Bio-resonance Imprinter with Nitrogen Purging for Essential Oil Stability
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Solution Overview
Problem
Current bio-resonance systems lack a comprehensive and user-friendly approach for delivering a wide range of digitized frequencies to substances or materials, particularly for therapeutic applications, and do not effectively incorporate essential oils in a stable manner due to limitations in frequency selection and delivery methods.
Innovation Solution
A bio-resonance system comprising a library of digitized frequencies stored in a cloud database, an imprinter device with light emitting diodes and a user interface, and a fluid communication means, allowing for the selection and imprinting of frequencies onto substances like essential oils, which are then dispensed using a diffuser or similar means.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If conventional bio-resonance systems use simple frequency copying methods, then the system complexity is reduced, but the depth and scope of application is limited
Solution Approach 1:
The system segments frequencies into distinct categories (direct frequencies from biological sources and inverse frequencies from pathology databases). This segmentation allows comprehensive frequency selection while maintaining organized, manageable system architecture through separate capture and imprinting modules.
Solution Approach 2:
The imprinting device is designed with multi-functionality to capture frequencies from various biological sources (plants, animals, minerals) and apply them to different therapeutic applications. The system can selectively apply either direct or inverse frequencies based on treatment requirements, providing universal applicability across diverse therapeutic needs.
2Productivity
If essential oils are exposed to light during imprinting, then the imprinting process can proceed, but the essential oils may degrade due to light and oxygen exposure
Solution Approach 1:
The system employs an inert atmosphere by purging the imprinting chamber with nitrogen gas to displace oxygen. This creates an oxygen-free environment that prevents oxidation and degradation of essential oils during the imprinting process, maintaining their chemical stability while allowing the imprinting to proceed efficiently.
Solution Approach 2:
The system performs preliminary purging of the imprinting chamber with nitrogen gas before initiating the imprinting process. This preliminary action removes oxygen and creates a protective inert atmosphere in advance, preventing degradation during the subsequent light-based imprinting operation.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This system provides a programmable and efficient method for applying a broad range of bio-resonance frequencies to therapeutic products, enhancing treatment modalities and maintaining stability of essential oils through controlled light and oxygen management, thereby offering a versatile and effective bio-resonance therapy.
Implementation Method 1
an imprinter device with light emitting diodes
Implementation Method 2
applying specific electromagnetic frequencies to substances
Data Source
AI summary
An imprinting system is provided for imprinting a therapeutic material, the imprinting system comprising an imprinting device and a computing device, wherein the imprinting device includes: a plastic polymeric housing which includes a lid; a box which is housed in the housing and includes a lid, a bottom which includes a multiplicity of apertures, and sides, which define an interior; a multiplicity of light emitting diodes which are mounted in the multiplicity of apertures; a printed circuit board which is housed in the housing and is in electric communication with the multiplicity of light emitting diodes, and wherein the computing device includes a user interface, a memory and a processor, the computing device in wired or wireless communication with the printed circuit board, the memory including at least one digitized frequency.


