The present invention relates to a system and method for determining skin color and an image capturing device, and in particular, to a system and method for determining skin color, a method for generating an ICC (International Color Consortium) profile, and an image capturing device for determining a skin color.
Skin measurement methods in the prior art can be classified into contact measurement and image measurement. The working principle of contact measurement is to obtain a quantitative value related to the physical condition of the skin using a capacitance probe that contacts an area of skin, and then the dielectric constant variation in the measuring material is measure. In image measurement, an image of skin is captured using a camera, in which the image is processed with color analysis method. For example, the image can be divided into sub-areas, and then statistics related to color distribution, color occurrence frequency, and color block variation are collected for specific colors or skin features.
However, the conventional method of contact measurement has a risk of infection, and the conventional skin color analysis uses a relative standard which makes it difficult to apply a standard analysis process to skin colors of all races. In addition, most of the existing skin measurement instruments are configured to detect skin conditions such as water content, oil distribution, or the appearance of the skin such as skin pigmentation, skin textures, and acne scars. Therefore, it is difficult to apply skin measurement instruments in the prior art to measure physiological conditions of a subject.
Although there are some skin measurement instruments on the market that provide physiological information, such as optical reflection-type blood oxygen detection products, these instruments are mostly inconvenient to carry, and for portable ones, the accuracy cannot reach the standard of a medical diagnostic level. In addition, this type of instrument lacks a universal color standard. For example, this type of instrument compares the relative difference between skin colors in different areas in a regionalized skin image to find out the redness or dark spots. However, medical-level skin detection requires a measurement method applicable to subjects of all skin colors. Therefore, there is room for improvement in the field of skin measurement.
Based on the above, one of the objectives of the present invention is to provide a system and method for determining a skin color, a method for generating an ICC profile, and an image capturing device for determining a skin color, which provide a portable darkroom environment to achieve environment and light source control, thereby providing accurate skin color measurement.
A technical solution used in an embodiment of the present invention is to provide a method for determining a skin color, including: providing an image capturing device including a light sensing module and a light distributing module, wherein the light distributing module includes a light source and a light isolation tube, the light isolation tube having a first end connected to the light sensing module and a second end away from the light source, the light source being disposed on the first end, and the second end having an opening; capturing a first image of an area under test of a human body using the image capturing device, wherein the opening adheres to the area under test such that the image capturing device forms a darkroom environment with respect to the area under test; performing color calibration on the first image according to an ICC profile using a control unit; and generating a calibrated image using the control unit to determine a skin color of the area under test.
A technical solution used in another embodiment of the present invention is to provide a method for generating an ICC profile, including: providing an image capturing device, including: a light sensing module; and a light distributing module including a light source and a light isolation tube, wherein the light isolation tube has a first end connected to the light sending module and a second end away from the light source, the light source being disposed on the first end, and the second end having an opening; capturing an image of a standard color card using the image capturing device, wherein the standard color card is located on a carrier, the standard color card can pass through the opening with the opening adhering to the carrier such that the image capturing device and the carrier together form a darkroom environment with respect to the standard color card; and generating an ICC profile of the image capturing device according to the standard color card and the image using the control unit.
A technical solution used in another embodiment of the present invention is to provide an image capturing device for determining a skin color, including: a light sensing module; and a light distributing module including a light source and a light isolation tube, wherein the light isolation tube has a first end connected to the light sending module and a second end away from the light source, the light source being disposed on the first end, and the second end having an opening, in which the image capturing device is configured to capture a first image of an area under test of a human body, wherein the opening adheres to the area under test such that the image capturing device forms a darkroom environment with respect to the area under test.
A technical solution used in another embodiment of the present invention is to provide a system for determining a skin color, including: a light sensing module, a control unit, and a light distributing module. The control unit is electrically connected to the image capturing device. The light distributing module includes a light source and a light isolation tube, wherein the light isolation tube has a first end connected to the light sending module and a second end away from the light source. The light source is disposed on the first end, and the second end has an opening. The light distributing module includes a light source and a light isolation tube, wherein the light isolation tube has a first end connected to the light sensing module and a second end away from the light source. The light source is disposed on the first end, and the second end has an opening. The image capturing device is configured to capture a first image of an area under test of a human body, where the opening adheres to the area under test such that the image capturing device forms a darkroom environment with respect to the area under test. The control unit is configured to perform color calibration on the first image according to an ICC profile so as to generate a calibrated image.
To further understand the features and technical solutions of the present invention, please refer to the following detailed descriptions and drawings related to the present invention. However, the appended drawings and descriptions are used only for the purpose of describing the present invention, and are not intended to limit the present invention.
