Air correction method and device, storage medium, and computer equipment

By determining the scanning protocol and sequence based on the historical protocol set of target medical devices, the air correction protocol is directly applied, which solves the problems of long air correction time and tube loss, and improves image quality and user experience.

CN115165937BActive Publication Date: 2025-08-12NEUSOFT MEDICAL SYST CO LTD
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Patent Information

Application Number
CN202210565609.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-23
Publication Date
2025-08-12
Estimated Expiration
2042-05-23

AI Technical Summary

Technical Problem

The existing medical imaging equipment has problems of excessive time consumption and bulb loss during the air correction process. At the same time, the calculation and generated air correction table are insufficient, which affects the image quality.

Method used

Through the collection of performance testing and patient medical protocols based on the target medical device, the target scanning protocol and scanning sequence are determined, and the air correction protocol is directly applied to correct, avoiding full-set scanning and calculation generation.

Benefits of technology

Reduce air correction time, reduce tube loss, improve air correction quality, improve scanned image quality and user experience.

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Abstract

The present application discloses an air correction method and apparatus, a storage medium, and a computer device. The method comprises: determining a target scanning protocol based at least on a set of performance test protocols for a target medical device and / or a set of patient medical protocols; determining a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol; and performing air correction on the target medical device using the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed. The present application directly determines the air correction protocol based on the actual usage of the target medical device, which can effectively improve the quality of air correction in different situations while reducing air correction time and tube loss, thereby improving scan image quality and enhancing user experience.
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Description

Technical Field

[0001] The present application relates to the field of medical technology, and in particular to an air correction method and device, a storage medium, and a computer device. Background Art

[0002] Medical imaging equipment, such as CT imaging equipment, has become an indispensable medical device in current hospitals. After imaging, such medical imaging equipment usually needs to be calibrated using an air correction table to remove ring or band artifacts in the image and improve image quality.

[0003] In the prior art, when generating an air correction table, either all air correction protocols are scanned to generate the table, or only a portion of typical air correction protocols are scanned and then the air correction tables for the remaining unscanned protocols are generated through calculation. However, with the first method, due to the large number of air correction protocols, scanning all of them is time-consuming. Furthermore, many of these air correction protocols are rarely or even rarely used, which can easily lead to unnecessary tube wear. With the second method, the air correction table generated through calculation is less accurate than that generated through direct scanning, which can affect image quality. Summary of the Invention

[0004] In view of this, the present application provides an air correction method and device, storage medium, and computer equipment, which directly determine the air correction protocol based on the equipment usage of the target medical device. While reducing the air correction time and reducing tube loss, it can effectively improve the air correction quality in different situations, improve the scanning image quality, and enhance the user experience.

[0005] According to one aspect of the present application, there is provided an air correction method, comprising:

[0006] Determining a target scanning protocol based at least on a performance test protocol set and / or a patient encounter protocol set of a target medical device, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient encounter protocol set is obtained based on historical patient encounter records of the target medical device;

[0007] determining a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol;

[0008] The air calibration protocol corresponding to the target scanning sequence is used as the air calibration protocol to be executed, and air calibration is performed on the target medical device.

[0009] Optionally, before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, the method further includes:

[0010] Identifying a first historical scanning protocol corresponding to a first target test with a failed test result from historical performance test records of the target medical device, and determining the performance test protocol set based on the first historical scanning protocol; and / or,

[0011] Identifying, from historical performance test records of the target medical device, a second historical scanning protocol corresponding to a second target test whose test value is within a preset marginal interval, and determining the performance test protocol set based on the second historical scanning protocol, wherein the preset marginal interval is a preset range of test value values for which the test passes but the test effect is poor; and / or,

[0012] Identify periodic performance test records from the historical performance test records of the target medical device, determine the test time corresponding to the periodic performance test record closest to the current time, and when the time interval between the test time and the current time is greater than or equal to the preset test time interval, use the factory performance test set as the performance test protocol set, wherein the periodic performance test record is the test record obtained when performing periodic testing according to the factory performance test set.

[0013] Optionally, before determining the target scanning protocol based at least on the patient medical protocol set of the target medical device, the method further includes:

[0014] Identifying a historical scanning protocol corresponding to the target medical device from the historical patient medical records, determining a third historical scanning protocol that meets a first preset condition from the historical scanning protocols corresponding to the target medical device, and determining the patient medical protocol set based on the third historical scanning protocol, wherein the first preset condition includes at least one of a first preset time condition, a first preset frequency condition, and a first preset number of times condition; and / or,

[0015] Identifying target medical records within a preset time period from the historical patient medical records, determining a fourth historical scanning protocol corresponding to the target medical device from the target medical records, and determining the patient medical protocol set based on the fourth historical scanning protocol; and / or,

[0016] Identifying historical scanning protocols corresponding to the target medical device from the historical patient medical records, sorting the historical scanning protocols corresponding to the target medical device according to a second preset condition, selecting a preset number of the historical scanning protocols that are ranked first as commonly used scanning protocols, and determining the patient medical protocol set based on the commonly used scanning protocols, wherein the second preset condition includes at least one of a second preset time condition, a second preset frequency condition, and a second preset number of times condition; and / or,

[0017] Based on the air correction table usage record corresponding to the target medical device in the historical patient medical record, a fifth historical scanning protocol corresponding to the air correction table usage record is determined, and the patient medical protocol set is determined based on the fifth historical scanning protocol.

[0018] Optionally, after determining the target scanning protocol based at least on the performance test protocol set of the target medical device and / or the patient medical protocol set, the method further includes:

[0019] Obtaining historical performance test records and / or historical patient medical records of the target medical device, and classifying the historical performance test records and / or historical patient medical records according to the scanning protocols in the performance test protocol set and / or the patient medical protocol set;

[0020] Accordingly, determining the target scanning sequence based on the scanning sequence corresponding to the target scanning protocol includes:

[0021] The scanning sequence is determined based on the historical performance test records and / or historical patient medical records under the category corresponding to the target scanning protocol, and the target scanning sequence is determined based on the scanning sequence.

[0022] Optionally, the method further includes:

[0023] The performance test protocol set and / or patient medical protocol set is sent to the record receiving terminal so that the record receiving terminal classifies subsequent performance test records and / or patient medical records based on the scanning protocols in the performance test protocol set and / or patient medical protocol set.

[0024] Optionally, determining the target scanning sequence based on the scanning sequence corresponding to the target scanning protocol includes:

[0025] Determining a scanning sequence corresponding to the target scanning protocol;

[0026] determining a scanning frequency of the scanning sequence based on the scanning log;

[0027] The scanning sequence whose scanning frequency is greater than a first preset frequency threshold and / or whose scanning frequency is equal to a second preset frequency threshold is determined as the target scanning sequence.

[0028] Optionally, after taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed, the method further includes:

[0029] Acquire an air correction table set, and identify whether the air correction table set includes a target air correction table corresponding to the air correction protocol to be executed;

[0030] When included, determining whether any of the target air correction tables meets a preset rejection condition;

[0031] When any of the target air correction tables meets the preset exclusion condition, the target air correction protocol corresponding to the target air correction table is excluded from the air correction protocols to be executed.

