Electrocardiogram report transmission and reading method and device
By decomposing the ECG report into multiple target data blocks and using the preset color block matrix for QR code conversion, the problem of the difference between the presentation effect of the ECG report when previewing on the mobile phone and the limitation of the picture is solved, and the complete transmission and use of the ECG report on the mobile phone is realized.
Patent Information
- Application Number
- CN202510313780.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2025-06-27
AI Technical Summary
In the prior art, after the electrocardiogram report is taken or printed through a mobile phone, there is a difference in the presentation effect from the original data. The picture is limited by the size of the electrocardiogram display screen or paper, and the photo is incomplete or small and the angle deviation is varied.
By obtaining the electrocardiogram report, it is decomposed into multiple target data blocks, and QR code conversion is performed according to the preset color square matrix, and at least one color matrix picture is generated and transmitted to the mobile phone. After receiving the phone, the color square matrix is extracted and the original file is decoded.
It realizes the complete preview and use of electrocardiogram reports on mobile phones, avoiding the differences in presentation effects during taking pictures and the problems of limited images, and improving the efficiency and accuracy of data transmission.
Smart Images

Figure CN120223909A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrocardiogram transmission, and in particular, to a method and device for transmitting and reading electrocardiogram reports. Background Art
[0002] Currently, electrocardiogram reports are transmitted via USB flash drives and the network, which is not convenient for directly viewing electrocardiogram reports on mobile phones. Due to the need for network security in many hospitals, they operate on an internal network and are not connected to the public network, while mobile phones are connected to the public network, and the two cannot communicate. In addition, for USB flash drive transmission, it is necessary to first export to a USB flash drive, and mobile phones generally only have a Type-C interface, which is not convenient for directly reading ordinary USB flash drives. Generally, it is also necessary to read through a computer and then forward to the mobile phone. If it is a report previewed by directly taking a photo with a mobile phone or a printed report, there are differences between the presentation effect and the original data. The pictures are limited by the size of the electrocardiograph display screen or the paper size, the photos are incomplete or small, and there are angular deviations.
[0003] Therefore, there is an urgent need to propose a method and device for transmitting and reading electrocardiogram reports to solve the technical problems in the prior art that for the reports previewed by directly taking a photo with a mobile phone or printed reports, there are differences between the presentation effect and the original data, the pictures are limited by the size of the electrocardiograph display screen or the paper size, the photos are incomplete or small, and there are angular deviations. Summary of the Invention
[0004] In view of this, it is necessary to provide a method and device for transmitting and reading electrocardiogram reports to solve the technical problems in the prior art that for the reports previewed by directly taking a photo with a mobile phone or printed reports, there are differences between the presentation effect and the original data, the pictures are limited by the size of the electrocardiograph display screen or the paper size, the photos are incomplete or small, and there are angular deviations.
[0005] To solve the above problems, the present invention provides an electrocardiogram report transmission method, including: Obtain an electrocardiogram report; Decompose the obtained electrocardiogram report to obtain a plurality of target data blocks; Perform QR code conversion on the plurality of target data blocks according to a preset color square matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different; Perform data transmission according to the at least one color matrix picture.
[0006] In a possible implementation manner, the decomposing the obtained electrocardiogram report to obtain a plurality of target data blocks includes: Decompose the electrocardiogram report to obtain a plurality of initial data blocks; Encode the multiple initial data blocks to obtain target data blocks corresponding to each initial data block.
[0007] In a possible implementation, the encoding of the multiple initial data blocks to obtain target data blocks corresponding to each initial data block includes: Add a preset number of digital byte sequence numbers to each initial data block to obtain a first data block corresponding to each initial data block; Add a preset number of error correction codes to each first data block to obtain a target data block corresponding to each first data block.
[0008] In a possible implementation, the conversion of the multiple target data blocks into a two-dimensional code according to a preset color square matrix to obtain at least one color matrix picture includes: Obtain the description information of the electrocardiogram report and store the description information in a third data block; Convert the multiple target data blocks and the third data block into a two-dimensional code according to the preset color square matrix to obtain at least one color matrix picture.
[0009] In a possible implementation, the conversion of the multiple target data blocks and the third data block into a two-dimensional code according to the preset color square matrix to obtain at least one color matrix picture includes: Perform two-dimensional code conversion according to the preset color square matrix to obtain an initial color square matrix, and determine the size and color quantity of the initial color square matrix; Partition each color block in the initial color square matrix to obtain the data volume stored in the initial color square matrix; Obtain at least one color matrix picture according to the size, the color quantity, the data volume, the multiple target data blocks, and the third data block.
