WO2018218443A1 - 温度展示方法和装置 - Google Patents

温度展示方法和装置 Download PDF

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Publication number
WO2018218443A1
WO2018218443A1 PCT/CN2017/086373 CN2017086373W WO2018218443A1 WO 2018218443 A1 WO2018218443 A1 WO 2018218443A1 CN 2017086373 W CN2017086373 W CN 2017086373W WO 2018218443 A1 WO2018218443 A1 WO 2018218443A1
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Prior art keywords
body temperature
days
curve
temperature
display
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PCT/CN2017/086373
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English (en)
French (fr)
Inventor
黄建华
乔滨
康宏
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上海温尔信息科技有限公司
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Application filed by 上海温尔信息科技有限公司 filed Critical 上海温尔信息科技有限公司
Priority to CN201780093545.3A priority Critical patent/CN111093481B/zh
Priority to PCT/CN2017/086373 priority patent/WO2018218443A1/zh
Publication of WO2018218443A1 publication Critical patent/WO2018218443A1/zh

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    • 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

Definitions

  • the present application relates to the field of display technology, and in particular, to a temperature display method and apparatus.
  • the long-term changes in body temperature of the human body can often be used as an auxiliary judgment basis for many diseases to some extent. Therefore, it is of great significance for the body temperature monitoring of the human body.
  • the main means of monitoring body temperature and analyzing the characteristics of body temperature changes still rely on manual means. For example, if you want to observe changes in the Basal Boby Temperature (BBT) for a continuous period of time, you need to use an electronic thermometer or a mercury thermometer for BBT measurements every day, and measure the daily BBT records. On the form, an analysis of BBT changes is performed based on the data recorded in the form.
  • BBT Basal Boby Temperature
  • the embodiment of the present application provides a temperature display method and device for implementing a quick display of a change in body temperature of a user over a period of time.
  • an embodiment of the present application provides a temperature display method, including:
  • An actual body temperature curve is displayed in the body temperature coordinate system to correlate the plurality of body temperature points.
  • the selecting steps of the plurality of body temperature display controls include:
  • the plurality of body temperature time granularity display items are popped for selection in response to triggering the body temperature display entry control.
  • the step of displaying the actual body temperature curve includes:
  • a second portion of the actual body temperature curve is displayed within the viewable area in response to a user-triggered sliding operation.
  • the method further includes:
  • a reference body temperature curve is displayed in association with the actual body temperature curve.
  • the step of displaying the reference body temperature curve comprises:
  • the actual body temperature curve and the reference body temperature curve are compared and displayed.
  • the method further includes:
  • a prompt message corresponding to the actual body temperature curve is displayed.
  • the prompt information may include at least one of a curve feature corresponding to the actual body temperature curve, a cause of the curve feature, and warning information.
  • thermometer to measure the user BBT, only the body temperature measurement at a single time point can be achieved, and it is difficult to accurately measure the daily BBT of the human body.
  • the difficulty in measuring BBT every day is to capture the minimum body temperature point of day and night in time and accurately.
  • the current BBT monitoring is generally performed after the user wakes up, that is, the body temperature is measured as an approximate minimum body temperature point in the awake state.
  • the method further includes:
  • the basal body temperature values corresponding to the respective N days are taken as the plurality of body temperature points.
  • the determining step of the corresponding basal body temperature values of the N days includes:
  • the basal body temperature values corresponding to the respective N days are determined according to the temperature values after the N-days corresponding to the abnormal temperature values are eliminated.
  • the step of eliminating the abnormal temperature value includes:
  • the average temperature values of the respective time windows corresponding to the N days are determined.
  • the determining step of the corresponding basal body temperature values of the N days includes:
  • the basal body temperature values corresponding to the N days are determined according to the minimum value corresponding to the envelope curve on the body temperature.
  • the embodiment of the present application provides a temperature display device, including:
  • a positioning module configured to locate a plurality of body temperature points in the body temperature coordinate system in response to the selection of the plurality of body temperature time granularity display items, wherein the body temperature coordinate system corresponds to the selected body temperature time granularity display item;
  • a first display module configured to display an actual body temperature curve in the body temperature coordinate system to associate the plurality of body temperature points.
  • the above temperature display device includes a processor and a memory for storing a program for supporting the temperature display device to perform the temperature display method of the above first aspect, the processor being configured to use Executing the program stored in the memory.
  • the temperature display device can also include a communication interface for the temperature display device to communicate with other devices or communication networks.
  • an embodiment of the present application provides a computer storage medium for storing computer software instructions for use in a temperature display device, including a program for performing the temperature display method in the above first aspect.
  • the temperature display method and device when multiple body temperatures are set in the client
  • the granularity display item is used for the user to select the time granularity of the body temperature change according to the actual demand.
  • the body temperature coordinate system corresponding to the selected body temperature time granularity display item is displayed in the interface, and the body temperature coordinate system is positioned with multiple body temperature Point, and display the actual body temperature curve in the body temperature coordinate system to correlate the plurality of body temperature points, thereby conveniently and quickly forming a body temperature change curve at a time granularity selected by the user, and satisfying the user's body temperature change under different time granularities.
  • FIG. 1 is a schematic structural diagram of a temperature display system according to an embodiment of the present application.
  • FIG. 2 is a flowchart of a temperature display method according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of an optional body temperature time granularity display item in the embodiment shown in FIG. 2;
  • FIG. 4 is a schematic diagram of a body temperature curve provided by an embodiment of the present application.
  • FIG. 5 is a flowchart of a temperature display method according to another embodiment of the present application.
  • FIG. 6 is a schematic diagram showing a process of displaying an optional body temperature time granularity display item in the embodiment shown in FIG. 5;
  • FIG. 7 to FIG. 12 are schematic diagrams showing several body temperature curves reflecting characteristics of a female physiological cycle according to an embodiment of the present application.
  • FIG. 13 is a schematic diagram of a body temperature curve corresponding to a month after pregnancy according to an embodiment of the present application.
  • FIG. 14 is a schematic diagram showing a comparison between an actual body temperature curve and a reference body temperature curve
  • Figure 16 is a flow chart showing an alternative implementation of step 1502 in the embodiment of Figure 15;
  • FIG. 17 is a schematic structural diagram of a temperature display device according to an embodiment of the present application.
  • FIG. 18 is a schematic structural diagram of a temperature display device according to another embodiment of the present application.
  • FIG. 19 is a schematic structural diagram of a temperature display device according to another embodiment of the present application.
  • FIG. 20 is a schematic structural diagram of a temperature display device according to still another embodiment of the present application.
  • FIG. 21 is a schematic structural diagram of a temperature display device according to an embodiment of the present application.
  • first, second, third, etc. may be used to describe XXX in the embodiments of the present application, these XXX should not be limited to these terms. These terms are only used to distinguish XXX from each other.
  • first XXX may also be referred to as a second XXX without departing from the scope of the embodiments of the present application.
  • second XXX may also be referred to as a first XXX.
  • the words “if” and “if” as used herein may be interpreted to mean “when” or “when” or “in response to determining” or “in response to detecting.”
  • the phrase “if determined” or “if detected (conditions or events stated)” can be interpreted as “When determined” or “in response to determination” or “when detected (condition or event stated)” or “in response to detection (condition or event stated)”.
  • the temperature display method provided by the embodiment of the present application can be implemented based on the temperature display system shown in FIG. 1, but is not limited thereto.
  • the temperature display system includes a temperature collection device 10 and a temperature display device 20, and the temperature collection device 10 and the temperature display device 20 are communicatively coupled.
  • the temperature collecting device 10 may be used to measure the temperature of the surface of the measured area of the user, and the measured area may be different according to the use of the measured temperature value, and is not specifically limited.
  • the purpose of measuring a temperature value is to obtain a user's N-day BBT, so as to determine a user's lesion characteristics based on the N-day BBT and the actual application scenario.
  • Accurate BBT is an important prerequisite and guarantee.
  • the contact type continuous measurement mode is adopted for the measurement of the user's daily body temperature.
  • the temperature collecting device 10 is based on a material capable of conforming to the surface of the user, and a temperature sensor is distributed on the side of the material close to the skin to measure the body temperature; and the user is measured in a continuous measurement manner over a long period of time. body temperature.
  • the time for continuously measuring the body temperature of the user per day can be controlled at the night sleep time of the user.
  • the user's body temperature is continuously measured by setting the temperature collecting device 10 at a small interval such as 5 seconds to obtain a large amount of temperature data of the user every night.
  • the temperature display method provided by the embodiment of the present application includes, but is not limited to, the application scenario of the measurement and display of the BBT as exemplified above, for example, it can also be applied to the application scenario of prenatal and postpartum body temperature monitoring of the pregnant woman, for example, it can also be applied to the convulsion of the child. In the application scenario of body temperature monitoring, and so on.
  • the temperature display device 20 in the embodiment of the present application may be any device having a data storage, data processing, and display function, such as a server, a computer, a tablet, a smart terminal, and the like.
  • the temperature collecting device 10 and the temperature display device 20 may be connected by wireless or wired network.
  • the network standard of the mobile network may be 2G (GSM), 2.5G (GPRS), 3G (WCDMA, TD-SCDMA, CDMA2000). UTMS), 4G (LTE), 4G+ (LTE+), WiMax, and the like.
  • the temperature collecting device 10 can also be communicably connected to the temperature display device 20 through wireless communication methods such as Bluetooth, Wi-Fi, and infrared.
  • the following embodiment details the flow of the temperature display method provided by the embodiment of the present application from the perspective of the temperature display device 20 .