[0032] Optionally, after taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed, the method further includes:

[0033] generating a correction protocol list based on the air correction protocol to be executed;

[0034] Identifying device type information of the target medical device and institutional attribute information of the medical institution where the target medical device is located, and determining a matching medical device to be received based on the device type information and the institutional attribute information;

[0035] The correction protocol list is sent to the receiving medical device.

[0036] According to another aspect of the present application, there is provided an air correction device, comprising:

[0037] a target scanning protocol determination module, configured to determine a target scanning protocol based at least on a performance test protocol set of a target medical device and / or a patient medical consultation protocol set, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient medical consultation protocol set is obtained based on historical patient medical consultation records of the target medical device;

[0038] a target scanning sequence determining module, configured to determine a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol;

[0039] The air correction module is used to use the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed to perform air correction on the target medical device.

[0040] Optionally, the device further comprises:

[0041] A first determination module is configured to, before determining a target scan protocol based at least on a performance test protocol set of a target medical device, identify, from historical performance test records of the target medical device, a first historical scan protocol corresponding to a first target test with a failed test result, and determine the performance test protocol set based on the first historical scan protocol; and / or,

[0042] A second determination module is configured to identify, from historical performance test records of the target medical device, a second historical scanning protocol corresponding to a second target test whose test value is within a preset marginal interval before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, and determine the performance test protocol set based on the second historical scanning protocol, wherein the preset marginal interval is a preset range of test value values that pass the test but have poor test results; and / or,

[0043] The third determination module is used to identify periodic performance test records from the historical performance test records of the target medical device before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, and determine the test time corresponding to the periodic performance test record closest to the current time; when the time interval between the test time and the current time is greater than or equal to the preset test time interval, the factory performance test set is used as the performance test protocol set, wherein the periodic performance test record is the test record obtained when the periodic test is performed according to the factory performance test set.

[0044] Optionally, the device further comprises:

[0045] a fourth determination module, configured to, before determining a target scanning protocol based at least on a set of patient medical protocols for a target medical device, identify a historical scanning protocol corresponding to the target medical device from the historical patient medical records, determine a third historical scanning protocol that satisfies a first preset condition from the historical scanning protocols corresponding to the target medical device, and determine the set of patient medical protocols based on the third historical scanning protocol, wherein the first preset condition includes at least one of a first preset time condition, a first preset frequency condition, and a first preset number of times condition; and / or,

[0046] a fifth determination module configured to, before determining a target scanning protocol based at least on a set of patient medical protocols for a target medical device, identify target medical records within a preset time period from the historical patient medical records, determine a fourth historical scanning protocol corresponding to the target medical device from the target medical records, and determine the set of patient medical protocols based on the fourth historical scanning protocol; and / or

[0047] a sixth determination module, configured to identify, before determining a target scanning protocol, from the historical patient medical records the historical scanning protocols corresponding to the target medical device at least based on the patient medical protocol set of the target medical device, sort the historical scanning protocols corresponding to the target medical device according to a second preset condition, use a preset number of the historical scanning protocols that are ranked first as common scanning protocols, and determine the patient medical protocol set based on the common scanning protocols, wherein the second preset condition includes at least one of a second preset time condition, a second preset frequency condition, and a second preset number of times condition; and / or,

[0048] The seventh determination module is used to determine the target scanning protocol based on at least the patient medical protocol set of the target medical device, and determine the fifth historical scanning protocol corresponding to the air correction table usage record corresponding to the target medical device in the historical patient medical record before determining the target scanning protocol, and determine the patient medical protocol set based on the fifth historical scanning protocol.

[0049] Optionally, the device further comprises:

[0050] a record acquisition module configured to, after determining a target scanning protocol based at least on a performance test protocol set and / or a patient medical consultation protocol set for a target medical device, acquire historical performance test records and / or historical patient medical consultation records for the target medical device, and classify the historical performance test records and / or historical patient medical consultation records according to the scanning protocols in the performance test protocol set and / or the patient medical consultation protocol set;

[0051] Accordingly, the target scanning sequence determination module is configured to determine the scanning sequence based on the historical performance test records and / or historical patient medical records under the category corresponding to the target scanning protocol, and determine the target scanning sequence based on the scanning sequence.

[0052] Optionally, the device further comprises:

[0053] The protocol sending module is used to send the performance test protocol set and / or patient medical protocol set to the record receiving terminal, so that the record receiving terminal can classify subsequent performance test records and / or patient medical records based on the scanning protocols in the performance test protocol set and / or patient medical protocol set.

[0054] Optionally, the target scanning sequence determination module is further used to: determine the scanning sequence corresponding to the target scanning protocol; determine the scanning frequency of the scanning sequence based on the scanning log; and determine the scanning sequence whose scanning frequency is greater than a first preset frequency threshold and / or whose scanning frequency is equal to a second preset frequency threshold as the target scanning sequence.

[0055] Optionally, the device further comprises:

[0056] an identification module configured to, after taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed, obtain an air correction table set and identify whether the air correction table set includes a target air correction table corresponding to the air correction protocol to be executed;

[0057] A judgment module, used for judging whether any of the target air correction tables meets a preset rejection condition when included;

[0058] The elimination module is configured to eliminate the target air correction protocol corresponding to any of the target air correction tables from the air correction protocols to be executed when the target air correction table satisfies the preset elimination condition.

[0059] Optionally, the device further comprises:

[0060] A list sending module is used to generate a correction protocol list based on the air correction protocol to be executed after taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed; identify the device type information of the target medical device and the institutional attribute information of the medical institution where the target medical device is located, and determine the matching medical device to be received based on the device type information and the institutional attribute information; and send the correction protocol list to the medical device to be received.

[0061] According to another aspect of the present application, a storage medium is provided, on which a computer program is stored. When the program is executed by a processor, the above-mentioned air correction method is implemented.

[0062] According to another aspect of the present application, a computer device is provided, including a storage medium, a processor, and a computer program stored on the storage medium and executable on the processor, wherein the processor implements the above-mentioned air correction method when executing the program.

[0063] By means of the above technical solution, the present application provides an air correction method and device, storage medium, and computer equipment. First, the target scanning protocol can be determined based on the performance test protocol set of the target medical device and / or the patient medical protocol set. Then, after all the scanning sequences corresponding to each target scanning protocol can be determined, the target scanning sequence can be further determined based on all the scanning sequences corresponding to the target scanning protocol. Finally, each target scanning sequence can be directly used as the air correction protocol to be executed, or the air correction protocol to be executed can be obtained based on the air correction protocol that matches the technical parameters in each target scanning sequence, and then the target medical device can be directly air-calibrated according to the air correction protocol to be executed. The embodiment of the present application no longer needs to use the cumbersome complete set of air correction schemes, nor does it need to calculate the daily air correction scheme. Instead, the air correction protocol is determined based on the performance test protocol set of the target medical device and the patient medical protocol set. Compared with the method of using the complete set of air correction schemes for air correction, the embodiment of the present application can reduce the air correction time and reduce the tube loss. Compared with the method of using the calculated air correction scheme for air correction, it can effectively improve the air correction quality in different situations, improve the scan image quality, and enhance the user experience.

