomputer 121, and the single-chip microcomputer 121 adjusts the display information on the display module 14 according to the adjusting signal. For example, the measuring mode information, the urinary catheter indwelling time, the latest weighing result, the 24-hour weighing result, the patient information, etc. carried by the external instruction can be switched to be displayed through the adjusting button 124. The adjusting button 124 can adopt a single-button type button or a plurality of button type buttons, which can be selected according to actual needs. In the application scenario in which the display module 14 comprises the driving circuit 141 and the display screen 142, the adjusting button 124 can adjust the information displayed on the display screen 142.
[0069] Further, referring to Figure 7 , the urinary catheter opening and closing module 12 further comprises a code scanner 125;
[0070] The code scanner 125 is electrically connected with the single-chip microcomputer 121.
[0071] In the embodiment, the code scanner 125 adopts a conventional model, which is used to scan bar code or two-dimensional code information, and transmit the scanned data information to the single-chip microcomputer 121. The single-chip microcomputer 121 can display the data information through the display module 14, or send the data information to a remote service host through the Bluetooth transceiver module 11, and process the data information by a system in the service host. In a specific implementation manner, the bar code or two-dimensional code here is a patient medical record bar code, which can be scanned by the code scanner 125 to check whether the patient information is consistent with the system, so as to improve the data accuracy.
[0072] Further, referring to Figure 8 , further comprising a power module 15;
[0073] The power module 15 is electrically connected with the Bluetooth transceiver module 11, the urinary catheter opening and closing module 12, the measuring module 13 and the display module 14 respectively.
[0074] In the embodiment, the power module 15 can adopt a mobile power supply, a conventional 220V-to-12V or other voltage conversion circuit, or a combination of a mobile power supply and a voltage conversion circuit.
[0075] The application further provides a urinary catheter management system, which comprises a control host and at least one urinary catheter management module 100.
[0076] The urinary catheter management module 100 comprises a Bluetooth transceiver module 11, a urinary catheter opening and closing module 12, a measuring module 13 and a display module 14.
[0077] The Bluetooth transceiver module 11 is electrically connected with the urinary catheter opening and closing module 12.
[0078] The urinary catheter opening and closing module 12 is electrically connected with the measuring module 13 and the display module 14 respectively.
[0079] The urinary catheter opening and closing module 12 is used for detachably connecting with an extracorporeal part of a urinary catheter 101 of a target patient and controlling clamping and opening of the urinary catheter 101.
[0080] The measuring module 13 bears a urine bag 102 connected with the urinary catheter 101 through a bearing area thereof and weighs the urine bag 102.
[0081] The control host is communicatively connected with the Bluetooth transceiver module 11 in the urinary catheter management module 100 through a main Bluetooth module.
[0082] In the embodiment, the control host can be understood as a service host, and can be specifically a computer, a mobile terminal, a server, etc., and is configured with a corresponding software program. The main Bluetooth module is a conventional Bluetooth module. The control host can set a corresponding measurement mode according to specific information of a patient, and send the measurement mode to the indwelling urinary catheter management module 100 in a data form through Bluetooth. The urinary catheter opening and closing module 12 in the indwelling urinary catheter management module 100 can control the measurement frequency of the measurement module 13 to the urine bag 102 according to the measurement mode. The control host is also used to receive the measurement result of the indwelling urinary catheter management module 100, and perform corresponding data analysis, for example, after the measurement module 13 weighs the urine bag 102 to obtain measurement data, the relevant measurement data is transmitted to the urinary catheter opening and closing module 12, the urinary catheter opening and closing module 12 transmits the measurement data to the control host in real time through the Bluetooth transceiver module 11, and the control host can draw a corresponding urine volume curve according to the measurement data, the urine volume curve can be drawn according to the urine volume per hour, so as to judge whether the liquid supplement is sufficient, whether the urinary catheter is blocked, the bladder function level, etc., to provide objective indexes for clinical treatment and nursing.
[0083] Further, in the indwelling urinary catheter management system, the urinary catheter opening and closing module 12 comprises a single-chip microcomputer 121 and a urinary catheter switch 122;
[0084] The single-chip microcomputer 121 is electrically connected with the urinary catheter switch 122;
[0085] The single-chip microcomputer 121 is electrically connected with the Bluetooth transceiver module 11, the measurement module 13 and the display module 14 respectively;
[0086] The urinary catheter switch 122 is used for detachable connection with the extracorporeal part of the indwelling urinary catheter 101 of a target patient, and is used for controlling clamping and opening of the indwelling urinary catheter 101.
