Information processing method and device, electronic equipment and storage medium
By using information processing methods at the scene of sudden disasters, the injured are quickly evaluated based on the injured person's part injury information and biometric information, and the problem of low efficiency in classification of wounded injuries in the existing technology is solved, and the accuracy and effectiveness of the injured person's rating results are achieved.
Patent Information
- Application Number
- CN202311582090.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-22
- Publication Date
- 2025-05-23
AI Technical Summary
At the scene of an emergency or war scene, due to the large number of wounded people, it brings huge challenges to medical resources, and it is difficult for existing technology to quickly, accurately and reasonably classify wounded people's injuries.
Through an information processing method, the wound score and the biometric score are determined based on the injury information and biometric information of the target object, and the injury rating result is determined based on at least one of them. The method includes a module for determining trauma scores and biometric scores, and a rating module for determining the rating results of the injured based on trauma scores, biometric scores and coma index.
This method can quickly and accurately evaluate the injuries of the injured, improve the accuracy and effectiveness of the injured rating results, give priority to the rescue of seriously injured people, and save medical resources.
Smart Images

Figure CN120032867A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of detection technology, and in particular to an information processing method and device, an electronic device and a storage medium. Background Art
[0002] At the scene of a sudden disaster or war, the large number of injured people poses a huge challenge to medical resources. Usually, the detection of the injured requires manual triage by professional medical staff, which takes a long time and is inefficient. Therefore, how to quickly, accurately and reasonably triage the injured, so as to make full use of limited emergency medical resources and give priority to rescuing the seriously injured has become a technical problem that needs to be solved urgently. Summary of the invention
[0003] In view of this, embodiments of the present application provide an information processing method and device, an electronic device, and a storage medium.
[0004] The technical solution of the embodiment of the present application is implemented as follows:
[0005] In a first aspect, an embodiment of the present application provides an information processing method, the method comprising:
[0006] Determining a trauma score of the target object according to the injury information of the target object;
[0007] Determining a biometric score of the target object according to the biometric information of the target object;
[0008] A casualty rating result of the target object is determined based on at least one of the trauma score and the biometric score.
[0009] In some embodiments, the method further comprises:
[0010] Determining a coma index of the target object according to the consciousness characteristic information of the target object;
[0011] The determining of the casualty rating result of the target object based on at least one of the trauma score and the biometric score includes: when the coma index indicates that the target object is not in a coma, determining the casualty rating result of the target object based on at least one of the trauma score and the biometric score and the coma index.
[0012] In some embodiments, the method further comprises:
[0013] In the case where the coma index indicates that the target object is in the coma state, the casualty rating result of the target object is determined according to the coma index.
[0014] In some embodiments, determining the trauma score of the target object according to the injury information of the target object includes:
[0015] Determine a first trauma score of the target object according to the first part injury information; wherein the first part injury information is used to characterize the first trauma condition of the first part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0016] Determining the injured person rating result of the target object based on at least one of the trauma score and the biometric score includes: determining the injured person rating result of the target object based on the first trauma score.
[0017] In some embodiments, determining the trauma score of the target object according to the injury information of the target object includes:
[0018] Determining a second trauma score of the target object according to the injury information of the second part; wherein the injury information of the second part is used to characterize the second trauma condition of the second part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0019] Determining the injured person rating result of the target object based on at least one of the trauma score and the biometric score includes: determining the injured person rating result of the target object based on the second trauma score.
[0020] In some embodiments, determining a second trauma score of the target object according to the injury information of the second part includes:
[0021] According to a second injury condition of at least one second part of the target object, obtaining a blood color score and / or a blood flow rate score of the second part; wherein the blood color score and / or the blood flow rate score are both used to characterize the severity of the injury of the target object;
[0022] determining a second trauma score for the second part based on the blood color score and / or the blood flow rate score,
[0023] The second trauma score of the target object is determined based on the second trauma score of at least one of the second sites.
[0024] In some embodiments, obtaining the blood color score and / or blood flow rate score of at least one second part of the target object according to the second trauma condition of the second part includes:
[0025] Determining a first mean value based on the mean values of the first color values of the pixels within a predetermined range of the second part;
[0026] determining a second mean value based on a mean value of second color values of pixels within the predetermined range of the second part;
[0027] determining a third mean value based on the mean value of the second color values of the pixels within the predetermined range of the second part;
[0028] The blood color score of the second site is determined based on the first mean, the second mean, and the third mean.
[0029] In some embodiments, obtaining the blood color score and / or blood flow rate score of at least one second part of the target object according to the second trauma condition of the second part includes:
[0030] determining a first blood color score according to the second part of the first image at a first moment;
[0031] determining a second blood color score according to the second part of the second image at a second moment, wherein the first moment is earlier than the second moment, and the difference between the first moment and the second moment is greater than a predetermined time;
[0032] The blood flow velocity score of the second part is determined according to the first blood color score and the second blood color score.
[0033] In some embodiments, the biometric score includes: a heartbeat feature score and / or a body temperature feature score; and determining the biometric score of the target object according to the biometric information of the target object includes at least one of the following:
[0034] Determining a heartbeat feature score of the target object according to the heartbeat feature information in the biometric feature information;
[0035] A body temperature feature score of the target object is determined according to the body temperature feature information in the biometric feature information.
[0036] In some embodiments, determining the wounded person rating result of the target object according to at least one of the trauma score and the biometric score comprises:
[0037] assigning weighting coefficients to the trauma score and the biometric score respectively;
[0038] Determining a target injury score of the target object based on the sum of the products of the trauma score and the biometric score and the corresponding weighting coefficients;
[0039] Based on the target injury score, a casualty rating result is determined.
[0040] In a second aspect, an embodiment of the present application provides an information processing device, the device comprising:
[0041] A determination module, used to determine the trauma score of the target object according to the injury information of the target object;
[0042] The determination module is used to determine the biometric score of the target object according to the biometric information of the target object;
[0043] The rating module is used to determine the rating result of the injured person of the target object according to at least one of the coma index, the trauma score and the biometric score.
[0044] In some embodiments, the device further comprises:
[0045] The determination module is used to determine the coma index of the target object according to the consciousness characteristic information of the target object;
[0046] The rating module is used to determine the casualty rating result of the target object according to at least one of the trauma score and the biometric score and the coma index when the coma index indicates that the target object is not in a coma.
[0047] In some embodiments, the device further comprises:
[0048] The rating module is used to determine the casualty rating result of the target object according to the coma index when the coma index indicates that the target object is in the coma state.
[0049] In some embodiments, the determination module is used to determine a first trauma score of the target object according to the first part injury information; wherein the first part injury information is used to characterize the first trauma condition of the first part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0050] The rating module is used to determine the injured person rating result of the target object according to the first trauma score.
[0051] In some embodiments, the determination module is used to determine a second trauma score of the target object according to the second part injury information; wherein the second part injury information is used to characterize the second trauma condition of the second part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0052] The rating module is used to determine the injured person rating result of the target object according to the second trauma score.
