CN217566943U - Alarm type urine transfusion device - Google Patents

Alarm type urine transfusion device Download PDF

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Publication number
CN217566943U
CN217566943U CN202221250929.6U CN202221250929U CN217566943U CN 217566943 U CN217566943 U CN 217566943U CN 202221250929 U CN202221250929 U CN 202221250929U CN 217566943 U CN217566943 U CN 217566943U
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alarm
valve
urination
urinary
component
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王思清
魏家富
赵庆生
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Norris Changzhou Medical Device Industry Research Institute Co ltd
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Norris Changzhou Medical Device Industry Research Institute Co ltd
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Abstract

The utility model discloses an alarm type urine transfusion device, which comprises a catheter, a main control seat, a valve control component, a urination component, a pressure sensor, a controller and a first alarm; wherein, a connecting channel is arranged in the main control seat; one end part of the connecting channel is connected with one end part of the catheter; the other end of the catheter is used for being inserted into the bladder, and a urethral orifice is arranged on the end of the catheter inserted into the bladder; the other end of the connecting channel is connected with the urination component through the valve control component; the valve control component comprises a solenoid valve, a manual valve and a switching component which is operated to enable the connecting channel to be connected with the urination component through the solenoid valve or is operated to enable the connecting channel to be connected with the urination component through the manual valve; the utility model discloses can realize the switching of automatic urination and manual urination, can be applicable to the patient of different demands, can enlarge suitable crowd.

Description

Alarm type urine transfusion device
Technical Field
The utility model relates to an alarm type urine transfusion device.
Background
At present, a urinary catheter and a urine bag are generally included in a urinary device, and the urinary catheter can guide urine in a urinary bladder to the urine bag after being inserted into the urinary bladder from a urethra of a human body, so that a function of helping a patient to urinate is achieved. However, the existing urine transporting device has a single function, can only realize one urination mode of automatic urination and manual urination, and cannot realize switching between automatic urination and manual urination, so that the existing urine transporting device can only be suitable for patients with certain fixed requirements, is narrow in applicable crowd, and cannot change the urination mode according to the use requirements of the patients.
Disclosure of Invention
The utility model aims to solve the technical problem that overcome prior art's defect, provide an alarm type ureter, it can realize the switching of automatic urination and manual urination, can be applicable to the patient of different demands, can enlarge and be suitable for the crowd.
In order to solve the technical problem, the technical scheme of the utility model is that: an alarm type urine conveying device comprises a catheter, a main control seat, a valve control component, a urination component, a pressure sensor, a controller and a first alarm; wherein the content of the first and second substances,
a connecting channel is arranged in the main control seat;
one end part of the connecting channel is connected with one end part of the catheter;
the other end of the urinary catheter is used for being inserted into the urinary bladder, and a urine guide hole for enabling urine in the urinary bladder to flow into the urinary catheter is formed in the end of the urinary catheter inserted into the urinary bladder;
the other end of the connecting channel is connected with the urination component through the valve control component;
the valve control component comprises a solenoid valve, a manual valve and a switching component which is operated to enable the connecting channel and the urination component to be connected through the solenoid valve or operated to enable the connecting channel and the urination component to be connected through the manual valve;
the pressure sensor is connected to the end of the urinary catheter inserted into the bladder and is used for collecting the pressure of urine in the bladder when the urinary catheter is inserted into the bladder;
the input end of the controller is connected with the pressure sensor, and the controller is in control connection with the electromagnetic valve and is used for controlling the on-off of the electromagnetic valve according to a pressure signal acquired by the pressure sensor;
the first alarm is connected with the controller so that the controller can control the first alarm to give an alarm according to the pressure signal collected by the pressure sensor.
Further in order to prevent the catheter from slipping out of the bladder, a branch pipe part is connected with the catheter;
one end part of the catheter inserted into the bladder is connected with a balloon which is used for abutting against the inner wall of the bladder after being inflated;
an inflation channel is arranged in the catheter, one end part of the inflation channel is communicated with the air bag, and the other end part of the inflation channel extends into the branch pipe part;
and the branch pipe part is connected with an inflation one-way valve for controlling the on-off of the inflation channel.
Further, in order to control the switch of the first alarm, the alarm type urine transfusion device also comprises a control switch which is connected with the first alarm and is used for controlling the switch of the first alarm.
