ELECTRONIC DEVICE, CAPILLARY REFILL TIME DETERMINING SYSTEM AND CAPILLARY REFILL TIME DETERMINING METHOD

A capillary refill time determining system is configured to judge a color variation of an image, and the capillary refill time determining system includes an electronic device including an image capturing unit, a storage unit and a processor. The storage unit is configured to access a refill start time and a default value. The processor is electronically connected to the image capturing unit and the storage unit, and the processor is configured to analyze an average color value of the image at an initial period, wherein at least one refill color value is obtained by analyzing the image according to the refill start time, the difference between the average color value and the refill color value is confirmed whether less than or equal to the default value, and a refill period is calculated between the refill start time and the refill end time.

RELATED APPLICATIONS

This application claims priority to Taiwan Application Serial Number 112114245, filed Apr. 17, 2023, which is herein incorporated by reference.

BACKGROUND

Technical Field

The present disclosure relates to an electronic device, a capillary refill time determining system and a capillary refill time determining method. More particularly, the present disclosure relates to an electronic device, a capillary refill time determining system and a capillary refill time determining method applicable to mobile devices.

Description of Related Art

In clinically, a diagnostician mainly judges whether a subject has a problem of abnormal peripheral blood circulation by judging the capillary refill time whether exceeding 2 seconds or not. However, how to judge the capillary refill time whether exceeding 2 seconds is difficult to objectively determine based on the medical science, and the problems, such as influencing via the external factors and the excessively subjective judgment of the data via the naked eyes, may be caused, so that the misjudgment of the capillary refill time is easily caused under the emergency condition. Therefore, the requirements of an electronic device, a capillary refill time determining system and a capillary refill time determining method, which can objectively and instantly judge the capillary refill time, need to be developed.

SUMMARY

According to one aspect of the present disclosure, a capillary refill time determining system is configured to judge a color variation of an image, and the capillary refill time determining system includes an electronic device. The electronic device includes an image capturing unit, a storage unit and a processor. The image capturing unit is configured to capture the image. The storage unit is configured to access a refill start time and a default value. The processor is electronically connected to the image capturing unit and the storage unit, the processor receives the image and the refill start time, and the processor is configured to analyze an average color value of the image at an initial period, wherein at least one refill color value is obtained by analyzing the image according to the refill start time, a difference between the average color value and the refill color value is calculated, the difference is confirmed whether less than or equal to the default value to form a color judgment result, a refill end time is currently recorded according to the color judgment result, and a refill period is calculated between the refill start time and the refill end time. The initial period occurs before the refill start time.

According to one aspect of the present disclosure, an electronic device includes an image capturing unit, a display unit, a storage unit and a processor. The image capturing unit is configured to capture an image. The display unit has a sensing area, the display unit displays a background color at the sensing area, and the background color is blue or green. The storage unit is configured to access a refill start time and a default value. The processor is electronically connected to the image capturing unit and the storage unit, the processor receives the image and the refill start time, and the processor is configured to analyze an average color value of the image at an initial period, wherein at least one refill color value is obtained by analyzing the image according to the refill start time, a difference between the average color value and the refill color value is calculated, the difference is confirmed whether less than or equal to the default value to form a color judgment result, a refill end time is currently recorded according to the color judgment result, and a refill period is calculated between the refill start time and the refill end time. The initial period occurs before the refill start time.

According to one aspect of the present disclosure, a capillary refill time determining method is configured to judge a color variation of an image, and the capillary refill time determining method includes an initial period image analysis step and a refill period image analysis step. The initial period image analysis step includes analyzing an average color value of the image at an initial period via a processor. The refill period image analysis step includes analyzing the image for obtaining at least one refill color value according to a refill start time via the processor, calculating a difference between the average color value and the refill color value, confirming the difference whether less than or equal to a default value to form a color judgment result, currently recording a refill end time according to the color judgment result, and calculating a refill period between the refill start time and the refill end time. The initial period occurs before the refill start time.

DETAILED DESCRIPTION

FIG.1is a block diagram of a capillary refill time determining system100according to the 1st example of the present disclosure.FIG.2is a schematic view of the capillary refill time determining system100according to the 1st example inFIG.1. InFIGS.1and2, the capillary refill time determining system100is configured to judge a color variation of an image, and the capillary refill time determining system100includes an electronic device110, wherein the electronic device110includes an image capturing unit111, a display unit112, a storage unit113and a processor114.