[0087] Further, in the indwelling urinary catheter management system, the urinary catheter opening and closing module 12 further comprises a storage unit 123;
[0088] The storage unit 123 is electrically connected with the single-chip microcomputer 121.
[0089] Further, in the indwelling urinary catheter management system, the display module 14 comprises a driving circuit 141 and a display screen 142;
[0090] The display screen 142 is electrically connected with the single-chip microcomputer 121 through the driving circuit 141.
[0091] Further, in the indwelling urinary catheter management system, the urinary catheter opening and closing module 12 further comprises an adjusting button 124;
[0092] The adjusting button 124 is electrically connected with the single-chip microcomputer 121.
[0093] Further, in the indwelling urinary catheter management system, the urinary catheter opening and closing module 12 further comprises a code scanner 125;
[0094] The code scanner 125 is electrically connected with the single-chip microcomputer 121.
[0095] Further, in the indwelling urinary catheter management system, a power module 15 is further included;
[0096] The power module 15 is electrically connected with the Bluetooth transceiver module 11, the urinary catheter opening and closing module 12, the measuring module 13 and the display module 14 respectively.
[0097] The above embodiments should not limit the utility model in any way, and any technical solution obtained by equivalent replacement or equivalent conversion falls within the protection scope of the utility model.
Claims
1. An indwelling urinary catheter management module, characterized in that: It includes Bluetooth transceiver module, urinary catheter opening and closing module, measurement module and display module; The Bluetooth transceiver module is electrically connected to the urinary catheter opening and closing module; The urinary catheter opening and closing module is electrically connected to the measuring module and the display module respectively; The urinary catheter opening and closing module is used to be detachably connected to the extracorporeal portion of the target patient's indwelling urinary catheter and to control the clamping and opening of the indwelling urinary catheter; The measuring module carries the urine bag connected to the indwelling urinary catheter through its carrying area and weighs the urine bag.
2. The indwelling urinary catheter management module according to claim 1, characterized in that: The urinary catheter opening and closing module includes a single chip microcomputer and a urinary catheter switch component; The single chip microcomputer is electrically connected to the urinary catheter switch component; The single chip microcomputer is electrically connected to the Bluetooth transceiver module, the measurement module, and the display module respectively; The urinary catheter switch component is used to be detachably connected to the extracorporeal portion of the target patient's indwelling urinary catheter and is used to control the clamping and opening of the indwelling urinary catheter.
3. The indwelling urinary catheter management module according to claim 2, characterized in that: The urinary catheter opening and closing module also includes a storage unit; The storage unit is electrically connected to the single chip computer.
4. The indwelling urinary catheter management module according to claim 2, characterized in that: The display module includes a driving circuit and a display screen; The display screen is electrically connected to the single chip computer through the driving circuit.
5. The indwelling urinary catheter management module according to claim 2, characterized in that: The urinary catheter opening and closing module also includes an adjustment button; The adjustment button is electrically connected to the single chip computer.
6. The indwelling urinary catheter management module according to claim 2, characterized in that: The urinary catheter opening and closing module also includes a code scanner; The code scanner is electrically connected to the single chip computer.
7. The indwelling urinary catheter management module according to claim 1, characterized in that: Also includes a power module; The power supply module is electrically connected to the Bluetooth transceiver module, the urinary catheter opening and closing module, the measuring module, and the display module respectively.
8. An indwelling urinary catheter management system, characterized in that: It comprises a control host and at least one indwelling urinary catheter management module according to claim 1; The control host is connected to the Bluetooth transceiver module in the indwelling urinary catheter management module through the main Bluetooth module.
9. The indwelling urinary catheter management system according to claim 8, characterized in that: The urinary catheter opening and closing module includes a single chip microcomputer and a urinary catheter switch component; The single chip microcomputer is electrically connected to the urinary catheter switch component; The single chip microcomputer is electrically connected to the Bluetooth transceiver module, the measurement module, and the display module respectively; The urinary catheter switch component is used to be detachably connected to the extracorporeal portion of the target patient's indwelling urinary catheter and is used to control the clamping and opening of the indwelling urinary catheter.
10. The indwelling urinary catheter management system according to claim 9, characterized in that: The urinary catheter opening and closing module also includes a storage unit; The storage unit is electrically connected to the single chip computer.