Further, a guide wire channel for the guide wire on the pressure sensor to pass through is arranged in the catheter.
The specific structure of the valve control component is further provided, and the manual valve is connected with one end of the electromagnetic valve in parallel and then connected with the connecting channel;
the manual valve is connected with the other end of the electromagnetic valve in parallel and then is connected with the urination component;
the switching component is a linkage switch, when the linkage switch is switched to a first position, the connecting channel is connected with the urination component through the electromagnetic valve, and when the linkage switch is switched to a second position, the connecting channel is connected with the urination component through the manual valve.
Further provides another specific structure of the valve control component, and the switching component is a three-way valve;
the inlet of the three-way valve is communicated with the connecting channel;
one outlet of the three-way valve is connected with one end of the electromagnetic valve;
the other outlet of the three-way valve is communicated with one end of the manual valve;
the other end of the electromagnetic valve and the other end of the manual valve are connected in parallel and then communicated with the urination component.
Further, the solenoid valve and the manual valve are communicated with the urination unit through a three-way joint.
The specific structure of the urination component is further provided, and the urination components are two, wherein one urination component is a sewage discharge pipe, and the other urination component is a urine bag;
the blow-off pipe and the urine bag are detachably connected to the tee joint.
Further, in order to remind the patient to replace the urine bag, a second alarm and a liquid level sensor are connected to the urine bag;
the liquid level sensor is connected with the second alarm and used for sending a signal to drive the second alarm to give an alarm when detecting that the liquid level of urine in the urine bag is higher than a critical value.
Further, the urine bag is detachably connected with the three-way joint through a hose;
the hose is connected with a first hook used for being hung on a waistband of a patient;
the main control seat is connected with a second hook used for hanging the main control seat on the waistband of the patient.
After the technical scheme is adopted, when the switching assembly is operated to enable the connecting channel to be connected with the urine discharging component through the electromagnetic valve, the manual valve does not work; when the pressure of the urine collected by the pressure sensor is higher than a urination set value, the controller controls the electromagnetic valve to be opened, and the urine flows through the catheter, the connecting channel, the electromagnetic valve and the urination component from the bladder in sequence and then is discharged; then the urine pressure that pressure sensor gathered reduces, the controller control the solenoid valve is closed, and urine flows and is blocked, and then can realize automatic urination.
When the pressure of the urine collected by the pressure sensor is greater than an alarm set value, the controller controls the first alarm to give an alarm; when the switching assembly is operated to enable the connecting channel to be connected with the urine discharging component through the manual valve, the electromagnetic valve is not in effect, and at the moment, when a patient has a urine intention or the first alarm gives an alarm or any time urine is required, the manual valve can be opened, so that the urine is discharged from the urinary bladder after sequentially flowing through the urinary catheter, the connecting channel, the manual valve and the urine discharging component; when the manual valve is closed, the urine flow is blocked, so that the urine cannot be discharged, manual urine discharge can be realized at any time, and the first alarm is used for reminding patients who cannot sense the urine intention to timely discharge urine.
Only when the automatic urination, the urination can be carried out when the pressure of the urine collected by the pressure sensor reaches the urination set value, the urination time cannot be freely controlled, the manual urination needs continuous operation of a patient, and the alarming type urination device is relatively troublesome.
Drawings
Fig. 1 is a schematic structural view of the alarm type urine transporting device of the present invention;
fig. 2 is another schematic structural view of the alarm type urine transporting device of the present invention.
Detailed Description
In order that the present invention may be more clearly understood, the following detailed description is given with reference to the accompanying drawings.