[0010] In a possible implementation, the obtaining of at least one color matrix picture according to the size, the color quantity, the data volume, the multiple target data blocks, and the third data block includes: Obtain the number of bytes stored in the initial color square matrix according to the size, the color quantity, and the data volume; Obtain the maximum number of encoded data blocks in the initial color square matrix according to the number of bytes and the multiple target data blocks; When the maximum number of encoded data blocks is not an integer, round down to an integer to obtain the target number of encoded data blocks; Obtain at least one color matrix picture according to the target number of encoded data blocks and the third data block.
[0011] In a possible implementation, the third data block further includes transmission data; the data transmission according to the at least one color matrix picture includes: Determine the transmission data according to the at least one color matrix picture; When transmitting the at least one color matrix picture, give a reminder according to the transmission data.
[0012] On the other hand, the present invention also provides an electrocardiogram report reading method, including: Receive at least one color matrix picture of the electrocardiogram report transmitted by the electrocardiogram report transmission method; Extract a color square matrix according to the at least one color matrix picture; Convert the color square matrix according to the color of each square to obtain a fourth data block; Decode the fourth data block to obtain a plurality of fifth data blocks; the plurality of fifth data blocks include a third data block; the third data block includes the description information of the electrocardiogram report; Obtain the original file of the electrocardiogram report according to the serial number of each fifth data block and the description information of the third data block.
[0013] On the other hand, the present invention also provides an electrocardiogram report transmission device, including: A data block determination module, configured to decompose the obtained electrocardiogram report to obtain a plurality of target data blocks; A two-dimensional code conversion module, configured to perform two-dimensional code conversion on the plurality of target data blocks according to a preset color square matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different; A data transmission module, configured to perform data transmission according to the at least one color matrix picture.
[0014] On the other hand, the present invention also provides an electrocardiogram report reading device, including: A picture acquisition module, configured to receive at least one color matrix picture of the electrocardiogram report transmitted by the electrocardiogram report transmission method; A matrix extraction module, configured to extract a color square matrix according to the at least one color matrix picture; A color conversion module, configured to convert the color square matrix according to the color of each square to obtain a fourth data block; A data block decoding module, configured to decode the fourth data block to obtain a plurality of fifth data blocks; the plurality of fifth data blocks include a third data block; the third data block includes the description information of the electrocardiogram report; A file generation module, configured to obtain the original file of the electrocardiogram report according to the sequence number of each fifth data block and the description information of the third data block.
[0015] The beneficial effects of the present invention are as follows: decomposing the obtained electrocardiogram report to obtain a plurality of target data blocks; performing QR code conversion on the plurality of target data blocks according to a preset color square matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different; performing data transmission according to the at least one color matrix picture; by decomposing the electrocardiogram report, the present invention obtains a plurality of target data blocks. Each color block in the preset color square matrix is partitioned and represented by different colors, and at least one color matrix picture including a plurality of target data blocks is obtained, which not only ensures the integrity of the electrocardiogram report during data transmission, but also increases the amount of data saved in each color matrix picture. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic flowchart of an embodiment of the electrocardiogram report transmission method provided by the present invention; Figure 2 It is a schematic flowchart of an embodiment of the generation of target data blocks provided by the present invention; Figure 3 It is a schematic flowchart of an embodiment of the generation of color matrix pictures provided by the present invention; Figure 4 It is a schematic structural diagram of an embodiment of an 8-color square matrix provided by the present invention; Figure 5 It is a schematic structural diagram of an embodiment of the partition of a color block provided by the present invention; Figure 6 For the present invention Figure 3 It is a schematic flowchart of an embodiment of step S303 in the present invention; Figure 7 It is a schematic flowchart of an embodiment of the electrocardiogram report reading method provided by the present invention; Figure 8 It is a schematic structural diagram of an embodiment of the electrocardiogram report transmission device provided by the present invention; Figure 9 It is a schematic structural diagram of an embodiment of the electrocardiogram report reading device provided by the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] The following specifically describes the preferred embodiments of the present invention in conjunction with the accompanying drawings, where the accompanying drawings form a part of this application and are used together with the embodiments of the present invention to explain the principles of the present invention, and are not used to limit the scope of the present invention.
