Body Degradation Reduction Program Generation System
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Solution Overview
Problem
Current systems face difficulties in accurately tracking and predicting age-related biological degradations due to challenges in sampling physiological parameters and identifying degradation trajectories effectively.
Innovation Solution
A computing device-based system that receives degradation markers, retrieves a body degradation profile, assigns it to a category, identifies relevant nutrition elements by calculating nutrient amounts based on their effects, and generates a body degradation reduction program, including frequency and magnitude of consumption for these elements.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If comprehensive physiological parameters are sampled to accurately track body degradation, then measurement precision improves, but device complexity and data processing requirements increase
Solution Approach 1:
The system segments the comprehensive physiological monitoring into multiple specialized modules: degradation marker analysis module, body degradation profile retrieval module, degradation category assignment module, nutrition element identification module, and program generation module. Each module handles a specific aspect of the degradation tracking process, reducing the complexity of any single component while maintaining comprehensive monitoring capability.
Solution Approach 2:
The patent introduces intermediary components such as the body degradation profile database and degradation category classification system that mediate between raw physiological data and final degradation assessments. These intermediaries structure and organize complex data, making it more manageable and reducing the processing burden on individual system components.
2Measurement precision
If multiple physiological parameters are monitored to capture degradation trajectories, then prediction accuracy improves, but loss of time and computational resources increase
Solution Approach 1:
The system performs preliminary actions by pre-establishing body degradation profiles and degradation categories before actual degradation assessment. The degradation marker database and profile retrieval mechanisms are prepared in advance, allowing the system to quickly match observed markers against pre-defined degradation patterns without performing complex real-time analysis of all physiological parameters.
Solution Approach 2:
The patent implements partial action by focusing monitoring efforts on specific degradation markers and categories most relevant to the user's condition rather than continuously analyzing all possible physiological parameters. The system identifies and prioritizes key degradation trajectories based on the retrieved profiles, reducing computational overhead while maintaining prediction accuracy for critical parameters.
3Reliability
If personalized nutrition programs are generated based on detailed degradation profiles, then program effectiveness improves, but device complexity and processing requirements increase
Solution Approach 1:
The system applies local quality by tailoring nutrition programs to specific degradation categories and individual user profiles rather than applying generic nutrition recommendations. Each user receives customized nutrient element identification and program generation based on their specific degradation markers, body degradation profile, and assigned category, ensuring high effectiveness while managing complexity through targeted personalization.
Solution Approach 2:
The patent utilizes parameter changes by adjusting nutrition program parameters such as nutrient types, dosages, and timing based on the user's degradation category and profile. The system dynamically modifies program parameters to match the specific degradation trajectory and nutritional needs identified through the degradation assessment process, improving effectiveness while using standardized program generation algorithms.
Data Source
AI summary
A system for generating a body degradation reduction program including a computing device configured to receive at least a degradation marker, retrieve a body degradation profile as a function of the at least a degradation marker, assign the body degradation profile to a degradation category, identify, using the degradation category and the body degradation profile, a plurality of nutrition elements, wherein identifying the plurality of nutrient elements includes calculating a plurality of nutrient amounts as a function of a respective effect of each of a plurality of nutrients on the body degradation profile as a function of the degradation category, identifying the plurality of nutrition elements as a function of the plurality of nutrient amounts, and generate a body degradation reduction program, using the plurality of nutrition elements, wherein the body degradation reduction program includes a frequency and a magnitude of consumption of the plurality of nutrition elements.