  • FIG. 2 is a flowchart of a temperature display method according to an embodiment of the present application. As shown in FIG. 2, the method includes the following steps:
  • Step 201 In response to selecting a plurality of body temperature time granularity display items, positioning a plurality of body temperature points in the body temperature coordinate system, wherein the body temperature coordinate system corresponds to the selected body temperature time granularity display item.
  • Step 202 Display an actual body temperature curve in a body temperature coordinate system to associate a plurality of body temperature points.
  • users may often have body temperature measurements at different time granularities in order to observe changes in body temperature at the corresponding time granularity. For example, in the need to count the characteristics of the female physiological cycle, it is often necessary to perform a body temperature measurement with a monthly time granularity. For example, in the need to observe the changes in prenatal and postpartum body temperature of pregnant women, it is necessary to perform body temperature measurement with daily time granularity.
  • a plurality of body temperature time granularity display items may be set in the client interface for the user to select.
  • Figure 3 It is indicated that three kinds of body temperature time granularity display items of day, month and chronology can be set, which are respectively represented by "day”, "month” and "year” as indicated in FIG. However, it may actually include a body temperature time granular display item such as a weekly table or a quarter table.
  • the body temperature coordinate system corresponding to the selected body temperature time granularity display item may be displayed in the client interface, and the horizontal axis of the body temperature coordinate system may represent time, and the vertical axis may represent temperature.
  • the time unit and the duration range of the body temperature coordinate system corresponding to different body temperature time granularity display items may be different.
  • the time unit of the body temperature coordinate system of the body temperature time granularity display item corresponding to the day may be hours, and the duration may range from 0 to 24.
  • the time unit of the body temperature coordinate system of the body temperature time granularity display item corresponding to the month may be a day, and the duration may range from the first day to the last day of the month.
  • the body temperature coordinate system of the body temperature time granularity display item corresponding to the day is illustrated in FIG.
  • positioning a plurality of body temperature points in the body temperature coordinate system means that the body temperature coordinate system is hit according to the collection time and the temperature value corresponding to each body temperature point.
  • the time unit in the body temperature coordinate system is hour, it does not mean that the sampling interval of the body temperature point must be one hour.
  • the body temperature collecting device can be controlled to collect the body temperature at a sampling interval of 10 minutes.
  • multiple body temperature points located in the body temperature coordinate system may not be all body temperature values collected within the duration of the body temperature coordinate system.
  • the actual body temperature curve to be displayed is a BBT curve
  • the body temperature point positioned in the body temperature coordinate system is the daily BBT in many days, rather than the total body temperature value collected in multiple days.
  • a smooth curve can be drawn to correlate multiple body temperature points to form an actual body temperature curve.
  • spline interpolation can be used to generate The actual body temperature curve associated with multiple body temperature points is displayed.
  • a plurality of body temperature time granularity display items are set in the client, so that the user can select the time granularity of the body temperature change according to actual needs.
  • the body temperature coordinate system corresponding to the selected body temperature time granularity display item is displayed in the interface, and the body temperature coordinate system is positioned with multiple body temperature Point, and display the actual body temperature curve in the body temperature coordinate system to correlate the plurality of body temperature points, thereby conveniently and quickly forming a body temperature change curve at a time granularity selected by the user, and satisfying the user's body temperature change under different time granularities.
  • FIG. 5 is a flowchart of a temperature display method according to another embodiment of the present application. As shown in FIG. 5, the method includes the following steps:
  • Step 501 In response to triggering the body temperature display entrance control, popping up a plurality of body temperature time granularity display items for selection.
  • Step 502 Locating a plurality of body temperature points in a body temperature coordinate system corresponding to the selected body temperature time granularity display item in response to selection of the plurality of body temperature time granularity display items.
  • Step 503 Display an actual body temperature curve in a body temperature coordinate system to associate a plurality of body temperature points.
  • Step 504 Display a reference body temperature curve in association with the actual body temperature curve.
  • Step 505 Display prompt information corresponding to the actual body temperature curve.
  • an integrated temperature display entry control can be set on the client interface.
  • a window including multiple body temperature time granularity display items as shown in FIG. 6 is popped up for the user. Select the desired body temperature time granularity display item.
  • different body temperature time granularity display items have different acquisition time ranges of the body temperature points, and the starting point of the time range is obtained, and optionally, the time end point can be performed with the current day as the last day.
  • the day can be used as the time ending end date, and the time can be traced forward one month.
  • the time of one month can be fixedly set to, for example. 30 days.
  • the current month is the body temperature point to obtain the time range, which means It is necessary to obtain the body temperature data collected in the current month to obtain a plurality of body temperature points that need to be positioned.
  • the time range of the body temperature point can be obtained, and at this time, the time range collected during the time interval can be acquired at regular intervals.
  • the body temperature data is used to refresh the actual body temperature curve.
  • the display of the actual body temperature curve can be:
  • a second portion of the actual body temperature curve is displayed in the viewable area in response to a user-triggered sliding operation.
  • one screen display can be displayed, and if not, it can also be displayed according to the above display manner.
  • the first part and the second part of the actual body temperature curve are illustrated by a vertical line. Initially, the first part is displayed, and in response to the sliding operation of the user, the second part is left. Move into the viewable area for display.
  • the first part and the second part mentioned above are only for explaining that the actual body temperature curve can be displayed by sliding, and it is not strictly defined that the actual body temperature curve is divided into several parts for display. Therefore, the first part and the second part may be partially identical. , the left part of the curve is moved out of the visible area, and there is a new partial curve moving into the visible area.
  • Figure 7 to Figure 12 show several actual body temperature curves reflecting the characteristics of women's physiological cycle.
  • the body temperature curve in the figure reflects the change of BBT, that is, the multiple body temperature points at this time are shown in the figure.
  • each person's corresponding BBT curve reflects different characteristics. According to statistical analysis, Figure 7-12 can reflect the physiological cycle characteristics of most women. The specific performance is that if the actual body temperature curve corresponding to a user is the curve shown in Figure 7, the user has normal biphasic BBT. Characteristic; if the actual body temperature curve corresponding to a user is the curve shown in Figure 8, it indicates that the user's low temperature phase transitions to the high temperature phase for a long time, and has the characteristic that the BBT rises slowly; if a user's actual body temperature curve is a graph The curve shown in 9 shows the use The temperature rise of the high temperature phase of the household is insufficient, and the BBT rise is insufficient.
  • the high temperature phase time of the user is short, and the duration of the BBT platform period is long. Insufficient characteristics; if the actual body temperature curve corresponding to a user is the curve shown in Figure 11, it indicates that the user's high temperature phase time is short, and the high temperature phase transitions to a low temperature phase for a long time, which has the characteristic that the BBT declines slowly; The corresponding actual body temperature curve is the curve shown in FIG. 12, indicating that the user's high temperature phase time is too long, and the BBT platform period duration is too long.
  • the body temperature curve can also be used to observe the changes in body temperature of a woman or a certain month after pregnancy, so as to timely find abnormal conditions for timely treatment.
  • the body temperature curve shown in Fig. 13 the body temperature curve of a pregnant woman after a pregnancy is indicated. Since the possibility of miscarriage is high in the first few months after pregnancy, the body temperature of the previous months is monitored. The phenomenon of sudden drop in body temperature can be detected in time, and the sudden drop in body temperature may indicate the possibility of threatened abortion. As shown in FIG. 13, the phenomenon of sudden drop in body temperature can be found in time by displaying the actual body temperature curve of the user. Also shown in Fig. 13 are prompt information such as warnings of threatened abortion temperature.
  • the user may lack the accumulation of relevant professional knowledge, and only show the user his actual body temperature curve, which often does not allow the user to more intuitively know the characteristic information reflected by the actual body temperature curve. . Therefore, in order to improve the user experience, while displaying the actual body temperature curve, the prompt information corresponding to the actual body temperature curve may also be displayed, such as the physiological cycle characteristic information reflected in FIG. 7 to FIG. The cause of the physiological cycle characteristics, threatened abortion and early warning information.
  • the prompt information may include at least one of a curve feature corresponding to the actual body temperature curve, a cause of the curve feature, and warning information.
  • the curve characteristics include, for example, the following: a normal biphasic BBT feature, a BBT rising slow feature, a BBT increase insufficient feature, a BBT platform duration insufficient, and a slow BBT decline. It has the characteristics that the duration of the BBT platform is too long.
  • the causes of the characteristics of the curve include, for example, dysplasia of the corpus luteum, shortening of the luteal phase, insufficient secretion of the endometrium, and difficulty in implantation of the egg; endocrine regulation dysfunction, slow follicular development, ovulation Post-luteal dysplasia leads to a low increase in BBT; progesterone concentration is important for early pregnancy support.
  • Luteal dysplasia leads to shortening of the luteal phase and low progesterone concentration, which is the main endocrine factor of abortion.
  • the corpus luteum atrophy, the intima continues to be affected by progesterone, and the menstrual period is prolonged, resulting in less chance of conception and low pregnancy rate.
  • the warning information includes, for example, the figure: ovulation occurs only 5% before the minimum body temperature; ovulation generally occurs at the lowest body temperature after the basal body temperature rise period; the ovulation time prediction results indicate the arrow; the BBT lowest point indication; the best conception The indication of the day; BBT maintains a state of increase of 0.3-0.6 degrees for more than 16 days, suggesting that you may be pregnant, if more than 20 days, the pregnancy may be more than 98%; the first three months after conception is the abortion period; Early warning of threatened abortion temperature; body temperature recovery after timely treatment; optimal treatment window period.
  • the prompt information may be directly displayed at a corresponding position in the display interface of the corresponding actual body temperature curve, or a prompt button may be set in the associated interface of the actual body temperature curve, in response to the user triggering the button.
