WO2016179985A1 - 具有健康检测功能的装置、显示装置、系统及健康检测方法 - Google Patents

具有健康检测功能的装置、显示装置、系统及健康检测方法 Download PDF

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WO2016179985A1
WO2016179985A1 PCT/CN2015/094325 CN2015094325W WO2016179985A1 WO 2016179985 A1 WO2016179985 A1 WO 2016179985A1 CN 2015094325 W CN2015094325 W CN 2015094325W WO 2016179985 A1 WO2016179985 A1 WO 2016179985A1
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image
subject
information
module
part image
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PCT/CN2015/094325
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English (en)
French (fr)
Inventor
刘建涛
崔小磊
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京东方科技集团股份有限公司
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Priority to US15/112,561 priority Critical patent/US10485426B2/en
Publication of WO2016179985A1 publication Critical patent/WO2016179985A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0059Measuring for diagnostic purposes; Identification of persons using light, e.g. diagnosis by transillumination, diascopy, fluorescence
    • A61B5/0077Devices for viewing the surface of the body, e.g. camera, magnifying lens
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/01Measuring temperature of body parts ; Diagnostic temperature sensing, e.g. for malignant or inflamed tissue
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/01Measuring temperature of body parts ; Diagnostic temperature sensing, e.g. for malignant or inflamed tissue
    • A61B5/015By temperature mapping of body part
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/021Measuring pressure in heart or blood vessels
    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • A61B5/02438Detecting, measuring or recording pulse rate or heart rate with portable devices, e.g. worn by the patient
    • AHUMAN NECESSITIES
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    • A61B5/4854Diagnosis based on concepts of traditional oriental medicine
    • AHUMAN NECESSITIES
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2560/00Constructional details of operational features of apparatus; Accessories for medical measuring apparatus
    • A61B2560/02Operational features
    • A61B2560/0242Operational features adapted to measure environmental factors, e.g. temperature, pollution
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2576/00Medical imaging apparatus involving image processing or analysis
    • A61B2576/02Medical imaging apparatus involving image processing or analysis specially adapted for a particular organ or body part
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/20Measuring for diagnostic purposes; Identification of persons for measuring urological functions restricted to the evaluation of the urinary system
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/40Detecting, measuring or recording for evaluating the nervous system
    • AHUMAN NECESSITIES
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    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/44Detecting, measuring or recording for evaluating the integumentary system, e.g. skin, hair or nails
    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
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    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient ; user input means
    • A61B5/742Details of notification to user or communication with user or patient ; user input means using visual displays
    • A61B5/743Displaying an image simultaneously with additional graphical information, e.g. symbols, charts, function plots
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient ; user input means
    • A61B5/742Details of notification to user or communication with user or patient ; user input means using visual displays
    • A61B5/7435Displaying user selection data, e.g. icons in a graphical user interface
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H30/00ICT specially adapted for the handling or processing of medical images
    • G16H30/40ICT specially adapted for the handling or processing of medical images for processing medical images, e.g. editing

Definitions

  • Embodiments of the present disclosure relate to a device having a health detection function, a display device, a system, and a health detection method.
  • An embodiment of the present disclosure provides an apparatus having a health detection function, including a processing module and a storage module, the processing module, configured to receive image information of a detected object and store the same to the storage module;
  • the image information includes a part image of the detected person and an acquisition time and an ambient light intensity when the part image is acquired; and in a case where the ambient light intensity is greater than a preset value, according to the part image of the detected object and from the storage a reference part image in the reference part image information acquired in the module, obtaining change information of the part image of the detected object; obtaining current physical health status information of the detected object according to the change information of the part image; the storage module, And storing the reference part image information; the reference part image information includes a reference part image and/or an age-based healthy reference part image accumulated by the subject before the acquisition time.
  • Another embodiment of the present disclosure provides a display device including a display module and the above device having a health detection function.
  • Yet another embodiment of the present disclosure provides a system having a health detection function, including a display device and a cloud server; wherein the display device includes a display module; the cloud server includes the above The device having the health detecting function, the processing module of the device having the health detecting function transmits the current physical health status information of the detected person to the display module for display.
  • a further embodiment of the present disclosure provides a health detection method, including: receiving image information of a subject and storing the image information of the subject, including a part image of the subject and acquiring the part image Obtaining time and ambient light intensity; and obtaining, in the case that the ambient light intensity is greater than a preset value, obtaining a part image of the detected object according to the part image of the subject and the reference part image in the reference part image information a change information; obtaining, according to the change information of the part image, current physical health status information of the detected object and transmitting the information to the display module for displaying the display module; wherein the reference part image information includes the detected object in the A reference part image accumulated before the acquisition time and/or an age-based healthy reference part image is described.
  • FIG. 1 is a block diagram of an apparatus for a health detection function according to an embodiment of the present disclosure
  • FIG. 2A is a schematic diagram 1 of an extraction part of a facial sub-section image based on a precision mode according to an embodiment of the present disclosure
  • FIG. 2B is a schematic diagram 2 of an extraction part of a facial sub-section image based on a precision mode according to an embodiment of the present disclosure
  • FIG. 3 is a block diagram of a display device according to an embodiment of the present disclosure.
  • FIG. 4 is a block diagram of a display device according to an embodiment of the present disclosure.
  • FIG. 5 is a block diagram of a display device according to an embodiment of the present disclosure.
  • FIG. 6 is a block diagram of a display device according to an embodiment of the present disclosure.
  • FIG. 7 is a block diagram of a system with a health detection function according to an embodiment of the present disclosure.
  • FIG. 8 is a block diagram of a system with a health detection function according to an embodiment of the present disclosure.
  • FIG. 9 is a block diagram of a system with a health detection function according to an embodiment of the present disclosure.
  • FIG. 10 is a block diagram of a system with a health detection function according to an embodiment of the present disclosure.
  • FIG. 11 is a block diagram of a system with a health detection function according to an embodiment of the present disclosure.
  • FIG. 12 is a block diagram of a system with a health detection function according to an embodiment of the present disclosure
  • FIG. 13 is a schematic flowchart diagram of a health detection method according to an embodiment of the present disclosure.
  • Embodiments of the present disclosure provide a device, a display device, a system, and a health detection method having a health detection function.
  • the processing module compares the received part image of the detected subject and the reference part image in the reference part image information acquired from the storage module, and obtains change information of the part image of the detected subject, and is detected based on the theory of traditional Chinese medicine.
  • the current physical health status information is sent to the display module to display the display module to monitor the physical condition of the detected subject, so that the condition can be detected in time.
  • the device 10 with a health detection function includes a processing module 101 and a storage module 102.
  • the processing module 101 is configured to receive a detected object.
  • the image information is stored in the storage module 102;
  • the image information of the detected object includes a part image of the detected object and an acquisition time and an ambient light intensity when the part image is acquired; the ambient light intensity is greater than the pre- In the case of the value, the change information of the part image of the subject is obtained according to the part image of the subject and the reference part image in the reference part image information acquired from the storage module 102;
  • the change information of the part image obtains the current physical health status information of the detected object and is sent to the display module;
  • the storage module 102 is configured to store the reference part image information;
  • the reference part image information includes the detected object in the A reference part image accumulated before the acquisition time and/or an age-based healthy reference part image is described.
  • change information of the part image of the subject is obtained, that is, by using the part image and reference of the subject
  • the part image is subjected to comparative analysis to obtain change information of the part image of the subject.
  • the comparison is usually based on the same part, and thus, the reference in the reference part image information in the embodiment of the present disclosure
  • the part image and the part image in the image information of the subject are images of the same part.
  • the part image of the subject is not limited, and it may be a face image, or may be a limb image such as a palm, an arm, a leg, or the like.
  • the acquisition of the part image of the subject can be achieved by a photographing module independent of the device 10 having the health detecting function, and then the image information of the subject including the part image, the ambient light intensity, and the acquisition time is
  • the processing module 101 is sent to the device 10 having the health detection function.
  • the reference part image in the reference part image information may include a part image accumulated by the detected person before the acquisition time, for example, the storage module 102 stores the same subject before the acquisition time. All reference part images. Based on this, when comparing the part image of the subject with the reference part image in the reference part image information acquired from the storage module 102, the healthiest reference part image in the reference part image information may be selected.
