Warm and cold double-source constant-temperature water injection device for digestive endoscopy diagnosis and treatment
By designing a warm and cold dual-source constant temperature water injection device, the problem of unstable temperatures of warm and cold water during endoscopic diagnosis and treatment is solved, a constant temperature and constant flow water supply is provided, and the diagnosis and treatment efficiency and patient comfort are improved.
Patent Information
- Application Number
- CN202422722669.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-08
AI Technical Summary
The existing endoscope water injection system cannot stably provide warm water at around 37°C and cold water at 4°C, which affects the diagnosis and treatment effect and patient comfort. In addition, the preparation of warm water is time-consuming and labor-intensive, and cannot meet the temperature requirements of digestive endoscopy diagnosis and treatment.
A dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment was designed, which includes a warm water tank, a cold water tank, a control panel, a circulating water pump and a main control chip. Temperature and water level monitoring are achieved through temperature sensors and pressure sensors, providing 37°C warm water and 4°C cold water, and equipped with water flow speed adjustment and alarm functions.
It realizes the supply of constant temperature 37°C warm water and 4°C cold water during endoscopic diagnosis and treatment, improves diagnosis and treatment efficiency and patient experience, and reduces operation difficulty and complication risk.
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Figure CN223365514U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, in particular to a warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment. Background Art
[0002] During gastrointestinal endoscopy, the room temperature water currently injected into the endoscopic water injection system is too cold compared to the natural temperature of the human gastrointestinal tract. Low temperature stimulation can easily cause gastrointestinal spasms, affect the field of view during diagnosis and treatment, and is not conducive to the detection of early lesions such as adenomas and early cancers under gastroscopy and colonoscopy. In addition, the treatment of polyps and early cancers under gastroscopy and colonoscopy will prolong the treatment time, increase the difficulty of the operation, and bring certain risks of complications. During ultrasound endoscopy, low temperature water increases gastrointestinal motility and spasm, which is not conducive to the diagnosis of the nature and layer of the lesion, resulting in prolonged operation time and increased risk of complications. In addition, this low temperature stimulation can also easily cause abdominal discomfort and abdominal pain in patients after surgery.
[0003] A regular colonoscopy without sedation / analgesia is beneficial to both patients and endoscopists: patients will not be exposed to the potential side effects and risks of sedation / analgesia, and do not need to be accompanied home, which reduces missed work and time, and reduces medical costs. From the endoscopist's perspective, patients recover faster after a non-sedated colonoscopy, which reduces post-examination monitoring and reduces surgery-related costs. Therefore, there is a great need in clinical practice for a non-sedated colonoscopy diagnosis and treatment method that can minimize patient discomfort. In recent years, some researchers have proposed using warm water injection instead of conventional air injection to expand the colon during colonoscope insertion to obtain a better endoscopic field of view, reduce colon spasms, and alleviate patient pain.
[0004] During gastroscopy and colonoscopy, when removing polyps, dissecting lesions, or performing emergency endoscopic hemostasis, injecting warm water at 37°C is not conducive to stopping bleeding. Cooler water (such as 4°C) is needed to stimulate vasoconstriction on the surface of the gastrointestinal mucosa to achieve hemostasis or improve the endoscopic field of view, facilitating further measures (such as metal clipping). Room-temperature water at 20°C cannot meet this requirement.
[0005] At present, most endoscopy centers in domestic hospitals routinely use endoscopy water injection systems during endoscopic diagnosis and treatment. The system basically consists of an electric water pump device connected to a water storage container through a connecting pipe, and the water outlet temperature is room temperature (about 20°C, which varies with the air temperature). In gastrointestinal endoscopic diagnosis and treatment, the room temperature water currently injected is too cold compared to the natural temperature of the human gastrointestinal tract. The existing endoscopy water injection system cannot meet the demand for warm water injection (about 37°C). In order to improve the diagnosis and treatment effect, medical staff often need to specially prepare 37°C sterile water, which is often time-consuming and labor-intensive. In addition, due to the lack of a constant temperature heat source, the prepared warm water will cool down over time, which will eventually affect the diagnosis and treatment effect.