  • Displaying related prompt information, or generating a body temperature report in response to the user triggering the button, the body temperature report includes some of the above related prompt information, such as the body temperature value of the basal body temperature during the plateau period, the duration of the rising period and the falling period Time, etc.; can also be independent of the actual body temperature curve display interface, and in the other display interface for the actual body temperature curve to display the relevant prompt information.
  • the reference body temperature curve can also be displayed while the actual body temperature curve is displayed.
  • the reference body temperature curve is different in different application scenarios.
  • the reference body temperature curve may be a pre-generated body temperature having normal biphasic characteristics. Curve;
  • the reference body temperature curve may be a body temperature curve reflecting the normal body temperature change characteristics after pregnancy.
  • the reference body temperature curve can be generated by the same user's measured body temperature data under normal body conditions, or the body temperature data measured by a large number of normal body users in the same time range can respectively generate respective body temperature curves.
  • Obtaining statistical analysis of each obtained body temperature curve for example, averaging each temperature value corresponding to the same time coordinate of each body temperature curve to obtain an average temperature value of the time coordinate, and an average temperature corresponding to each time coordinate respectively
  • the degree value gives a reference body temperature curve.
  • the reference body temperature curve may be specifically displayed by comparing the actual body temperature curve and the reference body temperature curve with the reference body temperature curve as a background. Shown in Fig. 14 is a comparative display effect of the actual body temperature curve shown in Fig. 8 and the reference body temperature curve.
  • the plurality of body temperature points positioned in the body temperature coordinate system may not be all the temperature values collected within the corresponding time length range. At this time, it is often involved in performing certain data on the collected temperature values. Processing to obtain the multiple body temperature points. In the following, the application scenario of the N-day BBT curve needs to be demonstrated, and how to obtain the plurality of body temperature points will be described.
  • FIG. 15 is a flowchart of a temperature display method according to another embodiment of the present application. As shown in FIG. 15, the method includes the following steps:
  • step 1501 in response to the selection of the plurality of body temperature time granularity display items, the temperature values corresponding to the N days of the user's selected body temperature time granularity display item are obtained.
  • the temperature values corresponding to the N days are continuously measured by the contact measurement method, and the temperature value is measured from the user in the sleep stage, and N is greater than the preset physiological cycle days.
  • the body temperature time granularity display item selected by the user is the monthly table illustrated in FIG.
  • the meaning of the monthly table may be either a natural month or a time span of a preset one month duration.
  • the meaning of the latter type of monthly table is adopted.
  • the duration of one month corresponds to the above-mentioned N days, and the number of physiological cycle days varies from 28 to 35 days due to individual differences, therefore, the one The duration of the month is often set to a value greater than or equal to 35.
  • the temperature values corresponding to the respective N days are measured by continuous measurement by the contact measurement method as described above, and the body temperature value measured from the user in the sleep stage is measured.
  • the working time and the measuring interval of the temperature collecting device 10 can be set. For example, when the working time is 1 hour and the measuring interval is 5 seconds, 720 temperature values can be measured every day.
  • Step 1502 Determine the basal body temperature values corresponding to each of the N days according to the temperature values corresponding to the N days, and the basal body temperature values corresponding to the N days are used as the plurality of body temperature points.
  • 720 temperature values can be measured per day. Ideally, assuming that the 720 temperature values are all valid, the lowest temperature among the 720 temperature values can be determined according to the meaning of BBT. The value is BBT.
  • these 720 temperature values may not all be valid data.
  • the unpredictability of unconscious activity in a person's sleep state has a great influence on the accuracy of the measured temperature value, that is, may be due to human activities.
  • Some of the measured temperature values are not temperature values that reflect the true body temperature. Therefore, it is often necessary to perform data cleaning and the like on the measured temperature values to remove the abnormal temperature values in the respective temperature values of the N days, so as to determine the N days according to the temperature values after the corresponding abnormal temperature values are eliminated in the N days.
  • the corresponding basal body temperature values may not all be valid data. For example, the unpredictability of unconscious activity in a person's sleep state has a great influence on the accuracy of the measured temperature value, that is, may be due to human activities.
  • Some of the measured temperature values are not temperature values that reflect the true body temperature. Therefore, it is often necessary to perform data cleaning and the like on the measured temperature values to remove the abnormal temperature values in the respective temperature values of the N days, so as to determine the N days according
  • Step 1503 Locating a plurality of body temperature points in a body temperature coordinate system corresponding to the selected body temperature time granularity display item.
  • Step 1504 Display an actual body temperature curve in a body temperature coordinate system to associate a plurality of body temperature points.
  • the plurality of temperature values corresponding to the user N days are continuously measured by the contact measurement method, and the continuous measurement is performed when the user is in the sleep stage, and the metabolism level of the person in the sleep state is the lowest, based on the N days.
  • the body temperature measured by the user can accurately obtain the basic low temperature value of N days.
  • the basal body temperature curve can be generated and displayed to the user, so that the basal body temperature curve can accurately reflect the change of the basal body temperature of the user within N days.
  • a method for removing abnormal temperature values and determining N basal body temperature values provided by the embodiments of the present application is described below with reference to the embodiment shown in FIG. 16 .
  • FIG. 16 is a flowchart of an optional implementation of step 1502 in the embodiment shown in FIG. 15. As shown in FIG. 16, the method may include the following steps:
  • Step 1601 According to a preset time window, divide the corresponding temperature values of the N days, and determine an average temperature value of each time window corresponding to each of the N days.
  • Step 1602 Determine the maximum value of the consecutive preset number of average temperature values in the respective corresponding average temperature values of the N days.
  • Step 1603 Generate a body temperature envelope curve corresponding to each of the N days according to the preset maximum number corresponding to each of the N days.
  • Step 1604 Determine the basal body temperature value corresponding to each of the N days according to the minimum value corresponding to the envelope curve on the body temperature.
  • the accuracy of the measured temperature value is greatly affected. For example, in the corresponding temperature values of N days, some temperature values may be lower than the body temperature, because the user's action affects the temperature value. Since the body temperature is generally higher than the ambient temperature, the measured value of body temperature will only be low and will not be too high. Therefore, in this embodiment, the abnormal temperature value is removed from a large number of measured temperature values, and the method for reflecting the true body temperature fluctuation condition is to extract the upper envelope corresponding to the measured temperature value.
  • the temperature values corresponding to the N days may be divided according to a preset time window, and the average temperature values of the respective time windows corresponding to the N days may be determined.
  • each time window corresponds to a continuous 12 temperature values.
  • a total of 720 temperature values are measured on any one day, a total of 60 time windows are corresponding.
  • the average temperature value of the 12 temperature values is calculated for the 12 temperature values corresponding to each time window, so that 60 average temperature values can be obtained.
  • the maximum value among the consecutive preset number of average temperature values is determined.
  • 60 average temperature values are grouped according to the continuous preset number. For example, if the continuous preset number is 10, 60 average temperature values are divided into 6 groups, and each group includes continuous 10 average temperature values.
  • the continuous preset number is equivalent to setting another large time window. For example, the continuous preset number is 10, which is equivalent to setting a time window of 10 minutes.
  • the maximum of the plurality of average temperature values contained therein is selected as an envelope temperature point.
  • the six packets respectively correspond to an envelope temperature point.
  • an envelope curve is generated using a method such as spline interpolation. Since the envelope curve is generated based on a plurality of maximum average temperature values, it can be referred to as an upper envelope curve.
  • an analytical equation of the curve is obtained. By solving the analytical equation, a minimum point corresponding to the upper envelope curve can be obtained, and the temperature value corresponding to the minimum point is the current value. BBT corresponding to any day.
  • a BBT For each day of the N day, a BBT can be obtained through the above process, and finally, N BBTs can be obtained. Based on the N BBTs, a BBT curve can be generated by using a method such as spline interpolation.
  • the abscissa of the BBT curve is time, the unit is day, and the ordinate is temperature, and the unit is °C.
  • the abnormal temperature value lower than the body temperature is removed by extracting the upper envelope curve to ensure the data basis on which the subsequent user physiological cycle feature analysis is based. The cleanliness of the data.
  • the temperature display device of one or more embodiments of the present application will be described in detail below.
  • FIG. 17 is a schematic structural diagram of a temperature display device according to an embodiment of the present invention. As shown in FIG. 17 , the device includes: a positioning module 11 and a first display module 12 .
  • the positioning module 11 is configured to locate a plurality of body temperature points in the body temperature coordinate system in response to the selection of the plurality of body temperature time granularity display items, wherein the body temperature coordinate system corresponds to the selected body temperature time granularity display item.
  • the first display module 12 is configured to display an actual body temperature curve in the body temperature coordinate system to associate the plurality of body temperature points.
  • the apparatus shown in FIG. 17 can perform the method of the embodiment shown in FIG. 2.
  • FIG. 18 is a schematic structural diagram of a temperature display device according to another embodiment of the present invention. As shown in FIG. 18, the device further includes an ejecting module 21 and a second display module 22, based on the embodiment shown in FIG.
  • the pop-up module 21 is configured to pop up the plurality of body temperature time granularity display items for selection in response to triggering the body temperature display entry control.
  • the second display module 22 is configured to display prompt information corresponding to the actual body temperature curve.
  • the prompt information includes at least one of a curve feature corresponding to the actual body temperature curve, a cause of the curve feature, and early warning information.
  • the first display module 12 includes: a first display unit 121 and a second display unit 122.
  • the first display unit 121 is configured to display the first portion of the actual body temperature curve in the visible area of the interface.
  • the second display unit 122 is configured to display a second portion of the actual body temperature curve in the visible area in response to a user-triggered sliding operation.
  • the first display module 12 is further configured to: display a reference body temperature curve in association with the actual body temperature curve.
  • the apparatus shown in FIG. 18 can perform the method of the embodiment shown in FIG. 5.