[0053] In some embodiments, the determining module includes:
[0054] an acquisition unit, configured to acquire a blood color score and / or a blood flow rate score of at least one second part of the target object according to a second injury condition of the second part; wherein the blood color score and / or the blood flow rate score are both used to characterize the severity of the injury of the target object;
[0055] a determining unit, configured to determine a second trauma score of the second part based on the blood color score and / or the blood flow rate score,
[0056] The determination unit is configured to determine the second trauma score of the target object based on the second trauma score of at least one of the second parts.
[0057] In some embodiments, the acquisition unit is used to perform the following steps:
[0058] Determining a first mean value based on the mean values of the first color values of the pixels within a predetermined range of the second part;
[0059] determining a second mean value based on a mean value of second color values of pixels within the predetermined range of the second part;
[0060] determining a third mean value based on the mean value of the second color values of the pixels within the predetermined range of the second part;
[0061] The blood color score of the second site is determined based on the first mean, the second mean, and the third mean.
[0062] In some embodiments, the acquisition unit is used to perform the following steps:
[0063] determining a first blood color score according to the second part of the first image at a first moment;
[0064] determining a second blood color score according to the second part of the second image at a second moment, wherein the first moment is earlier than the second moment, and the difference between the first moment and the second moment is greater than a predetermined time;
[0065] The blood flow velocity score of the second part is determined according to the first blood color score and the second blood color score.
[0066] In some embodiments, the biometric score includes: a heartbeat feature score and / or a body temperature feature score; and the determination module is used to perform at least one of the following steps:
[0067] Determining a heartbeat feature score of the target object according to the heartbeat feature information in the biometric feature information;
[0068] A body temperature feature score of the target object is determined according to the body temperature feature information in the biometric feature information.
[0069] In some embodiments, the rating module is used to perform the following steps:
[0070] assigning weighting coefficients to the trauma score and the biometric score respectively;
[0071] Determining a target injury score of the target object based on the sum of the products of the trauma score and the biometric score and the corresponding weighting coefficients;
[0072] Based on the target injury score, a casualty rating result is determined.
[0073] In a third aspect, an embodiment of the present application provides an electronic device, the electronic device comprising:
[0074] a memory storing computer-readable instructions;
[0075] A processor is connected to the memory and is used to implement the information processing method provided by the first aspect by running the computer-readable instructions.
[0076] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium on which computer-executable instructions are stored. When the computer-executable instructions are executed by a processor, the information processing method provided in the first aspect above is implemented.
[0077] The information processing method provided in the embodiment of the present application includes: determining the trauma score of the target object based on the injury information of the target object; determining the biometric score of the target object based on the biometric information of the target object; and determining the injury rating result of the target object based on at least one of the trauma score and the biometric score.
[0078] In this way, the target object's injury information and / or biometric information are used to determine the target object's casualty rating result, which comprehensively considers the impact of different factors on the casualty rating result, thereby improving the accuracy and effectiveness of the casualty rating result. BRIEF DESCRIPTION OF THE DRAWINGS
[0079] Figure 1A flowchart of an information processing method provided in an embodiment of the present application;
[0080] Figure 2 A flowchart of an information processing method provided in an embodiment of the present application;
[0081] Figure 3 A flowchart of an information processing method provided in an embodiment of the present application;
[0082] Figure 4 A flowchart of an information processing method provided in an embodiment of the present application;
[0083] Figure 5 A flowchart of an information processing method provided in an embodiment of the present application;
[0084] Figure 6 A schematic diagram of the structure of an information processing device provided in an embodiment of the present application;
[0085] Figure 7 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0086] The present application is further described in detail below in conjunction with the accompanying drawings and embodiments.
[0087] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used herein in the specification of this application are only for the purpose of describing specific embodiments and are not intended to limit this application.
[0088] The present application provides an information processing method. Figure 1 The following is a schematic diagram of an implementation flow of an information processing method provided in an embodiment of the present application. Figure 1 As shown, the method mainly includes the following steps:
[0089] Step S110: determining the trauma score of the target object according to the injury information of the target object;
[0090] Step S120: determining a biometric score of the target object according to the biometric information of the target object;
[0091] Step S130: Determine a casualty rating result of the target object according to at least one of the trauma score and the biometric score.
[0092] The information processing method involved in the embodiments of the present application is applied to an electronic device; the electronic device may be any mobile terminal or fixed terminal. A terminal may be a device that provides voice and / or data connectivity to a user. Exemplarily, the terminal may be an Internet of Things terminal, such as a sensor device, a mobile phone (or "cellular" phone), and a computer with an Internet of Things terminal, for example, a fixed, portable, pocket-sized, handheld, computer-built-in, or vehicle-mounted device. Alternatively, the terminal may also be a device of an unmanned aerial vehicle. Alternatively, the terminal may also be a vehicle-mounted device, for example, it may be a driving computer with wireless communication capabilities, or a wireless terminal external to the driving computer. Alternatively, the terminal may also be a medical device.
[0093] Exemplarily, the terminal may be a device for performing injury detection on a target object.
[0094] In some embodiments, the site injury information is used to indicate the injured site of the target object and the trauma condition of the injured site; wherein the injured site includes the first site and the second site in the following embodiments.
[0095] In some embodiments, the site injury information includes at least one of the following: the area of the injured site, the depth of the injured site, the blood color depth of the injured site, and the blood flow rate of the injured site.
[0096] In some embodiments, the biometric information includes at least one of the following: pulse characteristic information, blood sugar characteristic information, blood pressure characteristic information, cortisol characteristic information, heartbeat characteristic information, body temperature characteristic information, and blood oxygen saturation characteristic information.
[0097] In some embodiments, the method further comprises:
[0098] The priority of the injured part is determined according to the importance of the injured part of the target object.
[0099] In some embodiments, the method further comprises:
[0100] A rating result of the injured part of the target object is determined according to the trauma score.
[0101] In some embodiments, the method further comprises:
[0102] A first mapping information table is created; wherein the first mapping information table is used to indicate the correspondence between the trauma score and the rating result of the injured part.
[0103] Exemplarily, the first mapping information table is shown in Table 1 below.
[0104] Trauma score Rating Results 1 Severe 2 Moderately severe 3 Mildly severe 4 slight
[0105] Table 1
[0106] It is understood that each element in the above Table 1 exists independently. These elements are exemplarily listed in the same table, but it does not mean that all elements in the table must exist at the same time as shown in the table. The value of each element is independent of the value of any other element in Table 1. Therefore, those skilled in the art can understand that the value of each element in Table 1 is an independent embodiment.
[0107] In this way, the target object's injury information and / or biometric information are used to determine the target object's casualty rating result, and the impact of different factors on the casualty rating result is fully considered, thereby improving the accuracy and effectiveness of the casualty rating result.
[0108] Furthermore, the terminal can perform triage on the target object multiple times, and when the injury of the target object changes over time, triage can be performed again conveniently and quickly.
[0109] In some embodiments, Figure 2 As shown, the method further includes:
[0110] Step S140: determining the coma index of the target object according to the consciousness characteristic information of the target object;
[0111] Step S130 includes:
[0112] Step S1301: when the coma index indicates that the target object is not in a coma, determining the casualty rating result of the target object according to at least one of the trauma score and the biometric score and the coma index.
[0113] In some embodiments, the consciousness feature information may be any feature information used to characterize the consciousness activity of the target object.
