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Medical imaging system and protocol framework and protocol editing method thereof

A medical imaging system and protocol technology, which is applied in the field of medical imaging systems, can solve the problems of not being able to add protocols for specific age groups, not being able to conveniently switch acquisition systems, editing and management difficulties, etc., to increase reusability and meet clinical shooting needs , easy to edit effects

Inactive Publication Date: 2017-05-17
SHANGHAI UNITED IMAGING HEALTHCARE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

On the one hand, the existing protocol structure cannot flexibly add protocols to specific age groups, and on the other hand, it saves a lot of redundant protocol data
One protocol can only correspond to one acquisition system. For a digital X-ray imaging system with multiple acquisition systems, it is not convenient to switch the acquisition system
The above two points will increase the number of protocols under the protocol group
Excessive number of agreements not only brings difficulties in editing and management, but also brings inconvenience to the selection of agreements during filming

Method used

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  • Medical imaging system and protocol framework and protocol editing method thereof
  • Medical imaging system and protocol framework and protocol editing method thereof
  • Medical imaging system and protocol framework and protocol editing method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0035] The APR protocol architecture, such as figure 1 As shown, it includes: large part layer, protocol group layer, and protocol layer. The Organ Program (OP) was introduced when the protocol was edited. Multiple protocols in the APR protocol framework are sequentially grouped at each level according to their corresponding parts, and are displayed under the part item representing the corresponding parts.

[0036] The shooting range covers many large parts of the human body. The multiple large parts include the head, neck, chest, abdomen, pelvis, upper limb joints, lower limb joints and the like. A plurality of large part options are respectively defined in the large part layer. The multiple large part options represent the head, neck, chest, abdomen, pelvis, upper limb joints, lower limb joints and other parts respectively. For example, the large part options can be named after Chinese names such as "head", "neck", "chest", "abdomen", "pelvis", "upper limb joints" and "l...

Embodiment 2

[0043] The protocol editing method of the digital X-ray imaging system includes the following steps.

[0044] S101: Setting a parameter template. Originally, each agreement had its own high-voltage dose information and rack placement information. If these data cannot be multiplexed by other protocols, it will result in a large amount of high-voltage dose information and rack placement information. The dose information of different protocols and the size of the beam limiter in the gantry setup are mostly the same. Setting the dose information as the dose template and the size of the beam limiter in the gantry setup as the beam limiter template can improve the accuracy of the data. Reusability. The parameter templates that can be set include but are not limited to the dose template, one-key positioning template, beam limiter template, and algorithm template. The parameter template and other parameters can be collectively referred to as parameter information in Embodiment 1 to...

Embodiment 3

[0052] The digital X-ray imaging system includes a protocol editor (X-ray Protocol Editor Tool, XPET for short) 11 , a database 12 , and an image acquisition system (Image Acquisition Software, IAS for short) 13 .

[0053] The protocol editor 11 is used to set parameter templates and edit protocols, and the edited protocols include multiple parameter templates and multiple sets of parameters. The parameters in the protocol are generally set by clinical personnel with certain experience and added to the APR database. During the process of editing agreements, agreements can be added, deleted, and modified.

[0054] The database 12 is used to store the protocol edited by the protocol editor 11 including multiple parameter templates and parameters.

[0055] The image acquisition system 13 includes a registration module 131 , an acquisition module 132 , and a post-processing module 133 .

[0056] The registration module 131 includes a registration unit 1311 and a selection unit 1...

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Abstract

The invention provides a medical imaging system and a protocol framework and protocol editing method thereof. The protocol editing method comprises the following steps of setting parameter information, editing a protocol, determining a dissection portion, building an organ program in the protocol, building a corresponding relation among at least part of parameter information in the parameter information, different age groups and a collection system, building a catalogue and classifying the protocol into the corresponding catalogue.

Description

[0001] 【Technical field】 [0002] The invention relates to the field of medical imaging systems, in particular to a digital X-ray imaging system and its protocol framework and protocol editing method. [0003] 【Background technique】 [0004] In recent years, with the deepening of the new medical reform policy and the continuous increase of market capacity, the installed capacity of Digital Radiography (DR) in China has maintained a very high growth rate, and can cover all major communities and towns. Central hospitals and grassroots medical and health institutions also have higher demands on the system's work efficiency. The protocol used by the DR system to collect images from patients includes the location of the patient, patient position, high-voltage parameters, rack information, algorithm parameters, etc., which directly affect image quality and user experience. [0005] For the same APR (Anatomically Programmed Radiography) protocol, in order to adapt to different shooti...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F19/00
CPCG06F19/321
Inventor 杨锋姜朋姚玉成
Owner SHANGHAI UNITED IMAGING HEALTHCARE
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