3D Digital Body Representation for Symptom Analysis
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Solution Overview
Problem
The complexity of modern medicine poses challenges in accurately recording and analyzing medical symptoms, leading to potential misdiagnosis and patient isolation, as patients struggle to communicate effectively with healthcare workers and understand their own medical conditions.
Innovation Solution
A computer-based system utilizing a Digital Body Representation (DBR) with 3D visualization allows users to interactively record and analyze medical symptoms by associating symptom descriptions with specific body locations, facilitating data storage, analysis, and social networking among patients with similar conditions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If detailed medical data is collected to improve diagnostic precision, then measurement precision improves, but device complexity increases
Solution Approach 1:
The system segments medical data collection into distinct functional modules: symptom input interface, 3D body model visualization, temporal tracking components, and analysis engines. Each module handles specific aspects of data gathering and processing, reducing overall system complexity while maintaining comprehensive data collection capabilities for precise diagnosis.
Solution Approach 2:
The patent introduces a temporal dimension to static medical records by implementing continuous symptom tracking over time. The system transforms traditional 2D medical forms into 4D data structures (3D body space + time), enabling physicians to observe symptom evolution and patterns, thereby improving diagnostic precision without proportionally increasing complexity.
2Loss of information
If complex medical terminology is used to improve communication accuracy, then loss of information decreases, but ease of operation worsens
Solution Approach 1:
The system introduces a visual intermediary layer using 3D body models that translate complex medical terminology into intuitive visual representations. Patients interact with anatomical visualizations rather than text-heavy forms, while physicians receive structured data with precise medical coding. This intermediary interface maintains communication accuracy while dramatically improving ease of operation for non-expert users.
Solution Approach 2:
The patent transforms qualitative patient descriptions into quantitative parameters by mapping symptoms to specific 3D body locations, temporal patterns, and intensity levels. This parameterization process converts subjective patient experiences into objective, analyzable data without requiring patients to understand medical terminology, thus preserving information accuracy while enhancing usability.
3Reliability
If comprehensive symptom tracking is implemented to reduce misdiagnosis, then reliability improves, but loss of time increases
Solution Approach 1:
The system performs preliminary organization and structuring of symptom data as it is collected, automatically timestamping, locating, and categorizing each symptom entry within the 3D body model framework. This preliminary processing eliminates the need for time-consuming manual data organization later, allowing comprehensive tracking without proportionally increasing data collection time.
Solution Approach 2:
The patent replaces manual data compilation methods with automated computational analysis. The system automatically processes, stores, and analyzes symptom data using computer algorithms, substituting the time-intensive mechanical process of manual record review with efficient digital processing, thereby maintaining high diagnosis reliability while reducing time loss.
Data Source
AI summary
A computer system and related method for analysis of medical symptoms on a body of a living being is provided. The system comprises a first portion of computer readable medium which stores digital representation of a plurality of tissue layers in the body. The system also includes a processor unit and a second portion of computer readable medium. The second portion of the computer readable medium stores instructions executable by the processor unit to perform the steps of displaying at least one tissue layer from the plurality of the tissue layers on a display device, receiving a first input indicating a locale on the displayed at least one tissue layer, receiving a second input associating a medical symptom description to the indicated locale, and including information about the medical symptom description and the associated locale in the digital representation of the body. Related methods are also provided.


