Hypertensive patient diet data monitoring device
By designing a dietary data monitoring device for hypertensive patients including touch screen industrial control machines, wireless network transceivers, development boards and salinity detection meters, the problem of difficulty in real-time monitoring of daily salt intake in patients with hypertension in the prior art is solved, and timely monitoring of salt intake and improving the efficiency of doctors' follow-up is achieved.
Patent Information
- Application Number
- CN202510178936.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The prior art is difficult to monitor the daily salt intake of hypertensive patients in real time, resulting in inefficient follow-up by doctors and inability to adjust the patient's salt intake plan in time.
Design a dietary data monitoring device for patients with hypertension, including a touch screen industrial control machine, a wireless network transceiver, a development board and a salinity detector. The salinity of food is detected through the salinity detector, and the food intake is input through the touch screen industrial control machine, calculate the daily salt intake, and compare it with the daily salt intake planning set by the doctor to determine whether the salt intake exceeds the standard.
Real-time monitoring of daily salt intake in patients with hypertension is achieved, reducing the frequency of doctors' follow-up, and improving the timeliness and accuracy of salt intake plans.
Smart Images

Figure CN120220972A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of health monitoring, and particularly relates to a dietary data monitoring device for hypertensive patients. Background Art
[0002] Hypertension is a common chronic disease, and its occurrence is related to multiple factors. Among them, a high-salt diet is a recognized important risk factor. The traditional management method for hypertension mainly relies on regular follow-up by doctors. However, due to the large number of hypertensive patients and the limited doctor resources, regular on-site follow-up undoubtedly increases the labor burden on doctors. Therefore, it is particularly important to develop a dietary data detection device that can monitor the daily salt intake of hypertensive patients in real time. Summary of the Invention
[0003] The purpose of the present invention is to provide a dietary data monitoring device for hypertensive patients to solve the problems existing in the prior art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A dietary data monitoring device for hypertensive patients, including a housing. One side of the housing is provided with a touch screen industrial computer, the top of the housing is provided with a wireless network transceiver, and one side inside the housing is provided with a development board;
[0005] An insertion rack is provided on the housing, and a salinity detector is inserted into the insertion rack;
[0006] A processing module is provided on the development board. The processing module is used to receive the salinity data processed by the salinity detector and the item quantity input through the touch screen industrial computer, perform a health analysis of the salt intake, and process the analysis result to be displayed on the touch screen industrial computer; the processing module also allows a doctor to intervene in the analysis and processing process through a computer device via a wireless network.
[0007] Preferably, an installation frame is provided inside the housing, a battery is provided inside the installation frame, a power converter is provided at the inner bottom of the installation frame, the power input end of the power converter is connected to a charging head fixedly provided at the lower side of the housing, and the power output end of the power converter is connected to the power input pin of the battery through a cable.
[0008] Preferably, the processing module includes a salinity signal input module for receiving the salinity data processed by the salinity detector. The salinity signal input module is connected in transmission to a data processing module, and the data processing module is connected in transmission to an item input module. The item input module is used to receive the item data input through the touch screen industrial computer. The data processing module is also connected in two-way transmission to a sharing module. The data processing module is used to receive and process the salinity data and item data in real time, and perform a health analysis of the salt intake with the remote modulation of the sharing module;
[0009] The data processing module is connected to a display module for transmitting, and the display module is used to display the analysis result on a touch screen industrial control computer.
[0010] Preferably, the sharing module includes a network interaction unit for establishing an interaction link through a wireless network transceiver. The network interaction unit is connected to a signal processing unit for two-way transmission. The signal processing unit is used for encrypting and decrypting information, and the signal processing unit is connected to a cache unit for two-way transmission. The cache unit is used for caching information in real time.