[0006] During gastroscopy and colonoscopy, when removing polyps, peeling off lesions or performing emergency endoscopic hemostasis, it is usually very inconvenient to cooperate with the nurse to get 4℃ sterile water for injection from the refrigerator, or temporarily put the sterile water for injection at room temperature in the refrigerator for rapid freezing.
[0007] How to provide warm water at around 37°C and cold water at 4°C during endoscopic diagnosis and treatment is a technical problem that needs to be solved urgently.
[0008] Patent CN202122066495.6 discloses a constant temperature endoscope water injection pump, including a water injection pump and a temperature control component, the water injection pump includes a speed control component, a pressure pump, a power switch and a foot pedal, the temperature control component is fixedly connected to the water injection pump, and the temperature control component is an L-shaped structure, including a display screen, a temperature control button and a platform, and a constant temperature water bath is fixedly provided on the upper surface of the platform. The heating wire in the constant temperature endoscope water injection pump is evenly arranged in the barrel wall of the constant temperature water bath, which can evenly heat the water in the constant temperature water bath to avoid uneven heating of the water storage bag. However, it is impossible to stably provide warm water at about 37°C and cold water at 4°C during endoscopic diagnosis and treatment, nor can it monitor the water level to achieve the technical effect of taking it at any time. Utility Model Content
[0009] The purpose of this utility model is to overcome the above-mentioned shortcomings of the existing technology and provide a dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment. During the endoscopic diagnosis and treatment process, it can prepare and provide warm water at about 37°C and cold water at 4°C, and greatly improve the space utilization of the digestive endoscopy diagnosis and treatment platform. This makes the diagnosis and treatment process more convenient and efficient, and improves the patient experience and treatment effect.
[0010] The utility model provides a warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment, comprising: a box shell, a warm water tank, a cold water tank, a control panel, a system power supply, a circulating water pump, and a main control chip;
[0011] The control panel is installed on the box shell, and the warm water tank, cold water tank, system power supply, and circulating water pump are all installed inside the box shell;
[0012] The warm water tank is a 37°C warm water tank, and the cold water tank is a 4°C cold water tank; both the warm water tank and the cold water tank are equipped with temperature sensors, and the warm water tank is equipped with a heating unit; both the warm water tank and the cold water tank are equipped with pressure sensors for determining the water volume; the circulating water pump is powered by the system power supply;
[0013] The control panel is electrically connected to the main control chip, and the circulating water pump, refrigeration unit, heating unit, pressure sensor, and temperature sensor are electrically connected to the main control chip respectively.
[0014] The control panel combines knobs and buttons to achieve switching between hot and cold water, water filling and water stop control, and stepless adjustment of water flow speed, aiming to provide an intuitive and convenient operating experience.
[0015] Furthermore, heating and cooling devices are customized according to the shape and size of the water container to achieve uniform heat distribution. The heating unit is located at the bottom of the warm water tank, and the cooling unit is located at the bottom of the cold water tank. Temperature sensors are also located at the bottom of both the warm and cold water tanks, ensuring consistent outlet water temperature.
[0016] Furthermore, the circulating water pump is a peristaltic pump with a compact size and flexible speed regulation to achieve precise flow rate control.
[0017] Furthermore, the pipelines connecting the circulating water pump and the warm water tank and cold water tank adopt a Y-shaped split-join structure. The pipeline layout is optimized to ensure the effective separation of warm water and cold water. At the same time, a one-way valve and an electronically controlled water valve switch are set to effectively avoid the backflow of flushing water.
[0018] Furthermore, the heating unit is a silicone rubber heating sheet.
[0019] Furthermore, the cold water circulates from the refrigeration unit through the sixth hole into the circulating water pump and then sequentially through the sixth hole and the fourth hole into the cold water tank.
[0020] Furthermore, after the warm water circulation is heated by the heating unit at the bottom of the warm water tank, it enters the circulating water pump through the third hole, the fourth hole, and the sixth hole in sequence and then returns to the warm water tank for continuous heating.