The image capturing unit111is configured to capture the image of a tested subject F (labelled inFIG.4), and the tested subject F entirely covers the image capturing unit111, wherein the image capturing unit111can be a front lens of a mobile phone or a fingerprint identifier, and the tested subject F can be a finger of a subject. Hence, the step of removing a background of the tested subject F can be saved and environmental factors of color difference can be eliminated by entirely covering the image capturing unit111via the tested subject F. Further, an allowed calibrating range of the image capturing unit111of the front lens of the mobile phone is less, and hence the image can be more accurately captured so as to avoid the color calibration error owing to the equipment.

The display unit112has a sensing area115, the display unit112displays a background color at the sensing area115, and the background color is blue or green, wherein the display unit112can be a mobile screen for providing a light, and the display unit112can display a dynamic light to adjust the background color. Hence, the color variation of the capillary can be more sensitively determined via the blue background or the green background. In particular, the color variation of the tested subject F is from red to white, and hence the blue light or the green light easily penetrates a surface layer of the tested subject F so as to enhance the judgment of the color variation of the tested subject F.

The storage unit113is configured to access a refill start time Ts (labelled inFIG.8) and a default value.

The processor114is electronically connected to the image capturing unit111, the display unit112and the storage unit113, the processor114receives the image and the refill start time Ts, and the processor114is configured to analyze an average color value of the image at an initial period T1(labelled inFIG.8), wherein at least one refill color value is obtained by analyzing the image according to the refill start time Ts, a difference between the average color value and the refill color value is calculated, the difference is confirmed whether less than or equal to the default value to form a color judgment result, a refill end time Te (labelled inFIG.8) is currently recorded according to the color judgment result, and a refill period T3(labelled inFIG.8) is calculated between the refill start time Ts and the refill end time Te. The initial period T1occurs before the refill start time Ts. Moreover, the image is processed via the processor114with a software structure python3, and the image, the average color value, the refill color value, the difference, the color judgment result, the refill end time Te and the refill period T3can be uploaded to a cloud via the internet of things (IoT).

When the color judgment result is yes (that is, the difference between the average color value and the refill color value is less than or equal to the default value), the refill end time Te is currently recorded, and the refill period T3is calculated between the refill start time Ts and the refill end time Te. It should be mentioned that the color value is a value of RGB, an R value is mainly captured while judging the color variation of the tested subject F, and the default value is a predetermined certain level of the color value of the image at the refill start time Ts (that is the tested subject F under pressure) recovering to the color value of the image at the initial period T1(that is the tested subject F not yet under pressure). For example, the color value of the image at the refill start time Ts is recovered at least ninety percent of the color value of the image at the initial period T1, but the present disclosure is not limited thereto.

Furthermore, when the difference between the average color value and the refill color value is larger than the default value over a predetermined time, the processor114can be forced to stop. In detail, when the color judgment result continues to fail to be yes (that is, the difference between the average color value and the refill color value continues to be larger than the default value), the user can set the predetermined time for forcing the process of the processor114to stop, and the tested result of the tested subject F is directly judged as abnormal, wherein the predetermined time can be 5 seconds, but the present disclosure is not limited thereto.

The storage unit113can be configured to access an average refill time for normal people, and the processor114is configured to compare the refill period T3with the average refill time for the normal people, wherein the average refill time for the normal people is less than or equal to 2 seconds, but the present disclosure is not limited thereto. Therefore, the peripheral circulation condition of the tested subject F can be auxiliary evaluated.

The processor114is configured to segment the image at an interval, and the interval can be less than or equal to 0.02 seconds, wherein the image can be segmented into pictures via the processor114with an image processing software opencv, and the interval can be 0.016 seconds (that is 60 frames), but the present disclosure is not limited thereto.

The processor114can be configured to execute an application program APP (labelled inFIG.4) for prompting a measuring process and controlling the display unit112. Therefore, the subject can clearly know the current actions under the requirement.