  • the comparative analysis may also be a comparative analysis with one or more reference part images close to the acquisition time to obtain the change information of the part image of the detected object within a certain period of time, and of course, all of the information in the reference part image information. The reference part image is compared to obtain a curve, and based on this, the current physical condition of the subject is judged.
  • the reference part image in the reference part image information may further include a reference part image based on age and may also be gender-based health.
  • the part image of the subject may be directly and healthy. The reference part image was compared and analyzed.
  • the embodiment of the present disclosure provides a device 10 having a health detection function, and the processing module 101 compares and receives the received part image of the detected object and the reference part image in the reference part image information acquired from the storage module 102 to obtain a Deriving the change information of the part image of the detected object, and obtaining the current physical health status information of the tester based on the theory of traditional Chinese medicine, and then sending the body to the display module to display the display module to realize monitoring of the physical condition of the detected subject, Thereby the condition can be discovered in time.
  • the part image is a face image.
  • the processing module 101 is further configured to perform extraction of a facial sub-portion image for the facial image according to a precision mode indicated in a user instruction, where the facial sub-part image includes at least a forehead image, an eye image, and a mouth portion. image.
  • the processing module 101 is configured to obtain a part image of the detected object according to the part image of the detected object and the reference part image in the reference part image information acquired from the storage module 102.
  • the change information of the face is obtained according to the change information of the partial image
  • the processing module 101 is configured to use the image of the facial sub-portion extracted from the face image of the detected subject and
  • the reference facial sub-portion image extracted from the reference part image is used to obtain change information of the subject sub-part image of the subject; and the current physical health status information of the subject is obtained according to the change information of the facial sub-part image.
  • the precision mode may be displayed in the display module. After the user selects the corresponding precision mode in the display module, the display module may send the user's instruction to the processing module 101, so that the processing module 101 can target the user. The choice is to extract the image of the facial sub-section.
  • the precision mode may include a simple mode, a general mode, and an accurate mode.
  • the processing module 101 performs extraction of the forehead image A, the eye image B, and the mouth image C for the face image.
  • the processing mode 101 block When the precision mode indicated in the user instruction is the normal mode, as shown in FIG. 2B, the processing mode 101 block performs a forehead image A, an eye image B, a nose image D, a cheek image E, and a mouth for the face image. Extraction of the image C.
  • the processing module 101 When the precision mode indicated in the user instruction is the precise mode, the processing module 101 performs extraction of the forehead image, the eye image, the nose image, the cheek image, the mouth image, and the tongue image for the face image. That is, in this case, the facial image received by the processing module 101 includes a tongue image.
  • the processing module 101 performs extraction of the forehead image, the eye image, and the mouth image for the facial image, based on which, when the processing module 101 will forehead The image is performed with a reference forehead image extracted from the reference part image
  • the processing module 101 compares the eye image and the mouth image with When the reference eye image extracted from the reference part image and the reference mouth image are compared and analyzed, if no large change is found, the subject may be initially determined to be normal; when the processing module 101 integrates the above information , you can get the health status information that the test subject is a little tired.
  • the processing module 101 performs extraction of the forehead image, the eye image, the nose image, the cheek image, and the mouth image for the facial image, based on
  • the processing module 101 compares the forehead image with the reference forehead image extracted from the reference portion image, if it is found that the color of the forehead image is light and has horizontal stripes, it may be initially determined that the subject is relatively tired recently;
  • the processing module 101 compares the eye image with the reference eye image extracted from the reference portion image, if the color of the eye image is found to be deep, that is, the so-called "black eye” is generated, It is preliminarily judged that the subject is fatigued recently or has a potential risk in the urinary system.
  • the forehead is light in color and has horizontal stripes, and the appearance of "dark circles" in the eye corresponds to the recent fatigue of the subject or the potential risk of the urinary system, and there are also facial images and related diseases such as the following.
  • Correspondence information :
  • Anemia appearance manifested as a dry face, pale skin and mucous membranes.
  • Hyperthyroidism more manifestations of facial weight loss, bilateral eyelid contraction, black eyes above the white eye, prominent eyeballs, rarely blinking and with a horrified expression.
  • Mucinous edema manifested as pale pale sallow, eyelids and buccal edema, indifferent, dull and eyebrows, sparse.
  • Rheumatic heart disease manifested as dark red cheeks, cyanotic lips, dull tongue, and asthma.
  • Acromegaly manifested as enlargement of the jaw, forward and large ears, high humerus, brow arch, and enlarged fat in the lips and tongue.
  • Hypercortisolism manifested as thick red lips, often itch, increased hair (women have beard), neck and other features thick.
  • Nephrotic edema early kidney disease only manifests as swelling of the eyelids after morning, and with the damage of renal function, pale, edema, and skin tension and dryness may occur.
  • Facial nerve paralysis manifested as a shallow nasolabial fold, a downward sag of the mouth, and a slanting angle to the healthy side when the tooth is moving. Among them, for peripheral facial paralysis, it can also appear that the frontal frontal pattern disappears and the lower eyelid sag.
  • Tremor numbness more common in the elderly, showing a dull facial expression, no expression.
  • Severe dehydration After a large amount of water loss due to diarrhea or vomiting, it manifests as facial paralysis, eye socket subsidence, nose bridge thin and prominent, and sacral arch bulge clearly visible.
  • Tetanus A few days after the trauma, the performance is head extension, limb convulsions, closed jaws, facial muscle spasm, like a smile.
  • Dementia face Patients with small ailments can show thick lips, large tongue and often stretched out, often open mouth, ugly face, pale or yellow, short nose and upturned, nose collapse, forehead wrinkle.
  • Local cretinism also known as "small stagnation”, manifested as poor face development, face playfulity, slow response, large head, nose sag, short and wide between the two eyebrows, large and thick tongue, often stretched out, runny.
  • Congenital type a hereditary chromosomal disease characterized by small eyes, wide eye distance, collapsed nose, mouth and tongue, and drooling.
  • the storage module 102 is further configured to store correspondence relationship information between the change information of the part image and the physical health status information.
  • the processing module 101 is further configured to search, according to the change information of the part image, physical health status information corresponding to the change information of the part image in the storage module 102, so as to find the found
  • the health status information is sent to the display module to cause the display module to display.
  • the health status information of the subject can be directly obtained by the processing module 101 without having to go to, for example, the network, so that the present disclosure can work based on the networkless state.
  • the embodiment of the present disclosure further provides a display device 01.
  • the display device 01 includes a display module 20 and the above-described device 10 having a health detection function.
  • the display device 01 may be a mobile phone, a tablet computer, an e-book device, or the like.
  • the display module 20 may be a mobile phone body, a tablet computer body, an e-book device body, or the like. Used to get The photographing module 30 that transmits the image of the part of the examiner and transmits the image information of the subject including the image of the part to the processing module 101 may be built in the display device 01 or may be externally connected to the display device 01.
  • the health detection function may be preset in the display device 01, and after receiving the instruction that the user activates the health detection function, the health detection function is activated.
  • the device 10 for detecting the health detection function can be widely used when integrated in the mobile terminal.
  • the final physical health information can be displayed in time.
  • the display device 01 may further include a photographing module 30, that is, the photographing module 30 is built in the display device 01, and the photographing module 30 is configured to acquire a part image of the detected object. And transmitting, to the processing module 101 of the apparatus 10 having the health detecting function, the image of the part including the detected part and the image of the subject of the ambient light intensity when acquiring the part image; the processing module The image of the part of the subject is sent to the display module 20 for display, and the redundant information of the part image of the detected subject is cropped according to a user instruction, and the image of the cut part and the The image information of the subject whose acquisition time and the ambient light intensity are described is sent to the storage module 102 for storage.