[0064] The above description is only an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS

[0065] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0066] Figure 1 A schematic diagram of a flow chart of an air correction method provided in an embodiment of the present application is shown;

[0067] Figure 2 A schematic diagram of another air correction method provided in an embodiment of the present application is shown;

[0068] Figure 3 A schematic diagram of another air correction method provided in an embodiment of the present application is shown;

[0069] Figure 4 A schematic structural diagram of an air correction device provided in an embodiment of the present application is shown. DETAILED DESCRIPTION

[0070] The present application will be described in detail below with reference to the accompanying drawings and in combination with embodiments. It should be noted that, unless there is a conflict, the embodiments and features in the embodiments of the present application can be combined with each other.

[0071] In this embodiment, an air correction method is provided, such as Figure 1 As shown, the method includes:

[0072] Step 101: determining a target scanning protocol based at least on a performance test protocol set and / or a patient consultation protocol set of a target medical device, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient consultation protocol set is obtained based on historical patient consultation records of the target medical device;

[0073] The air correction method provided in the embodiments of the present application can determine the air correction protocol for a target medical device or a class of target medical devices. The target medical device in the embodiments of the present application can specifically refer to a specific medical device or a class of medical devices. The target medical device can be any medical imaging device that uses an air correction table for image correction after imaging, such as CT and PET-CT. First, a performance test protocol set and / or a patient medical protocol set for the target medical device can be obtained. The performance test protocol set for the target medical device can be a set of scan protocols used when performing a performance test on the target medical device, and the patient medical protocol set for the target medical device can be a set of protocols used when performing a medical scan on a patient using the target medical device. Both the performance test protocol set and the patient medical protocol set contain scan protocols. Therefore, based on the scan protocols in the performance test protocol set and / or the patient medical protocol set of the target medical device, all scan protocols can be used as target scan protocols, or a portion of the scan protocols can be used as target scan protocols. The performance test protocol set in the embodiments of the present application can be a set determined based on the historical performance test records of the target medical device. Performance testing includes but is not limited to at least one of automatic testing (AutoPerformance, AP for short), acceptance testing (AutoAcceptance, AA for short), consistency testing (Auto Constancy, AC for short), image testing (QualityAssurance, QA for short) and factory index testing (FactoryTest, FT for short). The patient medical protocol set can be a set generated based on the historical patient medical records of the target medical device. When determining the target scanning protocol from the performance test protocol set and / or the patient medical protocol set, it can be determined automatically or manually by the staff. For example, the performance test protocol set and / or the patient medical protocol set are displayed on the operation interface, and the staff can select and determine the target scanning protocol by themselves. According to the performance test protocol set and the patient medical protocol set, all scanning protocols subsequently used by the target medical device can be included. Therefore, the performance test protocol set and the patient medical protocol set are used to determine the air correction protocol, and the subsequent air correction is more accurate, while reducing the waste of tubes caused by invalid air correction.

[0074] Step 102, determining a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol;

[0075] In this embodiment, each target scanning protocol may include one or more scanning sequences. As shown in Table 1, target scanning protocol Protocol-a includes three scanning sequences. After determining all scanning sequences corresponding to each target scanning protocol, all scanning sequences corresponding to the target scanning protocol may be used as target scanning sequences, or a portion of all scanning sequences corresponding to the target scanning protocol may be used as target scanning sequences.

[0076] Table 1

[0077] Serial number Scanning Protocol Scan sequence 1 Protocol-a Scan-1 2 Protocol-a Scan-2 3 Protocol-a Scan-3

[0078] Step 103 : Using the air calibration protocol corresponding to the target scanning sequence as the air calibration protocol to be executed, and performing air calibration on the target medical device.

[0079] In this embodiment, after determining the target scanning sequence, each target scanning sequence can be directly used as the air correction protocol to be executed, or the air correction protocol to be executed can be obtained based on the air correction protocol that matches the technical parameters in each target scanning sequence, and then the target medical device can be directly air-calibrated according to the air correction protocol to be executed. After the air correction, an air correction table can be generated.

[0080] By applying the technical solution of this embodiment, first, the target scanning protocol can be determined based on the performance test protocol set of the target medical device and / or the patient medical protocol set. Then, after all the scanning sequences corresponding to each target scanning protocol can be determined, the target scanning sequence can be further determined based on all the scanning sequences corresponding to the target scanning protocol. Finally, each target scanning sequence can be directly used as the air correction protocol to be executed, or the air correction protocol to be executed can be obtained based on the air correction protocol that matches the technical parameters in each target scanning sequence, and then the target medical device can be directly air-calibrated according to the air correction protocol to be executed. The embodiment of the present application no longer needs to use the cumbersome complete set of air correction schemes, nor does it need to calculate the daily air correction scheme. Instead, the air correction protocol is determined based on the performance test protocol set of the target medical device and / or the patient medical protocol set. Compared with the method of using the complete set of air correction schemes for air correction, the embodiment of the present application can reduce the air correction time and reduce the tube loss. Compared with the method of using the calculated air correction scheme for air correction, it can effectively improve the air correction quality in different situations, improve the scan image quality, and enhance the user experience.

[0081] Optionally, in an embodiment of the present application, before step 101, the method further includes: identifying a first historical scanning protocol corresponding to a first target test whose test result is a failed test from the historical performance test records of the target medical device, and determining the performance test protocol set based on the first historical scanning protocol; and / or, identifying a second historical scanning protocol corresponding to a second target test whose test value is within a preset marginal interval from the historical performance test records of the target medical device, and determining the performance test protocol set based on the second historical scanning protocol, wherein the preset marginal interval is a preset test value range interval for passing the test but with poor test results; and / or, identifying a periodic performance test record from the historical performance test records of the target medical device, determining the test time corresponding to the periodic performance test record closest to the current time, and when the time interval between the test time and the current time is greater than or equal to the preset test time interval, using the factory performance test set as the performance test protocol set, wherein the periodic performance test record is a test record obtained when performing a periodic test according to the factory performance test set.

[0082] In this embodiment, when the performance test of the target medical device is performed, not all performance tests can be passed at one time. Therefore, the test results corresponding to each historical performance test record can be identified from the historical performance test records corresponding to the target medical device, and the performance test that failed can be determined as the first target test, and the first historical scanning protocol corresponding to each first target test can be determined. Then, the first historical scanning protocols corresponding to each first target test can be aggregated together, and the aggregated first historical scanning protocols can be deduplicated, and the performance test protocol set can be determined based on the deduplicated first historical scanning protocols. Specifically, the performance test protocol set can be determined based on all the deduplicated first historical scanning protocols, or in response to the staff's selection instruction for any one or several of the deduplicated first historical scanning protocols, the performance test protocol set can be determined based on the first historical scanning protocol corresponding to the selection instruction. The embodiment of the present application first filters out the first historical scanning protocol corresponding to the first target test that has not passed before, and determines the performance test protocol set based on the first historical scanning protocol. When the test items that failed the test are subsequently retested, the air correction protocol can be quickly determined based on the performance test protocol set, and the loss of the tube can be reduced.