[0114] In some embodiments, the consciousness characteristic information includes at least one of the following: eye opening reaction characteristic information, language reaction characteristic information and limb movement characteristic information.
[0115] In some embodiments, the coma index is used to indicate the coma level of the target subject.
[0116] Optionally, the coma index is negatively correlated with the coma degree of the target object. For example, the higher the coma index, the lower the coma degree of the target object; or, the lower the coma index, the higher the coma degree of the target object.
[0117] In some embodiments, determining the coma index of the target object according to the consciousness characteristic information of the target object includes:
[0118] According to a predetermined algorithm, the eye opening response characteristic information, language response characteristic information and / or limb movement characteristic information of the target object are analyzed to determine the coma index of the target object.
[0119] In some embodiments, the predetermined algorithm may be any method for assessing the coma level of the target subject.
[0120] Exemplarily, the predetermined algorithm may be the Glasgow Coma Scale (GCS); or, the predetermined algorithm may be the Ramsay sedation scores (Ramsay); or, the predetermined algorithm may be the Richmond Agitation and Sedation Scale (RASS).
[0121] In some embodiments, the method further comprises:
[0122] If the coma index is higher than or equal to the first coma index, determining that the target object is not in the coma state;
[0123] or,
[0124] If the coma index is less than the first coma index, it is determined that the target object is in the coma state.
[0125] In some embodiments, the first coma index may be any value used to indicate that the consciousness of the target subject is in a moderate coma.
[0126] Exemplarily, the coma index includes 0 to 15 points. For example, 0 to 8 points are used to indicate that the consciousness of the target object is in a severe coma state; 9 to 11 points are used to indicate that the consciousness of the target object is in a moderate coma state; 12 to 14 points are used to indicate that the consciousness of the target object is in a mild coma state; 15 points are used to indicate that the consciousness of the target object is in a conscious state; then the first coma index may be 9 points.
[0127] In some embodiments, the method further comprises:
[0128] In the case where the coma index indicates that the target object is in the coma state, the casualty rating result of the target object is determined according to the coma index.
[0129] In some embodiments, determining the casualty rating result of the target object according to the coma index includes:
[0130] The injured person rating result of the target object is determined to be a first result.
[0131] In some embodiments, the first result is used to indicate that the consciousness of the target subject is in a severe coma.
[0132] In this way, the embodiment of the present application can determine the state of consciousness of the target object through the coma index. If the consciousness of the target object is already in a severe coma, it indicates that the target object needs timely treatment. In this way, on the one hand, priority is given to rescuing seriously injured people to ensure the life safety of the target object; on the other hand, there is no need for subsequent triage, saving medical resources.
[0133] In some embodiments, the method further comprises at least one of the following:
[0134] Outputting the wounded person rating result;
[0135] Outputting prompt information corresponding to the wounded person rating result;
[0136] If the injured person rating result is the first result, output warning information corresponding to the injured person rating result.
[0137] In some embodiments, the outputting of the casualty rating result includes at least one of the following:
[0138] Outputting the injured person rating result on a display screen of a terminal;
[0139] Outputting the injured person rating result by voice based on the voice device of the terminal;
[0140] The wounded person rating result is sent to a third-party platform, and the wounded person rating result is used for display by the third-party platform.
[0141] Exemplarily, the terminal can output the casualty rating results in text form on a display screen; the terminal can also output the casualty rating results in the form of voice signals; the terminal can also generate a test report and send it to the user's mailbox in the form of an email, and the test report includes the casualty rating results.
[0142] In some embodiments, the outputting of prompt information corresponding to the wounded person rating result includes at least one of the following:
[0143] Outputting prompt information corresponding to the wounded person rating result on the display screen of the terminal;
[0144] Outputting prompt information corresponding to the result of the wounded person rating by voice based on the voice device of the terminal;
[0145] The prompt information corresponding to the wounded person rating result is sent to a third-party platform, and the prompt information is used for display by the third-party platform.
[0146] In some embodiments, the prompt information includes but is not limited to at least one of the following: text information, voice information, picture information and color information. The prompt information includes warning information.
[0147] For example, 0 to 0.25 is the first score interval; 0.25 to 0.5 is the second score interval; 0.5 to 0.75 is the third score interval; 0.75 to 1 is the fourth score interval. If the target injury score is 0.1, the terminal determines that the target object's wounded rating result is the first result; if the target injury score is 0.5, the terminal determines that the target object's wounded rating result is the second result.
[0148] In some embodiments, the prompt information may be color information. 0 to 25 is the first score interval; 25 to 50 is the second score interval; 50 to 75 is the third score interval; 75 to 100 is the fourth score interval. If the terminal determines that the target injury score is 10, the target object's injured rating result is determined to be the first result, and the terminal's display screen outputs the warning information in the prompt information: red information, and the terminal's buzzer emits a buzzing voice warning signal; wherein, the first result is used to indicate that the target object's injury is severely serious. If the terminal determines that the target injury score is 50, the target object's injured rating result is determined to be the second type of result, and the terminal's display screen outputs the prompt information: orange information; wherein, the second result is used to indicate that the target object's injury is moderately serious. If the terminal determines that the target injury score is 55, the target object's injured rating result is determined to be the third result, and the terminal's display screen outputs the prompt information: yellow information; wherein, the third result is used to indicate that the target object's injury is slightly serious. If the terminal determines that the target injury score is 85 and determines that the target object's injury rating result is the fourth result, the terminal display screen outputs prompt information: green information; wherein the fourth result is used to indicate that the target object's injury level is slight.
[0149] In this way, the wounded rating result and the prompt information corresponding to the wounded rating result are output, and the prompt information can accurately inform the target object of the wounded rating result, and the user (such as medical staff) can take timely response measures according to the prompt information. In addition, if the wounded rating result is the first result, indicating that the degree of injury of the target object is severe, feedback and warning information can be output in a variety of ways; so that the target object can receive timely treatment and provide protection for the life safety of the target object.
[0150] In some embodiments, Figure 3 As shown, step S110 includes:
[0151] Determine a first trauma score of the target object according to the first part injury information; wherein the first part injury information is used to characterize the first trauma condition of the first part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0152] Step S130 includes: determining the injured person rating result of the target object according to the first trauma score.
[0153] In some embodiments, the first part injury information is used to indicate a first part of the target object and a first injury condition of the first part.
[0154] In some embodiments, determining a first trauma score of the target object according to the first body injury information includes:
[0155] The first trauma score is determined according to whether the target object has a first trauma in at least one first part; wherein the first part includes: head part, neck part, chest part, abdomen part and / or spine part.
[0156] In some embodiments, determining the wounded person rating result of the target object according to the first trauma score includes:
[0157] If the first injury score indicates that the target object carries a first injury at at least one first site, the casualty rating result of the target object is determined to be a second result.
[0158] In some embodiments, the first wound and in the following embodiments, the second wound can be any open wound.
[0159] In some embodiments, the second result is used to indicate that the injury level of the target subject is moderately severe.
[0160] In some embodiments, if the terminal determines that the target object carries a first injury in at least one first part, the first injury score of the target object is determined to be a first value, wherein the first value is used to indicate that the degree of injury of the target object is moderately severe; the terminal determines that the target object's injury rating result is a second result based on the first value.