The capillary refill time determining system100can further include a protective membrane120at least disposed on a surface of the image capturing unit111of the electronic device110. In particular, the protective membrane120can be a protective membrane of a mobile screen or an isolation film, and the protective membrane120can be configured to prevent the tested subject F from polluting a surface of the image capturing unit111. Moreover, the protective membrane120is transparent so as to avoid influencing the judgment of the capillary refill time determining system100.

FIG.3is a flow chart of a capillary refill time determining method S200according to the 2nd example of the present disclosure.FIG.4is a schematic view of an initial period image analysis step S201according to the 2nd example inFIG.3.FIG.5is a schematic view of pressing the tested subject F according to the 2nd example inFIG.3.FIG.6is a schematic view of stop pressing the tested subject F according to the 2nd example inFIG.3.FIG.7is a schematic view of a refill period image analysis step S202according to the 2nd example inFIG.3.FIG.8is a continuous record chart of the capillary refill time according to the 2nd example inFIG.3. InFIGS.3to8, the capillary refill time determining method S200is configured to judge the color variation of the image, and the capillary refill time determining method S200includes the following steps: the initial period image analysis step S201, the refill period image analysis step S202and a comparison step S203, wherein the display unit112is configured to display the background color of the sensing area115from the initial period T1to the refill end time Te, and the background color is blue or green. In detail, the capillary refill time determining method S200can be cooperated with the capillary refill time determining system100according to the 1st example, and hence the following reference numerals of the elements are referred toFIGS.1and2.

InFIGS.3,4and8, the initial period image analysis step S201includes analyzing an average color value of the image at the initial period T1via the processor114, wherein the application program APP is configured to prompt the subject to cover the image capturing unit111with the tested subject F, and the color value of the image at the initial period T1is between 125 and 130.

InFIGS.3,5and8, the application program APP is configured to prompt the subject to stress the tested subject F with a pressurizing object P at a pressurizing period T2, wherein the pressurizing object P can be a finger of a helper, and the color value of the image at the pressurizing period T2is between 130 and 140.

InFIGS.3and6-8, the refill period image analysis step S202includes analyzing the image for obtaining at least one refill color value according to the refill start time Ts via the processor114, calculating a difference between the average color value and the refill color value, confirming the difference whether less than or equal to the default value to form the color judgment result, currently recording the refill end time Te according to the color judgment result, and calculating the refill period T3between the refill start time Ts and the refill end time Te. In particular, the application program APP is configured to prompt the pressurizing object P to stop pressing the tested subject F, the refill period T3of the image begins to be calculated via the processor114, and the application program APP is configured to display the refill period T3and prompt the tested subject F to leave the image capturing unit111after finishing the calculating the refill period T3of the image, wherein the beginning of the refill start time Ts is when the application program APP is configured to prompt to stop pressurization, but the present disclosure is not limited thereto. Furthermore, when the application program APP is configured to prompt the tested subject F to leave the image capturing unit111, such as a tested subject leaving period T4, the background color of the sensing area115recovers to the normal screen color.

Moreover, the comparison step S203includes comparing the refill period T3with the average refill time for the normal people of a comparison database of the processor114via the processor114. Therefore, the peripheral circulation condition of the tested subject F can be auxiliary evaluated.

In summary, by the electronic device, the capillary refill time determining system and the capillary refill time determining method of the present disclosure, the problem of subjectively judging the capillary refill time can be solved so as to prevent from the problem of the inaccurate judgment result, and the condition that the external factors influencing the judging result can be avoided, wherein the external factors can be age, body temperature and skin color. Further, the electronic device, the capillary refill time determining system and the capillary refill time determining method of the present disclosure can be applied to the objective physiological testing of patients under the home care, so that the physiological judging references of the patients can be instantly and objectively provided to the relevant medical staffs for judging.

The foregoing description, for purpose of explanation, has been described with reference to specific examples. It is to be noted that Tables show different data of the different examples; however, the data of the different examples are obtained from experiments. The examples were chosen and described in order to best explain the principles of the disclosure and its practical applications, to thereby enable others skilled in the art to best utilize the disclosure and various examples with various modifications as are suited to the particular use contemplated. The examples depicted above and the appended drawings are exemplary and are not intended to be exhaustive or to limit the scope of the present disclosure to the precise forms disclosed. Many modifications and variations are possible in view of the above teachings.