  • a photographing module 30 that is, the photographing module 30 is built in the display device 01, and the photographing module 30 is configured to acquire a part image of the detected object. And transmitting, to the processing module 101 of the apparatus 10 having the health detecting function, the image of the part including the detected part and the image of the subject of
  • the photographing module 30 may acquire some images of the part of the image at the same time when acquiring the image of the part of the subject. Therefore, in the embodiment of the present disclosure, when the photographing module 30 of the display device 01 acquires the part of the subject After the image, the part image including the detected part and the image information of the detected time when the part image is acquired and the ambient light intensity are sent to the processing module 101, and the processing module 101 will The image information is parsed, and the part image of the detected subject is displayed in the display module 20 in a preview manner, and the display module 20 can be controlled to prompt the user to crop the acquired part image to eliminate redundant information. Therefore, it is beneficial to save storage space, improve computing speed and improve recognition accuracy. Then, the processing module 101 transmits the image information of the detected subject including the clipped part image and the acquisition time and the ambient light intensity to the storage module 102 for storage.
  • the processing module 101 can control the display module 20 to perform, for example, a text reminder.
  • the detection of the physical health condition can be realized only by using a terminal having a photographing function, which is convenient for carrying, and enables the terminal to improve the physical examination of the user on the basis of the prior art.
  • the display device 01 may further include an image compensation module 40; when the ambient light intensity of the camera module 30 when acquiring a part image of the detected object is less than a preset value, the image The compensation module 40 is configured to compensate the ambient light intensity of the photographing module 30 when acquiring the part image of the detected object.
  • the image compensation module 40 can compensate the current weak ambient light intensity to make the photographing module 30
  • the acquired part image of the subject is acquired at a certain ambient light intensity greater than a certain preset.
  • the display device 01 may further include an infrared temperature sensing module 50 for measuring the body temperature of the subject and transmitting to the processing module 101;
  • the module 101 combines the body temperature of the subject and the change information of the part image of the subject to obtain the current physical health status information of the subject.
  • the embodiment of the present disclosure further provides a system with a health detection function.
  • the system includes a display device 01 and a cloud server 02.
  • the display device 01 includes a display module 20;
  • the cloud server 02 includes The above-described device 10 having a health detecting function.
  • the device 10 for the health detection function is integrated on the cloud server 02, and the storage space and the operation speed of the display device 01 need not be occupied.
  • the display device 01 further includes a photographing module 30 for acquiring a part image of the subject, and acquiring the part image including the subject and acquiring the part image.
  • the image information of the subject of the temporal and ambient light intensity is transmitted to the processing module 101 of the device 10 having the health detecting function; the processing module 101 transmits the part image of the subject to the display module 20 Performing display, and cutting out redundant information of the part image of the subject according to a user instruction, and including image information of the cropped part image and the acquisition time and the ambient light intensity It is sent to the storage module 102 for storage.
  • the photographing module 30 may acquire some images of the part of the image at the same time when acquiring the image of the part of the subject. Therefore, in the embodiment of the present disclosure, when the photographing module 30 of the display device 01 acquires the part of the subject After the image, the part image including the detected part and the image information of the detected time when the part image is acquired and the ambient light intensity are sent to the processing module 101, and the processing module 101 will Image information parsing and the described The part image of the examiner is displayed in a preview manner in the display module 20, and the display module 20 can be controlled to prompt the user to crop the acquired part image to eliminate redundant information. Then, the processing module 101 transmits the image information of the detected subject including the clipped part image and the acquisition time and the ambient light intensity to the storage module 102 for storage.
  • the processing module 101 can control the display module 20 to perform, for example, a text reminder.
  • the display device 01 further includes an image compensation module 40.
  • the image compensation is performed.
  • the module 40 is configured to compensate the ambient light intensity of the photographing module 30 when acquiring the part image of the detected object.
  • the system further includes a photographing module 30 and a communication module 60.
  • the photographing module 30 is configured to acquire a part image of the detected object, and include an image of the part of the detected object and an acquisition center.
  • the image information of the subject of the acquisition time and the ambient light intensity at the time of the part image is transmitted to the processing module 101 of the device 10 having the health detecting function by the communication module 60; the processing module 101 detects the detected
  • the part image of the person is displayed in the display module 20, and the redundant information of the part image of the subject is cropped according to a user instruction, and the cropped part image and the acquisition time and the environment are included.
  • the image information of the subject of the light intensity is transmitted to the storage module 102 for storage.
  • the photographing module 30 is set independently of the display device 01.
  • the communication module 60 may be only a data line that connects the camera module 30 and the display device 01.
  • the processing module 101 receives the image information of the detected subject sent by the photographing module 30, the image information is first parsed, and the part image of the detected subject is previewed in the display module 20 The display mode is displayed, and the display module 20 can be prompted to prompt the user to crop the acquired part image to eliminate redundant information, thereby saving storage space, improving operation speed, and improving recognition accuracy. Then, the processing module 101 transmits the image information of the detected subject including the clipped part image and the acquisition time and the ambient light intensity to the storage module 102 for storage.
  • the display device 01 further includes an infrared temperature sensing module 50 for measuring the body temperature of the subject and transmitting it to the processing module 101;
  • the processing module 101 combines the body temperature of the subject and the image of the part of the subject Change the information to get the current physical health information of the subject.
  • the system further includes a contact smart wearable module 70 for measuring a heart rate value and/or a blood pressure value of the subject and transmitting to the health check
  • the processing module 101 of the functional device 10; the processing module 101 combines the heart rate value and/or the blood pressure value of the subject and the change information of the part image of the subject to obtain the current physical health status information of the subject.
  • the embodiment of the present disclosure further provides a health detection method, which can be performed by the device 10 with the health detection function described above, as shown in FIG. 13, the method includes the following steps:
  • the processing module 101 of the device 10 with the health detection function receives the image information of the detected object and stores it in the storage module 102.
  • the image information of the detected object includes a part image of the detected object and acquires the Acquisition time and ambient light intensity at part of the image.
  • the part image of the subject is not limited, and may be a face image or a limb image such as a palm, an arm, a leg, or the like.
  • the processing module 101 obtains change information of the part image of the detected object according to the part image of the detected part and the reference part image in the reference part image information when the ambient light intensity is greater than a preset value. .
  • the reference part image information is stored in the storage module 102; the reference part image information includes a reference part image and/or an age-based reference part accumulated by the subject before the acquisition time image.
  • change information of the part image of the subject is obtained, that is, by comparing and analyzing the part image and the reference part image of the subject Obtaining change information of the part image of the subject.
  • the reference part image in the reference part image information includes the part image accumulated by the subject before the acquisition time
  • the reference in the part image of the subject and the reference part image information When the part image is comparatively analyzed, the healthiest reference part image in the reference part image information may be selected for comparative analysis, or may be compared with one or more reference part images close to the acquisition time to obtain a period of time.
  • the change information of the part image of the subject may of course be compared with all the reference part images in the reference part image information to obtain a change curve, and based on this, the current physical condition of the subject is determined.
  • the reference part image in the reference part image information may further include
  • the step may also be a reference image of the health based on the gender, in which case the part image of the subject may be directly compared with the healthy reference part image.
  • the ambient light intensity may be first determined according to the ambient light intensity, and if it is determined to be greater than the preset value, according to the part image of the detected subject and the reference part image in the reference part image information, The change information of the part image of the detected object may be returned to a prompt information for re-detection if it is judged to be smaller than the preset value.
  • the comparison is usually based on the same part, and thus, in the reference part image in the reference part image information and the image information of the subject in the embodiment of the present disclosure,
  • the part image is an image of the same part.
  • the processing module 101 obtains the current physical health status information of the detected object according to the change information of the part image and sends the current physical health condition information to the display module to display the display module.
  • the embodiment of the present disclosure provides a health detection method, which compares and analyzes a part image of a subject and a reference part image in reference part image information to obtain change information of the part image of the subject, and is based on Chinese medicine
  • the theory obtains the current physical health condition of the examiner, and then sends it to the display module to display the display module to monitor the physical condition of the detected subject, so that the condition can be found in time.
  • the part image is a facial image in the embodiment of the present disclosure.
  • the method further includes: extracting a facial sub-region image from the facial image according to the precision mode indicated in the user instruction; wherein the facial sub-region image includes at least a forehead image, an eye image, and a mouth image.
  • all the precision modes can be displayed through the display module.
  • the user selects the corresponding precision mode, the user sends the instruction to the processing module, so that the processing module performs the extraction of the facial sub-part image according to the precision mode indicated in the instruction. .
