Technical Document Generation for Nucleic Acid Reagents
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Solution Overview
Problem
Generating technical documents for reagents detecting target analytes is cumbersome, often leading to human errors due to the repetitive entry of common items across multiple performance experiments.
Innovation Solution
A computer-implemented method provides an input screen for common items across multiple detailed performance experiments, allowing for simultaneous input and export of these items into multiple detailed performance documents, thereby reducing human error.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If multiple technical documents are generated separately for each performance experiment, then each document can be customized for specific experimental details, but the repetitive entry of common items increases the risk of human errors and reduces efficiency
Solution Approach 1:
The patent merges common items into a shared data structure that can be referenced by multiple technical documents. Instead of duplicating common items in each document, the system combines them into a single source that automatically populates all relevant documents, thereby reducing manual entry time while maintaining accuracy through centralized management.
Solution Approach 2:
The patent creates a universal template structure that serves multiple functions: it defines common items once, automatically adapts them to different performance experiment types, and generates customized technical documents for each experiment. This multi-functional approach eliminates repetitive manual work while ensuring consistency across all documents.
2Ease of operation
If manual entry of common items is performed for each performance experiment, then flexibility in document customization is maintained, but human errors increase due to repetitive typing
Solution Approach 1:
The patent implements an automated copying mechanism where common items are defined once in a master template and then automatically copied to multiple performance experiment documents. This eliminates manual retyping and associated errors while preserving customization through selective inclusion and automatic population of experiment-specific fields.
Solution Approach 2:
The patent performs preliminary action by pre-defining common items in a standardized template before generating individual performance experiment documents. This preliminary structuring ensures consistency and accuracy across all documents while allowing easy customization for specific experiments without manual re-entry of common elements.
3Adaptability or versatility
If separate templates are created for each performance experiment type, then specific experimental requirements are met, but the overall system complexity increases
Solution Approach 1:
The patent segments the technical document structure into modular components: a master template containing common items and experiment-specific templates containing unique elements. This segmentation allows the system to handle different experiment types through simple template selection rather than complex monolithic templates, reducing overall system complexity while maintaining versatility.
Solution Approach 2:
The patent implements a dynamic template system that automatically adapts to different performance experiment types based on user selection. Rather than maintaining separate static templates for each experiment type, the system dynamically configures document generation parameters, allowing flexibility without increasing structural complexity.
Data Source
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AI summary
A computer-implemented method for generating a technical construction file for a reagent for detecting a target nucleic acid molecule according to one embodiment, includes: providing an input screen for items common to at least two or more detailed performance experiments among a plurality of detailed performance experiments for the reagent for detecting the target nucleic acid molecule, wherein the technical construction file includes two or more detailed performance documents including the at least two or more detailed performance experiments; receiving input of contents for the common items at once; and exporting the common items and the received contents for the common items to the two or more detailed performance documents to generate the two or more detailed performance documents.