[0011] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0012] In the present invention, the patient daily uses a salinity detector to detect the salinity of the ingested food, and inputs the food intake amount into the touch screen industrial control computer, so as to calculate the single-day salt intake amount. Then, the calculated single-day salt intake amount is compared with the daily salt intake planning amount set by the doctor, so as to determine whether the daily salt intake amount exceeds the standard. The doctor can also remotely intervene to view the patient's salt intake amount and customize the planning amount according to the patient's condition. Compared with the doctor's follow-up visit, the doctor only needs to intervene in this device at the patient's home through a computer every day to extract the daily salt intake data, which is more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is the overall schematic diagram of the present invention;
[0014] Figure 2 is the partial sectional side view schematic diagram of the present invention;
[0015] Figure 3 is the connection schematic diagram of each module in the development board of the present invention;
[0016] Figure 4 is the connection schematic diagram of each unit in the sharing module of the present invention.
[0017] In the figure: 1 housing, 2 touch screen industrial control computer, 3 wireless network transceiver, 4 development board, 5 mounting frame, 6 battery, 7 power adapter, 8 plug-in rack, 9 salinity detector. DETAILED DESCRIPTION OF THE INVENTION
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.
[0019] Refer to Figure 1 and Figure 2, A dietary data monitoring device for hypertensive patients, including a housing 1, a touch screen industrial computer 2 is fixed to the front side of the housing 1 by screws, a wireless network transceiver 3 is fixed to the top of the housing 1 by screws, and a development board 4 is fixed to the left side inside the housing 1 by screws with an insulating pad. The development board 4 selects the ZC702 development board of Xilinx;
[0020] An insertion rack 8 is integrally provided on the left side of the housing 1. A salinity detector 9 is slidably inserted into the insertion rack 8. The salinity detector 9 selects a wired electronic salinity detector. The signal output line of the salinity detector 9 is connected to the signal input pin of the salinity signal input module;
[0021] A processing module is developed and set on the development board 4. The processing module is used to receive the salinity data processed by the salinity detector 9 and the item quantity input through the touch screen industrial computer 2, perform a health analysis of salt intake, and process the analysis result to be displayed on the touch screen industrial computer 2; The processing module also intervenes in the analysis and processing process through the wireless network by a doctor through a computer device.
[0022] Among them, the computer device selects a laptop computer and is connected to the peripheral broadband network by means of wired connection or wireless connection.
[0023] The salinity detector 9 detects the salinity in the dishes, and the touch screen industrial computer 2 inputs the consumption amount of the dishes. The doctor intervenes in the processing module in the form of a network to plan the daily salt intake of the patient. If the total salt intake on the day exceeds the planned amount, a salt excess prompt is sent to the touch screen industrial computer 2.
[0024] Refer to Figure 2 , An installation frame 5 is integrally provided at the lower part inside the housing 1. A battery 6 is fixed to the installation frame 5 by screws. The battery 6 is a 12V lithium rechargeable battery. The power output pin of the battery 6 is connected to the power input post of a 12V to 5V transformer. The power output end of the 12V to 5V transformer is connected to the power input end of the development board 4 and the power access end of the wireless network transceiver 3 through a cable; The power output pin of the battery 6 is also connected to the power input end of the touch screen industrial computer 2 through a cable. A power converter 7 is fixed to the inner bottom of the installation frame 5. The power input end of the power converter 7 is connected to a charging head fixedly arranged on the side of the lower part of the housing 1. The charging head selects a USB charging head, and a charging cable adapted to the power converter 7 is used to connect to the external 220V power supply to realize charging for the battery 6; The power output end of the power converter 7 is connected to the power input pin of the battery 6 through a cable.
[0025] Refer to Figure 3, the processing module includes a salinity signal input module which is used to receive the salinity data processed by the salinity detector 9; the salinity signal input module is connected to a data processing module in a transmission manner, and the data processing module is connected to an item input module in a transmission manner; the item input module is used to receive the item data input by the touch screen industrial computer 2. Further, the signal output end of the touch screen industrial computer 2 is connected to the signal access pin of the item input module through a signal line; the data processing module is also connected to a sharing module in a bidirectional transmission manner. The data processing module is used to receive and process the salinity data and item data in real time, and through the remote modulation of the sharing module, perform a health analysis on the salt intake.
