Magnetic Array Device for Targeted Core Material Delivery
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Solution Overview
Problem
Current pain relief and treatment methods, including medications, often have adverse side effects and are not effective for acute conditions, and there is a need for a non-invasive, targeted treatment approach that can be applied to various objects, including humans, animals, and plants.
Innovation Solution
A magnetic treatment device with a magnet array that generates intersecting magnetic fields to create a target area, allowing a core material to be carried and applied to treat conditions such as pain, inflammation, and nutritional needs, using a device with multiple magnets disposed equidistantly around a center point, where the core material is transported through the magnetic fields to the treatment area.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional medications are used to treat pain and acute conditions, then the treatment effectiveness is improved, but adverse side effects such as addiction and organ damage occur
Solution Approach 1:
The patent replaces chemical medication systems with a magnetic field-based physical treatment system. Multiple magnets are arranged to generate magnetic fields that intersect at a target area, providing pain relief and treatment without introducing chemical substances into the body. This substitution eliminates adverse side effects associated with medications while maintaining treatment effectiveness through targeted magnetic field application.
Solution Approach 2:
The patent creates a localized treatment zone by arranging magnets so their fields intersect at a specific target area. The magnetic fields are concentrated at the desired treatment location rather than being distributed throughout the entire body, allowing targeted relief of pain and conditions in specific areas without affecting other body systems. This localised approach prevents systemic side effects.
2Reliability
If prescription medications are used to treat acute pain and conditions, then the treatment effectiveness is improved, but the risk of addiction and organ damage increases
Solution Approach 1:
The invention substitutes chemical pharmacological interventions with a physical magnetic field therapy system. The magnetic fields generated by the magnet array provide analgesic and therapeutic effects without requiring any chemical absorption or metabolism, thereby eliminating risks of addiction, liver damage, and other organ-related side effects associated with prescription medications.
Solution Approach 2:
The patent uses magnetic fields as an intermediary medium to transmit therapeutic energy to the target area. Instead of using chemical substances that interact with biological systems and cause side effects, the magnetic fields serve as a non-invasive intermediary that delivers treatment effects without direct chemical interaction with bodily tissues.
3Measurement precision
If a magnetic array device is used to provide targeted treatment, then the precision of treatment delivery is improved, but the device complexity increases
Solution Approach 1:
The patent divides the magnetic treatment system into multiple discrete magnet units arranged in a specific pattern. Each magnet contributes to the overall magnetic field, and by segmenting the system into individual magnetic sources, the device achieves precise control over field distribution and target area concentration while maintaining a relatively simple modular structure that can be manufactured and assembled using standard components.
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 magnetic treatment device provides a non-invasive, targeted method for relieving pain, reducing inflammation, administering nutrients, and improving blood circulation without the adverse effects of traditional medications, applicable to humans, animals, and plants.
Implementation Method 1
each magnet creates a magnetic field, where the magnetic field created by each magnet flows from its own second polarity to its own first polarity
Implementation Method 2
at least a component of the core material is carried by the magnetic field to the first target area
Data Source
AI summary
A device used for treating an object can include a body having multiple mounting surfaces. The device can also include at least three magnets disposed on the mounting surfaces, where each magnet includes a first end and a second end, where the first end has a first polarity, where the second end has a second polarity, and where the first polarity attracts the second polarity to create a magnetic field, and where the magnets create a number of magnetic fields that intersect at a target area. At least one of the magnets can include a core material, and at least one component of the core material is carried by the magnetic field to the target area, where the at least one component core material is used to treat the object.