[0161] In this way, based on the injury information of the first part, it can be determined whether the target object has an open wound in the first part. If the target object has an open wound in any first part, it indicates that the severity of the target object's injury is moderate or above, and timely treatment is required. On the one hand, priority is given to rescuing seriously injured people to ensure the life safety of the target object; on the other hand, there is no need to further determine other trauma information and biometric information, saving medical resources.
[0162] In some embodiments, Figure 4 As shown, step S110 includes:
[0163] Determining a second trauma score of the target object according to the injury information of the second part; wherein the injury information of the second part is used to characterize the second trauma condition of the second part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0164] Step S130 includes: rating the injured person of the target object according to the second trauma score.
[0165] In some embodiments, determining a second trauma score of the target object according to the injury information of the second part includes:
[0166] The second trauma score is determined based on whether the target object carries a second trauma in at least one second part; wherein the first part includes: upper limb part, lower limb part, pelvic part, maxillofacial part and / or skin part.
[0167] In some embodiments, determining the wounded person rating result of the target object according to the second trauma score includes:
[0168] If the target object carries a second injury at at least one second site, the injured person rating result is determined to be a third result.
[0169] In some embodiments, the second part injury information is used to indicate a second part of the target object and a second trauma condition of the second part.
[0170] In some embodiments, the second part may be any part of the target subject except the first part.
[0171] In some embodiments, if the terminal determines that the target object does not have a first trauma in at least one first part, the terminal determines a second trauma score of the target object based on the injury information of the second part; the terminal determines the second trauma score of the target object as a second numerical value, wherein the second numerical value is used to indicate that the degree of injury of the target object is mild to severe; the terminal determines the target object's injury rating result as a third result based on the second numerical value.
[0172] In this way, based on the injury information of the second part, the specific injury condition of the target object can be determined more accurately, further improving the accuracy of the injury rating results; and facilitating more reasonable use of limited medical resources in the future.
[0173] In some embodiments, determining a second trauma score of the target object according to the injury information of the second part includes:
[0174] According to a second injury condition of at least one second part of the target object, obtaining a blood color score and / or a blood flow rate score of the second part; wherein the blood color score and / or the blood flow rate score are both used to characterize the severity of the injury of the target object;
[0175] determining a second trauma score for the second part based on the blood color score and / or the blood flow rate score,
[0176] The second trauma score of the target object is determined based on the second trauma score of at least one of the second sites.
[0177] In some embodiments, determining the second trauma score of the target object based on the second trauma score of at least one second part includes:
[0178] If there are multiple second parts, the second trauma score of the target object is determined based on a predetermined numerical relationship of the second trauma scores of the second parts.
[0179] Exemplarily, the predetermined numerical relationship may be, but is not limited to, at least one of the following: sum, product, and range, etc.
[0180] In some embodiments, obtaining the blood color score and / or blood flow rate score of at least one second part of the target object according to the second trauma condition of the second part includes:
[0181] Determining a first mean value based on the mean values of the first color values of the pixels within a predetermined range of the second part;
[0182] determining a second mean value based on a mean value of second color values of pixels within the predetermined range of the second part;
[0183] determining a third mean value based on the mean value of the second color values of the pixels within the predetermined range of the second part;
[0184] The blood color score of the second site is determined based on the first mean, the second mean, and the third mean.
[0185] In some embodiments, the predetermined range may be a range of any size; the predetermined range may be a range of any shape. For example, the predetermined range may be a range of a circle with the center of the second part as the point and a predetermined value as the radius.
[0186] In some embodiments, the terminal captures an image of the second part under an ultraviolet light source, and performs median filtering on the image so that the grayscale value of each pixel on the image is set to the median of the grayscale values of all pixels within a certain neighborhood window of the point. In this way, the pixel value can be made close to the true value, thereby eliminating isolated noise points.
[0187] In some embodiments, the first color value may be an R (RED) value.
[0188] In some embodiments, the second color value may be a G (GREEN) value.
[0189] In some embodiments, the third color value may be a B (BLUE) value.
[0190] In some embodiments, determining the blood color score of the second site based on the first mean, the second mean, and the third mean comprises:
[0191] Determine a third value based on the sum of the first mean, the second mean, and the third mean;
[0192] The blood color score of the second site is determined based on a ratio of the first value to a fourth value.
[0193] In some embodiments, determining the blood color score of the second site based on the first mean, the second mean, and the third mean comprises:
[0194] Determine a fifth value based on a product of the first mean value and an influence factor corresponding to the first color value;
[0195] Determine a sixth value based on a product of the second mean value and an influence factor corresponding to the second color value;
[0196] Determine a seventh value based on a product of the third mean value and an influence factor corresponding to the third color value;
[0197] determining an eighth value based on the sum of the fifth value, the sixth value, and the seventh value;
[0198] The blood color score of the second site is determined based on a ratio of the eighth value to the fourth value.
[0199] In some embodiments, the method further comprises one of the following:
[0200] Determine, according to the occurrence frequencies of the first color value, the second color value, and the third color value within the predetermined range, the influencing factors corresponding to the first color value, the second color value, and the third color value;
[0201] The influence factors corresponding to the first color value, the second color value, and the third color value are determined according to the historical data of the influence factors corresponding to the first color value, the second color value, and the third color value within the predetermined range.
[0202] Exemplarily, the predetermined range is the S region, and the fourth value is 255. A method for determining the blood color score of the second part may be: Wherein, g is the blood color score; a is the influencing factor of R value; R 0 is the average value of R value in S area in RGB color mode; b is the influencing factor of B value; G 0 is the average value of G value in S area in RGB color mode; 0 is the average value of the B value in the S region in the RGB color mode; where a+b+c=1.
[0203] In some embodiments, obtaining the blood color score and / or blood flow rate score of at least one second part of the target object according to the second trauma condition of the second part includes:
[0204] determining a first blood color score according to the second part of the first image at a first moment;
[0205] determining a second blood color score according to the second part of the second image at a second moment, wherein the first moment is earlier than the second moment, and the difference between the first moment and the second moment is greater than a predetermined time;
[0206] The blood flow velocity score of the second part is determined according to the first blood color score and the second blood color score.
[0207] In some embodiments, the predetermined time may be of any length.
[0208] In some embodiments, determining the blood flow velocity score of the second part according to the first blood color score and the second blood color score includes:
[0209] determining a first difference according to a difference between the first blood color score and the second blood color score;
[0210] Determine a second difference according to the difference between the second moment and the first moment;
[0211] Determine a ninth value according to the product of the environmental impact factor, the biometric information and the second difference;
[0212] The blood flow velocity score of the second site is determined based on a ratio of the first difference to the ninth value.
[0213] In some embodiments, the method further comprises:
[0214] The environmental influencing factor is determined according to the ambient temperature, ambient humidity, ambient altitude of the target object, the age and / or historical data of the target object.
