SPMF Therapeutic System Homogeneous Magnetic Field Control

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Solution Overview

Problem

Existing systems for generating and applying magnetic fields to biological tissues lack homogeneity and flexibility, making them ineffective for diverse tissue abnormalities and dysfunctional states, and prior art lacks detailed construction and treatment methods.

Innovation Solution

A Sequentially Programmed Magnetic Field (SPMF) therapeutic system that uses a computer-controlled device with multiple magnetic field generators to produce homogeneous pulsed magnetic fields at specific frequencies and intensities, applied in a sequentially programmed manner to induce cellular regeneration or degeneration processes based on diagnostic information.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Manufacturing precision

If conventional magnetic field systems are used, then magnetic field application is possible, but homogeneity and flexibility are insufficient

Engineering Contradiction:
Improvemagnetic field homogeneityVSAvoidsystem complexity
Core Design Contradiction:
Manufacturing precisionVSDevice complexity

Solution Approach 1:

The system divides the magnetic field generation into multiple independent generators (first and second magnetic field generators) that can be controlled separately. Each generator produces magnetic fields with specific characteristics, and their combined effect creates a homogeneous resultant magnetic field in the treatment region, resolving the contradiction between field homogeneity and system complexity.

Inventive Principle:
Principle #1Segmentation

Solution Approach 2:

The system dynamically adjusts magnetic field parameters including frequency, intensity, and phase difference between generators. By changing these parameters, the system optimizes field homogeneity for different tissue types and treatment conditions while maintaining manageable system complexity through computer-controlled parameter modulation.

Inventive Principle:
Principle #35Parameter changes

2Adaptability or versatility

If single-frequency magnetic fields are applied, then specific tissue resonance is achieved, but adaptability to diverse tissue abnormalities is limited

Engineering Contradiction:
Improvetreatment adaptabilityVSAvoidenergy consumption
Core Design Contradiction:
Adaptability or versatilityVSQuantity of substance

Solution Approach 1:

The system applies magnetic fields in periodic pulsed sequences with variable frequencies and duty cycles. This periodic action allows the system to target different tissue resonances sequentially, enhancing adaptability to diverse conditions while reducing average energy consumption compared to continuous single-frequency application.

Inventive Principle:
Principle #19Periodic action

Solution Approach 2:

The dual-generator configuration with independent control enables the system to perform multiple treatment functions: targeting different tissue types, achieving various field patterns, and adapting to diverse pathological conditions. This multi-functionality increases treatment adaptability without proportionally increasing energy consumption through efficient generator utilization.

Inventive Principle:
Principle #6Universality (Multi-functionality)

3Reliability

If high intensity magnetic fields are applied, then cellular regeneration is enhanced, but tissue damage risk increases

Engineering Contradiction:
Improvetreatment effectivenessVSAvoidtissue damage risk
Core Design Contradiction:
ReliabilityVSObject-affected harmful factors

Solution Approach 1:

The system creates a localized homogeneous magnetic field region precisely at the treatment site using coordinated generator positioning and phase control. This concentrates therapeutic effects where needed while maintaining lower field intensities in surrounding areas, thereby enhancing treatment effectiveness without proportionally increasing tissue damage risk.

Inventive Principle:
Principle #3Local quality

Solution Approach 2:

The computer-controlled system monitors and adjusts magnetic field parameters in real-time based on treatment response. This feedback mechanism allows optimization of field intensity to maintain therapeutic effectiveness while preventing excessive intensity that could cause tissue damage, dynamically balancing reliability and safety.

Inventive Principle:
Principle #23Feedback

4Measurement precision

If complex treatment protocols are used, then treatment precision is improved, but ease of operation decreases

Engineering Contradiction:
Improvetreatment precisionVSAvoidsystem operability
Core Design Contradiction:
Measurement precisionVSEase of operation

Solution Approach 1:

The computer-controlled system automatically manages complex treatment parameters, sequencing, and coordination between generators based on pre-programmed protocols. This self-service capability allows the system to execute precise complex treatments without requiring manual coordination of multiple parameters, thereby maintaining treatment precision while improving ease of operation.

Inventive Principle:
Principle #25Self-service

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 SPMF system effectively induces cellular regeneration or degeneration by resonating with biological tissues, improving treatment outcomes for conditions like cancer, arthritis, and neurodegenerative disorders, with targeted frequency ranges and intensities enhancing tissue repair and reducing pain.

Implementation Method 1

The membranes are depolarized by the induction of small electric fields in excess of 1 V/cm that are the result of a rapidly changing magnetic field applied non-invasively.

Methodology Applied
Scientific EffectElectromagnetic induction: Electromagnetic Induction

Implementation Method 2

it has been found that inciting the inherent resonance by exogenous treatment using electromagnetic fields [EMF], electric fields, and magnetic fields can induce cellular regeneration and degeneration processes

Methodology Applied
Scientific EffectResonance: Resonance

Data Source

PatentEP2399215B1Sequentially programmed magnetic field therapeutic system (SPMF)
Publication Date: 2022.10.26 VASISHTA GOPALAKRISHNA VISHWANATH
  • EP2399215B1 patent drawingFigure 1A~1B
  • EP2399215B1 patent drawingFigure 2
  • EP2399215B1 patent drawingFigure 3

AI summary

The invention relates to a Sequentially Programmed Magnetic Field (SPMF) therapeutic system and method that comprises a plurality of arrays of magnetic field generators (MFGs) to produce sequentially programmed pulsed magnetic fields of about 0.1 to about 2000Hz at a focal region in a substantially rotary manner, the pulsing being controlled by a switching system operably linked to a computer that generates the operating protocol based on an embedded logic that is dependent on the cellular degenerative condition and to cellular regeneration and / or the degeneration processes and methods based on such processes. Electromagnetic fields of certain frequency ranges and intensities are indigenous to living tissues and it has been found that inciting the inherent resonance by exogenous treatment using an SPMF can induce cellular regeneration and / or degeneration processes and find application in the treatment of various types of arthritis, cancers and neuro disorders.