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Methodology For The Accelerated Natural Regeneration Of Nervous Tissue

&

The Maintenance of Healthy Metabolic Tissue Growth and Replacement


 

Introduction

This is an outline for the creation of a system designed to manipulate, measure and quantify electromagnetic properties and environments of contiguous living human tissue to ultimately refine a method to enhance normal metabolic tissue regeneration.  As an example, spinal cord repairs will be created by applying several methods of treatment simultaneously; First by inducing magnetic fields in static and alternating polarities to induce an high potential at the severed ends either side of the severed nerve, and when applicable, the introduction of seed material with direct application of nutrients, and Second, by full musculoskeletal stimulation to promote all nerve activity and reproduction of healthy musculature so that as the spinal cord injury is being repaired by new growth, the body is being repaired from advanced levels of musculoskeletal atrophy and brought into a greater overall physical condition.

Our goal is the creation of a system for measurement and direct manipulation of nervous tissue. This is the primary component of my method as we seek to improve communication with healthy tissue.

The full development and implementation of this plan can be established within a 6-month time frame, and real progress defined within 6 months of use.

We have direct access to information from public government laboratories, and a list of all the latest technological advancements from these labs in the last five years relating to the equipment needed to realize the system, and many of these forms of technology are available for license.

We have some excellent human resources available to us from electronic engineering to materials science and biomedical engineering.

Physical Components:

Bio-Suit / Electrode Suit / Telemetry Suit

  • Full skin surface interfacing of electrode and sensor array

  • Jump suit made of elastic material for positioning of electrodes and sensors

  • Use "Off-the-shelf" circuit board design software to map wiring schematic onto the 3D rendered surface model of the therapy subject.

  • 3D 360deg surface scanning to map electrode/sensor positioning

  • Use a “Pop-Rivet” style for electrode/ sensor attachment with snap-on wire harness

  • Wirelessly controlled using IEEE 802.11a network standard

  • Self contained electrical system

Computer information and control system

  • Electrode signal generator

  • Vital signs monitoring

  • Signal mapping software application to render a 3D volumetric display

  • Statistical Analysis software

  • Data Storage and recovery system

Biochemical analysis and sample repository

  • Blood testing and monitoring system

  • Tissue growth / mineralization analysis systems

  • Co-Q10 and metabolic enzyme monitoring

  • Storage for Tissue Samples

Dynamic cybernetic relaxation and suspension system

The idea is to create a suspension system that monitors the comfort level of the therapy subject and then automatically adjusts the suspended orientation of optimize relazation.

Cable suspension systems

Cable Positioning Array to Manipulated Major and Minor Muscle Groups. 

An interactive body positioning system with reactive sagital, lateral and horizontal plane manipulation.  Reactive positioning system controlled by brainwave and muscle tension monitoring system to invoke repositioning of the body for optimal relaxation.

Connection Points:

  • Head and chest

  • Legs

  • Arms

  • Pelvic

 

Fluid suspension systems

  • Buoyancy control via high specific gravity of fluid

  • Electrolytic properties to enable bioelectrical measurements, manipulations and enhanced imaging.

  • Hydrodynamic resistance to induced muscle contractions allowing for non-restrictive movement in three-dimensional space.

  • Temperature control

  • Breathing apparatus

Bio Electric Exposure System

  • Low voltage induction

  • Selectable polarity inducer

  • Tune alternating magnetic polarity field signal modulation to harmonious signal such as 60 cycles/minute or index to heart rate.

  • Assume that nerve health suffers and atrophies from signal depravation

  • Careful positioning of magnetic polarity field determines the orientation of nerve tissue growth.

Applications:

  • Atrophy

  • Paralysis

  • Coma

  • Soft tissue and bone repair

  • Muscle / Nerve Damage rehabilitation

  • Stimulation of internal organs

  • Youthful maintenance

Statistical Analysis Methods

Tissue mass fluctuation

  • Skin

  • Muscle

  • Fat

  • Organ size

  • Bone

  • Joint flexion

Tissue Composition

  • Mineralization

  • Metabolic rate fluctuations

  • Tissue durability

  • Enzymatic Activity

Reflexive Response

  • Local tissue reactions

  • Nerve signal to brain

  • Nerve signal to point of injury

 Mapping

  • Electromagnetic flux lines around stimulated and relaxed muscle tissue

  • 3D rendering of flux lines to observe and study the correlating effects of the various major and minor polarities in the various muscle groups

  • Topographical tension mapping

  • Identification of unique electromagnetic harmonic signature of each vital organ and for all organic systems of the human body known to be subject to disease or in need of regeneration i.e.

Active regimen and daily schedule

  • Create four unique daily procedure schedules for testing and rotation.

  • Integrate statistical analysis for ergonomic satisfaction

  • Cooperation with existing nutritionist and medical staff for optimal delivery of nutrition.

Estimated cost for implementation:

With the cooperation of Colleges and Government Laboratories, many dollars can be shaved from a completely commercial endeavor of this sort.  Therefore one of the duties of the administrative assistant will be in grant applications.

All efforts will be made to incorporate existing medical staff, nutritionists, consultants, counselors, and technologist’s already involved with research of this nature.  No need to recreate the wheel, especially when it comes to the experience of medical technologists.

Method of nervous tissue measurement and manipulation.

With the use of an electrolytic fluid suspension tank, a sensor array for measurement of magnetic flux lines and harmonic reactions between various magnetic fields present within the nervous tissue as they may disrupt a calibrated induced magnetic field within the tank when it is empty.  The utilization of mapping software to render in 3d the various unique magnetic signatures of the various tissues in a state of rest and under stimulation.  This is as yet untried, and is only speculative.  It would seem that the new millimeter length scanning systems would be a good example of how the visualization tool would work.  Yet our plan is to have multiple emitters that can be set to intersect and concentrate their energy in a specific loci in three dimensional space to excite the existing muscle tissue of the therapy subject.  Thus causing muscle contractions without having any direct physical contact with the subject, but by remote electromagnetic stimulation.

SARCOS  SensuitTM

The amazing work for the scientist at SARCOS are producing some incredible technology.

Please look at their website here so that you can see the reality of the control systems we intend to use in order to enable real-time human to human telemetric control.   Remember, this is just one example of a telemetric control wearable sensor suits.  I am sure they are working on more advanced systems, as the SensuitTM below has been available for several years.

 

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Last modified: 05/07/13