[0215] Exemplarily, the biometric information is heartbeat characteristic information. A method for determining the blood flow velocity score of the second part may be: Wherein, s is the blood flow velocity score of the second part; g 2 is a second blood color score of a second part on a second image at a second moment; 1 is the first blood color score of the second part on the first image at the first moment; t is the difference between the second moment and the first moment; y is the environmental influencing factor; hb is the heartbeat number information in the heartbeat feature information; optionally, if the actual heartbeat number of the target object is greater than or equal to the heartbeat number threshold, hb is determined to be the actual heartbeat number; or, if the actual heartbeat number of the target object is less than the heartbeat number threshold, hb is determined to be the heartbeat number threshold.
[0216] In some embodiments, the method further comprises:
[0217] A bleeding outcome of the target subject is determined based on the blood flow velocity score.
[0218] In some embodiments, determining the bleeding result of the target object according to the blood flow rate score comprises one of the following:
[0219] If the blood flow rate score is less than or equal to a first flow rate threshold, determining that the bleeding result of the target object is a first bleeding result;
[0220] If the blood flow rate score is greater than the first flow rate threshold and less than or equal to a second flow rate threshold, determining that the bleeding result of the target object is a second bleeding result;
[0221] If the blood flow rate score is greater than the second flow rate threshold, the bleeding result of the target object is determined to be a third bleeding result; wherein the severity of the first bleeding result is lower than that of the second bleeding result; and the severity of the second bleeding result is lower than that of the third bleeding result.
[0222] In some embodiments, the method further comprises:
[0223] A second mapping information table is created; wherein the second mapping information table is used to indicate the correspondence between the blood flow velocity score and the bleeding result.
[0224] Exemplarily, the second mapping information table is shown in Table 2 below, where the blood flow rate score is s, and the first flow rate threshold is s 1 , the second flow rate threshold is s 2 , the third flow rate threshold is s 3 hour.
[0225] Blood flow score Bloody results <![CDATA[s≤s 1 ]]> slight <![CDATA[s 1 <s≤s 2 ]]> Relatively severe <![CDATA[s>s 2 ]]> serious
[0226] Table 2
[0227] It is understood that each element in the above Table 2 exists independently. These elements are exemplarily listed in the same table, but it does not mean that all elements in the table must exist at the same time as shown in the table. The value of each element is independent of the value of any other element in Table 2. Therefore, those skilled in the art can understand that the value of each element in Table 2 is an independent embodiment.
[0228] In this way, the blood color score and / or blood flow rate score in the second trauma condition of the target object can reflect the second trauma condition of the second part in real time and accurately, which is convenient for users to better determine the wounded person rating results and improve the accuracy of the wounded person rating results.
[0229] In some embodiments, the method further comprises:
[0230] The trauma score of the target object is determined according to the first trauma score and the second trauma score.
[0231] In some embodiments, the biometric score includes: a heartbeat feature score and / or a body temperature feature score; determining the biometric score of the target object according to the biometric information of the target object includes at least one of the following:
[0232] Determining a heartbeat feature score of the target object according to the heartbeat feature information in the biometric feature information;
[0233] A body temperature feature score of the target object is determined according to the body temperature feature information in the biometric feature information.
[0234] In some embodiments, the heartbeat characteristic information may be the heartbeat frequency.
[0235] In some embodiments, the heartbeat feature score may be a numerical value of any size.
[0236] In some embodiments, determining the heartbeat feature score of the target object according to the heartbeat feature information in the biometric feature information includes one of the following:
[0237] If the heartbeat feature information is less than or equal to a first heartbeat threshold, determining that the heartbeat feature score of the target object is a first heartbeat feature score;
[0238] If the heartbeat feature information is less than or equal to the second heartbeat threshold or greater than the third heartbeat threshold, determining that the heartbeat feature score of the target object is the second heartbeat feature score;
[0239] If the heartbeat characteristic information is greater than the second heartbeat threshold and less than or equal to the fourth heartbeat threshold, or the heartbeat characteristic information is greater than the fifth heartbeat threshold and less than or equal to the third heartbeat threshold, determine that the heartbeat characteristic score of the target object is the third heartbeat characteristic score;
[0240] If the heartbeat feature information is greater than the fourth heartbeat threshold and less than or equal to the fifth heartbeat threshold, the heartbeat score of the target object is determined to be the fourth heartbeat feature score; wherein the third heartbeat threshold is greater than the fifth heartbeat threshold, the fifth heartbeat threshold is greater than the fourth heartbeat threshold, the fourth heartbeat threshold is greater than the second heartbeat threshold, the second heartbeat threshold is greater than the first heartbeat threshold, the first heartbeat feature score is greater than the second heartbeat feature score, the second heartbeat feature score is greater than the third heartbeat feature score, and the third heartbeat feature score is greater than the fourth heartbeat feature score.
[0241] In some embodiments, the method further comprises:
[0242] Create a third mapping information table; wherein the third mapping information table is used to indicate the correspondence between the heartbeat feature information, the heartbeat feature score and the heartbeat result.
[0243] Exemplarily, the third mapping information table is shown in Table 3 below, and the heartbeat feature information is the heartbeat frequency x. The first heartbeat threshold may be 30, the second heartbeat threshold may be 40, the third heartbeat threshold may be 110, the fourth heartbeat threshold may be 50, and the fifth heartbeat threshold may be 100; the first heartbeat feature score may be 4 points, the second heartbeat feature score may be 3 points, the third heartbeat feature score may be 2 points, and the fourth heartbeat feature score may be 1 point.
[0244] Table 3
[0245] It is understood that each element in the above Table 3 exists independently. These elements are exemplarily listed in the same table, but it does not mean that all elements in the table must exist at the same time as shown in the table. The value of each element is independent of the value of any other element in Table 3. Therefore, those skilled in the art can understand that the value of each element in Table 3 is an independent embodiment.
[0246] In this way, the embodiment of the present application further assists in judging the injury condition of the target object through heartbeat feature information, improves the accuracy and credibility of the injury rating results, and can also reduce the occurrence of false alarms on the terminal.
[0247] In some embodiments, the body temperature feature score can be a numerical value of any size.
[0248] In some embodiments, determining the temperature characteristic score of the target object according to the temperature characteristic information in the biometric characteristic information includes one of the following:
[0249] If the body temperature characteristic information is greater than or equal to the first body temperature threshold and less than the second body temperature threshold, determining that the body temperature score of the target object is the first body temperature characteristic score;
[0250] If the body temperature characteristic information is less than the first body temperature threshold or greater than or equal to the second body temperature threshold, the body temperature score of the target object is determined to be the second body temperature score; wherein the first body temperature characteristic score is less than the second body temperature characteristic score.
[0251] In some embodiments, the method further comprises:
[0252] A fourth mapping information table is created; wherein the fourth mapping information table is used to indicate the correspondence between the body temperature characteristic information, the body temperature characteristic score and the body temperature result.
[0253] Exemplarily, the fourth mapping information table is shown in Table 4 below, and the body temperature characteristic information is body temperature k. The first body temperature threshold may be 38.4° C., the second body temperature threshold may be 35° C.; the first body temperature characteristic score may be 0 points, and the second body temperature characteristic score may be 2 points.