  • the change information of the part image of the subject is obtained according to the part image of the subject and the reference part image in the reference part image information. For example, based on the face sub-portion image extracted from the face image of the subject and the reference face sub-portion image extracted from the reference part image, change information of the face sub-part image of the subject is obtained.
  • the precision mode includes a simple mode, a general mode, and an accurate mode.
  • the extracting the facial sub-portion image of the facial image according to the accuracy mode indicated in the user instruction includes, for example, performing a forehead image on the facial image when the precision mode indicated in the user instruction is a simple mode. Extraction of an eye image and a mouth image; when the accuracy mode indicated in the user instruction is a general mode, extracting a forehead image, an eye image, a nose image, a cheek image, and a mouth image for the facial image; When the accuracy mode indicated in the user instruction is the precise mode, extraction of the forehead image, the eye image, the nose image, the cheek image, the mouth image, and the tongue image is performed for the face image.
  • the processing module 101 performs extraction of the forehead image, the eye image, and the mouth image for the facial image, based on which, when the processing module 101 will forehead When the image is compared with the reference forehead image extracted from the reference part image, if the color of the forehead image is lightened and horizontal stripes appear, it can be preliminarily judged that the subject is fatigued recently; when the processing module 101 When the eye image and the mouth image are compared and analyzed with the reference eye image and the mouth image extracted from the reference portion image, if no large change is found, the subject may be initially determined to be normal; when the processing module 101 By synthesizing each of the above information, it is possible to obtain health status information that the subject is a little tired.
  • the processing module 101 performs extraction of the forehead image, the eye image, the nose image, the cheek image, and the mouth image for the facial image, based on which,
  • the processing module 101 compares the forehead image with the reference forehead image extracted from the reference portion image, if the color of the forehead image is found to be shallow and horizontal stripes appear, it may be preliminarily judged that the subject is fatigued recently.
  • the processing module 101 compares the eye image with the reference eye image extracted from the reference portion image, if the color of the eye image is found to be dark, that is, the so-called "black eye” is generated, It can be preliminarily judged that the subject is fatigued recently or has a potential risk to the urinary system.
  • Embodiments of the present disclosure provide a health detection method that is, for example, terminated by a module including the following
  • the terminal includes: a device with a health detection function, including a processing module 101 and a storage module 102, and further includes a display module 20, a camera module 30, an image compensation module 40, and the like.
  • the health detection method includes the following steps:
  • the terminal receives information for starting a health detection function.
  • the health detection function is preset in the terminal, and after receiving the instruction that the user starts the health detection function, the health detection function is activated.
  • the image detected by the face detection algorithm may be a facial image, and the facial image includes a forehead, an eye, a nose, a face, a mouth image, and the like.
  • the processing module 101 parses the image information of the detected object, and determines whether the ambient light intensity is greater than a preset value. If it is greater than the preset value, proceed to S104, otherwise return to S101.
  • the processing module 101 displays the part image of the subject in a preview manner in the display module 30, and prompts the user to crop the redundant information of the part image.
  • the processing module 101 controls the display module 30 to perform, for example, a text reminder, and the user can restart the health detecting function to perform the step of S101.
  • the processing module 101 sends the face image including the cropped subject and the image information of the detected time and the ambient light intensity to the storage module 102 for storage.
