A liver-dredging and spleen-strengthening and phlegm-resolving recipe fatty liver treatment auxiliary device
By combining traditional Chinese medicine prescriptions and physical therapy, an intelligent auxiliary device for the treatment of fatty liver was designed, which solved the problem of uneven drug absorption in the liver area, achieving personalized, safe and efficient treatment results and shortening the treatment cycle.
Patent Information
- Application Number
- CN202510364718.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2045-03-26
AI Technical Summary
In existing TCM treatments for fatty liver, the absorption and distribution of drugs in the gastrointestinal tract are uneven, resulting in insufficient drug concentration in the liver. Furthermore, long-term oral medication may cause side effects, and there is a lack of personalized and precise non-invasive treatment methods.
Combining traditional Chinese medicine prescriptions, physical therapy, and intelligent monitoring and regulation, a treatment aid device for fatty liver using the formula of soothing the liver, strengthening the spleen, and eliminating turbidity was designed. The device includes medicated patches, phototherapy, and massage components. Temperature monitoring and automatic adjustment ensure the safety and effectiveness of the treatment.
It improves the absorption efficiency of drugs in the liver area, reduces side effects, enables personalized treatment, shortens the treatment cycle, and improves treatment efficacy and patient comfort.
Smart Images

Figure CN120267974B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of medical devices, specifically to a Shugan Jianpi Huatuo Decoction for fatty liver treatment auxiliary device. BACKGROUND
[0002] Fatty liver is a common liver disease, and its incidence is increasing year by year, which seriously threatens people's health. Traditional Chinese medicine theory believes that the occurrence of fatty liver is closely related to liver and spleen dysfunction and internal accumulation of dampness. In the treatment of fatty liver, traditional Chinese medicine emphasizes the principles of soothing the liver and strengthening the spleen, and reducing turbidity and lowering lipid. By adjusting the balance of yin and yang and the function of viscera, the purpose of treating diseases is achieved.
[0003] The "Shugan Jianpi Huatuo Decoction" is based on traditional Chinese medicine theory and summarized through long-term clinical practice. It is an effective prescription for treating fatty liver. Through the combination of traditional Chinese medicines, it aims to soothe the liver, relieve depression, strengthen the spleen and stomach, and reduce turbidity and lower lipid, thereby improving liver metabolic function, promoting fat metabolism, and reducing liver fat accumulation. Although the "Shugan Jianpi Huatuo Decoction" has shown positive effects in the treatment of fatty liver in clinical practice, how to more effectively deliver traditional Chinese medicine ingredients to the liver area and improve drug absorption efficiency and treatment effect remains an important challenge. In addition, individual differences, disease severity, and patient response to treatment also require more personalized and precise treatment methods.
[0004] Traditional Chinese medicine treatment usually relies on oral administration, but the absorption and distribution of drugs in the gastrointestinal tract are affected by various factors, resulting in insufficient effective drug concentration reaching the liver. At the same time, long-term oral administration of drugs may also cause gastrointestinal discomfort and other side effects. Therefore, it is particularly important to explore non-invasive, efficient and safe treatment methods.
[0005] In recent years, with the continuous development of physical therapy techniques such as phototherapy and electrotherapy, their application in the medical field has become increasingly widespread. These techniques can directly act on the lesion site through physical factors, promote local blood circulation, relieve inflammation, accelerate tissue repair, and provide new ideas for the treatment of fatty liver.
[0006] The present application proposes a Shugan Jianpi Huatuo Decoction for fatty liver treatment auxiliary device, which aims to provide more comprehensive and personalized treatment assistance for patients by combining traditional Chinese medicine prescriptions, physical therapy, and intelligent monitoring and adjustment means. SUMMARY
[0007] To solve the above problems, the present application provides a Shugan Jianpi Huatuo Decoction for fatty liver treatment auxiliary device, which combines traditional Chinese medicine theory and modern technology, and through innovative design, realizes the comprehensive use of drug treatment (plaster application), physical therapy (irradiation assembly and massage assembly), and temperature monitoring and adjustment.
[0008] In order to achieve the above-mentioned purpose, the technical scheme of the present application is as follows: a liver-sparing and spleen-strengthening and turbidity-removing fat liver treatment auxiliary device, comprising a shell and a monitoring module, the shell is provided with a fixing assembly on both sides for fixing the shell, the monitoring module comprises a controller, a temperature sensor for real-time temperature monitoring of the covered area of the shell and a bimetallic strip, the shell is a hollow structure, the shell bottom is provided with a cooling cavity, the cooling cavity is communicated with the inside of the shell, the side wall of the cooling cavity is provided with an adjusting hole, the bimetallic strip is embedded in the adjusting hole, the side wall of the cooling cavity is provided with a ventilation opening, the ventilation opening is slidably connected with a piston plate, one side of the piston plate is fixedly connected with a piston rod, the end of the piston rod away from the piston plate is located in the adjusting hole, one side of the bimetallic strip is provided with a light reflection assembly, the light reflection assembly comprises an adjusting bracket, one side of the adjusting bracket is fixedly connected with the bimetallic strip, the other side of the adjusting bracket is provided with a reflector;
[0009] The inner top wall of the shell is provided with an irradiation assembly for irradiating the liver area of the right upper part of the patient's abdomen, the outer side wall of the shell bottom is provided with a massage assembly for massaging the skin of the liver area of the right upper part of the patient's abdomen, the irradiation assembly, the massage assembly and the monitoring assembly are signal connected with the controller, the controller adjusts the irradiation assembly and the massage assembly according to the real-time temperature data monitored by the temperature sensor;
[0010] When the temperature rises, the bimetallic strip deforms by heating, the piston plate is pushed to move by the piston rod, and then the air flow in the cooling cavity is adjusted, and at the same time the controller adjusts the current intensity of the massage assembly according to the temperature change, so that the massage intensity of the corresponding position changes with the temperature change;
[0011] At the same time, when the bimetallic strip deforms due to temperature change, the adjusting bracket is driven to displace, and then the angle of the reflector is adjusted; the reflector reflects the light emitted by the irradiation assembly to the low-temperature area, while reducing the direct irradiation to the high-temperature area.