[0083] In this embodiment, after each performance test is performed, one or more test values can be generated, and the test values can be used to determine whether the performance test has passed. Specifically, for the case of generating a test value, a pass result value interval can be pre-set. If the test value is within the pass result value interval, then the performance test has passed. The pass result value interval can also include a preset edge interval. If the test value is within the preset edge interval of the pass result value interval, then the performance test has passed, but the overall effect is not ideal. In an exemplary embodiment, the preset edge interval can be a first numerical interval above the minimum boundary value of the value interval, or a second numerical interval below the maximum boundary value. The first and second numerical values can be the same or different. For example, if the pass result value interval is 3.2-4.7, then the preset edge interval can be 3.2-3.5, that is, the minimum value is 0.3 intervals above, and 4.4-4.7, that is, the maximum value is 0.3 intervals below. If the test value is 4.6, then although the test has passed, the test effect is not ideal, and the performance test can be repeated for this part of the test items. It should be noted that the first numerical value and the second numerical value can be fixed values or can be based on percentages of boundary values. Therefore, a second target test whose test value is within a preset marginal interval can be determined from the historical performance test records of the target medical device, and then a performance test protocol set can be determined based on the second historical scanning protocol corresponding to the second target test. In the embodiment of the present application, the second historical scanning protocol corresponding to the second target test that passed the previous test but had unsatisfactory results is first screened out, and a performance test protocol set is determined based on the second historical scanning protocol. When these test items are subsequently retested, the air correction protocol can also be quickly determined based on the performance test protocol set, and the loss of the tube can be reduced.

[0084] In addition, the performance test corresponding to the target medical device includes a periodic test that must be performed once every certain period of time, and also includes a supplementary test that is subsequently performed when the test fails or the test passes but the effect is not ideal. Among them, a periodic performance test record can be generated when the periodic test is performed. When performing the periodic test, air correction can be performed once in accordance with the factory performance test set each time. Therefore, the periodic performance test record can be determined from the historical performance test records of the target medical device, and each periodic performance test record corresponds to a test time. Further, the test time of the periodic performance test record closest to the current time can be determined, and the time interval between the test time and the current time can be judged. If the time interval is greater than or equal to the preset test time interval, it means that the periodic test can be performed again, and the factory performance test set can be directly used as the performance test protocol set. In the embodiment of the present application, when the periodic test is not performed beyond the preset test time interval, the factory performance test set is directly used as the performance test protocol set, which can quickly determine the target scanning protocol and improve the air correction efficiency of the periodic test.

[0085] Alternatively, the factory performance test set corresponding to the target medical device can be directly used as the performance test protocol set. The factory performance test set is the complete set of performance test protocols established before the target medical device leaves the factory. Here, the factory performance test set can also be obtained based on historical performance test records.

[0086] Optionally, in an embodiment of the present application, before step 101, the method further includes: identifying a historical scanning protocol corresponding to the target medical device from the historical patient medical records, determining a third historical scanning protocol that meets a first preset condition from the historical scanning protocols corresponding to the target medical device, and determining the patient medical protocol set based on the third historical scanning protocol, wherein the first preset condition includes at least one of a first preset time condition, a first preset frequency condition, and a first preset number of conditions; and / or identifying a target medical record within a preset time period from the historical patient medical records, determining a fourth historical scanning protocol corresponding to the target medical device from the target medical record, and determining the patient medical protocol set based on the fourth historical scanning protocol. Protocol set; and / or, identifying the historical scanning protocol corresponding to the target medical device from the historical patient medical records, sorting the historical scanning protocols corresponding to the target medical device according to a second preset condition, taking the preset number of historical scanning protocols with the highest sorting as common scanning protocols, and determining the patient medical protocol set based on the common scanning protocols, wherein the second preset condition includes at least one of a second preset time condition, a second preset frequency condition and a second preset number of conditions; and / or, based on the air correction table usage record corresponding to the target medical device in the historical patient medical records, determining a fifth historical scanning protocol corresponding to the air correction table usage record, and determining the patient medical protocol set based on the fifth historical scanning protocol.

[0087] In this embodiment, since the historical patient medical records corresponding to the target medical device are obtained, the historical patient medical records corresponding to each patient include at least the historical scanning protocol corresponding to the target medical device. One or more historical scanning protocols used by each patient when performing imaging using the target medical device can be determined from the historical patient medical records of each patient, and a third historical scanning protocol that meets the first preset condition is determined based on the one or more historical scanning protocols corresponding to each patient. Here, the first preset condition may include a first preset time condition, a first preset frequency condition, and may also include a first preset number condition. After determining the third historical scanning protocol, the patient medical protocol set can be further determined based on the third historical scanning protocol. For example, the first preset condition is a first preset number condition, and the first preset number condition is 10 times, then the one determined from the historical scanning protocols that has been used more than 10 times is used as the third historical scanning protocol.

[0088] In addition, the target medical records within a preset time period can be determined from the historical patient medical records based on the historical patient medical records corresponding to each patient. For example, the preset time period can be 15 days from the current day, so the historical patient medical records within 15 days from the current day can be found from the historical patient medical records as the target medical records. In addition, the preset time period can also be other specified time periods. Since the target medical records include not only the historical scanning protocols corresponding to the target medical device, but also the historical scanning protocols corresponding to other medical devices, the fourth historical scanning protocol corresponding to the target medical device can be identified from the target medical records. After determining the fourth historical scanning protocol, the patient medical protocol set can be further determined based on the fourth historical scanning protocol.

[0089] It is also possible to determine the historical scan protocols corresponding to the target medical device from the historical patient medical records based on the historical patient medical records. Then, the historical scan protocols corresponding to the target medical device are sorted according to one or more of the second preset time condition, the second preset frequency condition, and the second preset number condition. For example, when sorting according to the second preset frequency condition, the historical scan protocols corresponding to the target medical device can be sorted according to the frequency of use; when sorting according to the second preset number condition, the historical scan protocols corresponding to the target medical device can be sorted according to the number of times used. Afterwards, the preset number of historical scan protocols that are ranked at the top are used as commonly used scan protocols, and a patient medical protocol set is determined based on the commonly used scan protocols. For example, if the preset number is 10 and the second preset condition is the second preset frequency condition, then the patient medical protocol set can be determined based on the 10 historical scan protocols with the highest frequency of use. In addition, commonly used scan protocols can also be frequently used scan protocols that staff members have collected when scanning patients, or frequently used scan protocols determined by other means.

[0090] A patient medical protocol set can also be determined based on the air correction table usage record. Specifically, the air correction table usage record corresponding to the target medical device can be determined from the historical patient medical records. Different medical devices also correspond to different air correction tables. The corresponding fifth historical scan protocol can then be determined based on the air correction table usage record of the target medical device. After determining the fifth historical scan protocol, the patient medical protocol set can be further determined from the fifth historical scan protocol. Since the air correction table corresponds to the scan protocol, when the scan protocol is determined, the air correction table is also determined. Therefore, the fifth historical scan protocol can be determined based on the air correction table usage record.

