Health detection device and health detection method
By using position measurement devices and detection components in health detection equipment, the position of the user's fingertips is automatically positioned, and the problem of inaccurate measurement results and inefficient caused by inconsistent hand placement in the prior art is solved, thereby achieving higher detection accuracy and efficiency.
Patent Information
- Application Number
- PCT/CN2024/136621
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-02-06
- Filing Date
- 2024-12-04
- Publication Date
- 2025-08-14
AI Technical Summary
When existing health monitoring equipment is inconsistent in the placement of the user's hand, it leads to inaccurate measurement results and inefficient efficiency.
Using a health detection device including a bearing part, a position measuring device, a detection component and a control device, a user's hand image is obtained through the position measuring device, a fingertip feature information of the fingertip to be detected, and a health detection is performed based on this automatic positioning detection unit.
Automatic positioning of the detection area is realized, the accuracy and efficiency of health testing is improved, and the user experience is improved.
Smart Images

Figure CN2024136621_14082025_PF_FP_ABST
Abstract
Description
[Corrected 18.12.2024 in accordance with Regulation 26] Health testing equipment and health testing methods
[0001] This application claims priority to the Chinese patent application filed with the China Patent Office on February 26, 2024, with application number 202410170462.1 and invention name “Health Detection Equipment and Health Detection Method”, the entire contents of which are incorporated by reference into this application. Technical Field
[0002] The present invention relates to the field of health management technology, and in particular to a health detection device and a health detection method. Background Art
[0003] Currently, most health monitoring devices require users to place their hand (i.e., the location to be measured) on the sensor. While there are some instructions or instructions for this process, such as marking the measurement area, each user's placement varies. This can lead to inaccurate measurement results and even require re-measurement, resulting in wasted time and reduced testing efficiency.
[0004] The above content is only used to assist in understanding the technical solution of the present invention and does not constitute an admission that the above content is prior art. Summary of the Invention
[0005] The main purpose of the present invention is to provide a health detection device and a health detection method, aiming to solve the technical problems of low efficiency and inaccurate measurement results of health monitoring in the existing technology.
[0006] To achieve the above-mentioned object, the present invention provides a health detection device, which includes a detection body, a bearing portion for supporting a hand, and a light-transmitting setting;
[0007] a position measuring device for measuring the position of a hand;
[0008] A detection component includes a detection portion and a driving mechanism disposed below the carrying portion, wherein the detection portion moves within a preset area relative to the carrying portion, and the driving mechanism is connected to the detection portion and is used to drive the detection portion to move, wherein the detection portion is used to detect fingertip health information when aligned with the fingertip in a vertical direction; and
[0009] A control device is electrically connected to the position measuring device and the driving mechanism, and is used to control the operation of the driving mechanism according to the position measuring device.
[0010] Optionally, the carrier portion includes a plurality of ECG blocks, and the plurality of ECG blocks are arranged flatly in a horizontal direction.
[0011] Optionally, the position measuring device is arranged below the carrying portion.
[0012] Optionally, the health detection device further includes a pressing portion, which is movably arranged in a direction approaching and away from the supporting portion, and the pressing portion is used to press the hand against the supporting portion during a movable stroke approaching the supporting portion.
[0013] Optionally, the health detection device further includes a display screen installed on the detection body.
[0014] To achieve the above-mentioned object, the present invention provides a health detection method, which is applied to a health detection device. The health detection device includes a detection body, a position determination device, and a detection component. The detection body includes a carrying portion, and the detection component includes a detection portion. The method includes:
[0015] In response to a health detection instruction, obtaining, by the position measuring device, an image of a user's hand in an area corresponding to the carrying portion;
[0016] Determining a user's to-be-detected fingertip and fingertip feature information of the to-be-detected fingertip based on the user's hand image;
[0017] Determining the position information of the fingertip to be detected according to the fingertip feature information;
[0018] The detection unit is controlled to perform health detection according to the position information.
[0019] Optionally, determining the user's fingertip to be detected and fingertip feature information of the fingertip to be detected based on the user's hand image includes:
[0020] Performing image noise reduction on the user's hand image to obtain a noise-reduced part image;
[0021] performing binarization processing on the noise reduction part image to obtain a binarized part image;
[0022] Feature extraction is performed based on the binary part image to determine the user's fingertip to be detected and fingertip feature information of the fingertip to be detected.
