LED-Laser Biomagnetic Therapy Device for Deep Tissue Pain
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Solution Overview
Problem
Current vibration therapy devices are limited in effectively treating deep tissue pain and require direct contact, which can be painful or impractical for sensitive areas like wounds or broken bones.
Innovation Solution
A portable LED-laser biomagnetic waves therapy device combining magnets, LEDs, and a laser with a power mechanism, which uses vibration, light, and magnetic waves to treat pain without direct contact, enhancing penetration and healing through a spiral magnetic field and light-laser combination.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If direct contact vibration therapy is used, then pain relief is achieved, but it causes pain or is impractical for sensitive areas like wounds or broken bones
Solution Approach 1:
The patent introduces light and magnetic fields as intermediary therapeutic agents that can penetrate tissue without direct contact. The light source (LED or laser) and magnets generate electromagnetic radiation that acts as a mediator to deliver therapeutic effects to deep tissues and sensitive areas without requiring physical contact, thus avoiding pain and impracticality while maintaining effectiveness
Solution Approach 2:
The patent replaces the mechanical vibration system with an electromagnetic field-based system. Instead of using mechanical contact to deliver therapeutic effects, the invention uses light (electromagnetic radiation) and magnetic fields to penetrate and treat tissues, substituting mechanical action with electromagnetic action to eliminate contact-related pain and impracticality
2Reliability
If vibration therapy devices are used, then pain and aches of soft tissue are treated, but they are limited in effectively treating deep tissue pain
Solution Approach 1:
The patent replaces mechanical vibration with electromagnetic fields (light and magnetic fields) that have the inherent capability to penetrate deep into tissues. Light from LEDs or lasers and magnetic fields can pass through skin and reach deep tissues without being blocked by surface barriers, thereby extending the effective treatment depth beyond what mechanical vibration devices can achieve
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 reduces pain more effectively and accelerates healing by penetrating deeper into tissues, offering benefits even when not in direct contact with the skin, making it suitable for sensitive areas.
Implementation Method 1
combining magnets, LEDs, and a laser with a power mechanism, which uses vibration, light, and magnetic waves to treat pain without direct contact, enhancing penetration and healing through a spiral magnetic field
Implementation Method 2
The plurality of LED lights is mounted to at least one of the body portion and the head portion
Implementation Method 3
The laser is mounted to at least one of the body portion and the head portion
Implementation Method 4
which uses vibration, light, and magnetic waves to treat pain without direct contact
Data Source
AI summary
A portable LED-laser biomagnetic waves therapy device including a body portion, a head portion, a plurality of magnets, a plurality of LED lights, a laser and a power mechanism. The head portion is attachable to an end of the body portion. The plurality of magnets is mounted to at least one of the body portion and the head portion. The plurality of LED lights is mounted to at least one of the body portion and the head portion. The laser is mounted to at least one of the body portion and the head portion. The power mechanism is operably attached to the plurality of LED lights and the laser.