[0091] Optionally, in an embodiment of the present application, step 102 includes: determining a scanning sequence corresponding to the target scanning protocol; determining a scanning frequency of the scanning sequence based on a scanning log; and determining the scanning sequence whose scanning frequency is greater than a first preset frequency threshold and / or whose scanning frequency is equal to a second preset frequency threshold as the target scanning sequence.

[0092] In this embodiment, after determining the target scan protocol, the scan sequence corresponding to the target scan protocol can be further determined. Then, based on the scan log of the target medical device, the scan frequency corresponding to each scan sequence can be determined from the scan log. Finally, a scan sequence with a scan frequency greater than a first preset frequency threshold, and / or a scan frequency equal to a second preset frequency threshold can be used as a target scan sequence. Here, the first preset frequency threshold and the second preset frequency threshold can be pre-set, and the second preset frequency threshold can be 0. When the second preset frequency threshold is 0, it means that the target medical device has not been scanned according to the scan sequence, but the scan sequence may also be relatively important. For example, weather changes have a greater impact on the scanning effect of the target medical device. When the weather changes are more significant, the staff may directly modify the values of key scan parameters based on the original scan sequence to form a new scan sequence. At this time, the scan frequency corresponding to the new scan sequence is 0, but the new scan sequence can also be used as the target scan sequence.

[0093] Optionally, in an embodiment of the present application, after step 103 of "taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed", the method further includes: obtaining an air correction table set, identifying whether the air correction table set contains a target air correction table corresponding to the air correction protocol to be executed; when contained, determining whether any of the target air correction tables meets a preset exclusion condition; when any of the target air correction tables meets the preset exclusion condition, excluding the target air correction protocol corresponding to the target air correction table from the air correction protocol to be executed.

[0094] In this embodiment, after the target scan sequence is used as the air correction protocol, an air correction table set can be further obtained. The air correction table set can include multiple air correction tables. Next, the multiple air correction tables in the air correction table set can be checked to see whether they contain an air correction table corresponding to the air correction protocol to be executed. If the multiple air correction tables in the air correction table set contain an air correction table corresponding to the air correction protocol to be executed, the air correction table corresponding to the air correction protocol to be executed is used as the target air correction table, and each target air correction table is determined to determine whether it meets a preset rejection condition. Here, the preset rejection condition can be rejection if the target air correction table is less than a preset time interval. This preset rejection condition can be used to reject target air correction tables with relatively recent air correction times. For example, if the time interval between the air correction time corresponding to the target air correction table and the current time is less than a preset time interval, the target air correction table meets the preset rejection condition. Furthermore, if the target air correction table is a performance test air correction table, the preset rejection condition can be rejection if the target air correction table is less than a preset time interval and / or if it does not meet a preset test result. The preset test result can be a test result failure and / or a test value within a preset marginal range. If the target air correction table meets the preset rejection condition, the target air correction protocol corresponding to the target air correction table can be eliminated from the obtained air correction protocol. By setting the preset rejection condition, the embodiment of the present application can effectively eliminate the target air correction protocol corresponding to the target air correction table that meets the preset rejection condition, thereby avoiding waste of tubes.

[0095] Optionally, in an embodiment of the present application, after step 103 of "taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed", the method further includes: generating a correction protocol list based on the air correction protocol to be executed; identifying the device type information of the target medical device and the institutional attribute information of the medical institution where the target medical device is located, and determining a matching medical device to be received based on the device type information and the institutional attribute information; and sending the correction protocol list to the medical device to be received.

[0096] In this embodiment, after the air correction protocol to be executed is determined, a correction protocol list can also be generated based on the air correction protocol to be executed. Next, the device type information of the target medical device can be identified. Here, the device type information can include CT scanning equipment, Pet-CT scanning equipment, etc. The institutional attribute information of the medical institution where the target medical device is located can also be identified. Here, the institutional attribute information includes orthopedic hospitals, cardio-cerebral hospitals, general hospitals, hepatobiliary hospitals, etc. Hospitals with the same institutional attribute information have similar medical equipment usage. Thereafter, the medical device to be received that matches the correction protocol list can be determined based on the device type information and institutional attribute information, and the correction protocol list can be sent to the medical device to be received. By sending the determined correction protocol list to the medical device to be received, the embodiment of the present application can effectively reduce the time wasted on the same type of medical equipment in determining the air correction protocol, and at the same time can reduce the tube loss of the medical device to be received.

[0097] Optionally, the correction protocol list may also include device type information and institution attribute information. In this way, when the receiving medical device receives the correction protocol list, it can first determine whether to execute it based on the device type information and institution attribute information included in the correction protocol list to avoid erroneous execution of the air correction protocol in the correction protocol list.

[0098] Furthermore, as a refinement and expansion of the specific implementation of the above embodiment, in order to fully illustrate the specific implementation process of this embodiment, another air correction method is provided, such as Figure 2 As shown, the method includes:

[0099] Step 201: determining a target scanning protocol based at least on a performance test protocol set and / or a patient consultation protocol set of a target medical device, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient consultation protocol set is obtained based on historical patient consultation records of the target medical device;

[0100] In this embodiment, first, a performance test protocol set of the target medical device and / or a patient medical protocol set of the target medical device can be obtained. The performance test protocol set of the target medical device can be a set of scanning protocols used when the target medical device is subjected to a performance test, and the patient medical protocol set of the target medical device can be a set of protocols used when the target medical device is used to perform a medical scan on a patient. Both the performance test protocol set and the patient medical protocol set contain scanning protocols. Therefore, all scanning protocols can be used as target scanning protocols, or part of the scanning protocols can be used as target scanning protocols based on the scanning protocols in the performance test protocol set and / or the patient medical protocol set of the target medical device.

[0101] Step 202: Obtain historical performance test records and / or historical patient medical records of the target medical device, and classify the historical performance test records and / or historical patient medical records according to the scanning protocols in the performance test protocol set and / or the patient medical protocol set;

[0102] In this embodiment, after obtaining the historical performance test records and / or historical patient medical records corresponding to the target medical device, the historical performance test records can be classified according to the scanning protocols included in the performance test protocol set, and after classification, the historical performance test records corresponding to the same scanning protocol can be placed together; similarly, the historical patient medical records can also be classified according to the scanning protocols included in the patient medical protocol set, and after classification, the historical patient medical records corresponding to the same scanning protocol can be placed together.

