System for field-based, non-invasive detection and analysis of resonance signals between biological units
A system for capturing and analyzing resonance patterns between biological units addresses the lack of comprehensive field-based correlation in existing systems, enabling real-time, integrated analysis of interpersonal and interspecific interactions.
Patent Information
- Application Number
- DE202025002869
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-05-13
- Filing Date
- 2025-09-29
- Publication Date
- 2025-12-24
- Estimated Expiration
- 2035-09-30
AI Technical Summary
Existing systems for recording physiological parameters are limited to direct, point-in-time measurements and lack a systematic, systematic recording and analysis of resonance patterns in interpersonal and interspecific interactions, particularly interpersonal interactions, lacking a comprehensive, field-based correlation of electromagnetic, biophotonic, and acoustic signals.
A system that simultaneously acquires, correlates, and processes electromagnetic, acoustic, and biophotonic parameters into resonance patterns, enabling real-time, integrated analysis and visualization of interpersonal and interspecific interactions.
Enables the non-invasive, real-time measurement and analysis of resonance patterns between biological units, providing a new diagnostic and preventative tool for interpersonal and interspecific interactions.
Abstract
Description
1. Title
[0001] System for field-based, non-invasive detection and analysis of resonance signals between biological units. 2. Technical field
[0002] The invention relates to the non-invasive sensory and field-based diagnostics of resonance patterns between biological entities. This includes, in particular, electromagnetic, biophotonic, and acoustic fields in the context of interactions between people (interpersonal) and between humans and animals (interspecific).
[0003] In addition to established diagnostic and sensory systems, the modules also incorporate a so-called "fifth force." This is understood here as a complementary concept that goes beyond classical physical and physiological parameters and is intended to make interpersonal and interspecific interactions measurable in a field-based form. This expansion opens up a novel interface between biological, informational, and resonance-based processes.
[0004] In addition to incorporating a potential fifth force, the system also considers the interplay of feelings and thoughts. Feelings are not understood here solely as biochemical reactions, but as information- and field-carrying elements that modulate cognitive processes and are embedded in extended interactions. This results in a model that integrates emotional and cognitive patterns as an integral component of field-based diagnostics. 3. State of the art
[0005] Known systems for recording physiological parameters are mostly limited to direct, point-in-time measurements such as heart rate, EEG, or imaging systems. A systematic recording and field-based correlation of different biosignals in social or interspecific contexts is not yet available. 4. Object of the invention
[0006] The aim is to provide a system that non-invasively captures and analyzes resonance signals between biological units and makes them usable in real time for diagnostic, preventive or therapeutic purposes. 5. Solution to the task
[0007] This is achieved through a system that simultaneously acquires, correlates, and processes field-based signals (e.g., electromagnetic, acoustic, or biophotonic parameters) into resonance patterns. The solution is modular and allows for specific extensions for various applications, including wearables. 6. Advantages of the invention
[0008] The invention enables, for the first time, the integrated, field-based acquisition and correlation of multiple biosignals between humans and between humans and animals. This creates a new diagnostic and preventative tool for making social and interspecific interactions measurable and therapeutically applicable. Its unique feature lies in the combined, field-based, real-time analysis, which surpasses previous individual systems. 7. Description of the module 'Capture of interpersonal resonance fields' 7.1 Title
[0009] System for the non-invasive recording and display of intra- and interpersonal resonance fields. 7.2 Technical Area
[0010] The invention lies in the field of medical technology, in particular non-invasive diagnostics, neuro- and psychophysiology as well as field-based resonance analysis.
[0011] Within this module, the "fifth force" is understood as an additional diagnostic approach that goes beyond classical measurement systems. It aims to enable the capture of field-based resonance phenomena that reflect interpersonal interactions and perception-related processes. This creates an expanded diagnostic depth that complements conventional methods. This module captures resonance phenomena in temporal and spatial structures. It assumes that resonances can also be shaped by the interplay of feelings and thoughts. The model understands feelings as amplifiers of perception and information that influence cognitive processes and can simultaneously point to previously unclassified interactions, which are understood in terms of a fifth force. 7.3 State of the art
[0012] Current systems for diagnosing psychophysiological states are limited to single measurements (e.g., EEG, HRV). An integrated field analysis that visualizes subjective and interpersonal resonance patterns in real time is lacking. 7.4 Object of the invention
[0013] The invention provides a multimodal system that allows the simultaneous acquisition of bioelectrical potentials, autonomic parameters, hemodynamic signals, and optionally photonic emissions. The data are combined and visualized in an evaluation module to form a resonance profile. 7.4 Examples of Implementation Two people have a conversation while EEG, HRV, and fNIRS are simultaneously measured. The system calculates the coherence between the signal waveforms and displays a resonance profile. - An individual is confronted with auditory stimuli; changes in the resonance profile serve as therapeutic feedback. Portable systems enable field measurements in everyday situations (e.g., during social interactions in the home environment). 7.5 Solution to the task
[0014] By simultaneously detecting heart rhythm, respiratory rate and, if applicable, neuronal signals and correlating them in real time using field-based methods. 7.6 Advantages of the invention
[0015] For the first time, it will be possible to directly measure resonance patterns between people and use them for diagnostics, psychotherapy, or social research. The system distinguishes itself by enabling dynamic field analysis and not just recording isolated signal parameters. 7.7 Summary
[0016] The invention relates to a system for the non-invasive acquisition, analysis, and visualization of resonance fields in humans. Bioelectrical, autonomic, hemodynamic, and photonic signals are simultaneously acquired and processed into a resonance profile that visualizes coherence, bandwidth, phase shift, and divergences. The system can generate therapeutic stimuli tailored to the resonance profile. 8. Description of the module 'Detection of interspecific resonance fields' 8.1 Title
[0017] System for the non-invasive detection and display of interspecific resonance fields. 8.2 Technical Area
[0018] The invention lies in the field of medical technology, biocommunication and ethics-oriented diagnostics.