Example one
As shown in fig. 1 and 2, an alarm type urine transporter comprises a urinary catheter 1, a main control seat 2, a valve control component 200, a urine discharge component 3, a pressure sensor 4, a controller 5 and a first alarm 6; wherein the content of the first and second substances,
a connecting channel 7 is arranged in the main control seat 2;
one end of the connection channel 7 is connected with one end of the urinary catheter 1;
the other end of the urinary catheter 1 is used for being inserted into the urinary bladder 100, and the end of the urinary catheter 1 inserted into the urinary bladder 100 is provided with a urethral orifice 8 for enabling urine in the urinary bladder 100 to flow into the urinary catheter 1;
the other end of the connecting channel 7 is connected with the urination unit 3 through the valve control unit 200;
the valve control unit 200 comprises a solenoid valve 9, a manual valve 10 and a switching assembly for being operated to connect the connection channel 7 with the urine discharge unit 3 through the solenoid valve 9 or for being operated to connect the connection channel 7 with the urine discharge unit 3 through the manual valve 10;
the pressure sensor 4 is connected to the end of the urinary catheter 1 inserted into the urinary bladder 100 and is used for collecting the pressure of urine in the urinary bladder 100 when the urinary catheter 1 is inserted into the urinary bladder 100;
the input end of the controller 5 is connected with the pressure sensor 4, and the controller 5 is in control connection with the electromagnetic valve 9 and is used for controlling the on-off of the electromagnetic valve 9 according to a pressure signal acquired by the pressure sensor 4;
the first alarm 6 is connected with the controller 5 so that the controller 5 can control the first alarm 6 to give an alarm according to the pressure signal acquired by the pressure sensor 4; specifically, when the switch assembly is operated to connect the connection passage 7 with the urination unit 3 through the solenoid valve 9, the manual valve 10 is not operated; at this time, when the pressure of the urine collected by the pressure sensor 4 is higher than a urination set value, the controller 5 controls the electromagnetic valve 9 to be opened, and the urine flows through the urinary catheter 1, the connecting channel 7, the electromagnetic valve 9 and the urination component 3 from the urinary bladder 100 in sequence and then is discharged; then the pressure of the urine collected by the pressure sensor 4 is reduced, the controller 5 controls the electromagnetic valve 9 to be closed, the urine flow is blocked, and then automatic urination can be realized.
More specifically, when the pressure of the urine collected by the pressure sensor 4 is greater than an alarm set value, the controller 5 controls the first alarm 6 to give an alarm; when the switching assembly is operated to connect the connecting channel 7 with the urination component 3 through the manual valve 10, the electromagnetic valve 9 is not activated, and the manual valve 10 can be opened when the patient has the intention to urinate or the first alarm 6 gives an alarm or when urination is needed, so that urine flows through the urinary catheter 1, the connecting channel 7, the manual valve 10 and the urination component 3 in sequence from the urinary bladder 100 and is discharged; the flow of urine is blocked when the manual valve 10 is closed so that the urine is not discharged, thereby achieving the manual urine discharge at any time. The first alarm 6 is used for reminding the patient who cannot sense the desire to urinate in time.
Only when automatic micturition can urinate when the pressure of the urine that pressure sensor 4 gathered reaches the urination setting value, unable free control urination time, manual micturition needs the continuous operation of patient, it is more troublesome, the alarm type ureter device of this embodiment can freely switch between automatic micturition and manual micturition according to patient's needs, can adapt to different user demands, it is more convenient to use, also can be applicable to the patient of different demands, the applicable crowd scope has been enlarged.
In this embodiment, the urination setting value and the alarm setting value may be equal or unequal, the controller 5 and the first alarm 6 may be both mounted and connected to the main control base 2, and the controller 5 may be, but is not limited to, a PLC controller 5.
As shown in fig. 1 and 2, a branch tube part 11 can be connected to the catheter 1;
the end part of the catheter 1 inserted into the bladder 100 is connected with a balloon 12 which is used for abutting against the inner wall of the bladder 100 after being inflated;
an inflation channel 13 is arranged in the urinary catheter 1, one end part of the inflation channel 13 is communicated with the air bag 12, and the other end part of the inflation channel 13 extends into the branch pipe part 11;
the branch pipe part 11 is connected with an inflation one-way valve 14 for controlling the on-off of the inflation channel 13; specifically, the specific structure of the inflation check valve 14 is the prior art well known to those skilled in the art, and is not described in detail in this embodiment; the balloon 12 is used to prevent the catheter 1 from slipping out of the bladder 100.
As shown in fig. 1 and 2, the alarm type urine transporter may further include a control switch 15 connected to the first alarm 6 and used for controlling the switch of the first alarm 6; specifically, when the connecting channel 7 is connected with the urination component 3 through the electromagnetic valve 9, the control switch 15 is closed to close the first alarm device 6, and the first alarm device 6 does not give an alarm; when the control switch 15 is opened when the connecting channel 7 is connected with the urination unit 3 through the manual valve 10, the first alarm 6 is turned on, and the first alarm 6 gives an alarm under the control of the controller 5. In this embodiment, the first alarm 6 may be connected to the main control seat 2.