[0103] Step 203 , determining the scan sequence based on the historical performance test records and / or historical patient medical records under the category corresponding to the target scan protocol, and determining the target scan sequence based on the scan sequence;

[0104] In this embodiment, the scan sequence corresponding to each target scan protocol can then be identified from the historical performance test records and / or historical patient medical records corresponding to the target scan protocol. The target scan protocol may include key scan parameters, and based on the key scan parameters, the scan sequences corresponding to these key scan parameters can be found from the historical performance test records and / or historical patient medical records under the corresponding category. For example, if the key scan parameters corresponding to target scan protocol 1 are A, B, C, D, and E, and a historical performance test record under the target scan protocol 1 category includes a scan sequence of A1, B1, C1, D1, and E1, then this scan sequence can be used as the scan sequence corresponding to target scan protocol 1. Each historical performance test record or each historical patient medical record under the target scan protocol category includes at least one scan sequence corresponding to the target scan protocol, and may also include some scan sequences that do not correspond to the target scan protocol. After determining the scan sequence corresponding to each target scan protocol from the historical performance test records and / or historical patient medical records, the target scan sequence can be further determined. The embodiment of the present application classifies historical performance test records and / or historical patient medical records according to the scanning protocols in the performance test protocol set and / or the patient medical protocol set. When determining the scanning sequence corresponding to the target scanning protocol later, it can be determined directly from the classified records, which is simpler and faster.

[0105] Step 204: Summarize the scan sequences corresponding to the target scan protocols, and perform deduplication processing on the summarized scan sequences according to the values of the key scan parameters to obtain the target scan sequence;

[0106] In this embodiment, after determining the scan sequence corresponding to each target scan protocol, the scan sequences corresponding to each target scan protocol can be aggregated. Since different historical performance test records or different historical patient medical records include one or more scan sequences, and different scan sequences may have the same key scan parameter values, the scan sequences corresponding to each target scan protocol can be aggregated and then further deduplicated based on the values of the key scan parameters. Scan sequences with the same key scan parameter values can be discarded, and only one is retained. After deduplication, the target scan sequence can be obtained. In addition, the scan sequence corresponding to each target scan protocol can be deduplicated based on the values of the key scan parameters to obtain the target scan sequence corresponding to the target scan protocol, and then the target scan sequences corresponding to each target scan protocol can be aggregated. For example, there are five key scanning parameters corresponding to a certain target scanning protocol, namely A, B, C, D, and E. There are three scanning sequences corresponding to the target scanning protocol, and the corresponding key scanning parameter values are: A1, B1, C1, D1, and E1 for the first scanning sequence; A2, B2, C2, D2, and E2 for the second scanning sequence; and A1, B1, C1, D1, and E1 for the third scanning sequence. Because the key scanning parameters corresponding to the first and third scanning sequences have the same values, they actually belong to the same scanning sequence and can be deduplicated to retain only one. The embodiment of the present application deduplicates the scanning sequences corresponding to each target scanning protocol, which can effectively reduce tube loss caused by repeated scanning sequences and increase the service life of the tube.

[0107] Step 205 : Using the air calibration protocol corresponding to the target scanning sequence as the air calibration protocol to be executed, and performing air calibration on the target medical device.

[0108] In this embodiment, after determining the target scanning sequence, each target scanning sequence can be directly used as the air correction protocol to be executed, or the air correction protocol to be executed can be obtained based on the air correction protocol that matches the technical parameters in each target scanning sequence, and then the target medical device can be directly air-calibrated according to the air correction protocol to be executed. After the air correction, an air correction table can be generated.

[0109] Optionally, in an embodiment of the present application, the method further includes: sending the performance test protocol set and / or patient medical protocol set to a record receiving terminal, so that the record receiving terminal classifies subsequent performance test records and / or patient medical records based on the scanning protocols in the performance test protocol set and / or patient medical protocol set.

[0110] In this embodiment, the performance test protocol set and / or the patient medical protocol set can also be sent to the record receiving terminal. Subsequently, after the target medical device is performance tested to generate a performance test record, or after the patient is scanned using the target medical device to generate a patient medical record, the record receiving terminal can classify these performance test records or patient medical records according to the scanning protocols in the performance test protocol set and / or the patient medical protocol set, which is conducive to the subsequent direct selection of performance test records and patient medical records of any classification, or convenient viewing of performance test records and patient medical records of any classification.

[0111] Furthermore, as a refinement and expansion of the specific implementation of the above embodiment, in order to fully illustrate the specific implementation process of this embodiment, another air correction method is provided, such as Figure 3 As shown, the method includes:

[0112] Step 301: outputting an air correction stage determination interface and obtaining input information corresponding to the air correction stage determination interface;

[0113] In this embodiment, before determining the air correction protocol, the use stage of the air correction protocol can be determined first. Specifically, when the staff triggers the operation interface to generate the air correction protocol generation instruction, the operation interface can output the air correction stage determination interface accordingly. The air correction stage determination interface can include different options or an information filling area. The staff can select the options and fill in the information filling area. Then, the corresponding input information can be obtained from the air correction stage determination interface. In addition, when the staff triggers the operation interface to generate the air correction protocol generation instruction, the voice recognition device can be turned on to pick up the staff's voice. After voice recognition, the recognized information is displayed on the air correction stage determination interface. Afterwards, the corresponding input information can also be obtained from the air correction stage determination interface.

[0114] Step 302: When the input information is performance test phase information, the target scanning protocol is determined based on the performance test protocol set of the target medical device.

[0115] In this embodiment, if the input information is performance test phase information, that is, the subsequently generated air correction protocol is used to perform performance testing on the target medical device, then the target scanning protocol can be directly determined based on the performance test protocol set of the target medical device. In this embodiment of the present application, when the input information is performance test phase information, directly using the performance test protocol set to determine the air correction protocol can effectively generate the air correction table required for the performance test, reduce ineffective tube loss, and improve the pass rate of the performance test.

[0116] Further, as Figure 1 The specific implementation of the method, the embodiment of the present application provides an air correction device, such as Figure 4 As shown, the device includes:

[0117] a target scanning protocol determination module, configured to determine a target scanning protocol based at least on a performance test protocol set of a target medical device and / or a patient medical consultation protocol set, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient medical consultation protocol set is obtained based on historical patient medical consultation records of the target medical device;

[0118] a target scanning sequence determining module, configured to determine a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol;

[0119] The air correction module is used to use the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed to perform air correction on the target medical device.

[0120] Optionally, the device further comprises:

[0121] A first determination module is configured to, before determining a target scan protocol based at least on a performance test protocol set of a target medical device, identify, from historical performance test records of the target medical device, a first historical scan protocol corresponding to a first target test with a failed test result, and determine the performance test protocol set based on the first historical scan protocol; and / or,

[0122] A second determination module is configured to identify, from historical performance test records of the target medical device, a second historical scanning protocol corresponding to a second target test whose test value is within a preset marginal interval before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, and determine the performance test protocol set based on the second historical scanning protocol, wherein the preset marginal interval is a preset range of test value values that pass the test but have poor test results; and / or,

[0123] The third determination module is used to identify periodic performance test records from the historical performance test records of the target medical device before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, and determine the test time corresponding to the periodic performance test record closest to the current time; when the time interval between the test time and the current time is greater than or equal to the preset test time interval, the factory performance test set is used as the performance test protocol set, wherein the periodic performance test record is the test record obtained when the periodic test is performed according to the factory performance test set.

