WO2020098028A1 - 一种测肤系统及其测肤方法 - Google Patents

一种测肤系统及其测肤方法 Download PDF

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Publication number
WO2020098028A1
WO2020098028A1 PCT/CN2018/119902 CN2018119902W WO2020098028A1 WO 2020098028 A1 WO2020098028 A1 WO 2020098028A1 CN 2018119902 W CN2018119902 W CN 2018119902W WO 2020098028 A1 WO2020098028 A1 WO 2020098028A1
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image
skin
mobile phone
cloud server
collector
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PCT/CN2018/119902
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English (en)
French (fr)
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张延华
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深圳美丽策光生物科技有限公司
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Publication of WO2020098028A1 publication Critical patent/WO2020098028A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • 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
    • A61B5/441Skin evaluation, e.g. for skin disorder diagnosis
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • A61B5/0004Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network characterised by the type of physiological signal transmitted
    • A61B5/0013Medical image data
    • 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
    • A61B5/0062Arrangements for scanning
    • A61B5/0064Body surface scanning

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  • the invention relates to skin testing equipment, in particular to a skin measuring system and a skin measuring method.
  • Skin testing equipment is an instrument used to test the skin. It is equipped with professional testing software to help consumers intuitively and quickly understand the health of their skin.
  • the existing skin test equipment uses the image system to transfer the skin photos taken to the computer, and uses the software installed on the computer to analyze and calculate the skin data.
  • most of the photo skin testing equipment is mainly used by medical institutions. It is huge, expensive, and inconvenient to carry. It is difficult for ordinary consumers to purchase and use, and it cannot meet the needs of the market and users.
  • the technical problem to be solved by the present invention is to provide a skin measuring system and a skin measuring method which are easy to carry, convenient to use, can realize user self-operation, and save costs in view of the deficiencies of the prior art.
  • the present invention adopts the following technical solutions.
  • a skin measurement system includes a pen body, a mobile phone, and a cloud server.
  • the pen body includes: an image collector for taking optical images of the skin and converting them into electrical signals; and an image processor connected to the images A collector, the image processor is used to receive the electrical signal output by the image collector and generate an image file based on the electrical signal; a wireless transmission module is connected to the image processor, and the wireless transmission module is used to convert the image
  • the image file generated by the processor is wirelessly transmitted to the mobile phone; the mobile phone is used to display the image file and upload the image file to a cloud server; the cloud server is used to calculate the skin image file to obtain the skin Data, and feed back the skin data back to the mobile phone.
  • the image collector includes an image sensor and an optical module.
  • the pen body includes a driving circuit
  • the driving circuit is connected between the image sensor and the image processor
  • the image processor controls the image sensor to perform optical image acquisition through the driving circuit
  • the electrical signal converted by the image collector after capturing the optical image of the skin is a digital signal.
  • the wireless transmission module is used to transmit the image file generated by the image processor to the mobile phone with 2.4G wireless waves.
  • the mobile phone is installed with a preset skin measurement APP.
  • the pen body includes a housing, and the image collector is disposed at the top of the housing.
  • a circuit board is provided in the housing, and the image processor, wireless transmission module and driving circuit are all provided on the circuit board.
  • the skin testing system includes a pen body, a mobile phone, and a cloud server.
  • the pen body includes an image collector, an image processor, and a wireless transmission module.
  • the image collector and wireless The transmission modules are respectively connected to the image collector.
  • the method includes the following steps: Step S1, the optical image of the skin is captured by the image collector and converted into an electrical signal; Step S2, the image processor receives image acquisition An electrical signal output by the device and generate an image file based on the electrical signal; step S3, the wireless transmission module wirelessly transmits the image file generated by the image processor to a mobile phone; step S4, the mobile phone displays the image File and upload the image file to the cloud server; step S5, the cloud server performs calculation processing on the image file of the skin, and then obtains skin data, and feeds back the skin data to the mobile phone.
  • the mobile phone is installed with a preset skin measurement APP
  • the cloud server includes a preset image algorithm
  • the image file display is realized by the skin measurement APP installed on the mobile phone and the cloud server image algorithm, Image file processing, skin data return and skin data display.
  • an image collector, an image processor and a wireless transmission module are integrated on the pen body.
  • the image collector is first used to photograph the skin's optics Image, and then the image processor generates an image file, and then the wireless transmission module wirelessly transmits the image file to a mobile phone, and the mobile phone can upload the image file to
  • the cloud server uses the cloud server to perform calculation processing on the skin image file, and then obtains skin data, and finally feeds back the skin data to the mobile phone for the user to obtain the skin data.