As shown in fig. 1 and 2, a lead channel 16 for a lead of the pressure sensor 4 to pass through may be provided in the urinary catheter 1.
In the embodiment, the manual valve 10 is connected with one end of the electromagnetic valve 9 in parallel and then is connected with the connecting channel 7;
the manual valve 10 is connected with the other end of the electromagnetic valve 9 in parallel and then is connected with the urination component 3;
the switching component is a linkage switch, when the linkage switch is switched to a first position, the connecting channel 7 is connected with the urination component 3 through the electromagnetic valve 9, and when the linkage switch is switched to a second position, the connecting channel 7 is connected with the urination component 3 through the manual valve 10.
Specifically, the electromagnetic valve 9 and the manual valve 10 are communicated with the urination component 3 through a three-way joint 18; wherein, three interfaces of the three-way joint 18 are respectively connected with the electromagnetic valve 9, the manual valve 10 and the urination component 3.
As shown in fig. 1 and 2, two urine discharging components 3 can be provided, wherein one urine discharging component 3 is a sewage pipe 19, and the other urine discharging component 3 is a urine bag 20;
the drainage pipe 19 and the urine bag 20 are detachably connected to the three-way joint 18; specifically, the urine bag 20 can be detached from the three-way joint 18 during manual urination, and the drainage pipe 19 is connected to the three-way joint 18, so that urine can be drained through the drainage pipe 19; the waste pipe 19 can be detached from the three-way joint 18 at the time of automatic urination, and the urine bag 20 can be connected to the three-way joint 18, so that urine can flow into the urine bag 20. More specifically, the three-way joint 18 is provided with a quick connector, and the sewage draining pipe 19 and the urine bag 20 are detachably connected with the three-way joint 18 through the quick connector.
As shown in fig. 1, a second alarm 21 and a liquid level sensor 22 can be connected to the urine bag 20;
the liquid level sensor 22 is connected with the second alarm 21 and is used for sending a signal to drive the second alarm 21 to send out an alarm when detecting that the liquid level of urine in the urine bag 20 is higher than a critical value, so as to remind a patient to replace the urine bag 20; the first alarm 6 and the second alarm 21 may be, but are not limited to, buzzers.
As shown in fig. 1, the urine bag 20 is detachably connected to the three-way joint 18 through a hose 23;
the hose 23 is connected with a first hook 24 used for hanging on the waistband of a patient;
the main control seat 2 is connected with a second hook used for hanging the main control seat 2 on the waistband of the patient.
Example two
As shown in fig. 1 and 2, another alarm type urine delivery device comprises a urinary catheter 1, a main control seat 2, a valve control component 200, a urine discharge component 3, a pressure sensor 4, a controller 5 and a first alarm 6; wherein the content of the first and second substances,
a connecting channel 7 is arranged in the main control seat 2;
one end of the connection channel 7 is connected with one end of the urinary catheter 1;
the other end of the urinary catheter 1 is used for being inserted into the urinary bladder 100, and the end of the urinary catheter 1 inserted into the urinary bladder 100 is provided with a urethral catheterization hole 8 for enabling urine in the urinary bladder 100 to flow into the urinary catheter 1;
the other end of the connecting channel 7 is connected with the urination unit 3 through the valve control unit 200;
the valve control unit 200 comprises a solenoid valve 9, a manual valve 10 and a switching assembly for being operated to connect the connecting channel 7 with the urine discharge unit 3 through the solenoid valve 9 or for being operated to connect the connecting channel 7 with the urine discharge unit 3 through the manual valve 10;
the pressure sensor 4 is connected to the end of the urinary catheter 1 inserted into the urinary bladder 100 and is used for collecting the pressure of urine in the urinary bladder 100 when the urinary catheter 1 is inserted into the urinary bladder 100;
the input end of the controller 5 is connected with the pressure sensor 4, and the controller 5 is in control connection with the electromagnetic valve 9 and is used for controlling the on-off of the electromagnetic valve 9 according to a pressure signal acquired by the pressure sensor 4;
the first alarm 6 is connected with the controller 5 so that the controller 5 can control the first alarm 6 to give an alarm according to the pressure signal acquired by the pressure sensor 4; specifically, when the switch assembly is operated to connect the connection passage 7 with the urination unit 3 through the solenoid valve 9, the manual valve 10 is not operated; at this time, when the pressure of the urine collected by the pressure sensor 4 is higher than a urination set value, the controller 5 controls the electromagnetic valve 9 to be opened, and the urine flows through the urinary catheter 1, the connecting channel 7, the electromagnetic valve 9 and the urination component 3 from the urinary bladder 100 in sequence and then is discharged; then the urine pressure that pressure sensor 4 gathered reduces, controller 5 control solenoid valve 9 closes, and the urine flow is blocked, and then can realize automatic micturition.
