FAQ
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What is entropy analysis?
Entropy analysis evaluates the degree of functional disorder within biological structures and shows deviations from harmonic equilibrium.
What does an increased entropy value mean?
An increased entropy value indicates greater functional stress and limited regulatory capacity within the analyzed tissue.
What is the role of the virtual model?
The virtual model combines several etalon structures simultaneously and calculates the highest functional match with the current state.
What do the calculated coefficients mean?
The coefficients show the degree of correlation between the analyzed state and the stored reference patterns.
Why are weighting values important?
Weighting values help to identify dominant functional processes and prioritized loads more quickly within the analysis.
What is the entropy filter used for?
The entropy filter enables the targeted visualization of those tissues and structures that exhibit increased functional stress.
What are the advantages of entropy analysis?
Entropy analysis supports the prioritization of relevant organs and tissues and thus facilitates the structured evaluation of complex correlations.
Can microbiological or parasitic contamination be analyzed?
Yes, the system can display functional correlations with microbial, viral or parasitic loads.
The evaluation is carried out using calculated coefficients within the virtual model as well as entropy analysis, which allows functional relationships between tissues, organs and possible stresses to be identified.
The system also has functions for automatic pathogen detection. Potential pathogens can be automatically identified, analyzed and then scanned in detail in order to further evaluate their functional relevance within the overall picture.
What is the significance of histological analysis?
Histological or ultrastructural analysis enables a more detailed examination of functional processes directly at tissue level.
What is SMART Balancing?
SMART Balancing is an integrated procedure for functional regulation within the system.
Different structures can be specifically included in the regulatory process, for example organs, tissue, anatomical structures and identified microorganisms, bacteria, viruses or parasitic contamination.
After selecting the desired examinations, SMART Balancing automatically starts the regulation process and works through the selected structures one after the other.
The system continuously analyzes the respective functional states and automatically decides on the appropriate regulatory intervention depending on the current examination result.
In this way, a dynamic and individually adapted regulation of the selected processes is made possible, with the aim of supporting the functional balance of the organism.
What is a reprinter?
A reprinter enables the creation of individual frequency models based on identified loads.
The selected information patterns can then be transferred to different carrier materials, such as sugar globules, water, capsules, alcoholic solutions, kerosene or METAVITAL chips.
Who is this video suitable for?
The video is aimed at users of the MNLS system who would like to learn more about the practical application and interpretation of entropy analysis.
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Entropy analysis in the MNLS system
METAVITAL Online Academy
Date: 22.05.2026
In this video we show the practical implementation of the entropy analysis within the MNLS system.
We demonstrate step by step:
- the automatic examination,
- working with the virtual model,
- the interpretation of coefficients and weightings,
- the application of the entropy filter,
- the functional correlation between pathologies, microorganisms and tissue structures,
- and the targeted prioritization of stressed organs and systems.
Practical examples are used to show how increased entropy values make functional stress visible and how correlations within different organ systems can be derived from this.
We also demonstrate:
- analysis at the histological and ultrastructural level,
- the assessment of parasitic and microbial contamination,
- the creation of a reprinter,
- as well as supporting regulation methods such as SMART Balancing.
The video provides a practical demonstration of how entropy analysis can be used to efficiently prioritize relevant functional processes and specifically incorporate them into further analysis and regulation.