[0012] The technical principle of the above-mentioned scheme is as follows: the skin temperature of the area where the auxiliary device is used by the patient is monitored in real time by the temperature sensor, and the temperature data monitored by the temperature sensor is transmitted to the controller. The controller judges whether the current temperature is appropriate according to the preset temperature threshold. When the temperature is too high, the bimetallic strip deforms due to thermal expansion and contraction principle, pushes the piston rod to move, and then drives the piston plate to slide, opens the ventilation opening, and introduces external cold air for cooling. When the temperature returns to the appropriate range, the bimetallic strip returns to its original state, the piston plate closes the ventilation opening under the action of the spring, and the temperature inside the shell is kept stable.
[0013] The irradiation assembly emits light of a specific wavelength, penetrates the skin and acts on the liver area, increases the temperature of the skin, thereby improving the permeability of the skin, making it easier for drug molecules to penetrate the skin barrier and enter the subcutaneous tissue and liver area, and enhancing the treatment effect. The massage assembly stimulates the nerve endings and muscle tissue under the skin through a weak current, relieves muscle tension, promotes blood circulation, and helps promote transdermal absorption. The application of the ointment can increase the absorption and metabolism of the drug, enhancing the treatment effect.
[0014] The controller automatically adjusts the light intensity of the irradiation assembly and the massage intensity of the massage assembly according to the real-time temperature data monitored by the temperature sensor, ensuring the safety and effectiveness of the treatment process. At the same time, the deformation of the bimetallic strip is also transmitted to the reflector through the adjustment of the support, thereby changing the angle of the reflector, so that it can accurately reflect the light emitted by the irradiation assembly to the low-temperature area, while reducing direct irradiation to the high-temperature area. This dynamic adjustment mechanism ensures the uniformity and effectiveness of light irradiation, avoiding skin damage caused by excessive local temperature.
[0015] The above scheme has the following beneficial effects:
[0016] 1. Compared with the existing technology that only relies on a single treatment method or lacks temperature monitoring, the present scheme monitors the skin temperature of the area where the patient uses the auxiliary device in real time, and automatically adjusts the working state of the irradiation assembly and the massage assembly according to the temperature data, ensuring the safety and effectiveness of the treatment process. When the temperature is too high, the bimetallic strip automatically triggers the cooling mechanism to introduce external cold air for cooling, effectively avoiding skin burns or discomfort caused by excessive temperature. This intelligent temperature adjustment mechanism avoids skin damage or poor treatment effect caused by excessive or insufficient temperature. Compared with the existing technology that lacks automatic cooling function, the cooperation of the bimetallic strip and the piston plate realizes the function of automatically opening the ventilation opening to introduce cold air for cooling when the temperature is too high. This design not only improves the automation of the device, but also ensures the stability of the temperature inside the shell, providing a more comfortable treatment experience for the patient.
[0017] 2. The specific wavelength light emitted by the irradiation assembly can penetrate the skin and act on the liver area, improve the permeability of the skin, promote the transdermal absorption of drug molecules, and thus enhance the treatment effect. This light irradiation method is more direct and efficient than traditional drug treatment, which helps to accelerate the recovery process of fatty liver.
[0018] 3. The massage assembly stimulates the nerve endings and muscle tissue under the skin through a weak current, not only relieving muscle tension, but also promoting blood circulation, further promoting the transdermal absorption of drugs. This massage method is comfortable and effective, improving the treatment experience of the patient.
[0019] 4、Compared with the prior art device with fixed working parameters of the irradiation assembly and the massage assembly, the present application realizes personalized treatment through precise adjustment of the irradiation assembly and the massage assembly by the controller. Doctors can set different light intensity and massage intensity according to the specific situation and treatment target of the patient, thereby meeting the personalized needs of the patient and improving the targeting and effectiveness of treatment. At the same time, this intelligent adjustment method also reduces the work burden of medical staff and improves work efficiency.
[0020] 5、Compared with the prior art fat liver treatment auxiliary device relying only on drug treatment or physical treatment, the present application combines drug treatment (ointment application), physical treatment (irradiation assembly and massage assembly), and temperature monitoring and adjustment, forming a comprehensive treatment plan. This comprehensive treatment plan can fully utilize the advantages of various treatment methods, improve treatment effectiveness, shorten the treatment cycle, and bring better treatment experience and rehabilitation effect to the patient.
[0021] 6、The deformation of the bimetallic strip not only triggers the cooling mechanism, but also precisely adjusts the angle of the reflector through the adjustment bracket. This precise adjustment ensures that the light can uniformly irradiate the liver area, while avoiding excessive irradiation in high-temperature areas. In addition, the controller adjusts the current intensity of the massage assembly according to temperature changes, realizing personalized adjustment of massage intensity. This comprehensive adjustment mechanism improves the targeting and effectiveness of treatment and meets the personalized needs of different patients.
[0022] Further, the massage assembly includes a shell, the shell is a ring structure, an inner side wall of the shell is fixedly connected with an outer side wall of the shell body, and an electrode sheet is embedded in a bottom wall of the shell. The electrode sheet is used to simulate traditional Chinese medicine massage techniques to massage and stimulate the edge area of the shell. The electrode sheet is electrically connected with a power supply assembly, and the power supply assembly is installed on an outer top wall of the shell.