[0023] Optionally, determining the position information of the fingertip to be detected according to the fingertip feature information includes:
[0024] Determining the image coordinate information of the fingertip to be detected according to the fingertip feature information;
[0025] Get the preset world coordinate system;
[0026] The image coordinate information is converted according to the preset world coordinate system to determine the position information of the fingertip to be detected.
[0027] Optionally, the carrying portion includes a plurality of ECG blocks, and the detection component further includes a driving mechanism, and controlling the detection portion to perform health detection according to the position information includes:
[0028] determining a detection position of the detection unit according to the position information;
[0029] generating a movement instruction according to the detection position, so that the driving mechanism controls the movement of the detection unit according to the movement instruction, so that the detection unit performs health detection after reaching the detection position;
[0030] A target detection block is selected from a plurality of ECG blocks according to the block position of each ECG block and the position information, so that the target detection block performs health detection.
[0031] Optionally, the health detection device further includes a display screen mounted on the detection body, and the step of responding to the health detection instruction and obtaining an image of the user's hand in the area corresponding to the supporting portion through the position measurement device includes:
[0032] Responding to a health check instruction, generating a check guidance message according to the health check instruction;
[0033] Pushing the detection guidance information to the display screen for display, so that the user can adjust the posture according to the detection guidance information;
[0034] When the part contact information of the user is detected, the position measuring device acquires the image of the user's hand in the area corresponding to the supporting part.
[0035] Optionally, the health detection device further includes a pressing portion, and before controlling the detection portion to perform health detection according to the position information, further includes:
[0036] generating a position fixing instruction according to the position information;
[0037] The pressing portion is controlled to move according to the position fixing instruction so that the pressing portion fixes the user's hand.
[0038] Optionally, after controlling the detection unit to perform health detection according to the position information, the method further includes:
[0039] Get the detection duration;
[0040] When the detection duration reaches a preset time interval, obtaining multiple health detection indicators of the user;
[0041] Determine abnormality detection indicators based on the preset indicator range of each health detection indicator;
[0042] Anomaly marking the anomaly detection indicator to determine anomaly marking information;
[0043] Push the abnormal marking information to the display screen for display.
[0044] The health detection method of the present invention is applied to health detection equipment. In response to a health detection instruction, the position determination device obtains an image of the user's hand in the corresponding area of the support portion; determines the fingertip feature information of the user's fingertip to be detected and the fingertip feature information of the fingertip to be detected based on the user's hand image; determines the position information of the fingertip to be detected based on the fingertip feature information; and controls the detection portion to perform health detection based on the position information. In this way, the fingertip feature information of the fingertip to be detected and the fingertip feature information of the fingertip to be detected are determined based on the user's hand image, the position of the user's hand fingertip is automatically located based on the fingertip feature information, and then the detection portion is controlled to perform health detection based on the fingertip position information, thereby achieving automatic positioning of the detection area, improving the accuracy and efficiency of health detection, and enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only part of the drawings of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without any creative work.
[0046] FIG1 is a structural diagram of a health detection device in accordance with an embodiment of a health detection method of the present invention;
[0047] FIG2 is a schematic diagram showing the connection of a control device in an embodiment of a health detection method according to the present invention;
[0048] FIG3 is a flow chart of a first embodiment of a health detection method according to the present invention;
[0049] FIG4 is a flow chart of a second embodiment of a health detection method according to the present invention;
[0050] FIG5 is a schematic flow chart of a third embodiment of a health detection method according to the present invention;
[0051] FIG6 is a schematic diagram of the overall flow of an embodiment of a health detection method of the present invention. DETAILED DESCRIPTION
[0052] The following will describe the technical solutions in the embodiments of this application in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0053] Refer to FIG1 , which is a schematic structural diagram of a health detection device provided by an embodiment of the present invention.
[0054] In this embodiment, the detection body includes a bearing part 10 for supporting the hand, and the bearing part 10 can be set to be light-transmissive; a position measuring device 20 for measuring the position of the hand; a detection component 30, including a detection part and a driving mechanism arranged below the bearing part, the detection part moves within a preset area relative to the bearing part, the driving mechanism is connected to the detection part, and is used to drive the detection part to move, and the detection part is used to detect fingertip health information when it is aligned with the fingertip in the upper and lower directions; and a control device 40, which is electrically connected to the position measuring device 20 and the driving mechanism, and is used to control the operation of the driving mechanism according to the position measuring device.