More specifically, when the pressure of the urine collected by the pressure sensor 4 is greater than an alarm set value, the controller 5 controls the first alarm 6 to give an alarm; when the switching assembly is operated to connect the connecting channel 7 with the urination component 3 through the manual valve 10, the electromagnetic valve 9 is not activated, and the manual valve 10 can be opened when the patient has the intention to urinate or the first alarm 6 gives an alarm or when urination is needed, so that urine flows through the urinary catheter 1, the connecting channel 7, the manual valve 10 and the urination component 3 in sequence from the urinary bladder 100 and is discharged; the flow of urine is blocked when the manual valve 10 is closed so that the urine is not discharged, thereby achieving the manual urine discharge at any time. The first alarm 6 is used for reminding the patient who cannot sense the desire to urinate in time.
Only can urinate when the pressure of the urine that pressure sensor 4 gathered reaches the urination setting value during automatic urination, unable free control urination time, manual urination needs the continuous operation of patient, it is more troublesome, the alarm type ureter device of this embodiment can freely switch between automatic urination and manual urination according to patient's needs, can adapt to different user demands, it is more convenient to use, also can be applicable to the patient of different demands, applicable crowd scope has been enlarged.
In this embodiment, the urination setting value and the alarm setting value may be equal or unequal, the controller 5 and the first alarm 6 may be both mounted and connected to the main control base 2, and the controller 5 may be, but is not limited to, a PLC controller 5.
As shown in fig. 1 and 2, a branch tube part 11 can be connected to the catheter 1;
the end part of the catheter 1 inserted into the bladder 100 is connected with a balloon 12 which is used for abutting against the inner wall of the bladder 100 after being inflated;
an inflation channel 13 is arranged in the urinary catheter 1, one end part of the inflation channel 13 is communicated with the air bag 12, and the other end part of the inflation channel 13 extends into the branch pipe part 11;
the branch pipe part 11 is connected with an inflation one-way valve 14 for controlling the on-off of the inflation channel 13; specifically, the specific structure of the inflation check valve 14 is the prior art well known to those skilled in the art, and is not described in detail in this embodiment; the balloon 12 is used to prevent the catheter 1 from slipping out of the bladder 100.
As shown in fig. 1 and 2, the alarm type urine delivery device may further comprise a control switch 15 connected to the first alarm 6 and used for controlling the switch of the first alarm 6; specifically, when the connecting channel 7 is connected with the urination component 3 through the electromagnetic valve 9, the control switch 15 is closed to close the first alarm device 6, and the first alarm device 6 does not give an alarm; when the control switch 15 is opened when the connecting channel 7 is connected with the urination unit 3 through the manual valve 10, the first alarm 6 is turned on, and the first alarm 6 gives an alarm under the control of the controller 5. In this embodiment, the first alarm 6 may be connected to the main control base 2.
As shown in fig. 1 and 2, a lead channel 16 for a lead of the pressure sensor 4 to pass through may be provided in the urinary catheter 1.
In this embodiment, the switching component may be a three-way valve 17;
the inlet of the three-way valve 17 is communicated with the connecting channel 7;
one outlet of the three-way valve 17 is connected with one end of the electromagnetic valve 9;
the other outlet of the three-way valve 17 is communicated with one end of the manual valve 10;
the other end of the electromagnetic valve 9 and the other end of the manual valve 10 are connected in parallel and then communicated with the urination component 3; when automatic urination is required, the three-way valve 17 is shifted to make the urine in the connecting channel 7 flow into the urination part 3 after flowing through the electromagnetic valve 9; when manual urination is needed, the three-way valve 17 is shifted to enable the urine in the connecting channel 7 to flow into the urination component 3 after flowing through the manual valve 10; the specific structures of the electromagnetic valve 9 and the manual valve 10 are well known in the prior art, and are not described in detail in this embodiment.