[0023] Beneficial effects: The weak current generated by the electrode sheet after being powered simulates traditional Chinese medicine massage techniques, ensuring massage effectiveness and avoiding the risk of excessive current causing damage to the patient's skin. At the same time, the ring structure design of the shell allows the massage assembly to closely fit the patient's right upper abdominal liver area, improving the comfort and stability of the massage. In addition, the addition of the nano-silver ion coating not only enhances the conductivity of the electrode sheet, but also endows it with antibacterial properties, ensuring the safety and hygiene of the massage process. The massage assembly stimulates vasodilation and increases blood flow, further promoting blood circulation in the liver area. This helps to accelerate drug distribution and metabolism, making it easier for drug molecules to penetrate the skin barrier into subcutaneous tissue and the liver area, thereby enhancing treatment effectiveness.
[0024] Further, the power supply assembly includes a battery and a battery management module, the battery management module is used for monitoring the battery power, the shell is provided with a battery slot for mounting the battery, the battery slot is provided with a cover for closing the battery slot and a charging port for the battery, and the battery management module is signal connected with the controller. When the battery management module monitors that the battery power is insufficient, a prompt signal is sent through the controller.
[0025] Beneficial effects: The power supply assembly includes a battery and a battery management module, which provides stable and reliable power supply for the massage assembly, the irradiation assembly, and the monitoring module. Compared with the design relying on external power supply or power cord in the prior art, the battery power supply mode of the present scheme makes the device more portable and flexible, and patients can perform self-treatment at home or other non-medical environments without worrying about the constraints of power cords or the limitations of external power supplies. This helps to improve the continuity and stability of the treatment process and ensures the persistence of the treatment effect. The battery management module is used for monitoring the battery power, and when the battery power is insufficient, the medical staff or the patient is reminded to replace the battery through the controller. This intelligent battery management method not only avoids the interruption of treatment due to the depletion of battery power, but also improves the user experience. Medical staff or patients can timely understand the battery power situation and reasonably arrange the time to replace the battery, thereby ensuring the smooth progress of the treatment.
[0026] Further, it further includes a warning module, the warning module includes an indicator light and a buzzer, the indicator light is used for flashing and emitting different colors of light to represent different warning reminders, and the buzzer is used for emitting different alarm sounds. The indicator light and the buzzer are signal connected with the controller, and when the temperature data monitored by the temperature sensor in real time and received by the controller does not match the preset data, the warning module sends an audible and visual alarm signal.
[0027] Beneficial effects: The warning module enables the device to monitor and respond to the data changes of the temperature sensor in real time. When the temperature data does not match the preset data, that is, an abnormal situation occurs, the warning module can immediately send an audible and visual alarm signal to remind medical staff to take timely measures. This real-time safety monitoring capability helps to avoid the risk of damage to the patient's skin caused by excessively high or low temperature, ensuring the safety and reliability of the treatment process. Through the flashing of the indicator light and the emission of different colors of light, as well as the emission of different alarm sounds by the buzzer, the warning module can convey the state information of the patient to the medical staff in an intuitive and easy-to-understand manner. Medical staff can quickly judge the type and severity of abnormal conditions according to the color of the indicator light and the sound of the buzzer, so as to take corresponding measures. This enhanced perception capability helps to improve the reaction speed and decision accuracy of medical staff.
[0028] Further, the irradiation assembly includes a treatment lamp for emitting light of specific wavelengths to assist treatment, and the treatment lamp is signal-connected with the controller, which can adjust the light wavelength of the treatment lamp according to preset data and temperature data monitored in real time by the temperature sensor.
[0029] Beneficial effects: The treatment lamp in the irradiation assembly can emit light of specific wavelengths, which can penetrate the skin and directly act on the liver area of the right upper part of the patient's abdomen. The irradiation of light of specific wavelengths can stimulate the microcirculation under the skin, increase blood flow, and thus accelerate the distribution and metabolism of drug molecules. This promotion not only improves the utilization rate of drugs, but also shortens the treatment period, enabling patients to recover faster. The treatment lamp is signal-connected with the controller, which can automatically adjust the light wavelength of the treatment lamp according to preset data and temperature data monitored in real time by the temperature sensor. This intelligent adjustment mechanism ensures the safety and effectiveness of the treatment process, avoiding the risk of damage to the patient's skin due to excessive or insufficient light intensity. At the same time, intelligent adjustment also enhances the patient's treatment experience, making the treatment process more comfortable and personalized.
[0030] Further, the fixing assembly includes a plurality of elastic bands and Velcro, one end of the elastic band is fixedly connected with the shell on both sides, and the Velcro is fixedly connected at the end of the elastic band away from the shell, and the Velcro is used to fix the elastic band on the patient's body.
[0031] Beneficial effects: The fixing assembly, through the design of a plurality of elastic bands and Velcro, can firmly fix the device on the patient's body, ensuring that the device will not slip or shift during treatment. This stability and fixation are crucial to ensure that the light of the treatment lamp accurately irradiates the liver area of the right upper part of the patient's abdomen, thereby ensuring the continuity and consistency of the treatment effect. The elastic band is made of soft and elastic material, which can adapt to the body shape and abdominal curve of different patients, providing a comfortable fit. The design of Velcro makes the fixing process simple and fast, and the patient can easily adjust the tightness of the band according to his own needs, thereby obtaining the best wearing experience. This improvement in comfort and use experience helps to enhance the patient's confidence and compliance in treatment.
[0032] Further, the top of the shell is embedded with a user interaction module, which includes a display screen and operation buttons, the display screen is used to display the current treatment status, temperature data, and remaining treatment time information, and the operation buttons are used for the user to manually adjust the treatment parameters.