  • the apparatus shown in FIG. 18 can perform the method of the embodiment shown in FIG. 5.
  • the parts not described in detail in this embodiment reference may be made to the related description of the embodiment shown in FIG.
  • the implementation process and technical effects of the technical solution refer to the description in the embodiment shown in FIG. 5, and details are not described herein again.
  • FIG. 19 is a schematic structural diagram of a temperature display device according to another embodiment of the present invention. As shown in FIG. 19, on the basis of the embodiment shown in FIG. 17, the device further includes: an obtaining module 31 and a determining module 32.
  • the obtaining module 31 is configured to obtain a temperature value corresponding to the N days of the user's representation of the body temperature time granularity display item, wherein the temperature value is continuously measured by a contact measurement method, and the temperature value is measured from the user.
  • N is greater than or equal to the preset number of physiological cycles.
  • the determining module 32 is configured to determine, according to the temperature values corresponding to the N days, the basal body temperature values corresponding to the N days, and the basal body temperature values corresponding to the N days are used as the plurality of body temperature points.
  • the apparatus shown in FIG. 19 can perform the method of the embodiment shown in FIG. 15.
  • the apparatus shown in FIG. 19 can perform the method of the embodiment shown in FIG. 15.
  • the parts not described in detail in this embodiment reference may be made to the related description of the embodiment shown in FIG.
  • the implementation process and technical effects of the technical solution refer to the description in the embodiment shown in FIG. 15, and details are not described herein again.
  • FIG. 20 is a schematic structural diagram of a temperature display device according to another embodiment of the present invention.
  • the determining module 32 includes: a canceling unit 321, and a determining unit 322.
  • the eliminating unit 321 is configured to eliminate an abnormal temperature value in a temperature value corresponding to each of the N days.
  • a determining unit 322 configured to determine, according to the temperature value after the abnormal temperature value corresponding to the N days, The basal body temperature values corresponding to the respective N days are determined.
  • the eliminating unit 321 is specifically configured to:
  • the average temperature values of the respective time windows corresponding to the N days are determined.
  • the determining unit 322 is specifically configured to:
  • the basal body temperature values corresponding to the N days are determined according to the minimum value corresponding to the envelope curve on the body temperature.
  • the apparatus shown in FIG. 20 can perform the method of the embodiment shown in FIG. 16.
  • the apparatus shown in FIG. 20 can perform the method of the embodiment shown in FIG. 16.
  • the parts not described in detail in this embodiment reference may be made to the related description of the embodiment shown in FIG.
  • the implementation process and technical effects of the technical solution refer to the description in the embodiment shown in FIG. 16, and details are not described herein again.
  • the device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, ie may be located A place, or it can be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the embodiment. Those of ordinary skill in the art can understand and implement without deliberate labor.
  • the structure of the temperature display device can be implemented as an electronic device, which is called a temperature display device.
  • the processor 41 can be included. , memory 42 and communication interface 43.
  • the memory 42 is configured to store a computer program
  • the communication interface 43 is configured to effect communication between the electronic device and other devices
  • the processor 41 coupled to the memory 42 and the communication interface 43, is Configured to execute the computer program for:
  • An actual body temperature curve is displayed in the body temperature coordinate system to correlate the plurality of body temperature points.
  • the processor 41 is further configured to perform all or part of the foregoing method steps.
  • memory 42 may also be configured to store other various data to support operation on the electronic device. Examples of such data include instructions for any application or method operating on an electronic device, contact data, phone book data, messages, pictures, videos, and the like.
  • Memory 42 can be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), erasable. Programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Magnetic Memory, Flash Memory, Disk or Optical Disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM Electrically erasable programmable read only memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Disk Disk or Optical Disk.
  • the communication interface 43 is configured to implement communication between the electronic device and other devices, such as wired or wireless communication.