[0021] Furthermore, the system power supply inlet is the first hole, and the refrigeration unit heat dissipation vent is the fifth hole.
[0022] Furthermore, the box shell is also provided with wire entry and exit holes: a second hole and a seventh hole.
[0023] Furthermore, the refrigeration unit is connected to the refrigerator power supply through the eighth hole.
[0024] Here’s how it works:
[0025] After installing the control circuit. During the preparation stage for digestive endoscopy diagnosis and treatment, turn on the power of the device, open the control panel, and inject a certain amount of sterile water into the warm water tank and the cold water tank so that the pressure sensor under the box reaches the specified threshold to allow the device to heat or cool. Set the required warm water and cold water temperatures through the control panel, and set the start and stop of the circulating water pump, the pump speed of the circulating water pump, and the rotation direction of the pump body to adjust the water flow rate. Check the control panel. When the temperature reaches the set value, the pressure foot start device is connected to the tenth hole, and cold water output or warm water output is selected in the control panel. The required warm water or cold water is pumped out by the circulating water pump through the ninth hole. When the temperature reaches the set value, the system starts to keep warm, and the circulating heating ensures that it can be used at any time during digestive endoscopy diagnosis and treatment. When the sterile water in the warm water tank and the cold water tank reaches the warning water level of the pressure sensor device, the device starts to warn. When the amount of sterile water does not reach the threshold of the pressure sensor under the tank, the heating unit and the refrigeration unit stop working.
[0026] Compared with the prior art, the utility model has the following advantages:
[0027] This utility model provides a constant-temperature, flow-rate adjustable water injection device that provides sterile water at a constant, controllable temperature of 37°C or 4°C as needed during endoscopic diagnosis and treatment. Furthermore, the device is equipped with a water level alarm function that automatically triggers an audible and visual alarm system when the water level of either the warm or cold water source falls below or rises above a preset warning line. The use of this device is conducive to improving the efficiency of endoscopic diagnosis and treatment and making endoscopic diagnosis and treatment more humane.
[0028] The device is powered on. After a certain amount of sterile water is injected into the cold water tank, the pressure sensor under the cold water tank reaches the specified threshold, thereby starting the refrigeration unit to cool down to 4°C, and then maintain the heat preservation state when the pressure sensor reaches the specified threshold. After a certain amount of sterile water is injected into the warm water tank on the device, the pressure sensor under the warm water tank reaches the specified threshold, thereby starting the heating device to heat the rinse measuring cup to the specified temperature. To ensure that it can be used at any time during digestive endoscopy diagnosis and treatment, when the sterile water in the warm water tank and cold water tank reaches the warning water level of the pressure sensor device, the warning device starts to sound an alarm. When the amount of sterile water does not reach the threshold of the pressure sensor under the tank, the heating device refrigeration unit stops working. The diagnosis and treatment process is more convenient and efficient, and the patient experience and diagnosis and treatment results are improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a perspective structural diagram of the overall structure of the warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment;
[0030] Figure 2 This is a schematic diagram of the overall structure of the warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment;
[0031] Figure 3 This is a schematic diagram of the exploded perspective structure of the warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment;
[0032] Figure 4 This is a perspective structural diagram of the box body of the warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment.
[0033] Figure markings: 1-main control chip; 2-warm water tank; 3-box shell; 4-refrigerator power supply; 5-circulating water pump; 6-refrigeration unit; 7-cold water tank; 8-control panel; 9-system power supply; 11-heating unit; 12-pressure sensor; 13-temperature sensor; 101-first hole; 102-second hole; 103-third hole; 104-fourth hole; 105-fifth hole; 106-sixth hole; 107-seventh hole; 108-eighth hole; 109-ninth hole; 110-tenth hole. DETAILED DESCRIPTION
[0034] The following is a detailed description of the present invention with reference to the accompanying drawings and specific embodiments. Any features such as component models, material names, connection structures, control methods, algorithms, etc. not explicitly described in this technical solution are considered to be common technical features disclosed in the prior art.