[0055] It should be noted that the detection body of the health detection device is in an inverted U shape, including a bearing part 10 for supporting the hand, the bearing part 10 is located on the inner surface of the lower half of the health detection device, and the bearing part 10 includes a plurality of ECG blocks, and the plurality of ECG blocks are arranged flatly in the horizontal direction. The entire area of the bearing part 10 is composed of a transparent conductive electrode material and is divided into many small ECG (Electrocardiogram) blocks for collecting tiny electrical signals generated when the heart beats. In this embodiment, the bearing part 10 can be set as a panel of transparent material, and the transmittance must be greater than the preset transmittance value, which is used for the subsequent position measurement device under the panel to perform image acquisition. In this embodiment, the electrode material includes but is not limited to ZnO, IZO and other materials, and the preset transmittance value can be set to 90%, or it can be set to other values according to needs. This embodiment does not limit this.
[0056] It can be understood that the position measurement device 20 in this embodiment refers to the image acquisition device located below the supporting part, which is inside the health detection equipment. In this embodiment, the position measurement device can be set to a wide-angle camera, and the hand position is determined based on the analysis of the image captured by the wide-angle camera.
[0057] In a specific implementation, the detection component 30 includes a detection part and a driving mechanism arranged below the carrier part 10. The detection part in this embodiment is a PPG module. The PPG module refers to a module that integrates an optical pulse waveform (PPG) sensor, including an LED and a photodiode (photodetector) for emitting and receiving light signals, as well as related signal processing circuits and interfaces. The PPG module can be used to measure heart rate, blood oxygen saturation and other physiological parameters.
[0058] It should be noted that the driving mechanism includes: a first driving device, which is fixedly connected to the detection body, and the first driving device has a first driving part that is movably arranged in the left and right directions; a second driving device, which is fixedly connected to the first driving part, and the second driving device has a second driving part that is movably arranged in the front and back directions; and a third driving device, which is fixedly connected to the second driving part, and the third driving device has a third driving part that is movably arranged in the up and down directions, and the third driving part is fixedly connected to the detection part for driving the detection part to move.
[0059] It is understandable that the driving mechanism is connected to the detection part and is used to drive the detection part to move, so that the detection part can move in the front-to-back, left-to-right, and up-down directions relative to the carrying part within the preset area, that is, the detection part can perform three-axis motion in the X, Y, and Z directions. In this embodiment, driven by the driving mechanism, the detection part can be close to the carrying part and opposite to the fingertips of the user's hand, thereby shortening the distance between the detection part and the finger and reducing the interference of light leakage or cross-light. The preset area refers to the area located below the carrying part 10 and inside the health detection device.
[0060] It should be understood that the control device 40 is located within the lower half of the detection body and is electrically connected to the position determination device 20 and the drive mechanism. It is used to control the operation of the drive mechanism based on the position determination device 20 and simultaneously control the health monitoring of the detection unit and the support unit. In this embodiment, the control device can be a processor, and its connection method is shown in Figure 2.
[0061] In a specific implementation, in order to fix the user's hand during the detection process, the health detection device further includes a pressing portion 50, which is movably arranged in a direction close to and away from the carrying portion 10, and the pressing portion 50 is used to press the hand against the carrying portion 10 during the moving stroke close to the carrying portion 10.
[0062] It should be noted that the pressing part 50 includes a telescopic mechanism and a soft material. The pressing part 50 is located on the inner surface of the upper half of the detection body. Driven by the telescopic mechanism, the soft material can be pressed downward to press and fix the hand placed on the load-bearing part 10. After the detection is completed, the soft material is retracted and away from the load-bearing part 10, and the fixation is completed.
[0063] It is understood that, to ensure that the user can understand the relevant content of the test, the health testing device further includes a display screen 60 mounted on the detection body, and the display screen 60 is located on the outer surface of the upper half of the detection body. At the same time, the health testing device also includes an audio playback device 70 located inside the lower half of the detection body for external audio playback.
[0064] An embodiment of the present invention provides a health detection method. Referring to FIG. 3 , FIG. 3 is a flow chart of a first embodiment of a health detection method of the present invention.