[0019] This module serves the field-based recording of interspecific interactions between life form and feeling. It can be taken into account that such connections cannot be explained solely biologically or physically, but rather point to an expanded, fifth force at the intersection of sensation and resonance.
[0020] In this module, the emotion-thought model is directly applied to interspecific resonance processes. Emotions are not viewed solely as neuronal or hormonal processes, but as carriers of information intertwined with cognitive processes, shaping field-based patterns. This allows the fifth force to be understood as a link between emotional sensation and cognitive processing. 8.3 State of the art
[0021] Current systems for animal diagnostics or human-animal interaction are primarily based on behavioral observation. A field-based, multimodal recording of emotion-based reactions does not yet exist. 8.4 Object of the invention
[0022] The invention provides a system that simultaneously captures signals from different species (e.g., humans and animals, plants or fungi) and processes them into a sensitivity profile. This profile visualizes interspecific resonance and can be integrated into communication and decision-making processes. 8.5 Solution to the task
[0023] By adapting the sensors to animal biosignals (e.g., heart and respiratory rate, movement patterns) and correlating them with human signals in real time. 8.6 Advantages of the invention
[0024] This creates a new level of diagnostics and understanding of interspecific interactions, which can be used in veterinary medicine, animal-assisted therapy and ethology. 8.7 Summary
[0025] The invention relates to a system for the non-invasive acquisition and display of resonance fields between different biological life forms. Vegetative, bioelectrical, and photonic signals are simultaneously acquired and displayed in a sentience profile that visualizes coherence, field intensity, and divergences. 8.8 Examples of Implementation - A human interacts with an animal; HRV, skin conductance, and photonic emissions are measured simultaneously. Divergences or coherences appear as a visual sensitivity profile. - Comparative analysis of two species in resting vs. interaction situations. - Use of portable systems for observation in the animals' natural habitat.
Claims
[1] System for non-invasive, field-based detection of resonance signals between biological units, characterized by , that physiological parameters (e.g. electromagnetic, acoustic or biophotonic signals) are detected and evaluated for patterns of synchronization or coupling, including subtle resonance phenomena that go beyond known physical forces and can be interpreted in the context of a postulated fifth force. [2] System for analyzing resonance signals according to claim 1, characterized by that the captured signals are correlated in real time to make interactions between the participating units visible. [3] Device according to claim 1 or 2, characterized by that it can be used both in interpersonal contexts (between people) and in interspecific contexts (between humans and animals, plants, fungi). [4] System according to one of claims 1-3, characterized by that the evaluation of the resonance signals is used for diagnostic, preventive or therapeutic applications. [5] System according to one of claims 1-4, characterized by that the evaluation of the resonance signals also takes into account influences that point to a fifth force, which has not yet been classified and goes beyond the established physical forces. [6] System according to any of the preceding claims, characterized by that it is modularly expandable and combinable with other field-based diagnostic or therapeutic systems. [7] Device according to any one of claims 1-6, characterized by , that physiological parameters of two or more people are recorded simultaneously and their synchronization patterns are analyzed. [8] System according to any one of claims 1-6, characterized by , that heart rhythm, respiratory rate and neural activity of two people correlate and are represented as a resonance pattern. [9] System according to any of the preceding claims, characterized by that the detection and processing also includes the interaction between emotional states and cognitive processes, taking feelings into account as reinforcing and modulating factors of neuronal and physiological resonance patterns. [10] System according to claim 9, characterized by , that the memory anchoring influenced by feelings is integrated into field-based diagnostics and regulation in order to be able to detect and harmonize both cognitive and affective imbalances. [11] Device according to any one of claims 1-6, characterized by that it is adapted for recording physiological parameters in human-animal interactions. [12] System according to any one of claims 1-6, characterized by , that biosignals of different species are correlated and evaluated for field-based resonance patterns. [13] System according to any of the preceding claims, characterized by that the detection and processing also includes the interaction between emotional states and cognitive processes, taking feelings into account as reinforcing and modulating factors of neuronal and physiological resonance patterns. [14] System according to claim 13 , characterized by , that the memory anchoring influenced by feelings is integrated into field-based diagnostics and regulation in order to be able to detect and harmonize both cognitive and affective imbalances.