A system and method for determining a skin color, a method for generating an ICC profile, and an image capturing device that are disclosed in the present invention are described below with preferred embodiments and appended drawings. A person skilled in the art can learn the advantages and effects of the present invention according to the content disclosed in this specification. However, the content disclosed below is not intended to limit the scope of protection of the present invention. Without departing from the spirit of the idea of the present invention, a person skilled in the art can implement the present invention based on different viewpoints and applications using other embodiments. In addition, it needs to be stated in advance that the accompanying drawings of the present invention are only for illustrative purposes and are not depicted according to actual dimensions. In addition, although various elements in this text may be described using terms such as first, second, and third, these elements should not be limited by these terms. These terms are mainly used for distinguishing between elements.
Referring to
The manner of connection between the image capturing device 1 and the control unit 2 is not limited in the present invention. In addition, in this embodiment, the control unit 2 is connected to the light source 21 through a control circuit so as to control the light source 21. However, the present invention is not limited thereto.
Further referring to
As shown in
Furthermore, the light source 21 is a plurality of light emitting units 211 arranged in an annular shape. Each light emitting unit 211 has a light emitting element 2111 and an angle adjustment element 2112. The angle adjustment element 2112 can be configured to adjust a light emitting angle of the light emitting element 2111. For example, when the brightness of a part of an area under test A needs to be highlighted, or light amount of light rays in certain incident angles needs to be increased, adjustment can be performed using the angle adjustment element 2112. However, the present invention is not limited thereto. In other embodiments, the light emitting unit 211 may also include only the light emitting element 2111.
Referring to
As shown in
In addition to control over ambient light, control over a light source is also an important factor in the improvement of the image definition and color rendition. In detail, an inner wall surface of the light isolation tube 22 of this embodiment is formed of a light-absorbing material, and the light source 21 has a high color rendering index and is arranged in an annular shape. For instance, the color rendering index (CRI) of the light source 21 in this embodiment is 90 or greater than 90. However, the present invention is not limited thereto. Furthermore, a distance from the first end P1 to the second end P2 of the light isolation tube 22 of this embodiment is obtained through optimization calculation. The distance enables the light source 21 to exhibit high uniformity when the light is transmitted from the first end to the second end. Preferably, the distance helps achieve light uniformity of greater than 95%.
Through the aforementioned technical solution, when capturing the image in the area under test A, the image capturing device 1 can block ambient light with the light isolation tube 22 of the light distributing module 20, and obtain the image of the area under test A of low color difference and low noise with the light source 21 having a high color rendering index and high uniformity.
In this embodiment, color calibration in step S104 is performed on the first image using the ICC profile pre-stored in the control unit 2. The manner of generating the ICC profile is not limited in this embodiment. For example, the ICC profile may be generated using the method for generating an ICC profile provided in a second embodiment, or may be provided by a manufacturer of the image capturing device 1. The method for generating an ICC profile provided in the present invention will be described in detail in the second embodiment.
In this embodiment, after performing step S106, the control unit 2 may display the calibrated image using the output unit 3 for a user to determine the skin color of the area under test A. Furthermore, referring to
Specifically, the color data can be an RGB value, or other color description data according to another color representation system, and is not limited in the present invention. Referring to
Furthermore, referring to
For example, referring to
Through the aforementioned technical solution, with the light distributing module 20, the system for determining skin color of this embodiment of the present invention can form a darkroom environment through adhesion to the area under test when the area under test A of the body of the subject is photographed. In addition, the length of the light isolation tube 22 of the light distributing module 20 is optimized, and an inner wall thereof is a light-absorbing material. Moreover, in cooperation with a light source having a high color rendering index, a light source of high uniformity can be provided to photograph the area under test A. Furthermore, the light sensing module 10 is portable, and can improve the motility of implementation of medical skin measurement. Based on the above, the system for determining skin color of this embodiment of the present invention and the method using the same can achieve a portable darkroom environment so as to improve the image quality and color rendition when performing skin measurement.
Referring to
Referring to
Through the aforementioned solution, the second embodiment of the present invention provides an ICC profile for accurate color calibration by light and environmental control in the process of photographing a standard color card. It is worth mentioning that step S402 may further include a step of performing a mapping regression algorithm to further correct the ICC profile through a polynomial regression analysis method. In this way, the color realness of the calibrated image on which color calibration is performed using the ICC profile can be further improved.
Based on the above, through the technical solutions of “the light isolation tube has a first end connected to the light sending module and a second end away from the light source, the light source being disposed on the first end, and the second end having an opening” and “the opening adheres to the area under test” provided in the embodiments of the present invention, the image capturing device can form a darkroom environment with respect to an area under test. In this way, a portable darkroom environment can be achieved when performing skin measurement, thereby providing accurate skin color detection and skin color image calibration.
The content disclosed above is only preferred embodiments of the present invention, and is not intended to limit the scope of the present invention. Therefore, any equivalent technical variation made based on the specification and the drawings of the present invention falls into the scope of the present invention.
| Number | Date | Country | Kind |
|---|---|---|---|
| 107119202 | Jun 2018 | TW | national |