Thermal Therapy System Modulating Biomolecules via ABTT

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Solution Overview

Problem

Traditional medical approaches, such as surgery and medication, are insufficient for effectively treating many diseases and conditions, and there is a need for alternative methods that can modulate and neutralize harmful molecules while generating protective molecules in the human body.

Innovation Solution

A thermal therapy system that applies controlled temperature cycles to the human body, using a chamber with heaters and a processor to manage heat output, and specifically targets the Abreu Brain Thermal Tunnel (ABTT) with temperature-inducing devices like smartwatches, hats, and eyeglasses to modulate harmful molecules and increase protective heat shock proteins.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Reliability

If traditional surgery and medication are used to treat diseases, then immediate treatment effect is achieved, but the treatment is insufficient for effectively treating many diseases and conditions

Engineering Contradiction:
Improvetreatment effectivenessVSAvoidapplicability to various diseases
Core Design Contradiction:
ReliabilityVSAdaptability or versatility

Solution Approach 1:

The patent applies thermal therapy by changing temperature parameters (heating and cooling cycles) to treat diseases. The system controls temperature variations through heaters and coolers that apply thermal energy to the body, inducing physiological responses that neutralize harmful molecules and generate protective proteins, thereby achieving effective treatment for various conditions

Inventive Principle:
Principle #35Parameter changes

2Reliability

If thermal therapy is applied to treat diseases, then harmful molecules are neutralized and protective molecules are generated, but the system complexity increases

Engineering Contradiction:
Improvetherapeutic effectVSAvoidsystem structure
Core Design Contradiction:
ReliabilityVSDevice complexity

Solution Approach 1:

The thermal therapy system is divided into separate functional modules: heaters for applying heat, coolers for applying cold, and a control system for managing the thermal cycles. This segmentation allows each component to perform its specific function independently while working together to achieve the therapeutic effect of neutralizing harmful molecules and generating protective proteins

Inventive Principle:
Principle #1Segmentation

Solution Approach 2:

The control system monitors and regulates the thermal therapy process by receiving input signals and adjusting the operation of heaters and coolers accordingly. This feedback mechanism ensures that the thermal cycles are applied with precise control to achieve the desired therapeutic effect while managing system complexity through automated regulation

Inventive Principle:
Principle #23Feedback

3Object-generated harmful factors

If temperature cycles are applied to modulate molecules, then harmful inflammatory markers are reduced, but the control precision requirements increase

Engineering Contradiction:
Improveinflammatory markersVSAvoidtemperature control precision
Core Design Contradiction:
Object-generated harmful factorsVSManufacturing precision

Solution Approach 1:

The system applies periodic temperature cycles (alternating heating and cooling phases) to modulate molecular expression in the body. This periodic thermal stimulation triggers physiological responses that reduce harmful inflammatory markers and cytokines while generating protective heat shock proteins, achieving therapeutic effect through rhythmic temperature variations rather than continuous extreme temperatures

Inventive Principle:
Principle #19Periodic action

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 system effectively reduces harmful inflammatory markers and cytokines while generating protective heat shock proteins, providing therapeutic benefits for challenging health conditions by leveraging the body's natural biology to restore lost function and improve systemic health.

Implementation Method 1

The plurality of heaters is positioned in the interior of the chamber

Methodology Applied
Scientific EffectThermal conduction: Conduction (thermal)

Implementation Method 2

The chamber includes an upper wall, two side walls extending longitudinally in a direction parallel to the upper wall, a rear end wall, and a front wall that form an interior

Methodology Applied
Scientific EffectConvection: Convection

Implementation Method 3

at least one of a cooler, a heater, or a combination cooler and heater connected to the inductor and configured to provide heat to or a reduction of temperature of the ABTT

Methodology Applied
Scientific EffectThermal conduction: Conduction (thermal)

Implementation Method 4

The first air reservoir is configured to contain compressed air. The first heater, cooler, or combination heater and cooler is attached to the first air reservoir and configured to provide heating and/or cooling to the compressed air in the first air reservoir

Methodology Applied
Scientific EffectConvection: Convection

Data Source

PatentUS20240350299A1System and method for applying therapeutic thermal cycles
Publication Date: 2024.10.24 BRAIN TUNNELGENIX TECHNOLOGIES CORP
  • US20240350299A1 patent drawing
  • US20240350299A1 patent drawing
  • US20240350299A1 patent drawing

AI summary

A system and method for applying temperature cycles to a patient for modulation, neutralization, or reduction of harmful molecules including inflammatory markers and cytokines as well as generation or increase of protective molecules and remodeling of molecules, including proteins. Such protective molecules can include heat shock proteins, also known by their initials as HSP, particularly heat shock proteins that are beneficial in combatting specific diseases and conditions. More specifically, the applied heat cycles from the temperature therapy systems disclosed herein help to generate heat shock proteins and reduce or normalize inflammatory molecules such as cytokines, for example, tumor necrosis factor alpha (TNF alpha biomarker), or interleukins, including but not limited to interleukin 2-6-13, and interleukin 17, and cancer-signaling molecules, including, but not limited to C-reactive proteins CA-19-9, CA-125, and CA 27-29. Manipulation of P53 protein for protection against and treatment of cancer, while eliminating toxic wastes is also possible.