[0254] Body temperature(℃) Temperature results Temperature characteristic score 35≤k<38.4 normal 0 k<35 or k≥38.4 abnormal 2
[0255] Table 4
[0256] It is understood that each element in the above Table 4 exists independently. These elements are exemplarily listed in the same table, but it does not mean that all elements in the table must exist at the same time as shown in the table. The value of each element is independent of the value of any other element in Table 4. Therefore, those skilled in the art can understand that the value of each element in Table 4 is an independent embodiment.
[0257] In some embodiments, the method further comprises:
[0258] The biometric score of the target object is determined according to the heartbeat feature score and the body temperature feature score.
[0259] In this way, the embodiment of the present application further assists in judging the injury of the target object through the body temperature characteristic information, improves the accuracy and credibility of the wounded rating results, and can also reduce the occurrence of false alarms in the terminal. In addition, by creating the mapping information table in the above embodiment, compared with the user's subjective judgment, the determination results can be quickly obtained while unifying the determination standards.
[0260] In some embodiments, step S130 includes:
[0261] assigning weighting coefficients to the trauma score and the biometric score respectively;
[0262] Determining a target injury score of the target object based on the sum of the products of the trauma score and the biometric score and the corresponding weighting coefficients;
[0263] Based on the target injury score, the injured person rating result is determined.
[0264] In some embodiments, step S130 includes:
[0265] assigning weighting coefficients to the coma index, the trauma score, and the biometric score, respectively;
[0266] Determining a target injury score of the target object based on the sum of the products of the coma index, the trauma score, and the biometric score and the corresponding weighting coefficients;
[0267] Based on the target injury score, a casualty rating result is determined.
[0268] In some embodiments, step S130 includes:
[0269] assigning weighting coefficients to the coma index, the first trauma score, the second trauma score, and the biometric score, respectively;
[0270] Determining the target injury score of the target object based on the sum of the products of the coma index, the first trauma score, the second trauma score, and the biometric score and the corresponding weighting coefficients;
[0271] Based on the target injury score, the injured person rating result is determined.
[0272] In some embodiments, the assigning weighting coefficients to the coma index, the trauma score, and the biometric score respectively comprises:
[0273] assigning a first weighting coefficient, a second weighting coefficient and a third weighting coefficient to the coma index, the trauma score and the biometric score respectively;
[0274] In some embodiments, determining the target injury score of the target object based on the sum of the products of the coma index, the trauma score, and the biometric score and their corresponding weighting coefficients, comprises:
[0275] determining a tenth value based on the product of the coma index and the first weighting coefficient;
[0276] determining an eleventh value based on the product of the trauma score and the second weighting coefficient;
[0277] determining a twelfth value based on a product of the biometric score and the third weighting coefficient;
[0278] A target injury score of the target object is determined based on at least one of the tenth value, the eleventh value, and the twelfth value.
[0279] In some embodiments, the assigning weighting coefficients to the coma index, the trauma score, and the biometric score respectively comprises:
[0280] According to the importance of the consciousness characteristic information, the body injury information and the biological characteristic information of the target object, weighting coefficients are respectively allocated to the coma index, the trauma score and the biological characteristic score.
[0281] Optionally, the importance is positively correlated with the size of the weighting coefficient. Exemplarily, if the importance of the target object's body injury information is higher than that of the biometric information, the weighting coefficient corresponding to the injury score is greater than the weighting coefficient corresponding to the biometric score.
[0282] In one embodiment, the biometric score includes: a heartbeat feature score hbn and a body temperature feature score tpn. A method for determining a target injury score is: gis = hbx × hbn + tpx × tpn + icx × icn; wherein gis is the target injury score; hbx is the heartbeat weighting coefficient corresponding to the heartbeat feature score; tpx is the body temperature weighting coefficient corresponding to the body temperature feature score; icn is the trauma score; and icx is the trauma weighting coefficient corresponding to the trauma score.
[0283] In some embodiments, the casualty rating result is used to indicate the degree of injury of the target object.
[0284] In some embodiments, the injury rating results include: a first result, a second result, a third result, and a fourth result; wherein the fourth result is better than the third result, the third result is better than the second result, and the second result is better than the first result. Optionally, the first result is used to indicate that the injury level of the target object is severe; optionally, the second result is used to indicate that the injury level of the target object is moderately severe; optionally, the third result is used to indicate that the injury level of the target object is slightly severe; optionally, the fourth result is used to indicate that the injury level of the target object is slightly severe.
[0285] In some embodiments, the method further comprises:
[0286] A second mapping information table is created; wherein the second mapping information table is used to indicate the correspondence between the target injury score and the injured person rating result.
[0287] Exemplarily, the second mapping information table is shown in Table 5 below.
[0288] Target Injury Score Casualty Rating Results The first score range First result The second score range Second result The third score range The third result The fourth score range Fourth result
[0289] Table 5
[0290] It is understood that each element in the above Table 5 exists independently. These elements are exemplarily listed in the same table, but it does not mean that all elements in the table must exist at the same time as shown in the table. The value of each element is independent of the value of any other element in Table 5. Therefore, those skilled in the art can understand that the value of each element in Table 5 is an independent embodiment.
[0291] A specific example is provided below in combination with any of the above embodiments:
[0292] In an application scenario, such as Figure 5 As shown, an information processing method is provided, which is applied to a terminal, and the method includes:
[0293] Step S510: Determine the consciousness of the injured person.
[0294] In an optional embodiment, the terminal records information on the injured person's eye opening reaction, language reaction, and limb movement, and calculates the injured person's coma index based on the recorded information and the Glasgow Coma Scale; here, the injured person is the target object in the above embodiment.
[0295] Step S5201: Get the number of heartbeats.
[0296] Step S5202: Obtain body temperature.
[0297] Step S5203: Record the open wound conditions of important parts.
[0298] In an optional embodiment, the terminal's scanner scans the injured person's physical condition, obtains the injured person's heart rate, the injured person's body temperature, and records the open injuries of the injured person's important parts; here, the important part is the first part in the above embodiment; the open injury is the first trauma in the above embodiment.
[0299] Step S530: Determine whether there is an open wound.
[0300] In an optional embodiment, the terminal determines whether the injured person is a seriously injured patient based on the condition of open wounds on important parts of the injured person; if the terminal determines that an open wound has occurred on an important part or that the injured person has a large amount of abnormal bleeding, the terminal determines that the injured person is a seriously injured patient based on the condition of open wounds on important parts of the injured person, prompts that professional medical personnel are needed to treat the injured person in time, and executes step S610; if not, executes step S540.
[0301] Step S540: Specific scanning of the injured part.
[0302] Here, the injured part is the second part in the above embodiment.
[0303] Step S550: Determine the wound bleeding rate.
[0304] In an optional embodiment, the terminal calculates the wound bleeding rate of the wounded person through the wound image of the wounded part at a specified time. It should be noted that: when the wound bleeds, the blood will seep out of the wound, and after contacting with the surrounding air and substances, an oxidation reaction will occur, resulting in a change in the color of the blood. As the blood outflow rate increases, the depth of the blood color will also deepen. The terminal performs a specific scan on the injured part and takes a wound image of the injured part within a specified time; the wound image within a certain range (S) around the wound image of the injured part is the effective area, and the ultraviolet light source is used to assist in the shooting, and then the image is median filtered (the value of each pixel is replaced by the median of the pixel values around the pixel), and finally the wound image within the specified time (t) is compared. Here, the specified time is the difference between the first moment and the second moment in the above embodiment; the wound image includes the first image and the second image in the above embodiment.