[0033] Beneficial effects: The display screen in the user interaction module can display the current treatment status, temperature data, and remaining treatment time information in real time, allowing patients and medical staff to clearly understand the treatment progress and various parameters. This increased transparency helps to enhance the patient's confidence in treatment, while also facilitating the monitoring and adjustment of the treatment process by medical staff. The operation buttons allow patients or medical staff to manually adjust treatment parameters such as light wavelength, irradiation intensity, massage intensity, etc., thereby achieving precise control over the treatment process. The user interaction module allows patients to manually adjust treatment parameters according to their own physical condition and treatment needs through the operation buttons. This personalized adjustment method helps to meet the treatment needs of different patients, improving the targeting and effectiveness of treatment. At the same time, medical staff can also adjust and optimize the treatment plan in real time according to the specific situation of the patient through the information on the display screen.
[0034] Further, it comprises a personalization module, which is signal-connected with the controller, and is used to receive the personal information, medical history, and treatment goals of the patient, and automatically generate a personalized treatment plan, which includes irradiation time, preset data, and light wavelength parameters of the treatment lamp.
[0035] Beneficial effects: The personalization module can automatically generate a personalized treatment plan suitable for the patient based on the patient's personal information, medical history, and treatment goals. This personalized treatment plan can more accurately target the patient's specific situation for treatment, thereby improving the targeting and effectiveness of treatment. By precisely controlling parameters such as irradiation time, temperature threshold, and light wavelength of the treatment lamp, the personalization module can ensure that the treatment process achieves the best results. When generating the treatment plan, the personalization module will consider the patient's personal information and medical history, thereby avoiding potential risks caused by improper treatment parameter settings. This increased safety helps to ensure the smooth progress of the treatment process and reduce the incidence of complications and adverse reactions during treatment.
[0036] Further, it further comprises a remote monitoring and data transmission module, which is used to transmit the physiological data, treatment parameters, and working status of the device of the patient to a remote server or the intelligent terminal of medical staff in real time.
[0037] Beneficial effects: The remote monitoring and data transmission module enables medical personnel to view the physiological data, treatment parameters and working status of the device of the patient at any time and anywhere, so as to quickly respond to the needs of the patient and provide timely and effective medical services. This remote monitoring method breaks the time and space limitations, so that patients can get professional attention and guidance even at home. By transmitting the physiological data and treatment parameters of the patient in real time, medical personnel can more accurately understand the treatment progress and physical condition of the patient, so as to remotely adjust the treatment plan as needed. This personalized adjustment method can ensure that the treatment process is more in line with the actual needs of the patient, improving the continuity and effectiveness of the treatment.
[0038] Further, the electrode sheet of the massage assembly is coated with a nano-silver ion coating on the outer wall.
[0039] Beneficial effects: The nano-silver ion coating has excellent antibacterial ability and can effectively inhibit the growth of various bacteria and molds. Applying this coating to the electrode sheet of the massage assembly can significantly reduce the risk of cross-infection caused by bacterial growth during use, providing a safer and more hygienic treatment environment for patients. The nano-silver ion coating not only has antibacterial function, but its special physical and chemical properties may also have a positive impact on the massage effect. For example, the coating may help improve the contact performance between the electrode sheet and the skin, making the current conduction during massage smoother, thereby enhancing the comfort and effectiveness of the massage.
[0040] Additional aspects and advantages of the application will be set forth in part in the description which follows, and in part will become apparent to those skilled in the art upon examination of the following description, or can be learned by practice of the application. BRIEF DESCRIPTION OF DRAWINGS
[0041] Figure 1 The isometric view of the embodiment of the liver-soothing and spleen-strengthening and turbidity-transforming formula fatty liver treatment auxiliary device of the present application;
[0042] Figure 2 The front view of the shell in the embodiment of the liver-soothing and spleen-strengthening and turbidity-transforming formula fatty liver treatment auxiliary device of the present application;
[0043] Figure 3 The isometric view of the embodiment of the liver-soothing and spleen-strengthening and turbidity-transforming formula fatty liver treatment auxiliary device of the present application; Figure 2 The sectional view in the direction of A-A;
[0044] Figure 4 The frame diagram of the embodiment of the liver-soothing and spleen-strengthening and turbidity-transforming formula fatty liver treatment auxiliary device of the present application.
[0045] The reference signs in the drawings of the specification include: 1, shell; 2, cooling cavity; 3, adjusting hole; 4, bimetallic strip; 5, ventilation opening; 6, piston plate; 7, piston rod; 8, outer shell; 9, electrode sheet; 10, battery slot; 11, cover; 12, treatment lamp; 13, elastic bandage; 14, magic tape; 15, display screen; 16, reflector. DETAILED DESCRIPTION
[0046] The technical solutions of the present application will be described in detail below with reference to the drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0047] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0048] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0049] The specific embodiments will be described in detail below:
[0050] Example 1
[0051] As shown in the accompanying drawings Figures 1 to 4The auxiliary device for treating fatty liver by the liver-soothing and spleen-strengthening and turbidity-resolving formula comprises a shell 1 and a monitoring module. The shell 1 is provided with a fixing assembly on both sides for fixing the shell 1 on the liver area of the right upper part of the abdomen of a patient. The fixing assembly comprises a plurality of elastic bands 13 and Velcro 14. One end of each elastic band 13 is fixedly connected to the shell 1, and the Velcro 14 is fixedly connected to the end of the elastic band 13 away from the shell 1. The Velcro 14 is used for fixing the elastic band 13 on the patient. The elastic band 13 provides sufficient fastening force, and the Velcro 14 facilitates quick fixing and releasing, so that the device cannot be displaced or detached during the treatment process and can be conveniently installed and detached.