Specifically, the electromagnetic valve 9 and the manual valve 10 are communicated with the urination component 3 through a three-way joint 18; wherein, three interfaces of the three-way joint 18 are respectively connected with the electromagnetic valve 9, the manual valve 10 and the urination component 3.
As shown in fig. 1 and 2, two urine discharging components 3 can be provided, wherein one urine discharging component 3 is a sewage pipe 19, and the other urine discharging component 3 is a urine bag 20;
the sewage discharge pipe 19 and the urine bag 20 are detachably connected to the three-way joint 18; specifically, the urine bag 20 can be detached from the three-way joint 18 during manual urination, and the drainage pipe 19 is connected to the three-way joint 18, so that urine can be drained through the drainage pipe 19; the waste pipe 19 can be detached from the three-way joint 18 at the time of automatic urination, and the urine bag 20 can be connected to the three-way joint 18, so that urine can flow into the urine bag 20. More specifically, the three-way joint 18 is provided with a quick-connection plug, and the sewage discharge pipe 19 and the urine bag 20 are detachably connected with the three-way joint 18 through the quick-connection plug.
As shown in fig. 1, a second alarm 21 and a liquid level sensor 22 can be connected to the urine bag 20;
the liquid level sensor 22 is connected with the second alarm 21 and is used for sending a signal to drive the second alarm 21 to send out an alarm when the liquid level of urine in the urine bag 20 is detected to be higher than a critical value, so as to remind a patient to replace the urine bag 20; the first alarm 6 and the second alarm 21 may be, but are not limited to, buzzers.
As shown in fig. 1, the urine bag 20 is detachably connected to the three-way joint 18 through a hose 23;
the hose 23 is connected with a first hook 24 used for being hung on the waistband of a patient;
the main control seat 2 is connected with a second hook used for hanging the main control seat 2 on the waistband of the patient.
The utility model discloses a theory of operation as follows:
when the switch assembly is operated to connect the connecting channel 7 with the urination unit 3 through the solenoid valve 9, the manual valve 10 is not operated; at this time, when the pressure of the urine collected by the pressure sensor 4 is higher than a urination set value, the controller 5 controls the electromagnetic valve 9 to be opened, and the urine flows through the urinary catheter 1, the connecting channel 7, the electromagnetic valve 9 and the urination component 3 from the urinary bladder 100 in sequence and then is discharged; then the pressure of the urine collected by the pressure sensor 4 is reduced, the controller 5 controls the electromagnetic valve 9 to be closed, the urine flow is blocked, and then automatic urination can be realized.
When the pressure of the urine collected by the pressure sensor 4 is greater than an alarm set value, the controller 5 controls the first alarm 6 to give an alarm; when the switching assembly is operated to connect the connecting channel 7 with the urination component 3 through the manual valve 10, the electromagnetic valve 9 is not activated, and the manual valve 10 can be opened when the patient has the intention to urinate or the first alarm 6 gives an alarm or when urination is needed, so that urine flows through the urinary catheter 1, the connecting channel 7, the manual valve 10 and the urination component 3 in sequence from the urinary bladder 100 and is discharged; when the manual valve 10 is closed, the urine flow is blocked and the urine cannot be discharged, so that the urine can be manually discharged at any time, and the first alarm 6 is used for reminding the patient who cannot sense the urine intention to discharge the urine in time.
Only when automatic micturition, can urinate when the pressure of the urine that pressure sensor 4 gathered reaches the urination setting value, unable free control urination time, manual micturition needs the continuous operation of patient, it is more troublesome, this alarm type ureter device can freely switch between automatic micturition and manual micturition according to patient's needs, can adapt to different user demands, it is more convenient to use, also can be applicable to the patient of different demands, the crowd scope of being suitable for has been enlarged.