[0018] As Figure 1As shown in the figure, a specific embodiment of the present invention discloses an electrocardiogram report transmission method, including: S101. Decompose the obtained electrocardiogram report to obtain a plurality of target data blocks; S102. Perform two-dimensional code conversion on the plurality of target data blocks according to a preset color square matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different; S103. Perform data transmission according to the at least one color matrix picture.
[0019] It should be understood that: the electrocardiogram report obtained in step S101 can be generated by an electrocardiograph terminal. The present invention can be applied to the electrocardiograph terminal. The electrocardiogram report is processed through the sending program of the electrocardiograph terminal, and at least one color matrix picture obtained by the processing is sent to an electronic terminal, where the electronic terminal includes but is not limited to electronic devices such as mobile phones and iPads.
[0020] In a specific embodiment of the present invention, after obtaining the electrocardiogram report, the electrocardiogram report is decomposed into a plurality of data and processed to obtain a plurality of target data blocks. Then, two-dimensional code conversion can be performed on the plurality of target data blocks according to a preset color square matrix to obtain at least one color matrix picture; wherein, each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different, so that more data can be included in the preset color square matrix. Then, at least one color matrix picture can be subjected to data transmission, so that the electronic terminal can obtain at least one color matrix picture by scanning the color two-dimensional code on the color matrix picture.
[0021] Compared with the prior art, the present embodiment provides decomposing the obtained electrocardiogram report to obtain a plurality of target data blocks; performing two-dimensional code conversion on the plurality of target data blocks according to a preset color square matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different; performing data transmission according to the at least one color matrix picture; the present invention decomposes the electrocardiogram report to obtain a plurality of target data blocks. Each color block in the preset color square matrix is partitioned and represented by different colors to obtain at least one color matrix picture including a plurality of target data blocks, which not only ensures the integrity of the electrocardiogram report during data transmission but also increases the amount of data saved in each color matrix picture.
[0022] In some embodiments of the present invention, step S101 includes: Decompose the electrocardiogram report to obtain a plurality of initial data blocks; Encode the plurality of initial data blocks to obtain the target data block corresponding to each initial data block.
[0023] In a specific embodiment of the present invention, after obtaining an electrocardiogram report, it is possible to add a decomposition of the hollow surface of the electrocardiogram report according to a specified size, and multiple initial data blocks can be obtained. For example, if the electrocardiogram report is 100 bytes and the specified size for decomposing the electrocardiogram report is 10 bytes, then 10 initial data blocks of 10 bytes each (N initial data blocks) can be obtained. Then, the 10 initial data blocks of 10 bytes each can be encoded respectively, so that the target data block corresponding to each initial data block can be obtained.
[0024] In some embodiments of the present invention, as Figure 2 shown, encoding multiple initial data blocks to obtain the target data block corresponding to each initial data block includes: S201. Add a preset number of digital byte serial numbers to each initial data block to obtain the first data block corresponding to each initial data block; S202. Add a preset number of error correction codes to each first data block to obtain the target data block corresponding to each first data block.
[0025] In a specific embodiment of the present invention, a preset number of digital byte serial numbers (the preset number of digital byte serial numbers can be A byte serial numbers) can be added to each initial data block. For example, 2 byte serial numbers can be added to each initial data block, so that the first data block after adding the byte serial numbers can be obtained. For example, 2 byte serial numbers can be added to each of the 10 initial data blocks of 10 bytes each, then 10 first data blocks of 12 bytes each can be obtained. Also, a preset number of error correction codes (the preset number of error correction codes can be B error correction codes) can be added to each first data block. Among them, the error correction code can be Reed - Solomon, to obtain the target data block corresponding to each first data block. For example, if the preset number of error correction codes is 4 bytes, then 10 target data blocks of 16 bytes each can be obtained.
[0026] In some embodiments of the present invention, step S102 includes: Obtain the description information of the electrocardiogram report and store the description information in the third data block; Perform QR code conversion on multiple target data blocks and the third data block according to a preset color square matrix to obtain at least one color matrix picture.
[0027] In a specific embodiment of the present invention, a third data block can be added. Among them, the third data block can be data block 0, which is used to store description information such as the file name, file size, file time, and number of data blocks of the electrocardiogram report, as well as transmission data. Then, QR code conversion can be performed on multiple target data blocks and the third data block according to a preset color square matrix to obtain at least one color matrix picture.