  • the electronic device can access a wireless network based on a communication standard such as WiFi, 2G or 3G, or a combination thereof.
  • the communication interface 43 receives a broadcast signal or broadcast associated information from an external broadcast management system via a broadcast channel.
  • communication interface 43 also includes a near field communication (NFC) module to facilitate short range communication.
  • NFC near field communication
  • the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.
  • RFID radio frequency identification
  • IrDA infrared data association
  • UWB ultra-wideband
  • Bluetooth Bluetooth
  • the electronic device further includes: a display 44, a power supply component 45, an audio component 46, and the like.
  • the partial components are only schematically shown in Fig. 21, and it is not meant that the electronic device includes only the components shown in Fig. 21.
  • Display 44 includes a screen whose screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen can be implemented as a touch screen to receive input signals from the user.
  • the touch panel includes one or more touch sensors to sense touches, slides, and gestures on the touch panel. The touch sensor may sense not only the boundary of the touch or sliding action, but also the duration and pressure associated with the touch or slide operation.
  • a power supply assembly 45 provides power to various components of the electronic device.
  • the power component 45 can include a power management system, one or more power supplies, and others to generate, manage, and distribute power for the client device. Force-associated components.
  • the audio component 46 is configured to output and/or input an audio signal.
  • audio component 46 includes a microphone (MIC) that is configured to receive an external audio signal when the electronic device is in an operational mode, such as a call mode, a recording mode, and a voice recognition mode.
  • the received audio signal may be further stored in memory 42 or transmitted via communication interface 43.
  • audio component 46 also includes a speaker for outputting an audio signal.
  • the embodiment of the present application provides a computer storage medium for storing computer software instructions for a temperature display device, which includes a program for executing the temperature display method in the foregoing method embodiments, and includes the following program instructions. :
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable display device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device, the instruction device A function that is specified in one or more blocks of a flow or a flow and/or a block diagram of a flowchart.

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Abstract

一种温度展示方法和装置,在客户端中设置多个体温时间粒度展示项,以供用户根据实际需求来选择观察体温变化的时间粒度。该方法包括:响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,体温坐标系与选择的体温时间粒度展示项对应(201);在体温坐标系中展示实际体温曲线,以关联多个体温点(202),从而方便、快捷地形成在用户选择的时间粒度下体温的变化曲线,满足用户对不同时间粒度下体温变化情况的观察与分析。

Description

温度展示方法和装置 技术领域
本申请涉及展示技术领域,尤其涉及一种温度展示方法和装置。
背景技术
人体的长时间的体温变化特征往往可以一定程度上作为很多疾病的辅助判定依据,因此,对人体的体温监测具有重要意义。
而现有技术中,对体温进行监测和体温变化特征分析的主要手段还是依靠人工的手段。举例来说,比如想要观察连续一段时间内的基础体温(Basal Boby Temperature,简称BBT)的变化情况时,需要每天采用电子体温计或者水银体温计进行BBT的测量,并将测得的每天的BBT记录在表格上,基于表格中记录的数据进行BBT变化的分析。
这种通过人工记录一段时间内的体温进行体温变化情况观察的方式,操作不便。
发明内容
有鉴于此,本申请实施例提供一种温度展示方法和装置,用以实现对用户一段时间内的体温变化情况的快捷展示。
第一方面,本申请实施例提供一种温度展示方法,包括:
响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
可选地,所述多个体温展示控件的选择步骤包括:
响应于对体温展示入口控件的触发,弹出所述多个体温时间粒度展示项以供选择。
可选地,所述实际体温曲线的展示步骤,包括:
在界面的可视区域内,展示所述实际体温曲线的第一部分;
响应于用户触发的滑动操作,在所述可视区域内,展示所述实际体温曲线的第二部分。
可选地,所述方法还包括:
与所述实际体温曲线关联地展示参考体温曲线。
可选地,所述参考体温曲线的展示步骤包括:
以所述参考体温曲线作为背景,对比展示所述实际体温曲线和所述参考体温曲线。
可选地,所述方法还包括:
展示与所述实际体温曲线对应的提示信息。
其中,该提示信息可以包括实际体温曲线对应的曲线特征、导致该曲线特征的原因,以及预警信息中的至少一个。
另外,基于传统的体温计对用户BBT进行测量的方式,只能实现单个时间点的体温测量,难以准确测量到人体每天的BBT。
具体地,每天的BBT的测量难点在于及时准确地捕捉到一昼夜的最低体温点。目前的BBT监测,一般是用户醒来后,即在清醒状态下测量体温作为近似最低体温点。
清晨醒来时候,人的代谢比较低,但是不是最低的。人在睡眠状态特别是深度睡眠时候的代谢水平最低,那时候得到的最低体温值才是BBT。传统测量方法无法捕捉到严格意义的最低体温值。基于此,在进行一段时间内的BBT测量与变化情况观察的应用场景中:
可选地,所述在体温坐标系中定位多个体温点之前,还包括:
获取用户在所述体温时间粒度展示项表征的N天各自对应的温度值,所述温度值是通过接触式测量方式连续测量获得的,所述温度值测量自所述用户处于睡眠阶段,N大于预设生理周期天数;
根据所述N天各自对应的温度值,确定所述N天各自对应的基础体温值, 所述N天各自对应的基础体温值作为所述多个体温点。
可选地,所述N天各自对应的基础体温值的确定步骤包括:
消除所述N天各自对应的温度值中的异常温度值;
根据所述N天各自对应的消除异常温度值后的温度值,确定所述N天各自对应的基础体温值。
可选地,所述异常温度值的消除步骤包括:
根据预设的时间窗口,对所述N天各自对应的温度值进行划分;
确定所述N天各自对应的各时间窗口的平均温度值。
可选地,所述N天各自对应的基础体温值的确定步骤包括:
在所述N天各自对应的所述平均温度值中,分别确定连续预设数量的所述平均温度值中的最大值;
根据所述最大值,生成所述N天各自对应的体温上包络曲线;
根据所述体温上包络曲线对应的最小值,确定所述N天各自对应的基础体温值。
第二方面,本申请实施例提供一种温度展示装置,包括:
定位模块,用于响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
第一展示模块,用于在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
在一个可能的设计中,上述温度展示装置的结构中包括处理器和存储器,所述存储器用于存储支持温度展示装置执行上述第一方面中温度展示方法的程序,所述处理器被配置为用于执行所述存储器中存储的程序。所述温度展示装置还可以包括通信接口,用于温度展示装置与其他设备或通信网络通信。
第三方面,本申请实施例提供了一种计算机存储介质,用于储存温度展示装置所用的计算机软件指令,其包含用于执行上述第一方面中温度展示方法所涉及的程序。
本申请实施例提供的温度展示方法和装置,在客户端中设置多个体温时 间粒度展示项,以供用户根据实际需求来选择观察体温变化的时间粒度。当用户从多个体温时间粒度展示项中选择了某个体温时间粒度展示项后,在界面中展示与选择的体温时间粒度展示项对应的体温坐标系,该体温坐标系中定位有多个体温点,并且在该体温坐标系中展示实际体温曲线,以关联该多个体温点,从而方便、快捷地形成在用户选择的时间粒度下体温的变化曲线,满足用户对不同时间粒度下体温变化情况的观察与分析。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的温度展示系统的结构示意图;
图2为本申请一实施例提供的温度展示方法的流程图;
图3为图2所示实施例中一种可选的体温时间粒度展示项的示意图;
图4为本申请实施例提供的一种体温曲线的示意图;
图5为本申请另一实施例提供的温度展示方法的流程图;
图6为图5所示实施例中一种可选的体温时间粒度展示项的展示过程示意图;
图7-图12为本申请实施例提供的几种反映女性生理周期特征的体温曲线的示意图;
图13为本申请实施例提供的与女性孕后某月份对应的体温曲线的示意图;
图14为实际体温曲线与参考体温曲线的对比展示示意图;