[0065] In this embodiment, the health detection method is applied to a health detection device, which includes a detection body, a position determination device, and a detection component. The detection body includes a carrying portion, and the detection component includes a detection portion. The method includes the following steps:
[0066] Step S10: In response to the health detection instruction, the position measurement device obtains an image of the user's hand in the area corresponding to the supporting portion.
[0067] It should be noted that the executor of this embodiment is the control device in the health detection equipment, which can control the operation of various components and devices, and can process and transmit data. It can also be other devices that can achieve this function, and this embodiment does not limit this.
[0068] It is understood that upon receiving the health detection instruction, the position determination device needs to be controlled to obtain an image of the user's hand placed on the support portion. In this embodiment, the health detection instruction can be a trigger instruction fed back by the user through the device control, or it can be a instruction generated after detecting the user's hand.
[0069] In a specific implementation, when performing a health check, the user's hands are placed on the support portion of the health check device, palms facing downward. After the position measurement device detects that the user's hands are placed on the support portion, it acquires a series of image frames. If the continuous frame images determine that the user's hands are stable and not moving relative to each other, the detection image is captured. The images of the hands captured at this time are the user's hand images, which are used to determine the user's position during subsequent health checks.
[0070] Step S20: determining the user's fingertip to be detected and fingertip feature information of the fingertip to be detected according to the user's hand image.
[0071] It should be noted that, due to the position of the fingertips compared to the forehead, auricle, arm, and wrist (upper and lower surfaces), the quality of the collected PPG signal is better, which is conducive to the accurate measurement of indicators such as heart rate and blood oxygen. Therefore, in this embodiment, the user's fingertips to be detected are determined based on the user's hand image, and the feature point information of the fingertips to be detected is determined. The feature point information of the fingertips to be detected includes but is not limited to color features, texture features, and feature point coordinates. In this embodiment, the feature point information of the fingertips to be detected is the fingertip feature information. The selection of the fingertips to be detected can be determined by pre-set fixed fingertips, or by the size of each fingertip of the user's hand. This embodiment does not limit the method of selecting the fingertips to be detected.
[0072] Step S30: Determine the position information of the fingertip to be detected according to the fingertip feature information.
[0073] It should be noted that the position of the fingertip to be detected on the user's hand image can be calculated based on the fingertip feature information of the fingertip to be detected, and then the position information of the fingertip to be detected in the world coordinate system can be obtained through coordinate transformation.
[0074] Step S40: Control the detection unit to perform health detection according to the position information.
[0075] It should be noted that based on the position information of the fingertip to be detected, the driving mechanism is controlled to drive the detection unit to move. After the movement is completed, the detection unit performs a health test to obtain relevant indicators such as the user's heart rate and blood oxygen.
[0076] It is understandable that, since the carrying portion includes a plurality of ECG blocks, the ECG block where the fingertip to be detected is located is activated based on the position information of the fingertip to be detected to collect the heart beat signal.
[0077] In a specific implementation, in order to prevent the movement or shaking of the hand during the detection process from affecting the measurement results, the health detection device further includes a pressing part. Before controlling the detection part to perform health detection according to the position information, it also includes: generating a part fixing instruction according to the position information; controlling the movement of the pressing part according to the part fixing instruction so that the pressing part fixes the user's hand.
[0078] It should be noted that after the test preparation is completed, that is, after the position of the fingertips to be tested is determined, the telescopic mechanism of the downward pressure part of the health testing device will slowly descend, so that the soft material of the downward pressure part gently presses the hand and fixes it on the support part. After the test is completed, the telescopic mechanism of the downward pressure part retracts, and the soft material releases the hands.
[0079] It can be understood that in order to enable the user to know the health test results in a timely manner, further, after controlling the detection unit to perform health testing based on the location information, it also includes: obtaining the detection duration; when the detection duration reaches a preset time interval, obtaining multiple health detection indicators of the user; determining abnormal detection indicators based on the preset indicator range of each health detection indicator; abnormally marking the abnormal detection indicators and determining abnormal marking information; pushing the abnormal marking information to the display screen for display.
[0080] In the specific implementation, after determining that the detection unit and the carrying unit have started detection, it is deemed that the detection has started, and the detection duration is calculated at this time. When the detection duration reaches the preset time interval, it means that the detection is over. At this time, the health detection indicators collected by the detection unit and the health detection indicators collected by the carrying unit are obtained, and each health detection indicator is compared with the preset indicator range corresponding to each health detection indicator to determine the abnormal detection indicators among the multiple health detection indicators.