  • the processing module 101 controls the display module 20 to display the accuracy mode of the health detection, that is, display the simple mode, the general mode, and the precise mode.
  • the display module 20 transmits the precision mode selected by the user to the processing module 101 in an instruction form.
  • the processing module performs extraction of the forehead image, the eye image, and the mouth image for the facial image based on the accuracy mode selected by the current user (here, the simple mode).
  • the processing module 101 performs the extraction of the facial sub-portion image on the facial image
  • the information is sent to the display module 20, and the display module 20 performs, for example, a text reminder.
  • the user can restart the health detection function to perform the steps of S101.
  • the processing module 101 separately performs a forehead image, an eye image, and a mouth image of the current subject with a reference forehead image, a reference eye image, and a reference mouth image extracted from the reference face image in the reference portion image information. Comparative analysis is performed to obtain change information of images of respective parts of the subject.
  • the reference part image information is stored in the storage module; the reference part image information includes a reference part image and/or an age-based healthy reference part image accumulated by the subject before the acquisition time.
  • the processing module 101 obtains the current physical health status information of the subject according to the change information of the image of each part of the subject, and sends the information to the display module 20.
  • the display module 20 displays the received current physical health status information of the detected subject.

Abstract

一种具有健康检测功能的装置(10)、显示装置(01)、系统以及健康检测方法,可实现身体状况的监控,及时发现病情。具有健康检测功能的装置(10)包括处理模块(101)和存储模块(102)。处理模块(101)用于接收被检测者的图像信息并存储到存储模块(102)。被检测者的图像信息包括被检测者的部位图像以及获取时间和环境光强度。在环境光强度大于预设值情况下,根据被检测者的部位图像和参考部位图像,得到被检测者的部位图像的变化信息,根据部位图像的变化信息得到被检测者当前身体健康状况。存储模块(102)存储参考部位图像信息,参考部位图像信息包括被检测者在获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。

Description

具有健康检测功能的装置、显示装置、系统及健康检测方法 技术领域
本公开实施例涉及一种具有健康检测功能的装置、显示装置、系统及健康检测方法。
背景技术
随着社会的进步,人民生活水平的提高,个人健康状况成为人们日益关注的热点问题,而如何监控身体状况,及时发现病情以便采取相应对策成为当今研发的热点。
现在人类生活工作压力越来越大,随之带来的身体上的毛病、问题等也越来越多,但是这些潜在的疾病很少被大家关注。实际上,很多疾病在初期是会在人体上有很多外在表现的,如果我们及时关注身体传递给我们的这些告警信息,及时调理或治疗,是很容易将很多疾病扼杀在萌芽状态的。
发明内容
本公开的实施例提供一种具有健康检测功能的装置,包括处理模块和存储模块;所述处理模块,用于接收被检测者的图像信息并存储到所述存储模块;所述被检测者的图像信息包括被检测者的部位图像以及获取部位图像时的获取时间和环境光强度;在所述环境光强度大于预设值的情况下,根据所述被检测者的部位图像和从所述存储模块中获取的参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;根据所述部位图像的变化信息得到被检测者当前身体健康状况信息;所述存储模块,用于存储所述参考部位图像信息;所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
本公开另一实施例提供一种显示装置,包括显示模块以及上述具有健康检测功能的装置。
本公开又一实施例提供一种具有健康检测功能的系统,包括显示装置以及云服务器;其中,所述显示装置包括显示模块;所述云服务器包括上述的 具有健康检测功能的装置,所述具有健康检测功能的装置的处理模块将被检测者当前身体健康状况信息发送到所述显示模块进行显示。
本公开又一实施例提供一种健康检测方法,包括:接收被检测者的图像信息并存储;其中,所述被检测者的图像信息包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度;在所述环境光强度大于预设值情况下,根据所述被检测者的部位图像和参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;根据所述部位图像的变化信息得到被检测者当前身体健康状况信息并发送到显示模块以使所述显示模块进行显示;其中,所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
附图说明
为了更清楚地说明本公开实施例的技术方案,下面将对实施例或相关技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅涉及本公开的一些实施例,并非对本公开的限制。
图1为本公开实施例提供的一种健康检测功能的装置的方框图;
图2A为本公开实施例提供的基于精度模式的面部子部位图像的提取部位示意图一;
图2B为本公开实施例提供的基于精度模式的面部子部位图像的提取部位示意图二;
图3为本公开实施例提供的一种显示装置的方框图;
图4为本公开实施例提供的一种显示装置的方框图;
图5为本公开实施例提供的一种显示装置的方框图;
图6为本公开实施例提供的一种显示装置的方框图;
图7为本公开实施例提供的具有健康检测功能的系统的方框图;
图8为本公开实施例提供的具有健康检测功能的系统的方框图;
图9为本公开实施例提供的具有健康检测功能的系统的方框图;
图10为本公开实施例提供的具有健康检测功能的系统的方框图;
图11为本公开实施例提供的具有健康检测功能的系统的方框图;
图12为本公开实施例提供的具有健康检测功能的系统的方框图;
图13为本公开实施例提供的一种健康检测方法的流程示意图。
具体实施方式
下面将结合附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
本公开实施例提供一种具有健康检测功能的装置、显示装置、系统以及健康检测方法。通过处理模块将接收的被检测者的部位图像以及从存储模块获取的参考部位图像信息中的参考部位图像进行对比分析,得到所述被检测者的部位图像的变化信息,并基于中医理论得到检测者当前身体健康状况信息,然后将该身体健康状况信息发到显示模块以使显示模块进行显示,以实现对被检测者身体状况的监控,从而可以及时发现病情。
本公开实施例提供一种具有健康检测功能的装置10,如图1所示,该具有健康检测功能的装置10包括处理模块101和存储模块102;所述处理模块101,用于接收被检测者的图像信息并存储到所述存储模块102;所述被检测者的图像信息包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度;在所述环境光强度大于预设值情况下,根据所述被检测者的部位图像和从所述存储模块102中获取的参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;根据所述部位图像的变化信息得到被检测者当前身体健康状况信息并发送到显示模块;所述存储模块102,用于存储所述参考部位图像信息;所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
需要说明的是,第一,根据所述被检测者的部位图像和参考部位图像,得到所述被检测者的部位图像的变化信息,即为:通过将所述被检测者的部位图像和参考部位图像进行对比分析,得到所述被检测者的部位图像的变化信息。
在此基础上,本领域技术人员应该明白,在进行对比分析时,通常是基于相同的部位进行对比,因而,本公开实施例中参考部位图像信息中的参考 部位图像与所述被检测者的图像信息中的部位图像是相同部位的图像。
其中,不对被检测者的部位图像进行限定,其可以是面部图像,也可以是四肢图像例如手掌、胳膊、腿等。
第二,可通过独立于所述具有健康检测功能的装置10的拍照模块来实现被检测者的部位图像的获取,然后将包括该部位图像、环境光强度以及获取时间的被检测者的图像信息发送到所述具有健康检测功能的装置10的所述处理模块101。
