MBST magnetic resonance technology

MBST® TECHNOLOGY

HOW MBST WORKS

Magnetic Resonance-Based Tissue Stimulation

MBST® uses the physical principle of Nuclear Magnetic Resonance (NMR) to deliver a controlled, non-invasive biophysical stimulus to targeted tissues.

EXPLORE THE PROCESS ↓

THE SCIENCE

MAGNETIC RESONANCE-BASED TISSUE STIMULATION

MBST® uses controlled magnetic and radiofrequency parameters to create a targeted biophysical stimulus within the treatment area. The process is based on the physical principles of Nuclear Magnetic Resonance and the behaviour of hydrogen protons naturally present throughout the body's tissues.

STEP BY STEP

HOW MBST WORKS

01

Magnetic Field

A controlled static magnetic field aligns hydrogen nuclei (protons) present naturally in the body's water-rich tissues.

02

Radiofrequency Excitation

A radiofrequency (RF) pulse is applied at the appropriate resonance frequency. The hydrogen protons absorb energy and are temporarily shifted from their equilibrium state.

03

Resonance & Relaxation

The resonance frequency of a nucleus is dependent on the applied magnetic field and its gyromagnetic ratio. For hydrogen, this relationship is described by the Larmor equation.

When the RF excitation stops, the protons return toward equilibrium and release the absorbed energy. MBST uses controlled magnetic and RF parameters to create the desired therapeutic stimulation.

04

Tissue-Specific Targeting

Different tissues have distinct proton densities and relaxation characteristics.

MBST uses tissue-specific treatment parameters designed for the intended target tissue, rather than applying one generic magnetic-field protocol.

05

Biological Response

The magnetic-resonance stimulus is intended to influence cellular and biophysical processes involved in cellular metabolism, signalling, tissue homeostasis and repair.

IN SIMPLE TERMS

FROM MAGNETIC FIELD TO CELLULAR RESPONSE

01
Magnetic Field
→
02
Hydrogen Proton Excitation
→
03
Resonance / Relaxation
→
04
Tissue-Specific Biophysical Stimulation
→
05
Cellular Response
01

TREATMENT DEPTH

DEEP-TISSUE APPLICATION

Unlike optical therapies, where light intensity decreases substantially with tissue depth because of absorption and scattering, magnetic and RF fields can reach tissues throughout the treatment volume.

This allows MBST to target deeper musculoskeletal structures without relying on optical penetration.

02

CONTROLLED STIMULATION

NON-THERMAL, NON-IONISING

MBST uses non-ionising electromagnetic fields and is designed to provide therapeutic stimulation without intentional tissue heating or exposure to ionising radiation.

MBST cellular biological response

BIOLOGICAL RESPONSE

FROM MAGNETIC RESONANCE TO BIOLOGICAL RESPONSE

The magnetic-resonance stimulus is intended to interact with cellular and biophysical processes within the treatment area, creating a tissue-specific response.

01

Magnetic Resonance

02

Hydrogen Proton Stimulation

03

Cellular Biophysical Effects

04

Tissue-Specific Biological Response

05

Support for Repair, Pain Reduction and Function

THE MBST PROCESS

CONTROLLED STIMULATION. TISSUE-SPECIFIC RESPONSE.

MBST combines controlled magnetic fields and radiofrequency excitation with tissue-specific treatment parameters to deliver non-invasive magnetic resonance-based stimulation to the intended treatment area.

Magnetic resonance → Hydrogen proton stimulation → Cellular biophysical effects → Tissue-specific biological response