Nursing belt for cardiology rehabilitation
By integrating a drug release module and a heating control system into the cardiology rehabilitation belt, and selecting the heating method according to the type of drug, the problems of slow drug release and unclear effects are solved, realizing rapid release and effective protection of drug components, and improving rehabilitation results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-24
AI Technical Summary
The existing rehabilitation belts for cardiology have not shown significant rehabilitation effects, the drug release rate is slow, and the appropriate heating method cannot be selected according to the type of drug.
A nursing belt for cardiology rehabilitation has been designed, comprising a fixing belt, a connecting part, a vital signs monitoring module, a drug release module, and a rotating heating module. The heating method is selected based on the drug's QR code using a temperature sensor and a pattern recognition component. Combined with indirect and direct heating components, the drug release temperature is controlled to achieve rapid release and effective protection of drug components.
By selecting an appropriate heating method, the drug components are rapidly released under body temperature, enhancing the recovery effect and protecting the effective drug components from damage.
Smart Images

Figure CN119950985B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical device technology, and in particular to a nursing belt for cardiology rehabilitation. Background Technology
[0002] Cardiology is a clinical department that diagnoses and treats cardiovascular diseases, including angina, heart failure, premature beats, and arrhythmias. To ensure patients' heart health, in addition to routine dietary and emotional management, external medication is increasingly valued. Among medication-based therapies, traditional Chinese medicine rehabilitation belts are the most common. The conventional method involves placing a medicine pouch on the belt; the herbal ingredients inside are naturally released and absorbed by the body under body temperature, which takes a considerable amount of time and results in limited effectiveness. Summary of the Invention
[0003] To address the technical problem of poor rehabilitation effects of existing health rehabilitation belts, the present invention proposes a nursing belt for cardiology rehabilitation, comprising a fixing belt, connecting portions at both ends of the fixing belt, hook and loop fasteners on the surface of the connecting portions, a vital signs monitoring module at the center of the surface of the fixing belt, a processing module above the vital signs monitoring module, and drug release modules symmetrically arranged on both sides of the vital signs monitoring module.
[0004] Preferably, the drug release module is an open cuboid structure with the opening located at the end closest to the human body. The drug release module has sliding rails on both sides of the end closest to the human body, and fixing clamps are installed in the sliding rails. The fixing clamps at both ends hold the drug bag. The drug release module has a rotating shaft at the end furthest from the human body, and a rotating heating module is installed on the rotating shaft. A temperature sensor is installed between the clamped drug bag and the rotating heating module.
[0005] Preferably, the fixing clamp includes a fixing plate and a pressure plate, the fixing plate is connected to a sliding rail, the surface of the fixing plate is provided with Velcro, and the pressure plate is rotatably connected to the fixing plate by a spring.
[0006] Preferably, the rotating heating module includes a rotating part, which is a triangular prism structure with a central through hole, and an indirect heating component, a direct heating component, and a pattern recognition component are respectively arranged on the three sides of the triangular prism.
[0007] Preferably, the indirect heating assembly includes a mounting plate, which is connected to the rotating part via a telescopic shaft. A distance sensor is provided on the left side of the mounting plate, and a first infrared LED is provided on the right side of the mounting plate. A heating element is provided above the first infrared LED, and a second infrared LED is provided inside the direct heating assembly.
[0008] Preferably, both the first infrared LED and the second infrared LED are infrared LEDs capable of emitting infrared light with a wavelength of 1.6 micrometers.
[0009] Preferably, the indirect heating component operates as follows: with the assistance of the distance sensor, the telescopic shaft drives the mounting plate forward, causing the heating pack to contact the medicine bag, activating the first infrared LED, and the heating pack absorbs heat from the first infrared LED and transfers the heat to the medicine bag.
[0010] Preferably, the pattern recognition component includes a camera and a recognition processor.
[0011] Preferably, the working process of the rotating heating module is as follows: a QR code is printed on the back of the medicine bag; the pattern recognition component is aligned with the medicine bag; the camera captures an image of the medicine bag containing the QR code; the recognition processor interprets the information in the QR code; and the heating method is selected based on the information in the QR code.
[0012] Preferably, the information in the QR code indicates whether heating is suitable or unsuitable. The specific process for selecting a heating method based on the information in the QR code is as follows: If the information indicates that heating is suitable, the rotating part is controlled to rotate so that the direct heating component faces the medicine bag, and the direct heating component is activated to heat the medicine bag. Combined with the data from the temperature sensor, the heating temperature is controlled at 45°C. If the information indicates that heating is unsuitable, the rotating part is controlled to rotate so that the indirect heating component faces the medicine bag, and the indirect heating component is activated to heat the medicine bag. Combined with the data from the temperature sensor, the heating temperature is controlled at 35°C.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] Choose the appropriate heating method based on the type of medication to accelerate the release of drug components while protecting the effective components and improving the recovery effect. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of the nursing belt for cardiology rehabilitation of the present invention;
[0016] Figure 2 This is a side sectional view of the drug release module of the present invention;
[0017] Figure 3 This is a top sectional view of the drug release module of the present invention.