第三,所述参考部位图像信息中的参考部位图像可以包括所述被检测者在所述获取时间之前累积的部位图像,例如,所述存储模块102中存储着相同被检测者在获取时间之前的所有参考部位图像。基于此,在将所述被检测者的部位图像与从所述存储模块102获取的参考部位图像信息中的参考部位图像进行对比分析时,可以选取参考部位图像信息中最健康的参考部位图像进行对比分析,也可以是和接近所述获取时间的一个或多个参考部位图像进行对比分析,以得到一段时间内被检测者的部位图像的变化信息,当然也可以和参考部位图像信息中的所有参考部位图像进行对比,以得到一个变化曲线,并基于此判断被检测者当前身体健康状况。
当然,所述参考部位图像信息中的参考部位图像还可以包括基于年龄进一步也可以是基于性别的健康的参考部位图像,在此情况下,可以直接将所述被检测者的部位图像与健康的参考部位图像进行对比分析。
此外,也可以同时进行上述两种情况的对比分析,在此不再赘述。
第四,本领域技术人员应该知道,基于我国的中医理论,通过人体不同部位图像的变化信息例如颜色变化、褶皱情况、大小变化等信息,可以初步判断被检测者当前的身体健康状况。
本公开实施例提供一种具有健康检测功能的装置10,通过处理模块101将接收的被检测者的部位图像以及从存储模块102获取的参考部位图像信息中的参考部位图像进行对比分析,得到所述被检测者的部位图像的变化信息,并基于中医理论得到检测者当前身体健康状况信息,然后将该身体发到显示模块以使显示模块进行显示,以实现对被检测者身体状况的监控,从而可以及时发现病情。
由于中医理论中,大部分疾病是通过被检测者的面部特征进行诊断的, 因此,本公开实施例中,例如,所述部位图像为面部图像。
基于此,所述处理模块101还用于根据用户指令中指示的精度模式,针对所述面部图像进行面部子部位图像的提取,所述面部子部位图像至少包括额头图像、眼部图像和嘴部图像。
在此基础上,所述处理模块101用于根据所述被检测者的部位图像和从所述存储模块102中获取的参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;根据所述部分图像的变化信息得到被检测者当前身体健康状况信息,可以是:所述处理模块101用于根据从所述被检测者的面部图像中提取的面部子部位图像和从参考部位图像中提取的参考面部子部位图像,得到所述被检测者的面部子部位图像的变化信息;根据所述面部子部位图像的变化信息得到被检测者当前身体健康状况信息。
需要说明的是,可以将精度模式显示在显示模块中,当用户在显示模块中选择了相应的精度模式后,显示模块可以将用户的指令发送给处理模块101,从而使得处理模块101可以针对用户的选择进行面部子部位图像的提取。
这样,可以基于被检测者的需要有针对性的进行检测。
进一步的,所述精度模式可以包括简单模式、一般模式和精确模式。
其中,当用户指令中指示的精度模式为简单模式时,如图2A所示,所述处理模块101针对所述面部图像进行额头图像A、眼部图像B和嘴部图像C的提取。
当用户指令中指示的精度模式为一般模式时,如图2B所示,所述处理模101块针对所述面部图像进行额头图像A、眼部图像B、鼻部图像D、脸颊图像E和嘴部图像C的提取。
当用户指令中指示的精度模式为精确模式时,所述处理模块101块针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像、嘴部图像和舌部图像的提取。即:在此情况下,所述处理模块101接收的面部图像包括有舌部图像。
示例的,用户指令中指示的精度模式为简单模式时,所述处理模块101针对所述面部图像进行额头图像、眼部图像和嘴部图像的提取,基于此,当所述处理模块101将额头图像与从参考部位图像中提取的参考额头图像进行 对比分析时,若发现额头图像的颜色相对于参考额头图像变浅并有横纹出现,则可以初步判断该被检测者近期比较疲劳;当所述处理模块101将眼部图像和嘴部图像与从所述参考部位图像中提取的参考眼部图像和参考嘴部图像进行对比分析时,若没有发现较大变化,则可以初步判断被检测者正常;当处理模块101将上述各信息进行综合后,可以得到被检测者有点疲劳的健康状况信息。
又或者,用户指令中指示的精度模式为一般模式时,所述处理模块101针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像和嘴部图像的提取,基于此,当所述处理模块101将额头图像与从参考部位图像中提取的参考额头图像进行对比分析时,若发现额头图像的颜色变浅并有横纹出现,则可以初步判断该被检测者近期比较疲劳;当所述处理模块101将眼部图像与从参考部位图像中提取的参考眼部图像进行对比分析时,若发现眼部图像的颜色较深,即产生通常所说的“黑眼圈”,则可以初步判断该被检测者近期比较疲劳或者泌尿系统有潜在风险,这是由于除疲劳会产生“黑眼圈”外,支配泌尿系统的肾功能失调也会产生“黑眼圈”;当所述处理模块101将鼻部图像、脸颊图像和嘴部图像与从参考部位图像中提取的参考鼻部图像、参考脸颊图像和参考嘴部图像进行对比时,若没有发现较大变化,则可以初步判断被检测者正常;当处理模块101将上述各信息进行综合后,可以得到被检测者有点疲劳的健康状况信息。
需要说明的是,除上述描述的额头颜色变浅并有横纹,眼部出现“黑眼圈”对应被检测者最近疲劳或泌尿系统有潜在风险外,还有例如如下的面部图像与相关疾病的对应关系信息:
贫血面容:表现为面容枯槁、皮肤及黏膜苍白无血色。
甲状腺机能亢进:多表现有面部消瘦、双眼睑缩断、黑眼珠上方露白、眼球突出、很少眨眼且带有惊愣的表情。
黏液性水肿:表现为面色苍白蜡黄、眼睑和颊部浮肿、表现淡漠、呆板且眉、发稀疏。
风湿性心脏病;表现为双颊暗红、口唇紫绀、舌色晦暗、动则气喘。
肢端肥大症:表现为下颌增大向前突出、耳与鼻粗大、颧骨高耸、眉弓隆起、口唇及舌明显肥厚增大。
皮质醇增多症:表现为脸面红润胖圆、常有痒疮、毛发增多(女性有胡须)、颈部肥等特征厚。
肾病性浮肿:肾病早期仅表现为晨起后眼睑肿胀,随着肾功能的损害,可出现面色苍白、浮肿及皮肤紧张、干燥。
面神经麻痹:表现为鼻唇沟变浅、口角向下垂、有齿动作时口角歪向健侧。其中,对于周围性面神经麻痹,还可出现该侧额纹消失、下眼睑下垂。
震颤麻痹:多见于老年人、表现为面部呆板、毫无表情。
严重脱水:因腹泻或呕吐而大量失水后,表现为面部憔悴、眼窝下陷、鼻梁瘦削突出、颧弓隆起清晰可见。
破伤风:外伤数日后,表现为头向后伸、四肢抽搐、牙关紧闭、面肌痉挛、状如苦笑。
痴呆面容:呆小病患者出生9周内即可表现口唇厚、舌大且常外伸、口常张开多流涎、容貌丑陋、面色苍白或黄、鼻短且上翘、鼻梁塌陷、前额多皱纹。
地方性克汀病:亦称“呆小症”,表现为面容发育差、面容愚笨、反应迟钝、头大、鼻梁下陷、两眉间短宽、舌厚而大、常外伸、流涎。
先天愚型:一种遗传性染色体疾病,表现为眼睛小、眼距宽、塌鼻梁、张口伸舌、流口水。
基于上述,例如,所述存储模块102还用于存储所述部位图像的变化信息与身体健康状况信息的对应关系信息。
在此基础上,所述处理模块101还用于根据所述部位图像的变化信息,查找所述存储模块102中对应所述部位图像的变化信息的身体健康状况信息,以将查找到的所述身体健康状况信息发送到显示模块以使得所述显示模块进行显示。
这样,通过所述处理模块101可直接得到被检测者的身体健康状况信息,而无需再去例如网络中获取,因而使得本公开可基于无网络状态工作。
本公开实施例还提供了一种显示装置01,如图3所示,所述显示装置01包括显示模块20以及上述的具有健康检测功能的装置10。
其中,所述显示装置01可以是手机、平板电脑、电子书设备等,所述显示模块20可以是手机本体、平板电脑本体、电子书设备本体等。用于获取被 检测者的部位图像并将包括该部位图像的被检测者的图像信息发送到处理模块101的拍照模块30可以是内置在所述显示装置01中,也可以相对所述显示装置01外置。
此外,在实际应用中,可以在显示装置01中预先设置健康检测功能,在其接收到用户启动健康检测功能的指令后,启动健康检测功能。
由于目前各种移动终端如手机的使用越来越普遍,并成为人们生活中不可缺少的通信工具,因而在将所述健康检测功能的装置10集成在所述移动终端时,既能被广泛使用,又能将最终得到的身体健康状况信息及时进行显示。
例如,如图4所示,显示装置01还可包括拍照模块30,即,将所述拍照模块30内置在所述显示装置01中,所述拍照模块30用于获取被检测者的部位图像,并将包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度的被检测者的图像信息发送到所述具有健康检测功能的装置10的处理模块101;所述处理模块101将所述被检测者的部位图像发送到所述显示模块20中进行显示,并根据用户指令对所述被检测者的部位图像的多余信息进行裁剪,将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块102进行存储。
此处,由于拍照模块30在获取被检测者的部位图像时,可能会同时获取部位图像周边的一些图像,因此,本公开实施例中,当显示装置01的拍照模块30获取被检测者的部位图像后,将包括被检测者的部位图像以及获取所述部位图像时的所述获取时间和所述环境光强度的被检测者的图像信息发送到处理模块101,所述处理模块101将对该图像信息解析,并将其中的所述被检测者的部位图像在所述显示模块20中以预览方式进行显示,并且可以控制显示模块20提示用户对获取的部位图像进行裁剪,以剔除多余的信息,从而有利于节省存储空间,提高运算速度以及提高识别精度。然后,处理模块101将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块102进行存储。
此外,若拍照模块30获取的图像不是面部图像,则处理模块101可以控制显示模块20进行例如文字提醒。
这样,只需通过一部具有拍照功能的终端便可实现对身体健康状况的检测,既方便携带,又使得所述终端在现有技术基础上提升用户的体检。
进一步的,如图5所示,所述显示装置01还可包括图像补偿模块40;当所述拍照模块30在获取被检测者的部位图像时的环境光强度小于预设值时,所述图像补偿模块40用于对所述拍照模块30在获取所述被检测者的部位图像时的环境光强度进行补偿。
即:若所述拍照模块30在获取被检测者的部位图像时的环境光强度较暗,则通过所述图像补偿模块40可以对当前较弱的环境光强度进行补偿以使所述拍照模块30获取的被检测者的部位图像是在大于某个预设的环境光强度下获取的。
基于上述,如图6所示,所述显示装置01还可包括红外温感模块50,所述红外温感模块50用于对被检测者的体温进行测量并发送到处理模块101;所述处理模块101结合被检测者的体温以及所述被检测者的部位图像的变化信息,得到被检测者当前身体健康状况信息。
本公开实施例还提供一种具有健康检测功能的系统,如图7所示,该系统包括显示装置01以及云服务器02;其中,所述显示装置01包括显示模块20;所述云服务器02包括上述的具有健康检测功能的装置10。