  • the invention uses a pen-shaped hand-held mechanism to collect skin images, then uses the user's mobile phone for data display, and uses a background cloud server for data processing. Compared with the prior art, the user does not need to purchase a large-sized special equipment, which is not only low-cost Moreover, it is easy to carry. In addition, users only need to perform self-service to realize skin measurement, which has good ease of use.
  • Figure 1 is a perspective view of the skin measuring system of the present invention
  • FIG. 2 is a diagram of the internal structure of the skin detection system of the present invention.
  • FIG. 3 is a circuit block diagram of the skin detection system of the present invention.
  • FIG. 4 is a flowchart of the skin testing method of the present invention.
  • the present invention discloses a skin measurement system, as shown in FIG. 1 to FIG. 3, which includes a pen body 1, a mobile phone 2 and a cloud server 3.
  • the pen body 1 includes:
  • the image collector 10 is used to take an optical image of the skin and convert it into an electrical signal
  • the image processor 11 is connected to the image collector 10, and the image processor 11 is used to receive the electrical signal output by the image collector 10 and generate an image file according to the electrical signal;
  • the wireless transmission module 12 is connected to the image processor 11, and the wireless transmission module 12 is used to wirelessly transmit the image file generated by the image processor 11 to the mobile phone 2;
  • the mobile phone 2 is used to display image files and upload the image files to the cloud server 3;
  • the cloud server 3 is used to calculate and process skin image files to obtain skin data, and feed back the skin data to the mobile phone 2.
  • the image collector 10, the image processor 11 and the wireless transmission module 12 are integrated on the pen body 1.
  • the image collector 10 is used to take an optical image of the skin first, and then The image processor 11 generates an image file, and then the wireless transmission module 12 wirelessly transmits the image file to the mobile phone 2, and the mobile phone 2 can upload the image file while displaying the image file
  • the cloud server 3 is used to perform calculation processing on the skin image file, and then the skin data is obtained, and finally the skin data is fed back to the mobile phone 2 for the user to obtain the skin data.
  • the invention uses a pen-shaped hand-held mechanism to collect skin images, and then uses the user's mobile phone for data display, and uses a background cloud server for data processing. Compared with the prior art, the invention does not require a large-sized special equipment, not only low cost Moreover, it is easy to carry. In addition, users only need to perform self-service to realize skin measurement, which has good ease of use.
  • the image collector 10 includes an image sensor and an optical module.
  • the pen body 1 includes a driving circuit 13, the driving circuit 13 is connected between the image sensor and the image processor 11, and the image processor 11 passes the driving The circuit 13 controls the image sensor to perform optical image acquisition.
  • the electrical signal converted by the image collector 10 after capturing the optical image of the skin is a digital signal.
  • the wireless transmission module 12 is used to transmit the image file generated by the image processor 11 to the mobile phone 2 with a 2.4G wireless wave.
  • the mobile phone 2 is installed with a preset skin measurement APP.
  • the cloud server 3 includes a preset image algorithm.
  • the image processor obtains the skin image digital signal through the image sensor, processes the digital signal to generate the required image file, and then transmits it to the mobile phone APP through the wireless data transmission system.
  • the mobile phone APP transfers the collected image to the cloud processor, cloud processing After analyzing and processing the image file, the device sends the data back to the mobile APP.
  • the pen body 1 includes a housing 14, and the image collector 10 is disposed on the top of the housing 14.
  • circuit board 15 is provided in the casing 14, and the image processor 11, the wireless transmission module 12 and the driving circuit 13 are all provided on the circuit board 15.
  • the present invention also discloses a skin testing method of a skin testing system, as shown in FIGS. 1 to 4, the skin testing system includes a pen body 1, a mobile phone 2 and a cloud Server 3, the pen body 1 includes an image collector 10, an image processor 11 and a wireless transmission module 12, the image collector 10 and the wireless transmission module 12 are respectively connected to the image collector 10, the method includes There are the following steps:
  • Step S1 the optical image of the skin is captured by the image collector 10 and converted into an electrical signal
  • Step S2 the image processor 11 receives the electrical signal output by the image collector 10, and generates an image file according to the electrical signal;
  • Step S3 the wireless transmission module 12 wirelessly transmits the image file generated by the image processor 11 to the mobile phone 2;
  • Step S4 the mobile phone 2 displays the image file, and uploads the image file to the cloud server 3;
  • step S5 the cloud server 3 performs calculation processing on the skin image file, and then obtains skin data, and feeds back the skin data to the mobile phone 2.
  • the mobile phone 2 is installed with a preset skin measurement APP
  • the cloud server 3 includes a preset image algorithm.
  • the skin measurement APP installed on the mobile phone 2 and the image algorithm of the cloud server 3 Realize image file display, image file processing, skin data return and skin data display.
  • the skin testing system and skin testing method disclosed by the present invention have the beneficial effect that the present invention uses a cloud server to calculate and analyze skin pictures, and then returns the analysis data to the mobile phone APP, which greatly reduces the The cost and volume of the skin testing device.
  • the skin testing pen used in the present invention is not only convenient to carry, but also inexpensive, suitable for ordinary consumers to purchase, and satisfies the market and user needs.