[0305] A certain range is area S. A method of determining the depth of blood color at the injured part may be: Wherein, g is the blood color depth; a is the influencing factor of R value; R 0 is the average value of R value of all pixels in S area in RGB color mode; b is the influencing factor of B value; G 0 is the average value of G values of all pixels in the S area in the RGB color mode; 0 is the average value of the B values of all pixels in the S area in the RGB color mode; where a+b+c=1.
[0306] One way to determine the rate of traumatic bleeding at an injured area can be: Wherein, s is the bleeding velocity of the injured part; g 2 is the effective blood color depth of the last trauma image within time t; 1 is the effective blood color depth of the first trauma image within time t; t is the shooting time of the injured part; y is the environmental impact factor; hb is the effective heartbeat number; optionally, if hb is greater than or equal to the threshold heartbeat number hb 0 , determine hb as the actual heartbeat number; or, if hb is less than the heartbeat number threshold hb 0 When hb is determined as the threshold heartbeat number hb 0 .
[0307] Here, the blood color depth is the blood color score in the above embodiment; the wound bleeding rate is the blood flow rate score in the above embodiment.
[0308] Step S560: Determine the bleeding situation.
[0309] In an optional embodiment, the terminal determines the bleeding condition by the bleeding speed of the wound; here, the bleeding condition may be the bleeding result in the above embodiment.
[0310] Step S5701: Determine the injury condition of the injured part.
[0311] Step S5702: Determine the injury score of the injured part.
[0312] In an optional embodiment, the terminal determines the injury condition of the injured part and the injury condition score of the injured part according to the injured part and the bleeding situation; here, the injury condition of the injured part is the rating result of the injured part in the above embodiment; the injury condition score of the injured part is the trauma score in the above embodiment.
[0313] Step S580: Determine the heartbeat score.
[0314] In an optional embodiment, the terminal determines the heartbeat score according to the number of heartbeats; here, the number of heartbeats may be the heartbeat frequency in the above embodiment; and the heartbeat score is the heartbeat feature score in the above embodiment.
[0315] Step S590: Determine the body temperature score.
[0316] In an optional embodiment, the terminal determines a body temperature score according to the body temperature of the injured person; here, the body temperature score is the body temperature feature score in the above embodiment.
[0317] Step S600: Calculate the target score.
[0318] In an optional embodiment, the terminal calculates the target score according to the heartbeat score, the body temperature score and the injury score of the injured part; a method for determining the target score is: gis = hbx × hbn + tpx × tpn + icx × icn; wherein, gis is the target score; hbn is the heartbeat score; hbx is the influence factor corresponding to the heartbeat score; tpn is the body temperature score; tpx is the influence factor corresponding to the body temperature score; icn is the injury score of the injured part; icx is the influence factor corresponding to the injury score of the injured part. Here, the target score is the target injury score in the above embodiment.
[0319] Step S610: Perform triage.
[0320] In an optional embodiment, the terminal triages the injured according to the injured's consciousness, open injuries to important parts, or target scores.
[0321] Thus, on the one hand, compared with the related art which requires a large number of professional medical personnel, the embodiment of the present application determines the rating result of the wounded of the target object through the terminal, which does not require the operation of professional medical personnel, is simple to operate, and makes full use of limited emergency medical resources, such as human resources. On the other hand, compared with the time-consuming injury classification in the related art, the time-consuming and fast speed of determining the rating result of the wounded of the target object in the embodiment of the present application improves the rescue efficiency, thereby giving priority to rescuing the seriously injured and actively improving the prognosis, for example, it can reduce the mortality rate and disability rate.
[0322] In addition, the rating is determined based on the target object's consciousness characteristic information, injury information and biometric information, and the impact of different factors on the rating results of the injured is fully considered, thereby improving the accuracy and effectiveness of the rating results of the injured.
[0323] like Figure 6 As shown, based on the same inventive concept as the information processing method provided in the above embodiment, the embodiment of the present application further provides an information processing device, the device comprising:
[0324] A determination module 601 is used to determine the trauma score of the target object according to the injury information of the target object;
[0325] The determination module 601 is used to determine the biometric score of the target object according to the biometric information of the target object;
[0326] The rating module 602 is used to determine the rating result of the injured person of the target object according to at least one of the coma index, the trauma score and the biometric score.
[0327] In some embodiments, the device further comprises:
[0328] The determination module 601 is used to determine the coma index of the target object according to the consciousness characteristic information of the target object;
[0329] The rating module 602 is used to determine the casualty rating result of the target object according to at least one of the trauma score and the biometric score and the coma index when the coma index indicates that the target object is not in a coma.
[0330] In some embodiments, the device further comprises:
[0331] The rating module 602 is used to determine the casualty rating result of the target object according to the coma index when the coma index indicates that the target object is in the coma state.
[0332] In some embodiments, the determination module 601 is used to determine a first trauma score of the target object according to the first part injury information; wherein the first part injury information is used to characterize the first trauma condition of the first part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0333] The rating module 602 is used to determine the injured person rating result of the target object according to the first trauma score.
[0334] In some embodiments, the determination module 601 is used to determine a second trauma score of the target object according to the second part injury information; wherein the second part injury information is used to characterize the second trauma condition of the second part of the target object; wherein the priority of the first part is higher than the priority of the second part;
[0335] The rating module 602 is used to determine the injured person rating result of the target object according to the second trauma score.
[0336] In some embodiments, the determining module 601 includes:
[0337] an acquisition unit, configured to acquire a blood color score and / or a blood flow rate score of at least one second part of the target object according to a second injury condition of the second part; wherein the blood color score and / or the blood flow rate score are both used to characterize the severity of the injury of the target object;
[0338] a determining unit, configured to determine a second trauma score of the second part based on the blood color score and / or the blood flow rate score,
[0339] The determination unit is configured to determine the second trauma score of the target object based on the second trauma score of at least one of the second parts.
[0340] In some embodiments, the acquisition unit is used to perform the following steps:
[0341] Determining a first mean value based on the mean values of the first color values of the pixels within a predetermined range of the second part;
[0342] determining a second mean value based on a mean value of second color values of pixels within the predetermined range of the second part;
[0343] determining a third mean value based on the mean value of the second color values of the pixels within the predetermined range of the second part;
[0344] The blood color score of the second site is determined based on the first mean, the second mean, and the third mean.
[0345] In some embodiments, the acquisition unit is used to perform the following steps:
[0346] determining a first blood color score according to the second part of the first image at a first moment;
[0347] determining a second blood color score according to the second part of the second image at a second moment, wherein the first moment is earlier than the second moment, and the difference between the first moment and the second moment is greater than a predetermined time;
[0348] The blood flow velocity score of the second part is determined according to the first blood color score and the second blood color score.
[0349] In some embodiments, the determining module 601 is used to perform at least one of the following steps:
[0350] Determining a heartbeat feature score of the target object according to the heartbeat feature information in the biometric feature information;
[0351] A body temperature feature score of the target object is determined according to the body temperature feature information in the biometric feature information.