[0081] It should be noted that the abnormal detection indicators existing in multiple health detection indicators are marked to obtain the marked abnormal detection indicators. The marked abnormal detection indicators are the abnormal marking information, and the abnormal marking information and other normal health detection indicators are pushed to the display screen for display.
[0082] It is understandable that in order to avoid the user from worrying or being nervous, the hand image can be displayed on the display screen in real time during the entire measurement process, and the test results can be pushed and displayed after the measurement is completed.
[0083] This embodiment responds to a health detection instruction and obtains an image of the user's hand in the area corresponding to the support portion through the position measurement device; determines the user's fingertip to be detected and the fingertip feature information of the fingertip to be detected based on the user's hand image; determines the position information of the fingertip to be detected based on the fingertip feature information; and controls the detection portion to perform a health detection based on the position information. In this way, the fingertip feature information of the fingertip to be detected and the fingertip to be detected is determined based on the user's hand image, the user's hand fingertip position is automatically located based on the fingertip feature information, and then the detection portion is controlled to perform a health detection based on the fingertip position information, thereby achieving automatic positioning of the detection area, improving the accuracy and efficiency of health detection, and enhancing the user experience.
[0084] Refer to FIG4 , which is a flow chart of a second embodiment of a health detection method according to the present invention.
[0085] Based on the first embodiment described above, the health detection method of this embodiment includes, in step S20:
[0086] Step S21: performing image noise reduction on the user's hand image to obtain a noise-reduced part image.
[0087] It should be noted that since noise may be present in the image, to make the image of the user's hand clearer, image noise reduction can be performed on the image of the user's hand. The noise-reduced image of the user's hand is referred to as the noise-reduced part image. In this embodiment, the noise reduction method can adopt any of mean filtering, Gaussian filtering, median filtering, or other noise reduction methods, and this embodiment is not limited to this.
[0088] Step S22: performing binarization processing on the noise reduction part image to obtain a binarized part image.
[0089] It should be noted that the denoised part image is binarized to convert pixel values in the denoised part image into binary values, thereby obtaining the denoised part image after binarization. The denoised part image after binarization is the binarized part image.
[0090] Step S23: performing feature extraction based on the binary part image to determine the user's fingertip to be detected and fingertip feature information of the fingertip to be detected.
[0091] It should be noted that the user's fingertip to be detected can be determined based on the binarized part image, and feature calculation is performed to determine the fingertip feature information of the fingertip to be detected.
[0092] It can be understood that in order to obtain more accurate position information of the fingertip to be detected based on the fingertip feature information, further, the position information of the fingertip to be detected based on the fingertip feature information is determined, including: determining the image coordinate information of the fingertip to be detected based on the fingertip feature information; obtaining a preset world coordinate system; performing coordinate conversion on the image coordinate information according to the preset world coordinate system to determine the position information of the fingertip to be detected.
[0093] In a specific implementation, coordinate calculation can be performed based on the fingertip feature information of the fingertip to be detected to determine the coordinates of the fingertip to be detected on the binary part image. The coordinates of the fingertip to be detected on the binary part image are the image coordinate information of the fingertip to be detected.
[0094] It should be noted that the preset world coordinate system is a coordinate system used to describe and locate the position of the fingertip to be detected in three-dimensional space. The image coordinate information is converted to the preset world coordinate system through coordinate transformation, thereby obtaining the position information of the fingertip to be detected in the preset world coordinate system.
[0095] It can be understood that in order to ensure that the user can place his hands quickly and accurately, the health detection device further includes a display screen installed on the detection body, and the response to the health detection instruction obtains the user's hand image in the corresponding area of the support part through the position measurement device, including: responding to the health detection instruction, generating detection guidance information according to the health detection instruction; pushing the detection guidance information to the display screen for display, so that the user can adjust the posture according to the detection guidance information; when the user's part contact information is detected, obtaining the user's hand image in the corresponding area of the support part through the position measurement device.
[0096] In a specific implementation, after receiving a health detection instruction, detection guidance information is generated based on the health detection instruction. The detection guidance information is used to inform the user of the correct placement posture of both hands. The detection guidance information is pushed to the display screen to guide the user in placement. The user adjusts the posture according to the detection guidance so that the hands are correctly placed on the support part.