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Abstract

一种测肤系统,其包括有笔体(1)、手机(2)和云服务器(3),所述笔体(1)包括有:图像采集器(10),用于拍摄皮肤的光学影像并转换成电信号;图像处理器(11),连接于所述图像采集器(10),所述图像处理器(11)用于接收图像采集器(10)输出的电信号,并根据该电信号生成影像文件;无线传输模块(12),连接于所述图像处理器(11),所述无线传输模块(12)用于将所述图像处理器(11)生成的影像文件以无线方式传输至手机(2);所述手机(2)用于显示影像文件以及将所述影像文件上传至云服务器(3);所述云服务器(3)用于对皮肤的影像文件进行运算处理后得出皮肤数据,并将所述皮肤数据反馈回所述手机(2)。本测肤系统无需体积较大的专用设备,不仅成本低廉,而且便于携带,此外用户只需自助操作即可实现测肤,具有较好的易用性。

Description

一种测肤系统及其测肤方法 技术领域
本发明涉及皮肤测试设备,尤其涉及一种测肤系统及其测肤方法。
背景技术
测肤设备是用来对皮肤实施检测的仪器,它配上专业检测软件可以帮助消费者直观快速了解自己皮肤的健康状况。然而现有的皮肤测试设备,其利用图像系统将拍下来的皮肤照片传输至电脑,利用电脑安装的软件分析计算皮肤数据,而且目前大部分的拍照测肤设备主要是由医疗机构使用,不仅体积庞大、价格昂贵,而且不方便携带,普通消费者难以购买使用,无法满足市场和用户需求。
发明内容
本发明要解决的技术问题在于,针对现有技术的不足,提供一种易于携带、便于使用、可实现用户自助操作、节省成本的测肤系统及其测肤方法。
为解决上述技术问题,本发明采用如下技术方案。
一种测肤系统,其包括有笔体、手机和云服务器,所述笔体包括有:图像采集器,用于拍摄皮肤的光学影像并转换成电信号;图像处理器,连接于所述图像采集器,所述图像处理器用于接收图像采集器输出的电信号,并根据该电信号生成影像文件;无线传输模块,连接于所述图像处理器,所述无线传输模块用于将所述图像处理器生成的影像文件以无线方式传输至手机;所述手机用于显示影像文件以及将所述影像文件上传至云服务器;所述云服务器用于对皮 肤的影像文件进行运算处理后得出皮肤数据,并将所述皮肤数据反馈回所述手机。
优选地,所述图像采集器包括有图像传感器和光学模组。
优选地,所述笔体包括有驱动电路,所述驱动电路连接于所述图像传感器和图像处理器之间,所述图像处理器通过所述驱动电路控制所述图像传感器进行光学影像采集。
优选地,所述图像采集器拍摄皮肤的光学影像后所转换成的电信号为数字信号。
优选地,所述无线传输模块用于将所述图像处理器生成的影像文件以2.4G无线波传输至手机。
优选地,所述手机安装有预设测肤APP。
优选地,所述笔体包括有外壳,所述图像采集器设于所述外壳的顶端。
优选地,所述外壳内设有线路板,所述图像处理器、无线传输模块和驱动电路均设于所述线路板上。