[0035] Example 1
[0036] This embodiment provides a warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment, such as Figure 1 、 2 , 3, 4, including: a box shell 3, a warm water tank 2, a cold water tank 7, a control panel 8, a system power supply 9, a circulating water pump 5, and a main control chip 1;
[0037] The control panel 8 is installed on the box shell 3, and the warm water tank 2, cold water tank 7, system power supply 9, and circulating water pump 5 are all installed inside the box shell 3;
[0038] The warm water tank 2 is a 37°C warm water tank 2, and the cold water tank 7 is a 4°C cold water tank 7; both the warm water tank 2 and the cold water tank 7 are provided with a temperature sensor 13, and the warm water tank 2 is provided with a heating unit 11; both the warm water tank 2 and the cold water tank 7 are provided with a pressure sensor 12 for determining the water volume; the circulating water pump 5 is powered by a system power supply 9;
[0039] The control panel 8 is electrically connected to the main control chip 1 , and the circulating water pump 5 , the refrigeration unit 6 , the heating unit 11 , the pressure sensor 12 , and the temperature sensor 13 are electrically connected to the main control chip 1 , respectively.
[0040] The control panel 8 combines knobs and buttons to achieve switching between hot water and cold water, water filling and water stop control, and stepless adjustment of water flow speed, aiming to provide an intuitive and convenient operating experience.
[0041] In a specific embodiment, heating and cooling devices are customized according to the shape and size of the water container to achieve uniform heat distribution. The heating unit 11 is located at the bottom of the warm water tank 2, and the cooling unit 6 is located at the bottom of the cold water tank 7. The temperature sensors 13 are also located at the bottom of the warm water tank 2 and the cold water tank 7, ensuring consistent water outlet temperature.
[0042] In a specific embodiment, the circulating water pump 5 is a peristaltic pump with a compact size and flexible speed regulation to achieve precise flow rate control.
[0043] In a specific embodiment, the pipelines connecting the circulating water pump 5 and the warm water tank 2 and the cold water tank 7 adopt a Y-shaped split-join structure. The pipeline layout is optimized to ensure the effective separation of warm water and cold water. At the same time, a one-way valve and an electronically controlled water valve switch are provided to effectively avoid the backflow of flushing water.
[0044] In a specific embodiment, the heating unit 11 is a silicone rubber heating sheet.
[0045] In a specific embodiment, the cold water circulates from the refrigeration unit 6 through the sixth hole 106 into the circulating water pump 5 and then sequentially through the sixth hole 106 and the fourth hole 104 into the cold water tank 7 .
[0046] In a specific embodiment, after the warm water circulation is heated by the heating unit 11 at the bottom of the warm water tank 2, it enters the circulating water pump 5 through the third hole 103, the fourth hole 104, and the sixth hole 106 in sequence and then returns to the warm water tank 2 for continuous heating.
[0047] In a specific embodiment, the access port of the system power supply 9 is the first hole 101 , and the heat dissipation vent of the refrigeration unit 6 is the fifth hole 105 .
[0048] In a specific embodiment, the box shell 3 is further provided with wire entry and exit holes: a second hole 102 and a seventh hole 107 .
[0049] In a specific embodiment, the refrigeration unit 6 is connected to the refrigerator power supply 4 through the eighth hole 108 .
[0050] Here’s how it works:
[0051] After installing the control circuit. In the preparation stage for digestive endoscopy diagnosis and treatment, turn on the power of the device, open the control panel 8, and inject a certain amount of sterile water into the warm water tank 2 and the cold water tank 7 so that the pressure sensor 12 under the box reaches the specified threshold to allow the device to heat or cool. Set the required warm water and cold water temperatures through the control panel 8, and set the start and stop of the circulating water pump 5, the pump speed of the circulating water pump 5, and the rotation direction of the pump body to adjust the water flow rate. Check the control panel 8. When the temperature reaches the set value, the pressure foot start device is connected to the tenth hole 110, and cold water output or warm water output is selected in the control panel 8. The required warm water or cold water is pumped out by the circulating water pump 5 through the ninth hole 109. When the temperature reaches the set value, the system starts to keep warm, and the circulating heating ensures that it can be used at any time during digestive endoscopy diagnosis and treatment. When the sterile water in the warm water tank 2 and the cold water tank 7 reaches the warning water level of the pressure sensor device 12, the device starts to warn. When the amount of sterile water does not reach the threshold of the pressure sensor 12 under the tank, the heating unit 11 and the refrigeration unit 6 stop working.