[0052] The monitoring module comprises a controller, a temperature sensor for monitoring the temperature of the area of the patient using the auxiliary device in real time, and a bimetallic strip 4 (the bimetallic strip 4 is a temperature-sensitive composite material. When the temperature changes, the deformation of the active layer is greater than that of the passive layer due to the different thermal expansion coefficients of the layers, so that the whole bimetallic strip will deform to the passive layer side). The shell 1 is a hollow structure. The shell 1 is provided with a cooling cavity 2 at the bottom. The cooling cavity 2 is in communication with the inside of the shell 1. An adjusting hole 3 is formed in the side wall of the cooling cavity 2. The bimetallic strip 4 is embedded in the adjusting hole 3. A ventilation opening 5 is formed in the side wall of the cooling cavity 2. A piston plate 6 is slidably connected in the ventilation opening 5. The piston plate 6 is fixedly connected with a piston rod 7 on one side. The end of the piston rod 7 away from the piston plate 6 is located in the adjusting hole 3. The bimetallic strip 4 is embedded in the adjusting hole 3. A light reflection assembly is installed on one side of the bimetallic strip 4. The light reflection assembly comprises an adjusting bracket. The adjusting bracket is fixedly connected with the bimetallic strip 4 on one side away from the piston rod 7. A reflector 16 is installed on the other side of the adjusting bracket.
[0053] A lighting assembly is installed on the inner top wall of the shell 1 for irradiating the liver area of the right upper part of the abdomen of the patient. The lighting assembly comprises a treatment lamp 12 for emitting light of a specific wavelength to assist in the treatment of the liver area of the right upper part of the abdomen of the patient. The treatment lamp 12 is signal-connected with the controller. The light emitted by the treatment lamp 12 can increase the temperature of the skin, thereby improving the permeability of the skin, making the drug molecules more easily penetrate the skin barrier, enter the subcutaneous tissue and the liver area, and enhance the treatment effect.
[0054] The outer side wall of the bottom of the shell 1 is provided with a massage assembly for massaging the skin of the right upper part of the patient's abdomen and the liver area, the massage assembly comprising a shell 8, the shell 8 being annular in structure, the inner side wall of the shell 8 being fixedly connected with the outer side wall of the shell 1, and the bottom wall of the shell 8 being embedded with an electrode sheet 9, the electrode sheet 9 being used to simulate the Chinese massage method to massage and stimulate the right upper part of the patient's abdomen and the liver area, and the outer side wall of the electrode sheet 9 being coated with a nano-silver ion coating. The electrode sheet 9 will generate a weak current after being electrified, and this current can stimulate the nerve endings and muscle tissue under the skin, causing muscle contraction and relaxation, thereby promoting blood circulation and lymph circulation. At the same time, the nano-silver ion coating can enhance the conductivity and antibacterial properties of the electrode sheet 9, ensuring the safety and comfort of the massage process. The massage can stimulate vasodilation, increase blood flow, and further promote blood circulation in the liver area, helping to accelerate the distribution and metabolism of drugs and improve treatment effectiveness. The electrode sheet 9 is electrically connected with a power supply assembly, and the power supply assembly is installed on the outer top wall of the shell 8. The irradiation assembly, the massage assembly, and the monitoring assembly are all signal-connected with the controller, and the controller adjusts the irradiation assembly and the massage assembly according to the real-time temperature data monitored by the temperature sensor, that is, the controller can automatically adjust the wavelength of the light of the treatment lamp 12 according to the preset data and the real-time temperature data monitored by the temperature sensor. The controller automatically adjusts the wavelength of the light of the treatment lamp 12 and the current output of the massage assembly according to the preset data and the real-time monitoring data, realizes intelligent management, and improves treatment efficiency and accuracy.
[0055] When the temperature rises, the bimetallic strip 4 deforms due to heat, pushes the piston plate 6 to move through the piston rod 7, and then adjusts the airflow in the cooling cavity 2. At the same time, the controller adjusts the current intensity of the electrode sheet according to the temperature change, so that the massage intensity of the electrode sheet at the corresponding position changes with the temperature. At the same time, when the bimetallic strip 4 deforms due to temperature change, it drives the adjustment bracket to displace, thereby adjusting the angle of the reflecting mirror 16; the reflecting mirror 16 reflects the light emitted by the irradiation assembly to the low-temperature area, while reducing direct irradiation to the high-temperature area.
[0056] The power supply assembly includes a battery and a battery management module, the battery management module is used to monitor the battery capacity, a battery slot 10 for installing the battery is arranged on the shell 8, the battery slot 10 is provided with a cover 11 for closing the battery slot 10 and a charging port for charging the battery, and the battery management module is signal-connected with the controller. When the battery management module monitors that the battery capacity is insufficient, the controller reminds medical staff to replace the battery. The battery management module monitors the battery capacity in real time, reminds medical staff to replace the battery in time, and ensures the stable operation of the device.
[0057] The specific implementation process is as follows: before use, first clean the skin of the right upper part of the patient's abdomen, ensure that the skin surface is free of grease, dirt or sweat, so as to avoid affecting the absorption of the ointment and the use effect of the device. Ask the patient if he has a history of allergies or special skin conditions to ensure the safety of the use of the Shugan Jianpi Huazhuo ointment and the device. The ointment prepared by the Shugan Jianpi Huazhuo prescription is evenly applied to the liver area of the right upper part of the patient's abdomen. The thickness and range of the ointment should be adjusted according to the treatment needs.