一种测肤系统的测肤方法,所述测肤系统包括有笔体、手机和云服务器,所述笔体包括有图像采集器、图像处理器和无线传输模块,所述图像采集器和无线传输模块分别连接于所述图像采集器,所述方法包括有如下步骤:步骤S1,利用所述图像采集器拍摄皮肤的光学影像并转换成电信号;步骤S2,所述图像处理器接收图像采集器输出的电信号,并根据该电信号生成影像文件;步骤S3,所述无线传输模块将所述图像处理器生成的影像文件以无线方式传输至手机;步骤S4,所述手机显示所述影像文件,并将所述影像文件上传至云服务器;步骤S5,所述云服务器对皮肤的影像文件进行运算处理,之后得出皮肤数据,并将所述皮肤数据反馈回所述手机。
优选地,所述手机安装有预设测肤APP,所述云服务器包括有预设的图像算法,藉由安装于所述手机的测肤APP和所述云服务器的图像算法实现影像文件显示、影像文件处理、皮肤数据回传和皮肤数据显示。
本发明公开的测肤系统及其测肤方法中,将图像采集器、图像处理器和无线传输模块集成于所述笔体上,测肤过程中,先利用所述图像采集器拍摄皮肤的光学影像,之后由所述图像处理器生成影像文件,再由所述无线传输模块将影像文件以无线方式传输至手机,所述手机在显示所述影像文件的同时,可将所述影像文件上传至云服务器,利用所述云服务器对皮肤的影像文件进行运算处理,之后得出皮肤数据,最后将所述皮肤数据反馈回所述手机,以供用户获取皮肤数据。本发明利用笔形的手持机构进行皮肤图像采集,再利用用户手机进行数据显示,利用后台云服务器进行数据处理,相比现有技术而言,用户无需购买体积较大的专用设备,不仅成本低廉,而且便于携带,此外用户只需自助操作即可实现测肤,具有较好的易用性。
附图说明
图1为本发明测肤系统的立体图;
图2为本发明测肤系统的内部结构图;
图3为本发明测肤系统的电路框图;
图4为本发明测肤方法的流程图。
具体实施方式
下面结合附图和实施例对本发明作更加详细的描述。
本发明公开了一种测肤系统,结合图1至图3所示,其包括有笔体1、手机 2和云服务器3,所述笔体1包括有:
图像采集器10,用于拍摄皮肤的光学影像并转换成电信号;
图像处理器11,连接于所述图像采集器10,所述图像处理器11用于接收图像采集器10输出的电信号,并根据该电信号生成影像文件;
无线传输模块12,连接于所述图像处理器11,所述无线传输模块12用于将所述图像处理器11生成的影像文件以无线方式传输至手机2;
所述手机2用于显示影像文件以及将所述影像文件上传至云服务器3;
所述云服务器3用于对皮肤的影像文件进行运算处理后得出皮肤数据,并将所述皮肤数据反馈回所述手机2。
上述测肤系统中,将图像采集器10、图像处理器11和无线传输模块12集成于所述笔体1上,测肤过程中,先利用所述图像采集器10拍摄皮肤的光学影像,之后由所述图像处理器11生成影像文件,再由所述无线传输模块12将影像文件以无线方式传输至手机2,所述手机2在显示所述影像文件的同时,可将所述影像文件上传至云服务器3,利用所述云服务器3对皮肤的影像文件进行运算处理,之后得出皮肤数据,最后将所述皮肤数据反馈回所述手机2,以供用户获取皮肤数据。本发明利用笔形的手持机构进行皮肤图像采集,再利用用户手机进行数据显示,利用后台云服务器进行数据处理,相比现有技术而言,本发明无需体积较大的专用设备,不仅成本低廉,而且便于携带,此外用户只需自助操作即可实现测肤,具有较好的易用性。