[0028] In some embodiments of the present invention, as Figure 3 shown, performing QR code conversion on a plurality of target data blocks and a third data block according to a preset color block matrix to obtain at least one color matrix picture, including: S301. Performing QR code conversion according to the preset color block matrix to obtain an initial color block matrix, and determining the size and number of colors of the initial color block matrix; S302. Partitioning each color block in the initial color block matrix to obtain the amount of data stored in the initial color block matrix; S303. Obtaining at least one color matrix picture according to the size, number of colors, amount of data, a plurality of target data blocks, and the third data block.
[0029] In a specific embodiment of the present invention, QR code conversion can be performed according to the preset color block matrix to obtain an initial color block matrix, and the size and number of colors of the initial color block matrix can be determined. Among them, the size of the initial color block matrix can be M×M, and the number of colors can be 8 colors. The more colors, the more data can be stored. As Figure 4 shown, Figure 4 is a preset color block matrix of 8 colors. Each color block can represent 3 bits of data. If there are 16 colors, each color block can represent 4 bits of data. If there are 4 colors, each color block can represent 2 bits of data. If there are 2 colors, each color block can represent 1 bit of data. In the embodiment of the present invention, each color block in the initial color block matrix can be partitioned. As Figure 5 shown, a color block can be divided into two areas, and each area can be of a different color, so as to increase the capacity in the color block matrix. The initial color block matrix in the embodiment of the present invention uses 8 colors and 4 pairs of colors. Then each block can store D bits of data, and D is 8, with higher efficiency. Among them, the partitioning method and colors are not limited to Figure 5 the content therein, and can be specifically set according to the actual situation, which is not limited in the embodiment of the present invention. Then at least one color matrix picture can be obtained according to the size, number of colors, amount of data, a plurality of target data blocks, and the third data block.
[0030] In some embodiments of the present invention, as Figure 6 shown, step S303 includes: S601. Obtaining the number of bytes stored in the initial color block matrix according to the size, number of colors, and amount of data; S602. Obtaining the maximum number of encoded data blocks in the initial color block matrix according to the number of bytes and a plurality of target data blocks; S603. When the maximum number of encoded data blocks is not an integer, taking the integer downwards to obtain the target number of encoded data blocks; S604. Obtain at least one color matrix picture according to the target encoded data block quantity and the third data block.
[0031] In a specific embodiment of the present invention, the number of bytes stored in the initial color block matrix can be calculated based on the size M×M, the number of colors, and the data volume. For example, M×M×D / 8 = 10×10×8 / 8 = 10 bytes. Then, the maximum number of encoded data blocks in the initial color block matrix can be calculated based on the number of bytes and multiple target data blocks. For example, M×M×D / 8 / (A + N + B) = 10×10×8 / 8 / (2 + 10 + 4) = 6.25. Then, the maximum number of encoded data blocks is 6.25. When the maximum number of encoded data blocks is not an integer, take the integer downwards to obtain the target encoded data block quantity. For example, if the maximum number of encoded data blocks is 6.25, the target encoded data block quantity can be determined to be 6. Since the number of target data blocks is N, when N is 10, plus the third data block, the number of data blocks can be determined to be 11. When the target encoded data block quantity of each color matrix picture is 6, it can be determined that 2 color matrix pictures are generated. The number of data blocks of the first color matrix picture is 6, and the number of data blocks of the second color matrix picture is 5.
[0032] Further, after obtaining at least one color matrix picture, the sending program can loop-play the color matrix pictures at a certain time (such as 100 ms).
[0033] In some embodiments of the present invention, the third data block further includes transmission data; step S104 includes: Determine the transmission data according to at least one color matrix picture; When transmitting at least one color matrix picture, give a reminder according to the transmission data.
[0034] In a specific embodiment of the present invention, the third data block may further include transmission data. After generating at least one color matrix picture, the transmission data can be determined. The transmission data may include the number of color matrix pictures, the transmission content of the color matrix pictures, etc. For example, how many color matrix pictures are included in total, how much content each color matrix picture can include, etc. Thus, a reminder can be given according to the transmission data. For example, when there are 100 color matrix pictures, if 10% is transmitted, an alert message is output. It is possible to click on the touch screen or a button to notify the sending end to perform the next round of 10% transmission.