[0058] At the same time, in order to solve the problem that the ointment cannot be completely and evenly applied and the temperature of each area cannot be ensured to be uniform by the treatment lamp, based on the deformation characteristics of the bimetallic strip 4, the light reflection assembly is used to adjust the reflection of the light emitted by the treatment lamp 12. That is, when the bimetallic strip 4 deforms due to temperature change, it drives the adjustment bracket to displace, thereby adjusting the angle of the reflector 16; the reflector 16 reflects the light emitted by the treatment lamp 12 to the low-temperature area, while reducing the direct irradiation to the high-temperature area, thereby realizing dynamic balance of the temperature and ensuring uniform temperature of each area. The angle adjustment range of the reflector 16 is accurately controlled according to the deformation amount of the bimetallic strip 4, and the controller dynamically adjusts the angle of the reflector 16 according to the real-time data of the temperature sensor and in combination with the preset temperature distribution model, so as to realize uniform distribution of the temperature and improve the treatment effect and patient comfort.
[0059] Then the device of the present application is fixed on the liver area of the right upper part of the patient's abdomen through the elastic bandage 13 and the magic tape 14, and the tightness of the elastic bandage 13 is adjusted to ensure that the device is firmly attached to the skin without causing discomfort to the patient. After wearing, the treatment parameters are set through the controller, including treatment time, light wavelength and massage intensity, etc. These parameters should be adjusted according to the specific situation of the patient and the suggestion of the medical staff to achieve the best treatment effect.
[0060] Start the treatment lamp 12 and the electrode sheet 9 in the massage assembly to start treatment. The treatment lamp 12 emits light of a specific wavelength, which can increase the temperature of the skin, thereby improving the permeability of the skin, making the drug molecules in the ointment more easily penetrate the skin barrier, enter the subcutaneous tissue and liver area, and enhance the treatment effect.
[0061] The electrode sheet 9 generates a weak current after being energized, simulating traditional Chinese medicine massage techniques to massage and stimulate the liver area of the right upper part of the patient's abdomen. At the same time, the nano-silver ion coating can enhance the conductivity and antibacterial properties of the electrode sheet 9, ensuring the safety and comfort of the massage process. Massage can stimulate vasodilation and increase blood flow, further promoting blood circulation in the liver area. This helps to accelerate the distribution and metabolism of drugs, improving the treatment effect. The treatment lamp 12 and the electrode sheet 9 can both promote transdermal absorption, and the application of the ointment can further promote the absorption and metabolism of drugs, enhancing the treatment effect.
[0062] During the treatment, the temperature sensor in the monitoring module monitors the skin temperature of the area where the patient uses the auxiliary device in real time. The controller adjusts the power of the treatment lamp 12 according to the data transmitted by the temperature sensor, ensuring that the temperature during the treatment is appropriate, avoiding overheating or overcooling to cause discomfort to the patient.
[0063] When the temperature received by the controller exceeds the preset threshold, the bimetallic strip 4 will deform due to the excessive temperature, thereby pushing the piston rod 7, and the piston rod 7 pushes the piston plate 6, and the piston plate 6 slides out of the air vent 5, so that the inside of the shell 1, the cooling cavity 2 and the outside are connected, and the outside air can enter the cooling cavity 2 through the air vent 5, and the temperature inside the shell 1 is reduced by natural convection or forced convection (natural convection: when the outside temperature is lower than the inside temperature of the shell 1, hot air will rise and be discharged through the air vent 5, and cold air will enter the inside of the shell 1 through the air vent 5, forming natural convection. Forced convection: when needed, a fan or other forced convection device can be started to accelerate air flow and improve cooling effect). Conversely, when the temperature is lower than the threshold, the bimetallic strip 4 returns to its original state, and the piston rod 7 closes the adjusting hole 3, reducing heat dissipation.
[0064] After the treatment is completed, turn off the treatment lamp 12 and the massage assembly, and disconnect the power supply. Gently remove the device and clean the ointment residue on the patient's skin.
[0065] Example 2:
[0066] As shown in the accompanying Figure 4 , the difference from Example 1 is that it also includes a warning module, which includes an indicator light and a buzzer. The indicator light is used to flash and emit different colors of light to represent different warning reminders, and the buzzer is used to emit different alarm sounds. Both the indicator light and the buzzer are connected to the controller signal. When the temperature data monitored by the temperature sensor received by the controller does not match the preset data, the warning module can issue an audible and visual alarm signal to remind medical personnel to take timely measures.
[0067] For example, the indicator light is used to flash and emit different colors of light to represent different warning reminders, for example, a green light may indicate that everything is normal, a yellow light may indicate that the use time is about to expire, and a red light may indicate an urgent reminder or a situation that requires immediate action. The buzzer is used to emit different alarm sounds, for example, a soft buzzing sound may indicate a daily time reminder, and a sharp buzzing sound may indicate that the temperature is too high and needs to be operated immediately.
[0068] The specific implementation process is as follows: the temperature sensor monitors the skin temperature of the area where the patient uses the auxiliary device in real time, and transmits the data to the controller. The controller compares the data transmitted by the temperature sensor with the preset warning threshold.
[0069] When the temperature data exceeds or falls below the warning threshold, the controller triggers the warning module. The indicator light in the warning module starts to flash and emits different colors of light to represent different warning reminders. At the same time, the buzzer emits different alarm sounds to attract the attention of medical staff. After hearing the alarm sound and seeing the indicator light flashing, the medical staff should immediately check the patient's condition. According to the type of warning (such as high or low temperature, etc.), appropriate measures should be taken, such as adjusting treatment parameters, replacing ointment, or stopping treatment, etc.
[0070] Example 3:
[0071] The difference from Example 2 is that the top of the shell 1 is embedded with a user interaction module, which includes a display screen 15 and operation buttons. The display screen 15 is used to display the current treatment status, temperature data, and remaining treatment time information, and the operation buttons are used to manually adjust the treatment parameters.