本实施例中,所述图像采集器10包括有图像传感器和光学模组。
为了实现拍摄控制,本实施例中,所述笔体1包括有驱动电路13,所述驱动电路13连接于所述图像传感器和图像处理器11之间,所述图像处理器11通过所述驱动电路13控制所述图像传感器进行光学影像采集。
实际应用中,所述图像采集器10拍摄皮肤的光学影像后所转换成的电信号为数字信号。
关于无线传输方式,本实施例中,所述无线传输模块12用于将所述图像处理器11生成的影像文件以2.4G无线波传输至手机2。
作为一种优选方式,所述手机2安装有预设测肤APP。所述云服务器3包括有预设的图像算法。其中,图像处理器通过图像传感器获得皮肤影像数字信号,对数字信号处理生成需要的影像文件,再通过无线数据传输系统传输到手机APP,手机APP把采集到的图像传输到云处理器,云处理器对影像文件分析处理后,将数据再回传给手机APP。
关于笔体的具体结构,本实施例中,所述笔体1包括有外壳14,所述图像采集器10设于所述外壳14的顶端。
进一步地,所述外壳14内设有线路板15,所述图像处理器11、无线传输模块12和驱动电路13均设于所述线路板15上。
为了更好地描述本发明的技术方案,本发明还公开了一种测肤系统的测肤方法,结合图1至图4所示,所述测肤系统包括有笔体1、手机2和云服务器3,所述笔体1包括有图像采集器10、图像处理器11和无线传输模块12,所述图像采集器10和无线传输模块12分别连接于所述图像采集器10,所述方法包括有如下步骤:
步骤S1,利用所述图像采集器10拍摄皮肤的光学影像并转换成电信号;
步骤S2,所述图像处理器11接收图像采集器10输出的电信号,并根据该电信号生成影像文件;
步骤S3,所述无线传输模块12将所述图像处理器11生成的影像文件以无线方式传输至手机2;
步骤S4,所述手机2显示所述影像文件,并将所述影像文件上传至云服务器3;
步骤S5,所述云服务器3对皮肤的影像文件进行运算处理,之后得出皮肤数据,并将所述皮肤数据反馈回所述手机2。
上述方法中,所述手机2安装有预设测肤APP,所述云服务器3包括有预设的图像算法,藉由安装于所述手机2的测肤APP和所述云服务器3的图像算法实现影像文件显示、影像文件处理、皮肤数据回传和皮肤数据显示。
本发明公开的测肤系统及其测肤方法,其相比现有技术而言的有益效果在于,本发明利用云服务器计算分析皮肤图片,再将分析数据回传到手机APP,大幅度降低了测肤设备的成本和体积,此外,本发明所使用的测肤笔不仅方便携带,而且价格低廉,适合普通消费者购买,较好地满足了市场和用户需求。
以上所述只是本发明较佳的实施例,并不用于限制本发明,凡在本发明的技术范围内所做的修改、等同替换或者改进等,均应包含在本发明所保护的范围内。

