Dynamic Image Analysis Parameter Correction Guidance
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Solution Overview
Problem
Users of dynamic image analysis systems face difficulties in identifying and correcting analysis parameters to improve the quality of dynamic image analysis results for diagnosis, as existing systems only indicate whether the results are suitable for diagnosis without providing clear guidance on parameter adjustments.
Innovation Solution
A dynamic image analysis apparatus and method that includes a hardware processor to acquire, analyze, and generate dynamic images, determine if analysis parameters need correction, and notify users of the specific parameters requiring adjustment, using analysis parameter tables and cause identification tables to facilitate correction.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If the system only displays a determination result without providing parameter correction guidance, then the device complexity is reduced, but the ease of operation deteriorates because users cannot identify which parameters need correction
Solution Approach 1:
The patent introduces an intermediary component (parameter correction guidance module) that mediates between the analysis result determination and the user. This module translates complex analysis parameter issues into user-friendly guidance information, telling users which specific parameters need correction without requiring users to understand the complex analysis processes themselves.
Solution Approach 2:
The system implements feedback by providing specific parameter correction guidance back to users based on the determination results. Instead of merely indicating that analysis results are unsuitable, the system feeds back specific information about which parameters need adjustment and how, enabling users to make informed corrections without re-imaging.
2Reliability
If users perform re-imaging to obtain suitable analysis results, then the reliability of diagnostic results is improved, but the loss of time increases due to repeated imaging procedures
Solution Approach 1:
The system performs preliminary analysis of the acquired dynamic images to determine whether parameter correction or re-imaging is needed. By providing parameter correction guidance before re-imaging occurs, the system allows users to attempt correction first, saving time by avoiding unnecessary re-imaging procedures while still ensuring reliable results through systematic guidance.
Solution Approach 2:
The patent focuses on parameter changes as the primary solution rather than immediate re-imaging. The system identifies specific analysis parameters that need adjustment and provides guidance for changing them, allowing users to improve result reliability by modifying parameters (such as analysis algorithms, processing settings, or interpretation criteria) without the time cost of repeated imaging.
3Ease of operation
If the system provides detailed parameter correction guidance, then the ease of operation improves, but the loss of information increases due to the complexity of parameter tables and correction rules
Solution Approach 1:
The patent segments the complex parameter correction information into manageable components. Instead of presenting all parameters and correction rules simultaneously, the system divides guidance into specific, targeted information about which parameters need correction and what adjustments are needed, reducing the cognitive load on users while maintaining completeness of necessary information.
Data Source
AI summary
A dynamic image analysis apparatus includes a hardware processor. The hardware processor, acquires a dynamic image obtained by radiographing a dynamic state of a subject, analyzes the dynamic image using one or more types of analysis parameters, generates an analysis result image, determines whether the analysis parameter needs to be corrected, and notifies the analysis parameter determined to require correction.