图15为本申请又一实施例提供的温度展示方法的流程图;
图16为图15所示实施例中步骤1502的一种可选实现方式的流程图;
图17为本申请一实施例提供的温度展示装置的结构示意图;
图18为本申请另一实施例提供的温度展示装置的结构示意图;
图19为本申请又一实施例提供的温度展示装置的结构示意图;
图20为本申请再一实施例提供的温度展示装置的结构示意图;
图21为本申请一实施例提供的温度展示设备的结构示意图。
具体实施方式
为使本申请实施例的目的、技术方案和优点更加清楚,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在本申请实施例中使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本申请。在本申请实施例和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义,“多种”一般包含至少两种,但是不排除包含至少一种的情况。
应当理解,本文中使用的术语“和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
应当理解,尽管在本申请实施例中可能采用术语第一、第二、第三等来描述XXX,但这些XXX不应限于这些术语。这些术语仅用来将XXX彼此区分开。例如,在不脱离本申请实施例范围的情况下,第一XXX也可以被称为第二XXX,类似地,第二XXX也可以被称为第一XXX。
取决于语境,如在此所使用的词语“如果”、“若”可以被解释成为“在……时”或“当……时”或“响应于确定”或“响应于检测”。类似地,取决于语境,短语“如果确定”或“如果检测(陈述的条件或事件)”可以被解释成为 “当确定时”或“响应于确定”或“当检测(陈述的条件或事件)时”或“响应于检测(陈述的条件或事件)”。
还需要说明的是,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的商品或者系统不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种商品或者系统所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的商品或者系统中还存在另外的相同要素。
本申请实施例提供的温度展示方法可基于图1所示的温度展示系统实现,但不限于此。如图1所示,该温度展示系统包括:温度采集设备10和温度展示设备20,且温度采集设备10和温度展示设备20通信连接。
本申请实施例中,温度采集设备10比如可以是用于测量用户被测区域表面的温度的,该被测区域可以根据被测得温度值的用途而有所区别,不具体限定。
本申请实施例中,在一种实际应用场景中,测量温度值的目的在于,通过获得用户N天的BBT,以便于基于该N天的BBT,结合实际应用场景,确定用户的病变特征,因此,准确的BBT是重要前提与保证。为了保证每天的BBT测量结果的准确性或者说为了能够获得更加准确的BBT,本申请实施例中,对于用户每天的体温的测量采用的是接触式的连续测量方式。简单来说,就是温度采集设备10以能够贴合用户体表的材料为依托,在该材料贴近皮肤的一侧分布温度传感器以测量体温;从时间上,以长时间连续测量的方式测量用户的体温。
另外,人在睡眠状态尤其是深度睡眠状态时,人体的基础代谢最低,因此人一昼夜的最低体温一般出现在睡眠状态尤其是深度睡眠状态。因此本申请实施例中,对用户每天的体温连续测量的时间可以控制在用户的夜晚睡眠时间。此时,通过设置温度采集设备10以较小的间隔比如5秒钟连续对用户体温进行测量,以获得用户在每天晚间的大量温度数据。另外,可以设置温度 采集设备10每晚的工作时长,比如一小时,达到工作时长时自动控制停止温度测量。
本申请实施例提供的温度展示方法包括但不限于上述举例的BBT的测量与展示的应用场景,比如还可以适用于孕妇产前、产后体温监测的应用场景中,比如还可以适用于小儿惊厥的体温监测的应用场景中,等等。
本申请实施例中的温度展示设备20可以是服务器、计算机、平板电脑、智能终端等任何具有数据存储、数据处理和展示功能的设备。
其中,温度采集设备10与温度展示设备20之间可以是无线或有线网络连接。在本实施例中,若温度采集设备10通过移动网络与温度展示设备20通信连接,该移动网络的网络制式可以为2G(GSM)、2.5G(GPRS)、3G(WCDMA、TD-SCDMA、CDMA2000、UTMS)、4G(LTE)、4G+(LTE+)、WiMax等中的任意一种。除此之外,温度采集设备10还可以通过蓝牙、Wi-Fi、红外等无线通信方式与温度展示设备20通信连接。
结合图1所示的温度展示系统,以下实施例从温度展示设备20的角度,详细说明本申请实施例提供的温度展示方法的流程。
图2为本申请一实施例提供的温度展示方法的流程图,如图2所示,该方法包括如下步骤:
步骤201、响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,体温坐标系与选择的体温时间粒度展示项对应。
步骤202、在体温坐标系中展示实际体温曲线,以关联多个体温点。
实际应用中,针对不同使用需求,用户往往可能会有进行不同时间粒度的体温测量,以便观察在相应时间粒度下的体温变化情况。比如,在需要统计女性生理周期特征的需求下,往往需要进行以月为时间粒度的体温测量。再比如,在需要观察孕妇产前、产后体温变化的需求下,需要进行以日为时间粒度的体温测量。
因此,为了满足用户对不同时间粒度下体温变化情况的观察需求,可以在客户端界面中设置多个体温时间粒度展示项供用户选择。如图3所示,图3 示意出可以设置日表、月表、年表三种体温时间粒度展示项,分别以图3中示意的“日”、“月”、“年”表示。但是,实际上还可以包括比如周表、季度表等体温时间粒度展示项。
当用户选择了某个体温时间粒度展示项后,可以在客户端界面中显示出于选择的体温时间粒度展示项对应的体温坐标系,该体温坐标系的横轴可以表示时间,纵轴可以表示温度。其中,不同体温时间粒度展示项对应的体温坐标系的时间单位和时长范围可以是不同的。比如,与日对应的体温时间粒度展示项的体温坐标系的时间单位可以是小时,时长范围可以是0-24点。再比如,与月对应的体温时间粒度展示项的体温坐标系的时间单位可以是日,时长范围可以是某月份的第一天到最后一天。如图4所示,图4中示意的是与日对应的体温时间粒度展示项的体温坐标系。
为了展示出体温曲线,首先需要获取需要展示的多个体温点,将该多个体温点定位到体温坐标系中,进而绘制并展示实际体温曲线,以关联该多个体温点,如图4所示。
具体来说,在体温坐标系中定位多个体温点是指,根据每个体温点对应的采集时刻和温度值,在体温坐标系中打点。值得说明的是,以图4所示的体温坐标系为例,虽然该体温坐标系中的时间单位为小时,但是并不意味着体温点的采样间隔一定是一个小时,比如,实际应用中,可以控制体温采集设备以10分钟为采样间隔进行体温的采集。另外,在不同的应用场景下,在体温坐标系中定位的多个体温点可能并非是在体温坐标系对应的时长范围内采集到的全部体温值。比如,当需要展示的实际体温曲线为BBT曲线时,为了获得每天的准确的BBT,往往需要在一天内的一段时间中进行若干体温值的采集,从采集到的若干体温值中确定最低体温值作为该天对应的BBT,此时,体温坐标系中定位的体温点是多天中的每天的BBT,而非是多天内采集到的全部体温值。
在进行多个体温点的定位后,可以绘制一条平滑的曲线,以关联多个体温点,从而形成实际体温曲线。具体地,比如可以采用样条插值的方式,生 成并展示关联了多个体温点的实际体温曲线。
本实施例中,在客户端中设置多个体温时间粒度展示项,以供用户根据实际需求来选择观察体温变化的时间粒度。当用户从多个体温时间粒度展示项中选择了某个体温时间粒度展示项后,在界面中展示与选择的体温时间粒度展示项对应的体温坐标系,该体温坐标系中定位有多个体温点,并且在该体温坐标系中展示实际体温曲线,以关联该多个体温点,从而方便、快捷地形成在用户选择的时间粒度下体温的变化曲线,满足用户对不同时间粒度下体温变化情况的观察与分析。
图5为本申请另一实施例提供的温度展示方法的流程图,如图5所示,该方法包括如下步骤:
步骤501、响应于对体温展示入口控件的触发,弹出多个体温时间粒度展示项以供选择。
步骤502、响应于对多个体温时间粒度展示项的选择,在与选择的体温时间粒度展示项对应的体温坐标系中定位多个体温点。
步骤503、在体温坐标系中展示实际体温曲线,以关联多个体温点。
步骤504、与实际体温曲线关联地展示参考体温曲线。
步骤505、展示与实际体温曲线对应的提示信息。
如图6所示,在客户端界面上可以设置一体温展示入口控件,当用户点击该控件后,会弹出如图6所示的包含多个体温时间粒度展示项在内的窗口,以供用户从中选择需要的体温时间粒度展示项。
可以理解的是,不同的体温时间粒度展示项对应的体温点的获取时间范围不同,而获取时间范围的起点,可选地,可以以当天时间为最后一天进行计时结束点。举例来说,假设用户选择的体温时间粒度展示项为图6中的月表,则可以以当天作为计时结束日,向前追溯一个月的时间,此时,一个月的时间可以固定设置为比如30天。当然,也可以设置月表仅在每个月的最后一天生效,即可以被选择,此时,可以以当月作为体温点的获取时间范围,意味 着需要获得当月采集到的体温数据,以得到需要定位的多个体温点。再比如,假设用户选择的体温时间粒度展示项为图6中的日表,则可以即以当天作为体温点的获取时间范围,此时,可以每隔一定时间间隔获取此时间间隔内采集到的体温数据,进行实际体温曲线的刷新展示。
在进行实际体温曲线的展示过程中,受限于界面中可视区域的尺寸以及屏幕的横屏、竖屏位置状态,比如在竖屏位置状态下,往往可能在一屏内不能完整地展示出实际体温曲线,因此,对于实际体温曲线的展示可以是:
在界面的可视区域内,展示实际体温曲线的第一部分;
响应于用户触发的滑动操作,在可视区域内,展示实际体温曲线的第二部分。
当然,如果在横屏位置状态下,能够一屏显示完整的实际体温曲线,则一屏显示即可,如果不能,则也可以根据上述展示方式进行展示。
如图7-图12所示,图中以竖直线为界示意了实际体温曲线的第一部分和第二部分,初始时,展示第一部分,响应于用户的滑动操作,继而将第二部分左移入可视区域进行展示。上述第一部分和第二部分仅是为了说明实际体温曲线可以被滑动展示,并非对是实际体温曲线被划分为几个部分进行展示的严格限定,因此,上述第一部分和第二部分可以是部分相同的,产生左端部分曲线移出可视区域,同时有新的部分曲线移入可视区域的效果。
图7-图12示意的是几种反映女性生理周期特征的实际体温曲线,此时,图中体温曲线是反映BBT的变化情况的,也就是说,此时的多个体温点是图中示意的每天各自对应的BBT。
由于个体差异以及个体可能存在的病变,导致每个人对应的BBT曲线反映出的特征各不相同。通过统计分析得到,图7-图12能够反映大部分女性的生理周期特征,具体表现为,如果某个用户对应的实际体温曲线为图7所示的曲线,说明该用户具有正常的双相BBT特征;如果某个用户对应的实际体温曲线为图8所示的曲线,说明该用户的低温相转变高温相的时间长,具有BBT上升缓慢的特征;如果某个用户对应的实际体温曲线为图9所示的曲线,说明该用 户的高温相体温升高幅度不足,具有BBT上升幅度不足的特征;如果某个用户对应的实际体温曲线为图10所示的曲线,说明该用户的高温相时间短,具有BBT平台期持续时间不足的特征;如果某个用户对应的实际体温曲线为图11所示的曲线,说明该用户的高温相时间短,且高温相转变低温相时间长,具有BBT下降缓慢的特征;如果某个用户对应的实际体温曲线为图12所示的曲线,说明该用户的高温相时间过长,具有BBT平台期持续时间过长的特征。
除了可以利用体温曲线观察女性的生理周期特征外,还可以利用体温曲线观察女性怀孕后的某一个或某几个月的体温变化情况,以便及时发现异常情况进行及时治疗。比如图13所示的体温曲线中,示意的是孕妇孕后某月的体温曲线,由于怀孕后的前几个月发生流产的可能性高,因此,通过对前几个月的体温进行监测,可以及时发现体温突降现象,体温突降可能预示着有先兆流产的可能性。如图13所示,通过对用户的实际体温曲线的展示,可以及时发现体温突降的现象。图13中还示意出可以展示诸如先兆流产体温预警等提示信息。
另外,可选地,对于用户来说,用户可能缺乏相关专业知识的积累,只向用户展示他自身的实际体温曲线,往往不能使得用户更为直观地获知该实际体温曲线所反映出的特征信息。因此,为了提高用户使用体验,在进行实际体温曲线的展示的同时,还可以展示与该实际体温曲线对应的提示信息,比如图7-图13中示意的反映出的生理周期特征信息、导致出现该生理周期特征的原因、先兆流产提示及预警信息等。