[0035] As Figure 7 shown, a specific embodiment of the present invention discloses an electrocardiogram report reading method, including: S701. Receive at least one color matrix picture of the electrocardiogram report transmitted by the electrocardiogram report transmission method; S702. Extract a color block matrix based on at least one color matrix picture; S703. Convert the color block matrix according to the color of each block to obtain a fourth data block; S704. Decode the fourth data block to obtain a plurality of fifth data blocks; among the plurality of fifth data blocks, a third data block is included; the third data block includes description information of the electrocardiogram report; S705. Obtain the original file of the electrocardiogram report according to the serial number of each fifth data block and the description information of the third data block.
[0036] In a specific embodiment of the present invention, it can be applied to an electronic terminal. The electronic terminal can obtain at least one color matrix picture of the electrocardiogram report sent by the electrocardiograph sending program, that is, receive at least one color matrix picture of the above electrocardiogram report transmission method parameters. The electronic terminal includes, but is not limited to, electronic devices such as mobile phones and iPads. The at least one color matrix picture can be data in a video stream. By intercepting each frame picture in the video stream, at least one color matrix picture can be obtained. Then, according to the color matrix positioning points and the border in each color matrix picture, the color matrix can be extracted. Then, the color block matrix is converted into data according to the color of each block to obtain a fourth data block. The entire picture can be decoded into a large data block, that is, the fourth data block. Each time (A + N + B) bytes of data are read from the fourth data block and decoded using ReedSolomon to obtain A + N fifth data blocks, which may include a third data block. The third data block can be data block 0, and data block 0 has file-related description information. When enough data blocks are decoded, the data blocks can be rearranged according to the description information and serial number in the third data block to obtain the original file of the electrocardiogram report.
[0037] The embodiment of the present invention realizes the direct transmission of the electrocardiogram report from the electrocardiograph to the mobile phone, and the electrocardiogram report can be completely previewed and used on the mobile phone. The transmission speed is fast, and it is convenient and fast to use.
[0038] In order to better implement the electrocardiogram report transmission method in the embodiment of the present invention, correspondingly, on the basis of the electrocardiogram report transmission method, the embodiment of the present invention further provides an electrocardiogram report transmission device, as Figure 8 shown. The electrocardiogram report transmission device 800 includes: A data block determination module 801, configured to decompose the obtained electrocardiogram report to obtain a plurality of target data blocks; A two-dimensional code conversion module 802, configured to perform two-dimensional code conversion on the plurality of target data blocks according to the color block matrix in the preset color block matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes a plurality of partitions, and the colors of each partition are different; A data transmission module 803 for data transmission based on at least one color matrix picture.
[0039] The electrocardiogram report transmission device 800 provided in the above embodiments can implement the technical solutions described in the above embodiments of the electrocardiogram report transmission method. For the specific implementation principles of the above modules or units, reference can be made to the corresponding content in the above embodiments of the electrocardiogram report transmission method, which will not be elaborated here.
[0040] To better implement the electrocardiogram report reading method in the embodiments of the present invention, correspondingly, the embodiments of the present invention also provide an electrocardiogram report reading device on the basis of the electrocardiogram report reading method, as Figure 9 shown. The electrocardiogram report reading device 900 includes: A picture acquisition module 901 for receiving at least one color matrix picture of the electrocardiogram report transmitted by the electrocardiogram report transmission method; A matrix extraction module 902 for extracting a color square matrix according to at least one color matrix picture; A color conversion module 903 for converting the color square matrix according to the color of each square to obtain a fourth data block; A data block decoding module 904 for decoding the fourth data block to obtain a plurality of fifth data blocks; the plurality of fifth data blocks include a third data block; the third data block includes the description information of the electrocardiogram report; A file generation module 905 for obtaining the original file of the electrocardiogram report according to the serial number of each fifth data block and the description information of the third data block.
[0041] The electrocardiogram report reading device 900 provided in the above embodiments can implement the technical solutions described in the above embodiments of the electrocardiogram report reading method. For the specific implementation principles of the above modules or units, reference can be made to the corresponding content in the above embodiments of the electrocardiogram report reading method, which will not be elaborated here.
Claims
1. A method for transmitting an electrocardiogram report, characterized in that: include: Decomposing the acquired electrocardiogram report to obtain multiple target data blocks; Convert the multiple target data blocks into QR codes according to a preset color square matrix to obtain at least one color matrix image; each color block in the at least one color matrix image includes multiple partitions, and each partition has a different color; The data transmission is performed according to the at least one color matrix picture.