Claims (10)

  1. 一种测肤系统,其特征在于,包括有笔体(1)、手机(2)和云服务器(3),所述笔体(1)包括有:
    图像采集器(10),用于拍摄皮肤的光学影像并转换成电信号;
    图像处理器(11),连接于所述图像采集器(10),所述图像处理器(11)用于接收图像采集器(10)输出的电信号,并根据该电信号生成影像文件;
    无线传输模块(12),连接于所述图像处理器(11),所述无线传输模块(12)用于将所述图像处理器(11)生成的影像文件以无线方式传输至手机(2);
    所述手机(2)用于显示影像文件以及将所述影像文件上传至云服务器(3);
    所述云服务器(3)用于对皮肤的影像文件进行运算处理后得出皮肤数据,并将所述皮肤数据反馈回所述手机(2)。
  2. 如权利要求1所述的测肤系统,其特征在于,所述图像采集器(10)包括有图像传感器和光学模组。
  3. 如权利要求2所述的测肤系统,其特征在于,所述笔体(1)包括有驱动电路(13),所述驱动电路(13)连接于所述图像传感器和图像处理器(11)之间,所述图像处理器(11)通过所述驱动电路(13)控制所述图像传感器进行光学影像采集。
  4. 如权利要求1所述的测肤系统,其特征在于,所述图像采集器(10)拍摄皮肤的光学影像后所转换成的电信号为数字信号。
  5. 如权利要求1所述的测肤系统,其特征在于,所述无线传输模块(12)用于将所述图像处理器(11)生成的影像文件以2.4G无线波传输至手机(2)。
  6. 如权利要求1所述的测肤系统,其特征在于,所述手机(2)安装有预设测肤APP。
  7. 如权利要求1所述的测肤系统,其特征在于,所述笔体(1)包括有外 壳(14),所述图像采集器(10)设于所述外壳(14)的顶端。
  8. 如权利要求7所述的测肤系统,其特征在于,所述外壳(14)内设有线路板(15),所述图像处理器(11)、无线传输模块(12)和驱动电路(13)均设于所述线路板(15)上。
  9. 一种测肤系统的测肤方法,其特征在于,所述测肤系统包括有笔体(1)、手机(2)和云服务器(3),所述笔体(1)包括有图像采集器(10)、图像处理器(11)和无线传输模块(12),所述图像采集器(10)和无线传输模块(12)分别连接于所述图像采集器(10),所述方法包括有如下步骤:
    步骤S1,利用所述图像采集器(10)拍摄皮肤的光学影像并转换成电信号;
    步骤S2,所述图像处理器(11)接收图像采集器(10)输出的电信号,并根据该电信号生成影像文件;
    步骤S3,所述无线传输模块(12)将所述图像处理器(11)生成的影像文件以无线方式传输至手机(2);
    步骤S4,所述手机(2)显示所述影像文件,并将所述影像文件上传至云服务器(3);
    步骤S5,所述云服务器(3)对皮肤的影像文件进行运算处理,之后得出皮肤数据,并将所述皮肤数据反馈回所述手机(2)。
  10. 如权利要求9所述的测肤系统的测肤方法,其特征在于,所述手机(2)安装有预设测肤APP,所述云服务器(3)包括有预设的图像算法,藉由安装于所述手机(2)的测肤APP和所述云服务器(3)的图像算法实现影像文件显示、影像文件处理、皮肤数据回传和皮肤数据显示。
PCT/CN2018/119902 2018-11-14 2018-12-07 一种测肤系统及其测肤方法 WO2020098028A1 (zh)

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* Cited by examiner, † Cited by third party
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CN104586364A (zh) * 2015-01-19 2015-05-06 武汉理工大学 一种肤质检测系统及方法
CN105030205A (zh) * 2015-08-07 2015-11-11 深圳可思美科技有限公司 手持式光学高清高倍智能皮肤测试分析仪及其系统、方法
CN105979008A (zh) * 2016-07-05 2016-09-28 深圳斯坦普光生物科技有限公司 一种基于微距高清摄像头的皮肤分析装置及方法
CN106295615A (zh) * 2016-08-23 2017-01-04 姜汇洋 基于移动互联终端的皮肤检测与辅助保养系统
WO2018166749A1 (de) * 2017-03-17 2018-09-20 Henkel Ag & Co. Kgaa Verfahren und vorrichtung zum ermitteln eines hautfeuchtigkeitsgehalts

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104586364A (zh) * 2015-01-19 2015-05-06 武汉理工大学 一种肤质检测系统及方法
CN105030205A (zh) * 2015-08-07 2015-11-11 深圳可思美科技有限公司 手持式光学高清高倍智能皮肤测试分析仪及其系统、方法
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