[0072] The specific implementation process is as follows: medical staff or patients can view the current treatment status, temperature data, and remaining treatment time information through the display screen 15 in the user interaction module. Treatment parameters such as treatment time, light wavelength, and massage intensity can be manually adjusted using the operation buttons.
[0073] Medical staff or patients can view the treatment progress and temperature data in real time through the display screen 15. If necessary, treatment parameters can be manually adjusted through the operation buttons. During treatment, if there are any doubts or the need to pause treatment, the operation buttons can be operated.
[0074] Example 4:
[0075] As shown in the accompanying Figure 4 The difference from Example 3 is that it includes a personalization module, which is signal-connected with the controller. The personalization module is used to automatically generate a personalized treatment plan suitable for the patient by inputting the patient's personal information, medical history, and treatment goals. The personalized treatment plan includes irradiation time, temperature threshold, and light wavelength parameters of the treatment lamp 12.
[0076] It also includes a remote monitoring and data transmission module, which is used to transmit the patient's physiological data, treatment parameters, and device working status to a remote server or medical staff's smart terminal (such as a computer, tablet, or mobile phone, etc.) in real time. Medical staff can check the patient's treatment progress at any time and place, and remotely adjust the treatment plan as needed.
[0077] The specific implementation process is as follows: preliminary preparation, evaluate the patient's physical condition, including basic information such as height, weight, and BMI; ask about the patient's medical history, including past diseases and drug allergy history; communicate with the patient about the treatment goal and clarify the expected treatment effect.
[0078] The personalized module of the Shugan Jianpi Huatuo Fang fatty liver treatment auxiliary device is started, and the personal information (such as name, age, and gender, etc.), medical history, and treatment goals of the patient are input through the user interaction module. The personalized module automatically generates a set of personalized treatment plan suitable for the patient according to the input information, combined with the built-in algorithm and database. The personalized treatment plan includes key information such as irradiation time, temperature threshold, and light wavelength parameters of the treatment lamp 12. After the treatment plan is generated, it is displayed on the display screen 15 of the user interaction module for the patient and medical staff to view. The treatment parameters such as irradiation time and temperature threshold are adjusted according to the personalized treatment plan. After ensuring that all parameter settings are correct, the treatment lamp 12 and the massage assembly are started to begin treatment.
[0079] The remote monitoring and data transmission module transmits the physiological data (such as temperature data) of the patient, the treatment parameters (such as irradiation time and temperature threshold), and the working status (such as whether the treatment lamp 12 is turned on and whether the massage assembly is working) of the device to the remote server or the smart terminal of the medical staff in real time. The medical staff can check the treatment progress of the patient and the working status of the device through the smart terminal at any time and anywhere.
[0080] The medical staff can remotely adjust the treatment plan of the patient according to the data and analysis results on the remote server. The adjusted treatment plan will be sent to the Shugan Jianpi Huatuo Fang fatty liver treatment auxiliary device of the patient through the remote monitoring and data transmission module, and automatically updated to the display screen 15 of the user interaction module for the patient to view.
[0081] Obviously, the above embodiments are only examples for clear illustration, and not limitation of the embodiments. For ordinary skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, it is not necessary and impossible to exhaust all embodiments. The obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. A Shugan Jianpi Hua Zhuo method for treating fatty liver disease auxiliary device, characterized in that, The utility model provides a kind of temperature monitoring device for patient, including shell (1) and monitoring module, shell (1) both sides are equipped with the fixed component for fixing shell (1), monitoring module includes controller, temperature sensor for carrying out real-time temperature monitoring to the coverage area of shell (1) and bimetallic strip (4), shell (1) is hollow structure, shell (1) bottom is equipped with cooling cavity (2), cooling cavity (2) side wall is equipped with adjusting hole (3), bimetallic strip (4) is embedded in adjusting hole (3), the outer wall of shell (1) is equipped with air vent (5), air vent (5) is slidably connected with piston plate (6), piston plate (6) one side is fixedly connected with piston rod (7), piston rod (7) end away from piston plate (6) is located in adjusting hole (3), bimetallic strip (4) one side is equipped with light reflection component, light reflection component includes adjusting support, adjusting support one side is fixedly connected with bimetallic strip (4), adjusting support other side is equipped with reflector (16); The utility model discloses a kind of temperature monitoring device for patient, including shell (1) and monitoring module, shell (1) both sides are equipped with the fixed component for fixing shell (1), monitoring module includes controller, temperature sensor for carrying out real-time temperature monitoring to the coverage area of shell (1) and bimetallic strip (4), shell (1) is hollow structure, shell (1) bottom is equipped with cooling cavity (2), cooling cavity (2) side wall is equipped with adjusting hole (3), bimetallic strip (4) is embedded in adjusting hole (3), the outer wall of shell (1) is equipped with air vent (5), air vent (5) is slidably connected with piston plate (6), piston plate (6) one side is fixedly connected with piston rod (7), piston rod (7) end away from piston plate (6) is located in adjusting hole (3), bimetallic strip (4) one side is equipped with light reflection component, light reflection component includes adjusting support, adjusting support one side is fixedly connected with bimetallic strip (4), adjusting support other side is equipped with reflector (16); Shell (1) inner bottom wall is equipped with the irradiation component for irradiating the liver area of patient's right upper part of abdomen, cooling cavity (2) and the chamber where the irradiation component in shell (1) is communicated, shell (1) bottom outside wall is equipped with the massage component for carrying out massage to the skin of patient's right upper part of abdomen liver area, irradiation component, massage component and monitoring component are with the signal connection