2. The electrocardiogram report transmission method according to claim 1, characterized in that: The obtained electrocardiogram report is decomposed to obtain multiple target data blocks, including: Decomposing the electrocardiogram report to obtain a plurality of initial data blocks; The multiple initial data blocks are encoded to obtain a target data block corresponding to each initial data block.
3. The electrocardiogram report transmission method according to claim 2, characterized in that: The encoding of the multiple initial data blocks to obtain a target data block corresponding to each initial data block includes: Adding a preset number of byte sequence numbers to each of the initial data blocks to obtain a first data block corresponding to each of the initial data blocks; A preset number of error correction codes are added to each first data block to obtain a target data block corresponding to each first data block.
4. The electrocardiogram report transmission method according to claim 1, characterized in that: The converting the plurality of target data blocks into two-dimensional codes according to a preset color square matrix to obtain at least one color matrix picture includes: Obtaining description information of the electrocardiogram report, and storing the description information in a third data block; The multiple target data blocks and the third data block are converted into two-dimensional codes according to the preset color square matrix to obtain at least one color matrix picture.
5. The electrocardiogram report transmission method according to claim 4, characterized in that: The converting the plurality of target data blocks and the third data block into two-dimensional codes according to the preset color square matrix to obtain at least one color matrix picture includes: Performing QR code conversion according to the preset color square matrix to obtain an initial color square matrix, and determining the size and number of colors of the initial color square matrix; Partitioning each color block in the initial color block matrix to obtain the amount of data stored in the initial color block matrix; At least one color matrix picture is obtained according to the size, the number of colors, the data amount, the multiple target data blocks and the third data block.
6. The electrocardiogram report transmission method according to claim 5, characterized in that: The step of obtaining at least one color matrix picture according to the size, the number of colors, the data amount, the plurality of target data blocks, and the third data block comprises: According to the size, the number of colors and the amount of data, the number of bytes stored in the initial color square matrix is obtained; According to the number of bytes and the plurality of target data blocks, obtaining a maximum amount of coded data blocks in the initial color block matrix; When the maximum number of coded data blocks is not an integer, round down to an integer to obtain a target number of coded data blocks; At least one color matrix picture is obtained according to the target encoding data block amount and the third data block.
7. The electrocardiogram report transmission method according to claim 1, characterized in that: The third data block also includes transmission data; and the data transmission according to the at least one color matrix picture includes: determining transmission data according to the at least one color matrix picture; When the at least one color matrix picture is transmitted, a reminder is given according to the transmission data.
8. A method for reading an electrocardiogram report, characterized in that: Implementing the electrocardiogram report transmission method as claimed in any one of claims 1 to 7, comprising: Receiving at least one color matrix picture of an electrocardiogram report transmitted by an electrocardiogram report transmission method; Extracting a color square matrix according to the at least one color matrix picture; Convert the color square matrix according to the color of each square to obtain a fourth data block; Decoding the fourth data block to obtain a plurality of fifth data blocks; the plurality of fifth data blocks include a third data block; the third data block includes description information of the electrocardiogram report; The original file of the electrocardiogram report is obtained according to the sequence number of each fifth data block and the description information of the third data block.
9. An electrocardiogram report transmission device, characterized in that: Implementing the electrocardiogram report transmission method as claimed in any one of claims 1 to 7, comprising: A data block determination module, used for decomposing the acquired electrocardiogram report to obtain multiple target data blocks; A two-dimensional code conversion module is used to convert the multiple target data blocks into two-dimensional codes according to a preset color square matrix to obtain at least one color matrix picture; each color block in the at least one color matrix picture includes multiple partitions, and each partition has a different color; A data transmission module is used to perform data transmission according to the at least one color matrix picture.
10. An electrocardiogram report reading device, characterized in that: Implementing the electrocardiogram report transmission method as claimed in any one of claims 1 to 7, comprising: An image acquisition module, used for receiving at least one color matrix image of an electrocardiogram report transmitted by an electrocardiogram report transmission method; A matrix extraction module, used for extracting a color square matrix according to the at least one color matrix picture; A color conversion module, used for converting the color square matrix according to the color of each square to obtain a fourth data block; A data block decoding module, configured to decode the fourth data block to obtain a plurality of fifth data blocks; the plurality of fifth data blocks include a third data block; the third data block includes description information of the electrocardiogram report; The file generation module is used to obtain the original file of the electrocardiogram report according to the sequence number of each fifth data block and the description information of the third data block.