[0124] Optionally, the device further comprises:

[0125] a fourth determination module, configured to, before determining a target scanning protocol based at least on a set of patient medical protocols for a target medical device, identify a historical scanning protocol corresponding to the target medical device from the historical patient medical records, determine a third historical scanning protocol that satisfies a first preset condition from the historical scanning protocols corresponding to the target medical device, and determine the set of patient medical protocols based on the third historical scanning protocol, wherein the first preset condition includes at least one of a first preset time condition, a first preset frequency condition, and a first preset number of times condition; and / or,

[0126] a fifth determination module configured to, before determining a target scanning protocol based at least on a set of patient medical protocols for a target medical device, identify target medical records within a preset time period from the historical patient medical records, determine a fourth historical scanning protocol corresponding to the target medical device from the target medical records, and determine the set of patient medical protocols based on the fourth historical scanning protocol; and / or

[0127] a sixth determination module, configured to identify, before determining a target scanning protocol, from the historical patient medical records the historical scanning protocols corresponding to the target medical device at least based on the patient medical protocol set of the target medical device, sort the historical scanning protocols corresponding to the target medical device according to a second preset condition, use a preset number of the historical scanning protocols that are ranked first as common scanning protocols, and determine the patient medical protocol set based on the common scanning protocols, wherein the second preset condition includes at least one of a second preset time condition, a second preset frequency condition, and a second preset number of times condition; and / or,

[0128] The seventh determination module is used to determine the target scanning protocol based on at least the patient medical protocol set of the target medical device, and determine the fifth historical scanning protocol corresponding to the air correction table usage record corresponding to the target medical device in the historical patient medical record before determining the target scanning protocol, and determine the patient medical protocol set based on the fifth historical scanning protocol.

[0129] Optionally, the device further comprises:

[0130] a record acquisition module configured to, after determining a target scanning protocol based at least on a performance test protocol set and / or a patient medical consultation protocol set for a target medical device, acquire historical performance test records and / or historical patient medical consultation records for the target medical device, and classify the historical performance test records and / or historical patient medical consultation records according to the scanning protocols in the performance test protocol set and / or the patient medical consultation protocol set;

[0131] Accordingly, the target scanning sequence determination module is configured to determine the scanning sequence based on the historical performance test records and / or historical patient medical records under the category corresponding to the target scanning protocol, and determine the target scanning sequence based on the scanning sequence.

[0132] Optionally, the device further comprises:

[0133] The protocol sending module is used to send the performance test protocol set and / or patient medical protocol set to the record receiving terminal, so that the record receiving terminal can classify subsequent performance test records and / or patient medical records based on the scanning protocols in the performance test protocol set and / or patient medical protocol set.

[0134] Optionally, the target scanning sequence determination module is further used to: determine the scanning sequence corresponding to the target scanning protocol; determine the scanning frequency of the scanning sequence based on the scanning log; and determine the scanning sequence whose scanning frequency is greater than a first preset frequency threshold and / or whose scanning frequency is equal to a second preset frequency threshold as the target scanning sequence.

[0135] Optionally, the device further comprises:

[0136] an identification module configured to, after taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed, obtain an air correction table set and identify whether the air correction table set includes a target air correction table corresponding to the air correction protocol to be executed;

[0137] A judgment module, used for judging whether any of the target air correction tables meets a preset rejection condition when included;

[0138] The elimination module is configured to eliminate the target air correction protocol corresponding to any of the target air correction tables from the air correction protocols to be executed when the target air correction table satisfies the preset elimination condition.

[0139] Optionally, the device further comprises:

[0140] A list sending module is used to generate a correction protocol list based on the air correction protocol to be executed after taking the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed; identify the device type information of the target medical device and the institutional attribute information of the medical institution where the target medical device is located, and determine the matching medical device to be received based on the device type information and the institutional attribute information; and send the correction protocol list to the medical device to be received.

[0141] It should be noted that for other corresponding descriptions of the functional units involved in the air correction device provided in the embodiment of the present application, please refer to Figures 1 to 3 The corresponding description in the method will not be repeated here.

[0142] Based on the above Figures 1 to 3 The method shown in FIG. 1 is a method for performing the above-mentioned operation. Accordingly, the embodiment of the present application further provides a storage medium on which a computer program is stored. When the computer program is executed by a processor, the above-mentioned operation is performed. Figures 1 to 3 Air calibration method shown.

[0143] Based on this understanding, the technical solution of the present application can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (which can be a CD-ROM, USB flash drive, mobile hard disk, etc.), including a number of instructions for enabling a computer device (which can be a personal computer, server, or network device, etc.) to execute the methods described in each implementation scenario of the present application.

[0144] Based on the above Figures 1 to 3 The method shown, and Figure 4 In order to achieve the above-mentioned purpose, the embodiment of the present application further provides a computer device, which can be a personal computer, a server, a network device, etc. The computer device includes a storage medium and a processor; the storage medium is used to store a computer program; the processor is used to execute the computer program to achieve the above-mentioned Figures 1 to 3 Air calibration method shown.

[0145] Optionally, the computer device may further include a user interface, a network interface, a camera, a radio frequency (RF) circuit, a sensor, an audio circuit, a Wi-Fi module, etc. The user interface may include a display, an input unit such as a keyboard, etc., and the optional user interface may also include a USB interface, a card reader interface, etc. The network interface may optionally include a standard wired interface, a wireless interface (such as a Bluetooth interface, a Wi-Fi interface), etc.

[0146] Those skilled in the art will understand that the computer device structure provided in this embodiment does not constitute a limitation on the computer device, and may include more or fewer components, or a combination of certain components, or different component arrangements.

[0147] The storage medium may also include an operating system and a network communication module. An operating system is a program that manages and stores the hardware and software resources of a computer device, supporting the execution of information processing programs and other software and / or programs. The network communication module facilitates communication between components within the storage medium, as well as with other hardware and software within the physical device.

[0148] Through the description of the above embodiments, those skilled in the art can clearly understand that the present application can be implemented with the help of software and the necessary general hardware platform, or it can be implemented by hardware. First, the target scanning protocol can be determined based on the performance test protocol set of the target medical device and / or the patient medical protocol set. Then, after determining all the scanning sequences corresponding to each target scanning protocol, the target scanning sequence can be further determined based on all the scanning sequences corresponding to the target scanning protocol. Finally, each target scanning sequence can be directly used as the air correction protocol to be executed, or the air correction protocol to be executed can be obtained based on the air correction protocol that matches the technical parameters in each target scanning sequence, and then the target medical device can be directly air-calibrated according to the air correction protocol to be executed. The embodiment of the present application no longer needs to use the cumbersome complete set of air correction schemes, nor does it need to calculate the daily air correction scheme. Instead, the air correction protocol is determined based on the performance test protocol set of the target medical device and the patient medical protocol set. Compared with the method of using the complete set of air correction schemes for air correction, the embodiment of the present application can reduce air correction time and reduce tube loss. Compared with the method of using the calculated air correction scheme for air correction, it can effectively improve the air correction quality in different situations, improve the scan image quality, and enhance the user experience.

[0149] Those skilled in the art will understand that the accompanying drawings are only schematic diagrams of a preferred implementation scenario, and the modules or processes in the accompanying drawings are not necessarily required to implement the present application. Those skilled in the art will understand that the modules in the devices in the implementation scenario can be distributed in the devices of the implementation scenario according to the implementation scenario description, or can be changed accordingly and located in one or more devices different from the implementation scenario. The modules of the above-mentioned implementation scenario can be combined into one module, or can be further split into multiple sub-modules.