of controller, controller is adjusted according to the real-time temperature data monitored to irradiation component and massage component by temperature sensor; When temperature rises, bimetallic strip (4) is deformed by heat, piston plate (6) is moved by piston rod (7) to push, to adjust the airflow in cooling cavity (2) in turn, while controller adjusts the current intensity of massage component according to temperature change, and the massage intensity of corresponding position massage component changes with temperature change;When the temperature received in controller exceeds preset threshold value, bimetallic strip (4) will be deformed due to temperature is too high, to push piston rod (7), while piston rod (7) pushes piston plate (6), piston plate (6) slides out from air vent (5), so that the inside of shell (1), cooling cavity (2) and outside are communicated, the air of outside can enter cooling cavity (2) through air vent (5), and the temperature in shell (1) is reduced by natural convection or forced convection; Natural convection: when the temperature of outside is lower than the temperature in shell (1), hot air will rise and be discharged through air vent (5), and cold air enters the inside of shell (1) through air vent (5), to form natural convection; Forced convection: when needed, fan forced convection equipment can be started, to accelerate air flow and improve cooling effect;Conversely, when temperature is lower than threshold value, bimetallic strip (4) restores original shape, piston rod (7) closes adjusting hole (3), to reduce heat loss. Meanwhile, when the bimetallic strip (4) deforms due to temperature changes, it drives the adjustment bracket to displace, thereby adjusting the angle of the reflector (16); the reflector (16) reflects the light emitted by the irradiation assembly to the low-temperature area, while reducing direct irradiation to the high-temperature area, thereby achieving dynamic balance of the temperature and ensuring uniform temperature in each area; the angle adjustment range of the reflector (16) is accurately controlled according to the deformation amount of the bimetallic strip (4), and the controller dynamically adjusts the angle of the reflector (16) according to the real-time data of the temperature sensor and in combination with the preset temperature distribution model, so as to achieve uniform distribution of the temperature and improve treatment effect and patient comfort.
2. The Shugan Jianpi Huazhuo Fang fatty liver treatment auxiliary device according to claim 1, characterized in that, The massage assembly includes a shell (8), which has an annular structure, and the inner side wall of the shell (8) is fixedly connected with the outer side wall of the shell body (1), and the bottom wall of the shell (8) is embedded with an electrode sheet (9) for simulating traditional Chinese medicine massage techniques to massage and stimulate the edge area of the shell (8), and the electrode sheet (9) is electrically connected with a power supply assembly installed on the outer top wall of the shell (8).
3. The liver-dredging and spleen-invigorating and phlegm-resolving recipe fatty liver treatment auxiliary device according to claim 2, characterized in that, The power supply assembly includes a battery and a battery management module for monitoring the battery power, and the shell (8) is provided with a battery slot (10) for installing the battery, and the battery slot (10) is provided with a cover (11) for closing the battery slot (10) and a charging port for the battery, and the battery management module is signal-connected with the controller, and when the battery management module detects insufficient power, the controller sends a prompt signal.
4. The liver-dredging and spleen-invigorating and phlegm-resolving recipe fatty liver treatment auxiliary device according to claim 3, characterized in that, It also includes a warning module, which includes an indicator light and a buzzer, the indicator light is used to flash and emit different colors of light to represent different warning reminders, and the buzzer is used to emit different alarm sounds, and the indicator light and the buzzer are signal-connected with the controller, and when the temperature data monitored by the temperature sensor received by the controller does not match the preset data, the warning module sends an audible and visual alarm signal.
5. The liver-dredging and spleen-invigorating and phlegm-resolving recipe fatty liver treatment auxiliary device according to claim 4, characterized in that, The irradiation assembly includes a treatment lamp (12) for emitting light of a specific wavelength for irradiation and auxiliary treatment, and the treatment lamp (12) is signal-connected with the controller, and the controller adjusts the wavelength of the light of the treatment lamp (12) according to the preset data and the temperature data monitored by the temperature sensor in real time.
6. The Shugan Jianpi Huazhuo Decoction Fatty Liver Treatment Auxiliary Device according to claim 5, characterized in that, The fixing assembly includes a plurality of elastic bands (13) and Velcro (14), one end of the elastic band (13) is fixedly connected with the two sides of the shell body (1), and the Velcro (14) is fixedly connected at the end of the elastic band (13) away from the shell body (1), and the Velcro (14) is used to fix the elastic band (13) on the patient's body.
7. The liver-dredging and spleen-invigorating and phlegm-resolving recipe fatty liver treatment auxiliary device according to claim 6, characterized in that, The top of the shell body (1) is embedded with a user interaction module, which includes a display screen (15) and operation buttons, the display screen (15) is used to display the current treatment state, temperature data, and remaining treatment time information, and the operation buttons are used for manual adjustment of treatment parameters by the user. 8.The fatty liver treatment auxiliary device of the method for reducing liver fat and strengthening spleen and removing turbidity according to claim 7, characterized in that, It includes a personalized module, which is signal-connected with the controller, and the personalized module is used to receive personal information, medical history and treatment goals of the patient, and automatically generates a personalized treatment plan, which includes irradiation time, preset data and light wavelength parameters of the treatment lamp (12).
9. The liver-dredging and spleen-invigorating and phlegm-resolving recipe fatty liver treatment auxiliary device according to claim 8, characterized in that, The remote monitoring and data transmission module is used for transmitting physiological data, treatment parameters and working states of the device of the patient to a remote server or a smart terminal of medical staff in real time.
10. The liver-dredging and spleen-invigorating and phlegm-resolving recipe fatty liver treatment auxiliary device according to claim 9, characterized in that, The electrode piece (9) of the massage assembly is coated with a nano-silver ion coating on the outer wall.
Citation Information
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