[0018] Figure Descriptions: 1. Fixing strap; 2. Connecting part; 3. Hook and loop fastener; 4. Drug release module; 41. Drug bag; 42. Fixing clip; 421. Fixing plate; 422. Pressure plate; 43. Sliding rail; 44. Temperature sensor; 45. Rotating shaft; 46. Rotary heating module; 461. Indirect heating component; 4611. Telescopic shaft; 4612. Mounting plate; 4613. Distance sensor; 4614. First infrared LED; 4615. Heating pack; 462. Direct heating component; 463. Pattern recognition component; 4631. Camera; 4632. Recognition processor; 464. Rotating part; 5. Vital signs monitoring module; 6. Processing module. Detailed Implementation
[0019] The technical solution of the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0020] like Figure 1 As shown, the cardiology rehabilitation nursing belt proposed in this invention includes a fixing belt 1. Connecting portions 2 are provided at both ends of the fixing belt 1, and hook and loop fasteners 3 are provided on the surface of the connecting portions 2. The two ends of the connecting portions 2 are connected by the hook and loop fasteners 3, allowing the cardiology rehabilitation nursing belt to be fixed to the human body. A vital signs monitoring module 5 is provided at the center of the surface of the fixing belt 1, a processing module 6 is provided above the vital signs monitoring module 5, and drug release modules 4 are symmetrically arranged on both sides of the vital signs monitoring module 5. The drug release module 4 and the vital signs monitoring module 5 are connected to the fixing belt 1 by Velcro (not shown in the figure). The Velcro connection structure adopts a conventional structure and will not be described in detail here. Through holes are provided at the positions corresponding to the vital signs monitoring module 5 on the fixing belt 1, allowing the vital signs monitoring module 5 to directly contact the human body. In use, the two drug release modules are located at the front and rear of the human body, respectively, and the vital signs monitoring module is located on the side of the human body.
[0021] The drug release module 4 is an open cuboid structure, with the opening located at the end closest to the human body to facilitate the release of drug components. For example... Figure 2 and Figure 3 As shown, the drug release module 4 has sliding rails 43 on both sides at the end closest to the human body. A fixing clamp 42 is installed within the sliding rail 43, and the fixing clamp 42 can move up and down along the sliding rail 43 under the drive of a first micro motor. The fixing clamps 42 at both ends are used to hold the drug bag 41. At the end furthest from the human body, the drug release module 4 has a rotating shaft 45, on which a rotating heating module 46 is mounted. A temperature sensor 44 is located between the holding drug bag 41 and the rotating heating module 46.
[0022] like Figure 3As shown, the fixing clamp 42 includes a fixing plate 421 and a pressure plate 422. The fixing plate 421 is connected to a sliding rail 43 and can move up and down along the sliding rail 43 under the drive of a first micro motor. The surface of the fixing plate 421 is provided with Velcro. The pressure plate 422 is rotatably connected to the fixing plate 421 via a spring, which provides clamping force. When fixing the medicine bag, both ends of the medicine bag are first connected to the fixing plate via Velcro, and then the pressure plate clamps the ends of the medicine bag under the drive of the spring, achieving stable clamping of the medicine bag. During the heating process of the medicine bag, the fixing clamp 42 can move the medicine bag up and down at set time intervals, shaking the medicine in the bag and promoting uniform heating.
[0023] like Figure 3 As shown, the rotating heating module 46 includes a rotating part 464, which is a triangular prism structure with a through hole in the center. An indirect heating component 461, a direct heating component 462, and a pattern recognition component 463 are respectively arranged on the three sides of the triangular prism. The rotating part 464 can rotate under the drive of a second micro motor.
[0024] The indirect heating assembly 461 includes a mounting plate 4612, which is connected to a rotating part 464 via a telescopic shaft 4611. A distance sensor 4613 is located on the left side of the mounting plate 4612, and a first infrared LED 4614 is located on the right side. A heating pack 4615 is positioned above the first infrared LED. The heating pack 4615 contains saline solution, specifically a 23% sodium chloride solution, which has a large heat capacity and good thermal conductivity. The indirect heating assembly 461 operates as follows: with the assistance of the distance sensor 4613, the telescopic shaft 4611 moves the mounting plate 4612 forward, causing the heating pack 4615 to contact the medicine bag. This activates the first infrared LED, which absorbs heat and transfers it to the medicine bag, achieving indirect heating. The direct heating assembly 462 contains a second infrared LED. Both the first and second infrared LEDs are infrared LEDs capable of emitting infrared light with a wavelength of 1.6 micrometers.