The above-mentioned embodiments further explain in detail the technical problems, technical solutions and advantages solved by the present invention, and it should be understood that the above-mentioned embodiments are only specific embodiments of the present invention, and are not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. An alarm type urine transfusion device is characterized by comprising a catheter (1), a main control seat (2), a valve control component (200), a urination component (3), a pressure sensor (4), a controller (5) and a first alarm (6); wherein the content of the first and second substances,
a connecting channel (7) is arranged in the main control seat (2);
one end part of the connecting channel (7) is connected with one end part of the catheter (1);
the other end of the urinary catheter (1) is used for being inserted into the urinary bladder (100), and the end of the urinary catheter (1) inserted into the urinary bladder (100) is provided with a urethral catheterization hole (8) for enabling urine in the urinary bladder (100) to flow into the urinary catheter (1);
the other end of the connecting channel (7) is connected with the urination component (3) through the valve control component (200);
the valve control component (200) comprises a solenoid valve (9), a manual valve (10) and a switching assembly which is operated to connect the connecting channel (7) with the urination component (3) through the solenoid valve (9) or is operated to connect the connecting channel (7) with the urination component (3) through the manual valve (10);
the pressure sensor (4) is connected to the end of the urinary catheter (1) inserted into the urinary bladder (100) and is used for acquiring the pressure of urine in the urinary bladder (100) when the urinary catheter (1) is inserted into the urinary bladder (100);
the input end of the controller (5) is connected with the pressure sensor (4), and the controller (5) is in control connection with the electromagnetic valve (9) and is used for controlling the on-off of the electromagnetic valve (9) according to a pressure signal acquired by the pressure sensor (4);
the first alarm (6) is connected with the controller (5) so that the controller (5) controls the first alarm (6) to give an alarm according to the pressure signal collected by the pressure sensor (4).
2. The alarm urinary conveyance device of claim 1,
a branch pipe part (11) is connected to the catheter (1);
one end part of the catheter (1) inserted into the bladder (100) is connected with a balloon (12) which is used for abutting against the inner wall of the bladder (100) after being inflated;
an inflation channel (13) is arranged in the catheter (1), one end part of the inflation channel (13) is communicated with the air bag (12), and the other end part of the inflation channel (13) extends into the branch pipe part (11);
an inflation one-way valve (14) for controlling the on-off of the inflation channel (13) is connected to the branch pipe part (11).
3. The alarm urinary transporter according to claim 1, further comprising a control switch (15) connected to said first alarm (6) and adapted to control the switching of said first alarm (6).
4. The alarm urinary conveyance device of claim 1, wherein a lead channel (16) is provided in the urinary catheter (1) for the lead of the pressure sensor (4) to pass through.
5. The alarm urinary transporter of claim 1,
the manual valve (10) is connected with one end of the electromagnetic valve (9) in parallel and then is connected with the connecting channel (7);
the manual valve (10) is connected with the other end of the electromagnetic valve (9) in parallel and then is connected with the urination component (3);
the switching component is a linkage switch, when the linkage switch is switched to a first position, the connecting channel (7) is connected with the urination component (3) through the electromagnetic valve (9), and when the linkage switch is switched to a second position, the connecting channel (7) is connected with the urination component (3) through the manual valve (10).
6. The alarm urinary transporter of claim 1,
the switching component is a three-way valve (17);
the inlet of the three-way valve (17) is communicated with the connecting channel (7);
one outlet of the three-way valve (17) is connected with one end of the electromagnetic valve (9);
the other outlet of the three-way valve (17) is communicated with one end of the manual valve (10);
the other end of the electromagnetic valve (9) and the other end of the manual valve (10) are connected in parallel and then communicated with the urination component (3).
7. The alarm urinary device according to claim 5 or 6, wherein said solenoid valve (9) and said manual valve (10) are in communication with said urinary drainage means (3) through a three-way joint (18).
8. The alarm urinary conveyance device of claim 7,
the number of the urination components (3) is two, wherein one urination component (3) is a blow-off pipe (19), and the other urination component (3) is a urine bag (20);
the drainage pipe (19) and the urine bag (20) are detachably connected to the three-way joint (18).
9. The alarm urinary conveyance device of claim 8,
the urine bag (20) is connected with a second alarm (21) and a liquid level sensor (22);
the liquid level sensor (22) is connected with the second alarm (21) and is used for sending a signal to drive the second alarm (21) to send out an alarm when detecting that the liquid level of urine in the urine bag (20) is higher than a critical value.
10. The alarm urinary conveyance device of claim 8,
the urine bag (20) is detachably connected with the three-way joint (18) through a hose (23);
the hose (23) is connected with a first hook (24) which is used for being hung on the waistband of a patient;
the main control seat (2) is connected with a second hook used for hanging the main control seat (2) on the waistband of the patient.
CN202221250929.6U 2022-05-23 2022-05-23 Alarm type urine transfusion device Active CN217566943U (en)

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Application Number Priority Date Filing Date Title
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Family Applications (1)

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