Coherent Multi-Radiation Therapeutic Device
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Solution Overview
Problem
Existing therapeutic radiation devices often fail to achieve optimal therapeutic effects due to lack of coherent radiation application, which includes inadequate control of emitter parameters and spatial geometry, leading to degraded or eliminated benefits for the human body.
Innovation Solution
A portable electronic device emitting combined electromagnetic, optic, and acoustic radiation with defined power, wavelengths, modulation frequency, and solid geometry, featuring interchangeable heads with concentrically or alternately placed emitters, integrated light waveguides, and control components for external connectivity and feedback display.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If radiation emitters are applied externally via physical contact with skin using applicators, then therapeutic benefit can be achieved, but the therapeutic effect is significantly degraded if radiations are not applied in a collectively coherent manner
Solution Approach 1:
The device segments the radiation application system into multiple controllable emitter units (magnetic, optical, acoustic) that can be independently controlled but collectively coordinated. Each emitter type operates as a separate module within the applicator head, allowing individual parameter control while maintaining overall coherence through centralized control circuitry.
Solution Approach 2:
The patent merges multiple types of radiation emitters (magnetic, optical, acoustic) into a single integrated applicator head that contacts the skin simultaneously. This combination allows coherent application of different radiation types together, ensuring they work in unison rather than separately, thereby achieving the desired therapeutic effect through synergistic coherent action.
2Adaptability or versatility
If multiple types of radiation emitters are used with different electronic and spatial configurations, then different therapeutic benefits can be achieved, but controlling the coherence of collective emitters becomes more difficult
Solution Approach 1:
The control system is designed to be dynamic, allowing real-time adjustment of emission parameters (power, frequency, timing) for each emitter type based on treatment requirements. The system can adapt the spatial and temporal characteristics of each radiation type while maintaining coherence through programmable control that responds to different treatment protocols.
Solution Approach 2:
The device enables independent parameter control for each emitter type (magnetic field strength, optical wavelength and intensity, acoustic frequency), allowing the system to adapt to different therapeutic needs. By changing these parameters in a coordinated manner through the control system, the device maintains coherence while providing versatile therapeutic options.
3Reliability
If radiation emitters are brought into intimate contact with skin for prescribed time duration, then therapeutic benefit is achieved, but the device portability and user convenience are reduced
Solution Approach 1:
The emitter components are nested within a compact applicator head structure that contacts the skin. The magnetic, optical, and acoustic emitters are integrated in a space-efficient arrangement, allowing the entire coherent radiation system to be contained in a portable form factor that can be easily applied to the body without excessive weight or bulk.
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
The device achieves enhanced therapeutic effects through coherent and non-coherent radiation combinations, providing regeneration and revitalization benefits by optimizing radiation application parameters and spatial geometry, thereby improving treatment outcomes.
Implementation Method 1
In the head 2, there is an electromagnetic field coil, and/or permanent magnets 5 situated along the external circuit
Implementation Method 2
concentrically and evenly placed red optical radiance emitters 6 from the electromagnetic field coil, and/or permanent magnets 5 toward the geometric center of the head 2
Implementation Method 3
concentrically and evenly placed acoustic transducers 9 toward the center
Data Source
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AI summary
A device to stimulate therapeutic benefit for the human body through the coherent use of electro-magnetic, optical, and acoustic radiations within a single device. The radiation emitters are combined simultaneously in specific coherent electrical and geometric configurations to provide an improved therapeutic benefit. Electronic control of radiation emitters in power, frequency, modulation, and spatial geometry brings about a coherence between the radiations that is beneficial for the cellular tissue of the human body. The device in preferred embodiment is hand-held, with a range of specific interchangeable attachments for application both externally and internally to different parts of the human body. The new invention and improved therapeutic benefit of this device comes about from the controlled simultaneous combination and application of the described radiations in specifically coherent configurations.