[0352] In some embodiments, the rating module 602 is used to perform the following steps:
[0353] assigning weighting coefficients to the trauma score and the biometric score respectively;
[0354] Determining a target injury score of the target object based on the sum of the products of the trauma score and the biometric score and the corresponding weighting coefficients;
[0355] Based on the target injury score, a casualty rating result is determined.
[0356] In actual application, the determination module 601 and the rating module 602 of the information processing device can be implemented by a processor in the information processing device. Of course, the processor needs to run the computer program in the memory to realize its function.
[0357] like Figure 7 As shown, an electronic device is provided in an embodiment of the present application, and the electronic device includes:
[0358] Memory 701, used to store computer-readable instructions;
[0359] The processor 702 is connected to the memory, and is configured to implement the method provided in any of the foregoing embodiments by executing computer-readable instructions.
[0360] The memory 701 may be various types of memory, such as random access memory, read-only memory, flash memory, etc. The memory may be used for feature storage, for example, storing computer executable instructions, etc. The computer executable instructions may be various program instructions, for example, target program instructions and / or source program instructions, etc.
[0361] The processor 702 may be any type of processor, such as a central processing unit, a microprocessor, a digital signal processor, a programmable array, a digital signal processor, an application specific integrated circuit, or an image processor. The processor may be connected to the memory via a bus. The bus may be an integrated circuit bus, or the like.
[0362] like Figure 7 As shown, the electronic device may further include a network interface 703, and the network interface 703 may be used to interact with a peer device via a network.
[0363] An embodiment of the present application further provides a computer storage medium, which stores computer executable instructions. After the computer executable instructions are executed, the method provided in any of the above embodiments can be implemented.
[0364] The computer-readable storage medium provided in the embodiments of the present application may be a ROM, PROM, EPROM, EEPROM, FlashMemory, magnetic surface storage, optical disk, or CD-ROM, etc., which may store program codes.
[0365] In the above embodiments provided in the present application, it should be understood that the disclosed methods and devices can be implemented in other ways. The device embodiments described above are only schematic. For example, the division of the modules is only a logical function division. There may be other division methods in actual implementation, such as: multiple modules or components can be combined, or can be integrated into another system, or some features can be ignored, or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.
[0366] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0367] In addition, all functional units in the embodiments of the present application may be integrated into one processing module, or each unit may be separately configured as a unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.
[0368] It should be noted that: "first", "second", etc. are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence.
[0369] In addition, the technical solutions described in the embodiments of the present application can be combined arbitrarily without conflict.
[0370] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.
Claims
1. An information processing method, It is characterized in that The method comprises: Determining a trauma score of the target object according to the injury information of the target object; Determining a biometric score of the target object according to the biometric information of the target object; A casualty rating result of the target object is determined based on at least one of the trauma score and the biometric score.
2. The method according to claim 1, It is characterized in that The method further comprises: Determining a coma index of the target object according to the consciousness characteristic information of the target object; The determining of the casualty rating result of the target object based on at least one of the trauma score and the biometric score includes: when the coma index indicates that the target object is not in a coma, determining the casualty rating result of the target object based on at least one of the trauma score and the biometric score and the coma index.
3. The method according to claim 2, It is characterized in that The method further comprises: In the case where the coma index indicates that the target object is in the coma state, the casualty rating result of the target object is determined according to the coma index.
4. The method according to claim 1, It is characterized in that Determining the trauma score of the target object according to the injury information of the target object includes: Determine a first trauma score of the target object according to the first part injury information; wherein the first part injury information is used to characterize the first trauma condition of the first part of the target object; wherein the priority of the first part is higher than the priority of the second part; Determining the injured person rating result of the target object based on at least one of the trauma score and the biometric score includes: determining the injured person rating result of the target object based on the first trauma score.
5. The method according to claim 1 or 4, It is characterized in that Determining the trauma score of the target object according to the injury information of the target object includes: Determining a second trauma score of the target object according to the injury information of the second part; wherein the injury information of the second part is used to characterize the second trauma condition of the second part of the target object; wherein the priority of the first part is higher than the priority of the second part; Determining the injured person rating result of the target object based on at least one of the trauma score and the biometric score includes: determining the injured person rating result of the target object based on the second trauma score.
6. The method according to claim 5, It is characterized in that Determining a second trauma score of the target object according to the injury information of the second part includes: According to a second injury condition of at least one second part of the target object, obtaining a blood color score and / or a blood flow rate score of the second part; wherein the blood color score and / or the blood flow rate score are both used to characterize the severity of the injury of the target object; determining a second trauma score for the second part based on the blood color score and / or the blood flow rate score, The second trauma score of the target object is determined based on the second trauma score of at least one of the second sites.
7. The method according to claim 6, It is characterized in that The step of obtaining a blood color score and / or a blood flow rate score of at least one second part of the target object according to a second trauma condition of the second part includes: Determining a first mean value based on the mean values of the first color values of the pixels within a predetermined range of the second part; determining a second mean value based on a mean value of second color values of pixels within the predetermined range of the second part; determining a third mean value based on the mean value of the second color values of the pixels within the predetermined range of the second part; The blood color score of the second site is determined based on the first mean, the second mean, and the third mean.
8. The method according to claim 6, It is characterized in that The step of obtaining a blood color score and / or a blood flow rate score of at least one second part of the target object according to a second trauma condition of the second part includes: determining a first blood color score according to the second part of the first image at a first moment; determining a second blood color score according to the second part of the second image at a second moment, wherein the first moment is earlier than the second moment, and the difference between the first moment and the second moment is greater than a predetermined time; The blood flow velocity score of the second part is determined according to the first blood color score and the second blood color score.
9. The method according to claim 1, It is characterized in that The biometric score includes: a heartbeat feature score and / or a body temperature feature score; and determining the biometric score of the target object according to the biometric information of the target object includes at least one of the following: Determining a heartbeat feature score of the target object according to the heartbeat feature information in the biometric feature information; A body temperature feature score of the target object is determined according to the body temperature feature information in the biometric feature information.
10. The method according to claim 1, It is characterized in that Determining the wounded person rating result of the target object according to at least one of the trauma score and the biometric score includes: assigning weighting coefficients to the trauma score and the biometric score respectively; Determining a target injury score of the target object based on the sum of the products of the trauma score and the biometric score and the corresponding weighting coefficients; Based on the target injury score, the injured person rating result is determined.
11. An information processing device, It is characterized in that The device comprises: A determination module, used to determine the trauma score of the target object according to the injury information of the target object; The determination module is used to determine the biometric score of the target object according to the biometric information of the target object; A rating module is used to determine a rating result of the injured person of the target object based on at least one of the trauma score and the biometric score.
12. An electronic device, It is characterized in that The electronic device comprises: a memory storing computer-readable instructions; A processor, connected to the memory, is used to implement the information processing method provided in any one of claims 1 to 10 by running the computer-readable instructions.
13. A computer storage medium, It is characterized in that The computer storage medium stores computer executable instructions; after the computer executable instructions are executed by the processor, the information processing method according to any one of claims 1 to 10 can be implemented.