综上,该提示信息可以包括实际体温曲线对应的曲线特征、导致该曲线特征的原因,以及预警信息中的至少一个。
其中,曲线特征比如包括图中示意的:具有正常的双相BBT特征、具有BBT上升缓慢的特征、具有BBT上升幅度不足的特征、具有BBT平台期持续时间不足的特征、具有BBT下降缓慢的特征、具有BBT平台期持续时间过长的特征。导致该曲线特征的原因比如包括:黄体发育不良、黄体期缩短,子宫内膜分泌反应不足而致孕卵不易着床;内分泌调节功能紊乱,卵泡发育缓慢,排卵 后黄体发育不全,导致BBT上升幅度偏低;孕酮浓度对早期妊娠的支持十分重要。黄体发育不全导致黄体期缩短、孕酮浓度低下,是流产的主要内分泌因素。黄体萎缩不全,内膜持续受孕激素影响,经期延长,导致受孕时机少、受孕率低。预警信息比如包括图中示意的:排卵发生在最低体温日前的仅占5%;排卵一般发生在最低体温后基础体温上升期;排卵时间预测结果的箭头指示;BBT最低点的指示;最佳受孕日的指示;BBT维持在升高0.3-0.6度状态达16天以上,提示您可能怀孕了,若超过20天则怀孕的可能在98%以上;受孕后的前三个月是易流产期;先兆流产体温预警;及时治疗后的体温恢复;最佳治疗窗口期。
值得说明的是,上述提示信息可以在对应的实际体温曲线的展示界面中的相应位置直接展示,也可以在该实际体温曲线的关联的界面中设置提示按钮,响应于用户对该按钮的触发而展示相关的提示信息,或者,响应于用户对该按钮的触发而生成体温报告,该体温报告包括一些上述的相关的提示信息,例如基础体温的平台期的体温数值,上升期、下降期的持续时间等;还可以独立于实际体温曲线的展示界面,而在另外的展示界面中针对该实际体温曲线进行相关提示信息的展示。
另外,可选地,为了便于用户能够直观地了解自己的实际体温曲线与正常的参考体温曲线的差异程度,在进行实际体温曲线的展示的同时,还可以展示参考体温曲线。在不同应用场景中该参考体温曲线是不同的,比如,在图7-图12所示意的生理周期特征的观察的应用场景中,该参考体温曲线可以是预先生成的具有正常双相特征的体温曲线;在图13所示意的孕后几个月的体温观察的应用场景中,该参考体温曲线可以是反映孕后正常体温变化特征的体温曲线。实际应用中,参考体温曲线可以由同一用户在正常身体状态下的测得体温数据生成,或者,可以通过对大量身体状态正常用户在相同时间范围内测得的体温数据分别生成各自对应的体温曲线,对获得的各体温曲线进行统计分析得到,比如,对各体温曲线对应于同一时间坐标的各温度值进行平均处理得到该时间坐标的平均温度值,由各时间坐标分别对应的平均温 度值得到参考体温曲线。如图14所示,参考体温曲线的展示,具体可以是:以参考体温曲线作为背景,对比展示实际体温曲线和参考体温曲线。图14中示意的是图8所示的实际体温曲线与参考体温曲线的对比展示效果。
前述实施例中提到,在体温坐标系中定位的多个体温点可能并非是在相应的时长范围内采集到的全部温度值,此时,往往涉及到对采集到的温度值进行一定的数据处理,才能获得该多个体温点。下面结合需要展示N天的BBT曲线的应用场景,对如何获得该多个体温点进行说明。
图15为本申请又一实施例提供的温度展示方法的流程图,如图15所示,该方法包括如下步骤:
步骤1501、响应于对多个体温时间粒度展示项的选择,获取用户在选择的体温时间粒度展示项表征的N天各自对应的温度值。
其中,该N天各自对应的温度值是通过接触式测量方式连续测量获得的,温度值测量自用户处于睡眠阶段,N大于预设生理周期天数。
假设用户选择的体温时间粒度展示项是图6所示意的月表。可选地,该月表的含义既可以是一个自然月也可以是时间跨度为预设的一个月时长。本实施例中采用的是后一种月表含义,此时,一个月的时长对应于上述的N天,由于个体差异,生理周期天数在28-35天左右的范围不等,因此,该一个月的时长设定往往设为大于或等于35的某个数值。
因此,可选地,当用户在当前某天触发了体温曲线展示的需求时,需要获取此前N天测得的温度值。
本实施例中,上述N天各自对应的温度值是通过如上所说的接触式测量方式连续测量获得的、测量自用户处于睡眠阶段的体温值。其中,可以设置温度采集设备10的工作时长和测量间隔,比如工作1小时、测量间隔为5秒钟,则每天可以测得720个温度值。
步骤1502、根据N天各自对应的温度值,确定N天各自对应的基础体温值,N天各自对应的基础体温值作为多个体温点。
仍以前述举例的每天可以测得720个温度值为例来说,理想情况下,假设这720个温度值都是有效的,那么根据BBT的含义,可以确定这720个温度值中的最低温度值即为BBT。
但是,这720个温度值可能并非都是有效数据,比如:由于人在睡眠状态下的无意识活动的不可预知性,对所测得温度值的准确性影响很大,即可能由于人的活动导致测得的某些温度值并非是反映真实人体温度的温度值。因此,往往需要对测得的温度值进行数据清洗等处理,来去除N天各自对应的温度值中的异常温度值,以便根据N天各自对应的消除异常温度值后的温度值,确定N天各自对应的基础体温值。
步骤1503、在与选择的体温时间粒度展示项对应的体温坐标系中定位多个体温点。
步骤1504、在体温坐标系中展示实际体温曲线,以关联多个体温点。
本实施例中,通过接触式测量方式连续测量用户N天各自对应的多个温度值,且该连续测量是在用户处于睡眠阶段时进行的,人在睡眠状态下的代谢水平最低,基于N天在此阶段对用户测得的多个体温能够准确获得N天的基础低温值。进而,根据这N个基础体温值可以生成并向用户展示基础体温曲线,使得该基础体温曲线能够准确反映出N天内用户的基础体温的变化情况。
下面结合图16所示实施例介绍本申请实施例提供的一种去除异常温度值以及确定N个基础体温值的方法。
图16为图15所示实施例中步骤1502的一种可选实现方式的流程图,如图16所示,可以包括以下步骤:
步骤1601、根据预设的时间窗口,对N天各自对应的温度值进行划分,确定N天各自对应的各时间窗口的平均温度值。
步骤1602、在N天各自对应的平均温度值中,分别确定连续预设数量的平均温度值中的最大值。
步骤1603、根据N天各自对应的预设数量最大值,生成N天各自对应的体温上包络曲线。
步骤1604、根据体温上包络曲线对应的最小值,确定N天各自对应的基础体温值。
由于人在睡眠状态下的无意识活动的不可预知性,对测得的温度值的准确性影响很大。比如,在N天各自对应的温度值中,可能有些温度值低于体温,其原因是用户的动作影响了温度值。由于体温一般高于环境温度,体温的测量值只会偏低,不会偏高。因此,本实施例中,从大量测得的温度值中去除异常温度值,给出反映真实体温波动情况的方法是提取测得温度值对应的上包络线。
具体地,首先,可以根据预设的时间窗口,对N天各自对应的温度值进行划分,并确定N天各自对应的各时间窗口的平均温度值。针对N天中任一天的多个温度值来说,假设以每隔5秒钟测得一个温度值,设定该时间窗口比如为1分钟,则每个时间窗口对应于连续的12个温度值,假设该任一天总共测得了720个温度值,则总共对应于60个时间窗口。针对每个时间窗口对应的12个温度值,计算这12个温度值的平均温度值,从而可以获得60个平均温度值。
进而,在N天各自对应的平均温度值中,分别确定连续预设数量的平均温度值中的最大值。相当于是基于该连续预设数量,对前述获得的60个平均温度值进行了分组划分,比如该连续预设数量为10,则将60个平均温度值分成了6组,每组中包含连续的10个平均温度值。其中,该连续预设数量相当于是设定了另一个较大的时间窗口,比如连续预设数量为10,则相当于设定了10分钟的时间窗口。
之后,针对每个分组,选取其中包含的多个平均温度值中的最大值作为一个包络温度点。在上述举例中,6个分组分别对应有一个包络温度点。基于获得的包络温度点,采用比如样条插值的方法生成包络曲线。由于该包络曲线是基于多个最大平均温度值生成的,因此可以称为上包络曲线。在生成该上包络曲线的时候,会得到该曲线的解析方程,通过求解该解析方程,可以得到该上包络曲线对应的最小值点,该最小值点所对应的温度值,即为当前 的任一天所对应的BBT。
针对N天中的每天,通过上述过程都可以得到一个BBT,从而,最终能够获得N个BBT。基于这N个BBT,采用比如样条插值的方法可以生成BBT曲线,该BBT曲线的横坐标为时间,单位为天,纵坐标为温度,单位为℃。
本实施例中,针对测得的N天各自对应的对个温度值,通过提取上包络曲线的方式去除其中低于体温的异常温度值,以保证后续用户生理周期特征分析所基于的数据基础的数据清洁度。
以下将详细描述本申请的一个或多个实施例的温度展示装置。
图17为本申请一实施例提供的温度展示装置的结构示意图,如图17所示,该装置包括:定位模块11、第一展示模块12。
定位模块11,用于响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应。
第一展示模块12,用于在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
图17所示装置可以执行图2所示实施例的方法,本实施例未详细描述的部分,可参考对图2所示实施例的相关说明。该技术方案的执行过程和技术效果参见图2所示实施例中的描述,在此不再赘述。
图18为本申请另一实施例提供的温度展示装置的结构示意图,如图18所示,在图17所示实施例基础上,该装置还包括:弹出模块21、第二展示模块22。
弹出模块21,用于响应于对体温展示入口控件的触发,弹出所述多个体温时间粒度展示项以供选择。
第二展示模块22,用于展示与所述实际体温曲线对应的提示信息。其中,所述提示信息包括所述实际体温曲线对应的曲线特征、导致所述曲线特征的原因,以及预警信息中的至少一个。
可选地,所述第一展示模块12包括:第一展示单元121、第二展示单元122。
第一展示单元121,用于在界面的可视区域内,展示所述实际体温曲线的第一部分。
第二展示单元122,用于响应于用户触发的滑动操作,在所述可视区域内,展示所述实际体温曲线的第二部分。
可选地,所述第一展示模块12还用于:与所述实际体温曲线关联地展示参考体温曲线。
图18所示装置可以执行图5所示实施例的方法,本实施例未详细描述的部分,可参考对图5所示实施例的相关说明。该技术方案的执行过程和技术效果参见图5所示实施例中的描述,在此不再赘述。
图19为本申请又一实施例提供的温度展示装置的结构示意图,如图19所示,在图17所示实施例基础上,该装置还包括:获取模块31、确定模块32。
获取模块31,用于获取用户在所述体温时间粒度展示项表征的N天各自对应的温度值,所述温度值是通过接触式测量方式连续测量获得的,所述温度值测量自所述用户处于睡眠阶段,N大于或等于预设生理周期天数。
确定模块32,用于根据所述N天各自对应的温度值,确定所述N天各自对应的基础体温值,所述N天各自对应的基础体温值作为所述多个体温点。
图19所示装置可以执行图15所示实施例的方法,本实施例未详细描述的部分,可参考对图15所示实施例的相关说明。该技术方案的执行过程和技术效果参见图15所示实施例中的描述,在此不再赘述。
图20为本申请再一实施例提供的温度展示装置的结构示意图,如图20所示,在图19所示实施例基础上,所述确定模块32包括:消除单元321、确定单元322。
消除单元321,用于消除所述N天各自对应的温度值中的异常温度值。
确定单元322,用于根据所述N天各自对应的消除异常温度值后的温度值, 确定所述N天各自对应的基础体温值。
可选地,所述消除单元321具体用于:
根据预设的时间窗口,对所述N天各自对应的温度值进行划分;
确定所述N天各自对应的各时间窗口的平均温度值。
可选地,所述确定单元322具体用于:
在所述N天各自对应的所述平均温度值中,分别确定连续预设数量的所述平均温度值中的最大值;
根据所述最大值,生成所述N天各自对应的体温上包络曲线;
根据所述体温上包络曲线对应的最小值,确定所述N天各自对应的基础体温值。
图20所示装置可以执行图16所示实施例的方法,本实施例未详细描述的部分,可参考对图16所示实施例的相关说明。该技术方案的执行过程和技术效果参见图16所示实施例中的描述,在此不再赘述。
以上所描述的装置实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性的劳动的情况下,即可以理解并实施。
以上描述了温度展示装置的内部功能和结构,在一个可能的设计中,该温度展示装置的结构可实现为一电子设备,称为温度展示设备,如图21所示,可以包括:处理器41、存储器42和通信接口43。其中,存储器42,被配置为存储计算机程序;通信接口43,被配置为实现所述电子设备与其它设备之间的通信;处理器41,耦合至所述存储器42和所述通信接口43,被配置为执行所述计算机程序,以用于:
响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
可选地,所述处理器41还用于执行前述各方法步骤中的全部或部分步骤。
另外,存储器42还可被配置为存储其它各种数据以支持在电子设备上的操作。这些数据的示例包括用于在电子设备上操作的任何应用程序或方法的指令,联系人数据,电话簿数据,消息,图片,视频等。
存储器42可以由任何类型的易失性或非易失性存储设备或者它们的组合实现,如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。
通信接口43,被配置为实现电子设备与其它设备之间的通信,例如可以是有线或无线通信方式。
电子设备可以接入基于通信标准的无线网络,如WiFi,2G或3G,或它们的组合。在一个示例性实施例中,通信接口43经由广播信道接收来自外部广播管理系统的广播信号或广播相关信息。在一个示例性实施例中,通信接口43还包括近场通信(NFC)模块,以促进短程通信。例如,在NFC模块可基于射频识别(RFID)技术,红外数据协会(IrDA)技术,超宽带(UWB)技术,蓝牙(BT)技术和其他技术来实现。
进一步,如图21所示,该电子设备还包括:显示器44、电源组件45、音频组件46等其它组件。图21中仅示意性给出部分组件,并不意味着该电子设备只包括图21所示组件。
显示器44包括屏幕,其屏幕可以包括液晶显示器(LCD)和触摸面板(TP)。如果屏幕包括触摸面板,屏幕可以被实现为触摸屏,以接收来自用户的输入信号。触摸面板包括一个或多个触摸传感器以感测触摸、滑动和触摸面板上的手势。所述触摸传感器可以不仅感测触摸或滑动动作的边界,而且还检测与所述触摸或滑动操作相关的持续时间和压力。
电源组件45,为电子设备的各种组件提供电力。电源组件45可以包括电源管理系统,一个或多个电源,及其他与为客户端设备生成、管理和分配电 力相关联的组件。
音频组件46被配置为输出和/或输入音频信号。例如,音频组件46包括一个麦克风(MIC),当电子设备处于操作模式,如呼叫模式、记录模式和语音识别模式时,麦克风被配置为接收外部音频信号。所接收的音频信号可以被进一步存储在存储器42或经由通信接口43发送。在一些实施例中,音频组件46还包括一个扬声器,用于输出音频信号。
另外,本申请实施例提供了一种计算机存储介质,用于储存温度展示装置所用的计算机软件指令,其包含用于执行上述各方法实施例中温度展示方法所涉及的程序,其中包括如下程序指令:
第一程序指令,用于响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
第二程序指令,用于在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
这些计算机程序指令也可存储在能引导计算机或其他可编程展示设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程展示设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到各实施方式可借助加必需的通用硬件平台的方式来实现,当然也可以通过硬件和软件结合的方式来实现。基于这样的理解,上述技术方案本质上或者说对现有技术做出贡献的部分可以以计算机产品的形式体现出来,本申请可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但 不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (31)

  1. 一种温度展示方法,其特征在于,包括:
    响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
    在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
  2. 根据权利要求1所述的方法,其特征在于,所述多个体温时间粒度展示项的选择步骤包括:
    响应于对体温展示入口控件的触发,弹出所述多个体温时间粒度展示项以供选择。
  3. 根据权利要求1所述的方法,其特征在于,所述实际体温曲线的展示步骤,包括:
    在界面的可视区域内,展示所述实际体温曲线的第一部分;
    响应于用户触发的滑动操作,在所述可视区域内,展示所述实际体温曲线的第二部分。
  4. 根据权利要求1所述的方法,其特征在于,所述方法还包括:
    与所述实际体温曲线关联地展示参考体温曲线。
  5. 根据权利要求4所述的方法,其特征在于,所述参考体温曲线的展示步骤包括:
    以所述参考体温曲线作为背景,对比展示所述实际体温曲线和所述参考体温曲线。
  6. 根据权利要求1至5中任一项所述的方法,其特征在于,所述方法还包括:
    展示与所述实际体温曲线对应的提示信息。
  7. 根据权利要求1所述的方法,其特征在于,所述在体温坐标系中定位多个体温点之前,还包括:
    获取用户在所述体温时间粒度展示项表征的N天各自对应的温度值,所述 温度值是通过接触式测量方式连续测量获得的,所述温度值测量自所述用户处于睡眠阶段,N大于预设生理周期天数;
    根据所述N天各自对应的温度值,确定所述N天各自对应的基础体温值,所述N天各自对应的基础体温值作为所述多个体温点。
  8. 根据权利要求7所述的方法,其特征在于,所述N天各自对应的基础体温值的确定步骤包括:
    消除所述N天各自对应的温度值中的异常温度值;
    根据所述N天各自对应的消除异常温度值后的温度值,确定所述N天各自对应的基础体温值。
  9. 根据权利要求8所述的方法,其特征在于,所述异常温度值的消除步骤包括:
    根据预设的时间窗口,对所述N天各自对应的温度值进行划分;
    确定所述N天各自对应的各时间窗口的平均温度值。
  10. 根据权利要求9所述的方法,其特征在于,所述N天各自对应的基础体温值的确定步骤包括:
    在所述N天各自对应的所述平均温度值中,分别确定连续预设数量的所述平均温度值中的最大值;
    根据所述最大值,生成所述N天各自对应的体温上包络曲线;
    根据所述体温上包络曲线对应的最小值,确定所述N天各自对应的基础体温值。
  11. 一种温度展示装置,其特征在于,包括:
    定位模块,用于响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
    第一展示模块,用于在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
  12. 根据权利要求11所述的装置,其特征在于,还包括:
    弹出模块,用于响应于对体温展示入口控件的触发,弹出所述多个体温 时间粒度展示项以供选择。
  13. 根据权利要求11所述的装置,其特征在于,所述第一展示模块包括:
    第一展示单元,用于在界面的可视区域内,展示所述实际体温曲线的第一部分;
    第二展示单元,用于响应于用户触发的滑动操作,在所述可视区域内,展示所述实际体温曲线的第二部分。
  14. 根据权利要求11所述的装置,其特征在于,所述第一展示模块还用于:
    与所述实际体温曲线关联地展示参考体温曲线。
  15. 根据权利要求14所述的装置,其特征在于,所述第一展示模块具体用于:
    以所述参考体温曲线作为背景,对比展示所述实际体温曲线和所述参考体温曲线。
  16. 根据权利要求11至15中任一项所述的装置,其特征在于,还包括:
    第二展示模块,用于展示与所述实际体温曲线对应的提示信息。
  17. 根据权利要求11所述的装置,其特征在于,还包括:
    获取模块,用于获取用户在所述体温时间粒度展示项表征的N天各自对应的温度值,所述温度值是通过接触式测量方式连续测量获得的,所述温度值测量自所述用户处于睡眠阶段,N大于或等于预设生理周期天数;
    确定模块,用于根据所述N天各自对应的温度值,确定所述N天各自对应的基础体温值,所述N天各自对应的基础体温值作为所述多个体温点。
  18. 根据权利要求17所述的装置,其特征在于,所述确定模块包括:
    消除单元,用于消除所述N天各自对应的温度值中的异常温度值;
    确定单元,用于根据所述N天各自对应的消除异常温度值后的温度值,确定所述N天各自对应的基础体温值。
  19. 根据权利要求18所述的装置,其特征在于,所述消除单元具体用于:
    根据预设的时间窗口,对所述N天各自对应的温度值进行划分;
    确定所述N天各自对应的各时间窗口的平均温度值。
  20. 根据权利要求19所述的装置,其特征在于,所述确定单元具体用于:
    在所述N天各自对应的所述平均温度值中,分别确定连续预设数量的所述平均温度值中的最大值;
    根据所述最大值,生成所述N天各自对应的体温上包络曲线;
    根据所述体温上包络曲线对应的最小值,确定所述N天各自对应的基础体温值。
  21. 一种计算机存储介质,其特征在于,所述计算机存储介质存储有以下程序指令:
    第一程序指令,用于响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
    第二程序指令,用于在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
  22. 一种电子设备,其特征在于,包括:
    存储器,被配置为存储计算机程序;
    通信接口,被配置为实现所述电子设备与其它设备之间的通信;
    处理器,耦合至所述存储器和所述通信接口,被配置为执行所述计算机程序,以用于:
    响应于对多个体温时间粒度展示项的选择,在体温坐标系中定位多个体温点,所述体温坐标系与选择的体温时间粒度展示项对应;
    在所述体温坐标系中展示实际体温曲线,以关联所述多个体温点。
  23. 根据权利要求22所述的电子设备,其特征在于,所述处理器还用于:
    响应于对体温展示入口控件的触发,弹出所述多个体温时间粒度展示项以供选择。
  24. 根据权利要求22所述的电子设备,其特征在于,所述处理器在展示所述实际体温曲线时,具体用于:
    在界面的可视区域内,展示所述实际体温曲线的第一部分;
    响应于用户触发的滑动操作,在所述可视区域内,展示所述实际体温曲线的第二部分。
  25. 根据权利要求22所述的电子设备,其特征在于,所述处理器还用于:
    与所述实际体温曲线关联地展示参考体温曲线。
  26. 根据权利要求25所述的电子设备,其特征在于,所述处理器具体用于:
    以所述参考体温曲线作为背景,对比展示所述实际体温曲线和所述参考体温曲线。
  27. 根据权利要求22至26中任一项所述的电子设备,其特征在于,所述处理器还用于:
    展示与所述实际体温曲线对应的提示信息。
  28. 根据权利要求22所述的电子设备,其特征在于,所述处理器在定位所述多个体温点之前,还用于:
    通过所述通信接口,获取用户在所述体温时间粒度展示项表征的N天各自对应的温度值,所述温度值是通过接触式测量方式连续测量获得的,所述温度值测量自所述用户处于睡眠阶段,N大于预设生理周期天数;
    根据所述N天各自对应的温度值,确定所述N天各自对应的基础体温值,所述N天各自对应的基础体温值作为所述多个体温点。
  29. 根据权利要求28所述的电子设备,其特征在于,所述处理器在确定所述N天各自对应的基础体温值时,具体用于:
    消除所述N天各自对应的温度值中的异常温度值;
    根据所述N天各自对应的消除异常温度值后的温度值,确定所述N天各自对应的基础体温值。
  30. 根据权利要求29所述的电子设备,其特征在于,所述处理器在消除所述异常温度值时,具体用于:
    根据预设的时间窗口,对所述N天各自对应的温度值进行划分;
    确定所述N天各自对应的各时间窗口的平均温度值。
  31. 根据权利要求30所述的电子设备,其特征在于,所述处理器在确定所述N天各自对应的基础体温值时,具体用于:
    在所述N天各自对应的所述平均温度值中,分别确定连续预设数量的所述平均温度值中的最大值;
    根据所述最大值,生成所述N天各自对应的体温上包络曲线;
    根据所述体温上包络曲线对应的最小值,确定所述N天各自对应的基础体温值。
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