本公开实施例中将所述健康检测功能的装置10集成在云服务器02上,可以不必占用显示装置01的存储空间以及运算速度。
例如,如图8所示,显示装置01还包括拍照模块30,所述拍照模块30用于获取被检测者的部位图像,并将包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度的被检测者的图像信息发送到所述具有健康检测功能的装置10的处理模块101;所述处理模块101将所述被检测者的部位图像发送到所述显示模块20中进行显示,并根据用户指令对所述被检测者的部位图像的多余信息进行裁剪,将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块102进行存储。
此处,由于拍照模块30在获取被检测者的部位图像时,可能会同时获取部位图像周边的一些图像,因此,本公开实施例中,当显示装置01的拍照模块30获取被检测者的部位图像后,将包括被检测者的部位图像以及获取所述部位图像时的所述获取时间和所述环境光强度的被检测者的图像信息发送到处理模块101,所述处理模块101将对该图像信息解析,并将其中的所述被 检测者的部位图像在所述显示模块20中以预览方式进行显示,并且可以控制显示模块20提示用户对获取的部位图像进行裁剪,以剔除多余的信息。然后,处理模块101将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块102进行存储。
此外,若拍照模块30获取的图像不是面部图像,则处理模块101可以控制显示模块20进行例如文字提醒。
进一步的,如图9所示,所述显示装置01还包括图像补偿模块40;当所述拍照模块30在获取被检测者的部位图像时的环境光强度小于预设值时,所述图像补偿模块40用于对所述拍照模块30在获取所述被检测者的部位图像时的环境光强度进行补偿。
可选的,如图10所示,所述系统还包括拍照模块30以及通信模块60;所述拍照模块30用于获取被检测者的部位图像,并将包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度的被检测者的图像信息通过所述通信模块60发送到所述具有健康检测功能的装置10的处理模块101;所述处理模块101将所述被检测者的部位图像在所述显示模块20中进行显示,并根据用户指令对所述被检测者的部位图像的多余信息进行裁剪,将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块102进行存储。
即:所述拍照模块30独立于所述显示装置01设置。其中,所述通信模块60可以仅仅是连通拍照模块30和显示装置01的数据线。
此处,当处理模块101接收到拍照模块30发送的被检测者的图像信息后,先对该图像信息解析,并将其中的所述被检测者的部位图像在所述显示模块20中以预览方式进行显示,并且可以控制显示模块20提示用户对获取的部位图像进行裁剪,以剔除多余的信息,从而有利于节省存储空间,提高运算速度以及提高识别精度。然后,处理模块101将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块102进行存储。
基于上述,如图11所示,例如,所述显示装置01还包括红外温感模块50,所述红外温感模块50用于对被检测者的体温进行测量并发送到处理模块101;所述处理模块101结合被检测者的体温以及所述被检测者的部位图像的 变化信息,得到被检测者当前身体健康状况信息。
例如,如图12所示,所述系统还包括接触式智能穿戴模块70,所述接触式智能穿戴模块70用于测量被检测者的心率值和/或血压值并发送到所述具有健康检测功能的装置10的处理模块101;所述处理模块101结合被检测者的心率值和/或血压值以及所述被检测者的部位图像的变化信息,得到被检测者当前身体健康状况信息。
本公开实施例还提供一种健康检测方法,该方法可通过上述的具有健康检测功能的装置10执行,如图13所示,该方法包括如下步骤:
S01、具有健康检测功能的装置10的处理模块101接收被检测者的图像信息并存储到所述存储模块102;其中,所述被检测者的图像信息包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度。
此处,不对被检测者的部位图像进行限定,其可以是面部图像,也可以是四肢图像例如手掌、胳膊、腿等。
S02、处理模块101在所述环境光强度大于预设值情况下,根据所述被检测者的部位图像和参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息。
其中,所述参考部位图像信息存储在所述存储模块102中;所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
此处,根据所述被检测者的部位图像和参考部位图像,得到所述被检测者的部位图像的变化信息,即为:通过将所述被检测者的部位图像和参考部位图像进行对比分析,得到所述被检测者的部位图像的变化信息。
例如,当所述参考部位图像信息中的参考部位图像包括所述被检测者在所述获取时间之前累积的部位图像时,在将所述被检测者的部位图像与参考部位图像信息中的参考部位图像进行对比分析时,可以选取参考部位图像信息中最健康的参考部位图像进行对比分析,也可以是和接近所述获取时间的一个或多个参考部位图像进行对比分析,以得到一段时间内被检测者的部位图像的变化信息,当然也可以和参考部位图像信息中的所有参考部位图像进行对比,以得到一个变化曲线,并基于此判断被检测者当前身体健康状况。
当然,所述参考部位图像信息中的参考部位图像还可以包括基于年龄进 一步也可以是基于性别的健康的参考部位图像,在此情况下,可以直接将所述被检测者的部位图像与健康的参考部位图像进行对比分析。
此外,也可以同时进行上述两种情况的对比分析,在此不再赘述。
需要说明的是,在本步骤中,根据所述环境光强度可以先进行判断,若判断其大于预设值则根据所述被检测者的部位图像和参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息,若判断其小于预设值则可以返回一个提示信息以进行重新检测。
此外,本领域技术人员应该明白,在进行对比分析时,通常是基于相同的部位进行对比,因而,本公开实施例中参考部位图像信息中的参考部位图像与所述被检测者的图像信息中的部位图像是相同部位的图像。
S03、处理模块101根据所述部位图像的变化信息得到被检测者当前身体健康状况信息并将其发送到显示模块以使所述显示模块进行显示。
本公开实施例提供了一种健康检测方法,通过将被检测者的部位图像以及参考部位图像信息中的参考部位图像进行对比分析,得到所述被检测者的部位图像的变化信息,并基于中医理论得到检测者当前身体健康状况,然后发到显示模块以使显示模块进行显示,以实现对被检测者身体状况的监控,从而可以及时发现病情。
由于中医理论中,大部分疾病是通过被检测者的面部特征进行诊断的,因此,本公开实施例中例如所述部位图像为面部图像。
基于此,所述方法还包括:根据用户指令中指示的精度模式,对面部图像进行面部子部位图像的提取;其中,所述面部子部位图像至少包括额头图像、眼部图像和嘴部图像。
即:可以将所有精度模式通过显示模块进行显示,当用户选择了相应的精度模式后,以指令的形成发送到处理模块,以使处理模块根据指令中指示的精度模式进行面部子部位图像的提取。
在此基础上,所述根据所述被检测者的部位图像和参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息。例如,根据从所述被检测者的面部图像中提取的面部子部位图像和从参考部位图像中提取的参考面部子部位图像,得到所述被检测者的面部子部位图像的变化信息。
这样,可以基于被检测者的需要有针对性的进行检测。
进一步的,所述精度模式包括简单模式、一般模式和精确模式。
基于此,所述根据用户指令中指示的精度模式,对面部图像进行面部子部位图像的提取,例如包括:当用户指令中指示的精度模式为简单模式时,针对所述面部图像进行额头图像、眼部图像和嘴部图像的提取;当用户指令中指示的精度模式为一般模式时,针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像和嘴部图像的提取;当用户指令中指示的精度模式为精确模式时,针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像、嘴部图像和舌部图像的提取。
示例的,用户指令中指示的精度模式为简单模式时,所述处理模块101针对所述面部图像进行额头图像、眼部图像和嘴部图像的提取,基于此,当所述处理模块101将额头图像与从参考部位图像中提取的参考额头图像进行对比分析时,若发现额头图像的颜色变浅并有横纹出现,则可以初步判断该被检测者近期比较疲劳;当所述处理模块101将眼部图像和嘴部图像与从所述参考部位图像中提取的参考眼部图像和嘴部图像进行对比分析时,若没有发现较大变化,则可以初步判断被检测者正常;当处理模块101将上述各信息进行综合后,可以得到被检测者有点疲劳的健康状况信息。
又或者,当用户指令中指示的精度模式为一般模式时,所述处理模块101针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像和嘴部图像的提取,基于此,当所述处理模块101将额头图像与从参考部位图像中提取的参考额头图像进行对比分析时,若发现额头图像的颜色变浅并有横纹出现,则可以初步判断该被检测者近期比较疲劳;当所述处理模块101将眼部图像与从参考部位图像中提取的参考眼部图像进行对比分析时,若发现眼部图像的颜色较深,即产生通常所说的“黑眼圈”,则可以初步判断该被检测者近期比较疲劳或者泌尿系统有潜在风险,这是由于除疲劳会产生“黑眼圈”外,支配泌尿系统的肾功能失调也会产生“黑眼圈”;当所述处理模块101将鼻部图像、脸颊图像和嘴部图像与从参考部位图像中提取的参考鼻部图像、参考脸颊图像和参考嘴部图像进行对比时,若没有发现较大变化,则可以初步判断被检测者正常;当处理模块101将上述各信息进行综合后,可以得到被检测者有点疲劳的健康状况信息。
本公开实施例提供了一种的健康检测方法,其例如由包括如下模块的终 端来实现,该终端包括:具有健康检测功能的装置,其包括处理模块101和存储模块102,还包括显示模块20、拍照模块30、图像补偿模块40等。其健康检测方法包括如下步骤:
S101、终端接收启动健康检测功能的信息。
此处,在实际应用中,在终端预先设置健康检测功能,在其接收到用户启动健康检测功能的指令后,启动健康检测功能。
S102、通过拍照模块30获取被检测者的面部图像,所述拍照模块30将包括被检测者的面部图像以及获取所述面部图像时的获取时间和环境光强度的被检测者的图像信息发送到处理模块101。
其中,可通过人脸检测算法检测获取的图像是否为面部图像,面部图像包括额头、眼部、鼻部、脸部、嘴部图像等。