[0150] The serial numbers of the above application are for descriptive purposes only and do not represent the advantages or disadvantages of the implementation scenarios. The above disclosure only discloses several specific implementation scenarios of the present application, but the present application is not limited thereto. Any changes that can be conceived by those skilled in the art should fall within the scope of protection of the present application.

Claims

1. An air calibration method, characterized in that: include: Determining a target scanning protocol based at least on a performance test protocol set and / or a patient encounter protocol set of a target medical device, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient encounter protocol set is obtained based on historical patient encounter records of the target medical device; determining a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol; Using the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed, and performing air correction on the target medical device; Before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, the method further includes: Identifying a first historical scanning protocol corresponding to a first target test with a failed test result from historical performance test records of the target medical device, and determining the performance test protocol set based on the first historical scanning protocol; and / or, Identifying, from historical performance test records of the target medical device, a second historical scanning protocol corresponding to a second target test whose test value is within a preset marginal interval, and determining the performance test protocol set based on the second historical scanning protocol, wherein the preset marginal interval is a preset range of test value values for which the test passes but the test effect is poor; and / or, Identify periodic performance test records from the historical performance test records of the target medical device, determine the test time corresponding to the periodic performance test record closest to the current time, and when the time interval between the test time and the current time is greater than or equal to the preset test time interval, use the factory performance test set as the performance test protocol set, wherein the periodic performance test record is the test record obtained when performing periodic testing according to the factory performance test set.

2. The method according to claim 1, characterized in that Before determining the target scanning protocol based at least on the patient medical protocol set of the target medical device, the method further includes: Identifying a historical scanning protocol corresponding to the target medical device from the historical patient medical records, determining a third historical scanning protocol that meets a first preset condition from the historical scanning protocols corresponding to the target medical device, and determining the patient medical protocol set based on the third historical scanning protocol, wherein the first preset condition includes at least one of a first preset time condition, a first preset frequency condition, and a first preset number of times condition; and / or, Identifying target medical records within a preset time period from the historical patient medical records, determining a fourth historical scanning protocol corresponding to the target medical device from the target medical records, and determining the patient medical protocol set based on the fourth historical scanning protocol; and / or, Identifying historical scanning protocols corresponding to the target medical device from the historical patient medical records, sorting the historical scanning protocols corresponding to the target medical device according to a second preset condition, selecting a preset number of the historical scanning protocols that are ranked first as commonly used scanning protocols, and determining the patient medical protocol set based on the commonly used scanning protocols, wherein the second preset condition includes at least one of a second preset time condition, a second preset frequency condition, and a second preset number of times condition; and / or, Based on the air correction table usage record corresponding to the target medical device in the historical patient medical record, a fifth historical scanning protocol corresponding to the air correction table usage record is determined, and the patient medical protocol set is determined based on the fifth historical scanning protocol.

3. The method according to claim 1, characterized in that After determining the target scanning protocol based at least on the performance test protocol set of the target medical device and / or the patient medical protocol set, the method further includes: Obtaining historical performance test records and / or historical patient medical records of the target medical device, and classifying the historical performance test records and / or historical patient medical records according to the scanning protocols in the performance test protocol set and / or the patient medical protocol set; Accordingly, determining the target scanning sequence based on the scanning sequence corresponding to the target scanning protocol includes: The scanning sequence is determined based on the historical performance test records and / or historical patient medical records under the category corresponding to the target scanning protocol, and the target scanning sequence is determined based on the scanning sequence.

4. The method according to claim 3, characterized in that The method further comprises: The performance test protocol set and / or patient medical protocol set is sent to the record receiving terminal so that the record receiving terminal classifies subsequent performance test records and / or patient medical records based on the scanning protocols in the performance test protocol set and / or patient medical protocol set.

5. The method according to claim 1, wherein The determining of the target scanning sequence based on the scanning sequence corresponding to the target scanning protocol includes: Determining a scanning sequence corresponding to the target scanning protocol; determining a scanning frequency of the scanning sequence based on the scanning log; The scanning sequence whose scanning frequency is greater than a first preset frequency threshold and / or whose scanning frequency is equal to a second preset frequency threshold is determined as the target scanning sequence.

6. The method according to claim 1, characterized in that After the air correction protocol corresponding to the target scanning sequence is used as the air correction protocol to be executed, the method further includes: Acquire an air correction table set, and identify whether the air correction table set includes a target air correction table corresponding to the air correction protocol to be executed; When included, determining whether any of the target air correction tables meets a preset rejection condition; When any of the target air correction tables meets the preset exclusion condition, the target air correction protocol corresponding to the target air correction table is excluded from the air correction protocols to be executed.

7. The method according to claim 1, characterized in that After the air correction protocol corresponding to the target scanning sequence is used as the air correction protocol to be executed, the method further includes: generating a correction protocol list based on the air correction protocol to be executed; Identifying device type information of the target medical device and institutional attribute information of the medical institution where the target medical device is located, and determining a matching medical device to be received based on the device type information and the institutional attribute information; The correction protocol list is sent to the receiving medical device.

8. An air correction device, characterized in that: include: a target scanning protocol determination module, configured to determine a target scanning protocol based at least on a performance test protocol set of a target medical device and / or a patient medical consultation protocol set, wherein the performance test protocol set is obtained based on historical performance test records of the target medical device, and the patient medical consultation protocol set is obtained based on historical patient medical consultation records of the target medical device; a target scanning sequence determining module, configured to determine a target scanning sequence based on a scanning sequence corresponding to the target scanning protocol; an air correction module, configured to use the air correction protocol corresponding to the target scanning sequence as the air correction protocol to be executed to perform air correction on the target medical device; The device further comprises: A first determination module is configured to, before determining a target scan protocol based at least on a performance test protocol set of a target medical device, identify, from historical performance test records of the target medical device, a first historical scan protocol corresponding to a first target test with a failed test result, and determine the performance test protocol set based on the first historical scan protocol; and / or, A second determination module is configured to identify, from historical performance test records of the target medical device, a second historical scanning protocol corresponding to a second target test whose test value is within a preset marginal interval before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, and determine the performance test protocol set based on the second historical scanning protocol, wherein the preset marginal interval is a preset range of test value values that pass the test but have poor test results; and / or, The third determination module is used to identify periodic performance test records from the historical performance test records of the target medical device before determining the target scanning protocol based at least on the performance test protocol set of the target medical device, and determine the test time corresponding to the periodic performance test record closest to the current time; when the time interval between the test time and the current time is greater than or equal to the preset test time interval, the factory performance test set is used as the performance test protocol set, wherein the periodic performance test record is the test record obtained when the periodic test is performed according to the factory performance test set.

9. A storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the method according to any one of claims 1 to 7 is implemented.

10. A computer device comprising a storage medium, a processor, and a computer program stored in the storage medium and executable on the processor, wherein: When the processor executes the computer program, the method according to any one of claims 1 to 7 is implemented.

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