[0097] It should be noted that after the position measurement device detects that the user's hands are placed on the supporting part, it obtains the user's part contact information. At this time, it is necessary to obtain continuous frame images. When it is determined based on the continuous frame images that the user's hands are stable and there is no relative movement, the detection image is collected. The hand images obtained at this time are the user's hand images, which are used for position measurement when the user performs subsequent health checks.
[0098] This embodiment performs image denoising on an image of the user's hand to obtain a denoised area image; binarizes the denoised area image to obtain a binarized area image; and extracts features from the binarized area image to determine the user's fingertip to be detected and the fingertip feature information of the fingertip to be detected. This approach allows accurate fingertip feature information to be obtained, facilitating subsequent position determination.
[0099] Refer to FIG5 , which is a flow chart of a third embodiment of a health detection method according to the present invention.
[0100] Based on the first embodiment, in the health detection method of this embodiment, the carrier includes a plurality of ECG blocks, the detection component further includes a driving mechanism, and step S40 includes:
[0101] Step S41: determining the detection position of the detection unit according to the position information.
[0102] It should be noted that, since the detection unit needs to be located opposite to the fingertip to be detected through the supporting portion, the detection position of the detection unit for health detection needs to be determined based on the position information of the fingertip to be detected.
[0103] Step S42: generating a movement instruction according to the detection position, so that the driving mechanism controls the movement of the detection part according to the movement instruction, so that the detection part performs health detection after reaching the detection position.
[0104] It should be noted that a movement command is generated based on the detected position. The drive mechanism drives the detection unit along three axes based on the movement command. The detection unit corrects its position information in real time during movement to ensure accurate and rapid movement to the detection position. Once the detection unit reaches the detection position, it performs a health check on the fingertip to obtain multiple health detection indicators.
[0105] Step S43 : selecting a target detection block from the plurality of ECG blocks according to the block position of each ECG block and the position information, so as to perform health detection on the target detection block.
[0106] It should be noted that because the entire area of the carrier is composed of transparent conductive electrode material and is divided into many small ECG blocks, a target detection block can be selected from multiple ECG blocks based on the block position of each ECG block and the position information of the fingertip to be detected. The target detection block is located below the area covered by the user's hand, and the user does not need to move the hand position. The target detection block is activated, and a complete circuit across the heart is formed based on the target detection block, thereby completing the collection of the tiny electrical signals generated by the heartbeat.
[0107] It is understandable that, as shown in FIG6 , this embodiment uses the position measurement device on the health detection device to accurately locate the hand position information, moves the PPG module to the position according to the position information of the fingertips, and automatically activates the ECG electrodes under the area covered by the hands, thereby achieving automatic and accurate measurement, avoiding errors caused by the user's active search for the test area and inaccurate placement of the area. At the same time, the method of this embodiment also achieves matching for all hand shapes. The user only needs to place both hands on the health detection device to complete the accurate measurement, without having to worry about whether the hands are placed properly or the position is accurate, which improves the user experience.
[0108] This embodiment determines the detection position of the detection unit according to the position information; generates a movement instruction according to the detection position, so that the driving mechanism controls the movement of the detection unit according to the movement instruction, so that the detection unit performs a health check after reaching the detection position; and selects a target detection block from multiple ECG blocks according to the block position of each ECG block and the position information, so that the target detection block performs a health check.
[0109] It should be noted that the workflow described above is merely illustrative and does not limit the scope of protection of the present invention. In practical applications, technicians in this field can select part or all of it according to actual needs to achieve the purpose of the embodiment scheme, and no limitation is made here.
[0110] In addition, for technical details not fully described in this embodiment, please refer to the health detection method provided in any embodiment of the present invention, and will not be repeated here.
[0111] In addition, it should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or system. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or system comprising the element.
[0112] The serial numbers of the above embodiments of the present invention are for description only and do not represent the advantages or disadvantages of the embodiments.
[0113] Through the description of the above embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus the necessary general hardware platform, or of course by hardware, but in many cases the former is a better embodiment. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, can be embodied in the form of a software product. The computer software product is stored in a storage medium (such as a read-only memory (ROM) / RAM, a magnetic disk, or an optical disk), and includes a number of instructions for enabling a terminal device (which can be a mobile phone, a computer, a server, or a network device, etc.) to execute the methods described in each embodiment of the present invention.