[0026] It should be noted that the item data is the food intake Q, with the unit of gram, and the real-time salinity data P% will be involved in the calculation together. The salt intake D = Q * P%, and it is measured in 24 hours per day, from 0:00:00 to 24:00:00, and the salt intake within a day is accumulated; if the planned amount R > D, it belongs to healthy intake, and if R ≤ D, it belongs to unhealthy salt intake, and a salt excess prompt text will be generated.
[0027] The data processing module is connected to a display module in a transmission manner. The signal output pin of the display module is connected to the signal input end of the touch screen industrial computer 2 through a signal line. The display module is used to display the analysis result on the touch screen industrial computer 2. The data processing module will write the salt excess prompt text into the touch screen industrial computer 2 through the display module and be displayed on the display screen of the touch screen industrial computer 2.
[0028] Refer to Figure 4 , the sharing module includes a network interaction unit which is used to establish an interaction link through the wireless network transceiver 3. The network interaction unit is connected to a signal processing unit in a bidirectional transmission manner. The signal processing unit is used to encrypt and decrypt information. The signal processing unit is connected to a cache unit in a bidirectional transmission manner. The cache unit is used to cache information in real time.
[0029] The doctor can modify the planned amount in the data processing module according to the actual situation of the patient, and can also extract the daily salt intake information, so as to understand the patient's salt intake situation in real time.
[0030] The working principle of this embodiment is as follows: The patient daily uses the salinity detector 9 to detect the salinity of the ingested food, and inputs the food intake through the touch screen industrial computer 2, so as to calculate the single-day salt intake, and compare it with the daily salt intake planned amount set by the doctor, so as to judge whether the daily salt intake exceeds the standard; the doctor can also remotely intervene to view the patient's salt intake and customize the planned amount according to the patient's situation.
[0031] The above is only a preferred embodiment of the present invention, and is not used to limit the protection scope of the present invention.
Claims
1. A device for monitoring dietary data of a hypertensive patient, characterized in that: It comprises a casing (1), a touch screen industrial computer (2) is arranged on one side of the casing (1), a wireless network transceiver (3) is arranged on the top of the casing (1), and a development board (4) is arranged on one side of the casing (1); The housing (1) is provided with a plug-in rack (8), and a salinity detector (9) is inserted into the plug-in rack (8); The development board (4) is provided with a processing module, which is used to receive the salinity data processed by the salinity detector (9) and the project quantity input through the touch screen industrial computer (2), perform salt intake health analysis, and process the analysis results to be displayed on the touch screen industrial computer (2); the processing module also allows doctors to intervene in the analysis and processing process through computer equipment via a wireless network.
2. A device for monitoring dietary data of hypertensive patients according to claim 1, characterized in that: An installation frame (5) is arranged inside the housing (1), a battery (6) is arranged inside the installation frame (5), a power converter (7) is arranged at the inner bottom of the installation frame (5), a power input end of the power converter (7) is connected to a charging head fixedly arranged on the lower side of the housing (1), and a power output end of the power converter (7) is connected to a power input pin of the battery (6) via a cable.
3. A device for monitoring dietary data of hypertensive patients according to claim 2, characterized in that: The processing module comprises a salinity signal input module, the salinity signal input module is used to receive salinity data processed by a salinity detector (9), the salinity signal input module is connected to a data processing module, the data processing module is connected to a project input module, the project input module is used to receive the project number input by the touch screen industrial computer (2), the data processing module is also connected to a sharing module in a bidirectional transmission, the data processing module is used to receive data processing salinity data and project number in real time, and perform health analysis on salt intake with the help of remote modulation of the sharing module; The data processing module is connected to a display module for transmission, and the display module is used to display the analysis result on a touch-screen industrial computer (2).
4. A device for monitoring dietary data of hypertensive patients according to claim 3, characterized in that: The sharing module comprises a network interaction unit, the network interaction unit is used to establish an interactive link through a wireless network transceiver (3), the network interaction unit is bidirectionally connected to a signal processing unit, the signal processing unit is used to encrypt and decrypt information, and the signal processing unit is bidirectionally connected to a cache unit, the cache unit is used to cache information in real time.