[0025] The pattern recognition component 463 includes a camera 4631 and a recognition processor 4632. The recognition processor 4632 is communicatively connected to the temperature sensor 44, camera 4631, indirect heating component 461, direct heating component 462, and second micro motor to control the operation of the rotating heating module. Some traditional Chinese medicines require heating when applied externally, such as those used to promote blood circulation, remove blood stasis, dispel cold, and relieve pain. Heating can enhance their efficacy, and they can be heated to around 40℃-50℃. However, for traditional Chinese medicines with delicate textures or containing volatile components, overheating may destroy their active ingredients; a heating temperature of around 30℃-40℃ is more suitable. Considering that different traditional Chinese medicines have different heating requirements, a QR code is printed on the back of the medicine bag. The QR code indicates whether heating is suitable or not. When the pattern recognition component 463 is aligned with the medicine bag, the camera 4631 captures an image of the medicine bag containing the QR code. The recognition processor interprets the information in the QR code and selects the heating method based on the information in the QR code. The specific process of selecting the heating method based on the information in the QR code is as follows: If the information indicates that heating is suitable, the rotating part 464 is controlled to rotate so that the direct heating component faces the medicine bag, and the direct heating component is activated to heat the medicine bag. Combined with the data from the temperature sensor, the heating temperature is controlled at 45°C. If the information indicates that heating is not suitable, the rotating part 464 is controlled to rotate so that the indirect heating component faces the medicine bag, and the indirect heating component is activated to heat the medicine bag. Combined with the data from the temperature sensor, the heating temperature is controlled at 35°C.
[0026] The vital signs monitoring module 5 acquires the patient's blood oxygen saturation and heart rate data. A Huawei WATCH GT3 PRO smartwatch is used; the smartwatch's strap is removed, and the smartwatch is attached to the fastening strap using Velcro. The processing module 6 acquires the detection data from the vital signs monitoring module 5 via Bluetooth. When abnormal data is detected, an alarm is triggered via a buzzer.
[0027] The above description discloses only preferred embodiments of the present invention and should not be construed as limiting the scope of the invention. It should be noted that any equivalent variations made to the present invention by those skilled in the art without departing from its design structure and principles are considered within the scope of protection of the present invention.
Claims
1. A nursing belt for cardiology rehabilitation, characterized in that, The cardiology rehabilitation nursing belt includes a fixing belt, connecting parts at both ends of the fixing belt, hook and loop fasteners on the surface of the connecting parts, a vital signs monitoring module at the center of the surface of the fixing belt, a processing module above the vital signs monitoring module, and drug release modules symmetrically arranged on both sides of the vital signs monitoring module. The drug release module is an open cuboid structure with the opening located at the end closest to the human body. The drug release module has sliding rails on both sides of the end closest to the human body, and fixing clamps are installed in the sliding rails. The fixing clamps at both ends hold the drug bag. The drug release module has a rotating shaft at the end furthest from the human body, and a rotating heating module is installed on the rotating shaft. A temperature sensor is installed between the clamped drug bag and the rotating heating module. The rotating heating module includes a rotating part, which is a triangular prism structure with a through hole in the center. An indirect heating component, a direct heating component, and a pattern recognition component are respectively arranged on the three sides of the triangular prism. The indirect heating assembly includes a mounting plate, which is connected to the rotating part via a telescopic shaft. A distance sensor is provided on the left side of the mounting plate, and a first infrared LED is provided on the right side of the mounting plate. A heating pack is provided above the first infrared LED, and a second infrared LED is provided inside the direct heating assembly. The pattern recognition component includes a camera and a recognition processor; The working process of the rotating heating module is as follows: a QR code is printed on the back of the medicine bag; the pattern recognition component is aligned with the medicine bag; the camera captures an image of the medicine bag, which contains the QR code; the recognition processor interprets the information in the QR code and selects the heating method based on the information in the QR code. The information on the QR code indicates whether heating is suitable or not. The specific process for selecting a heating method based on the information on the QR code is as follows: If the information indicates that heating is suitable, the rotating part is controlled to rotate so that the direct heating component faces the medicine bag, and the direct heating component is activated to heat the medicine bag. Based on the data from the temperature sensor, the heating temperature is controlled at 45°C. If the information indicates that heating is not suitable, the rotating part is controlled to rotate so that the indirect heating component faces the medicine bag, and the indirect heating component is activated to heat the medicine bag. Based on the data from the temperature sensor, the heating temperature is controlled at 35°C.
2. The nursing belt for cardiology rehabilitation according to claim 1, characterized in that, The fixing clamp includes a fixing plate and a pressure plate. The fixing plate is connected to a sliding rail, and the surface of the fixing plate is provided with Velcro. The pressure plate is rotatably connected to the fixing plate by a spring.
3. The nursing belt for cardiology rehabilitation according to claim 1, characterized in that, Both the first infrared LED and the second infrared LED are infrared LEDs that can emit infrared light with a wavelength of 1.6 micrometers.
4. The nursing belt for cardiology rehabilitation according to claim 1, characterized in that, The indirect heating component operates as follows: with the assistance of the distance sensor, the telescopic shaft drives the mounting plate forward, causing the heating pack to contact the medicine bag, activating the first infrared LED. The heating pack absorbs heat from the first infrared LED and transfers the heat to the medicine bag.
Citation Information
Patent Citations
Rehabilitation strip for cardiology department
CN106422048A
Variable-temperature traditional Chinese medicine conduction treatment device and use method thereof
CN114366631A