[0114] The above are only preferred embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A health detection device, characterized in that: include: The detection body includes a bearing portion for supporting a hand, wherein the bearing portion is light-transmissive; a position measuring device for measuring the position of a hand; The detection component includes a detection portion and a driving mechanism disposed below the carrying portion. The detection portion moves within a preset area relative to the carrying portion. The driving mechanism is connected to the detection portion and is used to drive the detection portion to move. The detection portion is used to detect fingertip health information when aligned with the fingertip in a vertical direction. as well as, A control device is electrically connected to the position measuring device and the driving mechanism, and is used to control the operation of the driving mechanism according to the position measuring device.
2. The health detection device according to claim 1, wherein: The carrying portion includes a plurality of ECG blocks, and the plurality of ECG blocks are arranged flatly in a horizontal direction.
3. The health detection device according to claim 1, wherein: The position measuring device is arranged below the carrying portion.
4. The health detection device according to claim 1, wherein: The health detection device further includes a pressing portion, which is movably arranged in a direction approaching and away from the carrying portion, and is used to press the hand against the carrying portion during a movable stroke approaching the carrying portion.
5. The health detection device according to claim 4, characterized in that: The health detection device further includes a display screen installed on the detection body.
6. A health detection method, characterized in that: Applied to health detection equipment, the health detection equipment includes a detection body, a position determination device and a detection component, the detection body includes a carrying part, the detection component includes a detection part, and the health detection method includes: In response to a health detection instruction, obtaining, by the position measuring device, an image of a user's hand in an area corresponding to the carrying portion; Determining a user's to-be-detected fingertip and fingertip feature information of the to-be-detected fingertip based on the user's hand image; Determining the position information of the fingertip to be detected according to the fingertip feature information; The detection unit is controlled to perform health detection according to the position information.
7. The health detection method according to claim 6, wherein: The determining of the user's to-be-detected fingertip and fingertip feature information of the to-be-detected fingertip according to the user's hand image includes: Performing image noise reduction on the user's hand image to obtain a noise-reduced part image; performing binarization processing on the noise reduction part image to obtain a binarized part image; Feature extraction is performed based on the binary part image to determine the user's fingertip to be detected and fingertip feature information of the fingertip to be detected.
8. The health detection method according to claim 6, wherein: The determining the position information of the fingertip to be detected according to the fingertip feature information includes: Determining the image coordinate information of the fingertip to be detected according to the fingertip feature information; Get the preset world coordinate system; The image coordinate information is converted according to the preset world coordinate system to determine the position information of the fingertip to be detected.
9. The health detection method according to claim 6, wherein: The carrying portion includes a plurality of ECG blocks, and the detection component further includes a driving mechanism, and controlling the detection portion to perform health detection according to the position information includes: determining a detection position of the detection unit according to the position information; generating a movement instruction according to the detection position, so that the driving mechanism controls the movement of the detection unit according to the movement instruction, so that the detection unit performs health detection after reaching the detection position; A target detection block is selected from a plurality of ECG blocks according to the block position of each ECG block and the position information, so that the target detection block performs health detection.
10. The health detection method according to any one of claims 6 to 9, characterized in that: The health detection device further includes a display screen mounted on the detection body, and the step of responding to the health detection instruction and obtaining an image of the user's hand in the area corresponding to the supporting portion through the position measurement device includes: Responding to a health check instruction, generating a check guidance message according to the health check instruction; Pushing the detection guidance information to the display screen for display, so that the user can adjust the posture according to the detection guidance information; When the user's part contact information is detected, the position measuring device acquires the user's hand image in the area corresponding to the supporting portion.
11. The health detection method according to any one of claims 6 to 9, characterized in that: The health detection device further includes a pressing portion, and before controlling the detection portion to perform health detection according to the position information, further includes: generating a position fixing instruction according to the position information; The pressing portion is controlled to move according to the position fixing instruction so that the pressing portion fixes the user's hand.
12. The health detection method according to any one of claims 6 to 9, characterized in that: After controlling the detection unit to perform health detection according to the position information, the method further includes: Get the detection duration; When the detection duration reaches a preset time interval, obtaining multiple health detection indicators of the user; Determine abnormality detection indicators based on the preset indicator range of each health detection indicator; Anomaly marking the anomaly detection indicator to determine anomaly marking information; Push the abnormal marking information to the display screen for display.
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