Medical Report Interface With Selectable Analysis Content Blocks
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Solution Overview
Problem
Current medical report software lacks universality and flexibility, requiring manual and cumbersome operations for doctors to extract and compile analysis results, leading to redundant information and reduced operational efficiency.
Innovation Solution
A medical report generation method and apparatus that allows for automatic distribution of display areas on an analysis interface, enabling users to extract and select content blocks corresponding to analysis results, which are then used to generate a customized medical report.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If manual screenshot operation is used to extract analysis results, then doctors can obtain desired content, but the operation becomes cumbersome and time-consuming
Solution Approach 1:
The system automatically identifies and extracts analysis result content from the display interface without requiring manual intervention. The extraction module autonomously captures the necessary medical data and generates report content, allowing the system to serve itself rather than requiring doctor intervention for content extraction.
Solution Approach 2:
The manual mechanical operation of screenshotting and content selection is replaced by an automated digital extraction mechanism. The extraction module uses software-based automated identification and capture of analysis results, substituting the manual mechanical process with an intelligent automated system that rapidly extracts所需 content.
2Adaptability or versatility
If fixed display areas are used in medical report software, then the interface is simple, but doctors lack freedom to select and adjust content
Solution Approach 1:
The display areas transition from fixed static positions to dynamic adjustable positions. The system allows display areas to be automatically distributed across the interface and enables doctors to dynamically adjust their positions and configurations based on specific diagnostic needs, making the interface adaptive rather than rigid.
Solution Approach 2:
The medical report software is designed to universally accommodate different diseases and diagnostic requirements through a standardized yet flexible interface framework. The same interface structure can adapt to various medical scenarios by dynamically configuring display areas, making the system multi-functional without requiring separate specialized interfaces for each disease type.
3Loss of information
If manual content extraction is performed, then specific content can be obtained, but redundant information is included and information load increases
Solution Approach 1:
The extraction module selectively extracts only the necessary analysis result content from the complete medical data set. It identifies and separates relevant diagnostic information from unrelated data, extracting precisely what is needed for the medical report while excluding redundant information, thereby improving information efficiency.
Solution Approach 2:
Different portions of the medical data are treated differently based on their diagnostic value. The system applies selective extraction and processing to specific local regions of data that contain analysis results, rather than uniformly processing all data. This localized quality approach ensures that only meaningful information is extracted and presented, reducing information load.
Data Source
AI summary
Provided in the present disclosure are a medical report generation method and an apparatus. The medical report generation method comprises: presenting an analysis display interface based on medical data, so that at least one display area, which is used for displaying a corresponding analysis result, is distributed on the analysis display interface; receiving an extraction operation by a user on the analysis display interface; in response to the extraction operation, generating content blocks respectively corresponding to each analysis result and prominently presenting the same on the analysis display interface, wherein the content blocks are arranged in one-to-one correspondence with the display areas on the analysis display interface; receiving a selection operation by the user on at least one content block; and generating a medical report based on the at least one content block selected by the user. The medical report generation method has high universality in processing medical data, especially in the application of processing near-infrared data, simplifies operations while ensuring the doctors' degree of freedom of selection, and reduces the information load during the doctor's operation, thereby facilitating the doctor's operation and use.