S103、处理模块101对所述被检测者的图像信息进行解析,并判断环境光强度是否大于预设值,若大于预设值,则进行S104,否则返回S101。
S104、处理模块101将所述被检测者的部位图像在所述显示模块30中以预览方式进行显示,并提示用户对所述部位图像的多余信息进行裁剪。
此外,若获取的图像不是面部图像,则处理模块101控制显示模块30进行例如文字提醒,用户可以重新启动健康检测功能进行S101的步骤。
S105、处理模块101将包括经裁剪后的被检测者的面部图像以及所述获取时间和所述环境光强度的被检测者的图像信息发送到存储模块102进行存储。
S106、处理模块101控制显示模块20显示健康检测的精度模式,即显示简单模式、一般模式和精确模式。
S107、当用户选择了相应的精度模式例如简单模式后,显示模块20以指令形式将用户选择的精度模式发送到所述处理模块101。
S108、处理模块基于当前用户选择的精度模式(此处为简单模式),针对所述面部图像进行额头图像、眼部图像和嘴部图像的提取。
此处,若用户选择的是精确模式,而处理模块101对面部图像进行面部子部位图像的提取,若没有提取到舌部图像,则发送信息到显示模块20,显示模块20进行例如文字提醒,用户可以重新启动健康检测功能进行S101的步骤。
S109、处理模块101将当前被检测者的额头图像、眼部图像和嘴部图像与从参考部位图像信息中的参考面部图像中提取的参考额头图像、参考眼部图像和参考嘴部图像分别进行对比分析,以得到被检测者的各部位图像的变化信息。
所述存储模块中存储所述参考部位图像信息;所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
S110、处理模块101根据被检测者的各部位图像的变化信息,得到被检测者当前身体健康状况信息并发送到显示模块20。
S111、显示模块20将接收的被检测者当前身体健康状况信息进行显示。
虽然上文中已经用一般性说明及具体实施方式,对本公开作了详尽的描述,但在本公开基础上,可以对之作一些修改或改进,这对本领域技术人员而言是显而易见的。因此,在不偏离本公开精神的基础上所做的这些修改或改进,均属于本公开要求保护的范围。
本申请要求于2015年5月11日递交的中国专利申请第201510236951.3号的优先权,在此全文引用上述中国专利申请公开的内容以作为本申请的一部分。

Claims (17)

  1. 一种具有健康检测功能的装置,包括处理模块和存储模块;其中,
    所述处理模块,用于接收被检测者的图像信息并存储到所述存储模块;所述被检测者的图像信息包括被检测者的部位图像以及获取部位图像时的获取时间和环境光强度;在所述环境光强度大于预设值的情况下,根据所述被检测者的部位图像和从所述存储模块中获取的参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;根据所述部位图像的变化信息得到被检测者当前身体健康状况信息;
    所述存储模块,用于存储所述参考部位图像信息;所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
  2. 根据权利要求1所述的装置,其中,所述部位图像为面部图像;
    所述处理模块还用于根据用户指令中指示的精度模式,对所述面部图像进行面部子部位图像的提取;其中,所述面部子部位图像至少包括额头图像、眼部图像和嘴部图像;
    所述处理模块用于根据所述被检测者的部位图像和从所述存储模块中获取的参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;根据所述部分图像的变化信息得到被检测者当前身体健康状况信息,包括:
    所述处理模块用于根据从所述被检测者的面部图像中提取的面部子部位图像和从参考部位图像中提取的参考面部子部位图像,得到所述被检测者的面部子部位图像的变化信息;根据所述面部子部位图像的变化信息得到被检测者当前身体健康状况信息。
  3. 根据权利要求2所述的装置,其中,所述精度模式包括简单模式、一般模式和精确模式;
    其中,当用户指令中指示的精度模式为简单模式时,所述处理模块针对所述面部图像提取额头图像、眼部图像和嘴部图像作为所述面部子部位图像;
    当用户指令中指示的精度模式为一般模式时,所述处理模块针对所述面部图像提取额头图像、眼部图像、鼻部图像、脸颊图像和嘴部图像作为所述 面部子部位图像;
    当用户指令中指示的精度模式为精确模式时,所述处理模块针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像、嘴部图像和舌部图像的提取。
  4. 根据权利要求1至3中任一项所述的装置,其中,所述存储模块还用于存储所述部位图像的变化信息与身体健康状况信息的对应关系信息;
    所述处理模块还用于根据所述部位图像的变化信息,查找所述存储模块中对应所述部位图像的变化信息的身体健康状况信息。
  5. 一种显示装置,包括显示模块以及权利要求1-4任一项所述的具有健康检测功能的装置,其中所述具有健康检测功能的装置的处理模块将被检测者当前身体健康状况信息发送到所述显示模块进行显示。
  6. 根据权利要求5所述的显示装置,其中,显示装置还包括拍照模块,所述拍照模块用于获取被检测者的部位图像,并将包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度的被检测者的图像信息发送到所述具有健康检测功能的装置的处理模块;
    所述处理模块将所述被检测者的部位图像在所述显示模块中进行显示,并根据用户指令对所述被检测者的部位图像的多余信息进行裁剪,将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块进行存储。
  7. 根据权利要求6所述的显示装置,还包括图像补偿模块;
    当所述拍照模块在获取被检测者的部位图像时的环境光强度小于预设值时,所述图像补偿模块用于对所述拍照模块在获取所述被检测者的部位图像时的环境光强度进行补偿。
  8. 根据权利要求5-7任一项所述的显示装置,还包括红外温感模块,所述红外温感模块用于对被检测者的体温进行测量并发送到所述处理模块;
    所述处理模块结合被检测者的体温以及所述被检测者的部位图像的变化信息,得到被检测者当前身体健康状况信息。
  9. 一种具有健康检测功能的系统,包括显示装置以及云服务器;其中,
    所述显示装置包括显示模块;
    所述云服务器包括权利要求1-4任一项所述的具有健康检测功能的装 置,所述具有健康检测功能的装置的处理模块将被检测者当前身体健康状况信息发送到所述显示模块进行显示。
  10. 根据权利要求9所述的系统,其中,显示装置还包括拍照模块,所述拍照模块用于获取被检测者的部位图像,并将包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度的被检测者的图像信息发送到所述具有健康检测功能的装置的处理模块;
    所述处理模块将所述被检测者的部位图像在所述显示模块中进行显示,并根据用户指令对所述被检测者的部位图像的多余信息进行裁剪,将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块进行存储。
  11. 根据权利要10所述的系统,其中,所述显示装置还包括图像补偿模块;
    当所述拍照模块在获取被检测者的部位图像时的环境光强度小于预设值时,所述图像补偿模块用于对所述拍照模块在获取所述被检测者的部位图像时的环境光强度进行补偿。
  12. 根据权利要求9所述的系统,还包括拍照模块以及通信模块;
    所述拍照模块用于获取被检测者的部位图像,并将包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度的被检测者的图像信息通过所述通信模块发送到所述具有健康检测功能的装置的处理模块;
    所述处理模块将所述被检测者的部位图像发送到所述显示模块进行显示,并根据用户指令对所述被检测者的部位图像的多余信息进行裁剪,将包括经裁剪后的部位图像以及所述获取时间和所述环境光强度的所述被检测者的图像信息发送到存储模块进行存储。
  13. 根据权利要求9-12任一项所述的系统,其中,所述显示装置还包括红外温感模块,所述红外温感模块用于对被检测者的体温进行测量并发送到所述处理模块;
    所述处理模块结合被检测者的体温以及所述被检测者的部位图像的变化信息,得到被检测者当前身体健康状况信息。
  14. 根据权利要求9-12任一项所述的系统,还包括接触式智能穿戴模块,所述接触式智能穿戴模块用于测量被检测者的心率值和/或血压值并将其发 送到所述具有健康检测功能的装置的处理模块;
    所述处理模块结合被检测者的心率值和/或血压值以及所述被检测者的部位图像的变化信息,得到被检测者当前身体健康状况信息。
  15. 一种健康检测方法,包括:
    接收被检测者的图像信息并存储;其中,所述被检测者的图像信息包括被检测者的部位图像以及获取所述部位图像时的获取时间和环境光强度;
    在所述环境光强度大于预设值情况下,根据所述被检测者的部位图像和参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息;
    根据所述部位图像的变化信息得到被检测者当前身体健康状况信息并发送到显示模块以使所述显示模块进行显示;
    其中,所述参考部位图像信息包括所述被检测者在所述获取时间之前累积的参考部位图像和/或基于年龄的健康的参考部位图像。
  16. 根据权利要求15所述的方法,其中,部位图像为面部图像;
    所述方法还包括:根据用户指令中指示的精度模式,对面部图像进行面部子部位图像的提取;其中,所述面部子部位图像至少包括额头图像、眼部图像和嘴部图像;
    所述根据所述被检测者的部位图像和参考部位图像信息中的参考部位图像,得到所述被检测者的部位图像的变化信息,包括:
    根据从所述被检测者的面部图像中提取的面部子部位图像和从参考部位图像中提取的参考面部子部位图像,得到所述被检测者的面部子部位图像的变化信息。
  17. 根据权利要求16所述的方法,其中,所述精度模式包括简单模式、一般模式和精确模式;
    所述根据用户指令中指示的精度模式,对面部图像进行面部子部位图像的提取,包括:
    当用户指令中指示的精度模式为简单模式时,针对所述面部图像进行额头图像、眼部图像和嘴部图像的提取;
    当用户指令中指示的精度模式为一般模式时,针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像和嘴部图像的提取;
    当用户指令中指示的精度模式为精确模式时,针对所述面部图像进行额头图像、眼部图像、鼻部图像、脸颊图像、嘴部图像和舌部图像的提取。
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