[0052] The box structure of this embodiment is integrally formed, and the partitions inside the box are detachable for easy installation.
[0053] The partition between the upper and lower parts of the box structure is made of a material that can evenly transfer heat; the space between the grooves is made of a heat-insulating material.
[0054] The water outlet used in this embodiment is an integrated outlet for warm water and cold water, and an independent water outlet can be used to prevent the mixing of hot and cold water.
[0055] Components not described in detail in this embodiment are all existing components that can be purchased through public channels.
[0056] The above description of the embodiments is intended to facilitate understanding and use of the utility model by those skilled in the art. Those skilled in the art will readily be able to make various modifications to these embodiments and apply the general principles described herein to other embodiments without requiring inventive effort. Therefore, the utility model is not limited to the above-described embodiments. Improvements and modifications made by those skilled in the art based on the disclosure of this utility model without departing from the scope of this utility model should be within the scope of protection of this utility model.
Claims
1. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment, characterized in that: include: Box shell (3), warm water tank (2), cold water tank (7), control panel (8), system power supply (9), circulating water pump (5), main control chip (1); The control panel (8) is installed on the box shell (3), and the warm water tank (2), cold water tank (7), system power supply (9), and circulating water pump (5) are all installed inside the box shell (3); The warm water tank (2) is a 37°C warm water tank (2), and the cold water tank (7) is a 4°C cold water tank (7); the warm water tank (2) and the cold water tank (7) are both provided with temperature sensors (13), and the warm water tank (2) is provided with a heating unit (11); the warm water tank (2) and the cold water tank (7) are both provided with pressure sensors (12) for determining the water volume; the circulating water pump (5) is powered by a system power supply (9); The control panel (8) is electrically connected to the main control chip (1), and the circulating water pump (5), refrigeration unit (6), heating unit (11), pressure sensor (12), and temperature sensor (13) are electrically connected to the main control chip (1), respectively.
2. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The heating unit (11) is arranged at the bottom of the warm water tank (2), and the refrigeration unit (6) is arranged at the bottom of the cold water tank (7); the temperature sensors (13) are both arranged at the bottom of the warm water tank (2) and the cold water tank (7).
3. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The circulating water pump (5) is a peristaltic pump.
4. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The pipelines connecting the circulating water pump (5) and the warm water tank (2) and the cold water tank (7) adopt a Y-shaped split-and-join structure.
5. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The heating unit (11) is a silicone rubber heating sheet.
6. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The cold water circulates from the refrigeration unit (6) through the sixth hole (106) into the circulating water pump (5) and then sequentially through the sixth hole (106) and the fourth hole (104) into the cold water tank (7).
7. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: After the warm water circulation is heated by the heating unit (11) at the bottom of the warm water tank (2), it enters the circulating water pump (5) through the third hole (103), the fourth hole (104), and the sixth hole (106) in sequence and then returns to the warm water tank (2) for continuous heating.
8. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The system power supply (9) access port is the first hole (101), and the cooling unit (6) heat dissipation vent is the fifth hole (105).
9. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The box shell (3) is also provided with wire entry and exit holes: a second hole (102) and a seventh hole (107).
10. A warm and cold dual-source constant temperature water injection device for digestive endoscopy diagnosis and treatment according to claim 1, characterized in that: The refrigeration unit (6) is connected to the refrigerator power supply (4) via the eighth hole (108).
Citation Information
Patent Citations
Constant-temperature endoscope water injection pump
CN215534190U