The science behind Q-Technology — mechanisms of action
Scientific documentation · updated July 2026

The science behind Q-Technology

How a passive circuit, with no battery and no electrode, could interact with the central nervous system — what we observe, what we interpret, and what remains a hypothesis.

Nicolas Desjardins · DBA(c) · PhD(c) IMD · Master en Neurosciences (en cours)
Founder of Q-Technology · behind the discovery of the 4 biophysical profiles
"Biophysical profile" is the name we give to these categories. That they rest on an individual biophysical property is our working hypothesis — its reproducibility across testers and its stability over time remain to be established.
Peer-reviewed Observed internally Working hypothesis

This page distinguishes three levels of evidence. Wherever relevant, each statement is labelled — each one to be weighed according to its level.

6
subjects · internal observations 2026
4
muscle groups assessed
÷ 2 to 5
reduction in inter-limb asymmetry
Unblinded
uncontrolled conditions
Passive|Non-invasive|No battery|No electrode|Functional observation|Results vary|Not a medical claim
Module 01 · the mechanism

Three systems, one conductor

Posture is not a local reflex. It is a multisensory integration driven by the central nervous system.

Four inputs, one central synthesis

Posture is a multisensory integration driven by the nervous system.

Eyes
Horizontal axis
Inner ear
Sagittal plane · extension
Feet
Plantar exteroception — the densest input
Proprioception
Whole-body · muscles · tendons · skin
CNS
synthesises
the inputs
Aligned posture
Reorganised across the 3 planes, in under 12 seconds.

Several sensors. One central synthesis.

The body stands thanks to several inputs integrated continuously: the eyes (horizontal axis), the inner ear (sagittal plane, extension) and the feet — plantar exteroception, that permanent contact with the ground. The plantar input is among the densest in the body. Peer-reviewed

But those axes are useless without whole-body proprioception: the knowledge, through muscles, tendons, joints, ligaments and skin, of where each segment sits. Without it, visual information becomes unusable — one still has to know where the eye sits in its orbit, and where the head sits relative to the body. It is this synthesis of every receptor that the CNS performs, from the thalamus to the cerebellum. Peer-reviewed

When one input is degraded, the system does not reject the information: it compensates by overloading the others. That compensation is invisible, normalised — but it burns energy continuously. The hypothesis we are testing is that Q-Technology modifies the signal reaching that network. Working hypothesis

Module 02 · the reach

Posture is only the visible part

What is seen moving within seconds is the output of a process that mobilises almost the whole brain.

Above and below the visible line

What changes within seconds is measurable at the surface. What produces it remains to be established.

VISIBLE
Postural reorganisation
3 planes · ≤ 12 seconds · measurable with the naked eye
Visible line
Invisible — handled by the same networks
Attention & focus
Autonomic regulation (HRV)
Sleep & recovery
Motor coordination
Stress & mental load

Same brain networks. That is why we measure beyond posture.

Postural control shares its networks with attention, autonomic regulation, sleep and coordination. The dual-task literature shows that posture and higher cognition draw on common resources. Reorganising posture therefore means touching networks that also do other things. Peer-reviewed Posture is simply the only one of those functions that produces an output visible and measurable with the naked eye.

Posture is the visible dashboard of a global cerebral recalibration. The rest — attention, stress, recovery — runs on the same circuits. Working hypothesis
Module 03 · the signal

How the signal travels through the body

A chain assembled from documented components — and honestly labelled where it becomes hypothesis.

Five links, from passive circuit to nervous system

Documented link by link · the complete chain is under validation.

01
Signature
Passive resonant circuit
02
Matrix
Charged & hydrated fascia
03
Cell
Continuity through tensegrity
04
Innervated fascia
Relay to the nervous system
05
CNS
Integrates & regulates
Systemic outputs — observable / to be investigated
Posture Autonomic tone (HRV) Sleep Recovery Focus
This diagram is a working hypothesis. Its first link — what the circuit actually restores — has not yet been measured. Until it is, the whole chain remains a proposal, however solid the links that follow. It is our measurement priority.

The first link — the field level actually restored in the vicinity of the circuit — is not established: it is our open question no. 6. The links that follow draw on published literature. Experimental work applying electric or electromagnetic fields at defined parameters reports changes in fibroblast proliferation, collagen expression or matrix remodelling. The direction and magnitude of these changes vary with the protocol, and these exposures are low-frequency — they cannot be transposed to our circuits unless a comparable local exposure is measured first. Documented Transposition not established Connective tissue itself has been proposed as a body-wide signalling network (Langevin, 2006), with collagen showing piezoelectric and semiconducting properties. Theoretical proposal

What remains to be demonstrated is that the Q-Technology signal couples to that medium and produces a measurable redistribution within it. That is exactly what the internal studies seek to objectify. Working hypothesis

Module 04 · frequencies

Two routes to the nervous system

They converge — because the fascia is itself innervated. Even a purely tissue-level effect loops back to the CNS.

One documented route, one frontier route

Both converge — because the fascia is innervated.

Sensory route Documented
Exteroception (foot–ground), skin + whole-body proprioception.
Resonant route Frontier
Fascial matrix → cell, through charge redistribution.
CNS
integrates &
recalibrates
Recalibration
Observed internally
Observable, measurable, reproducible in session.

Even a purely tissue-level effect loops back to the CNS.

Two routes lead to the nervous system: a sensory route — exteroceptive (the foot on the ground, the skin) and proprioceptive (muscles, tendons, joints) — well documented Peer-reviewed and a resonant / tissue-level route, still at the hypothesis stage Working hypothesis. The two converge, because the fascia is itself innervated.

And the matrix is not merely passive scaffolding. The brain's extracellular matrix is electrically active and governs neuroplasticity: perineuronal nets open or close learning windows (Fawcett, 2019). Peer-reviewed That tissue takes part in neural signalling is therefore not wishful thinking. What remains is to establish the specific coupling with our signal. Working hypothesis

Four registers, four names

Q-Technology does not manufacture an artificial frequency: these names refer to documented physical phenomena — they designate our profiles, they do not describe what the circuit emits. Four calibrations follow from them — the four biophysical profiles, revealed by the Perfect Posture Test.

The 4 biophysical profiles

Every nervous system has its own entry point. The test reveals which one — select a profile to explore it.

Alpha profile · Q-Pro range

The most primitive register

Alpha draws on an early neurodevelopmental register. Embryonic development is orchestrated by bioelectric signals (Levin, 2014), biophoton activity (Cifra, 2014 — a debated research field, with no established consensus) and early neuronal oscillations that structure circuits (Khazipov, 2006).

Peer-reviewedWorking hypothesis
Inspiration
Embryonic frequency
What this name describes
Alpha — named after an early neurodevelopmental register. That name describes a design inspiration, not an emitted frequency.
Calibration
The effective resonance frequency of our circuits, in the radiofrequency domain, is our proprietary setting and is not published.
Theta profile · Q-Pro range

The background frequency of the Earth

The Schumann resonance at 7.83 Hz is the Earth's background electromagnetic frequency: a measured physical phenomenon, independent of any biological interpretation.

Peer-reviewed
Inspiration
Schumann resonance · 7.83 Hz
Nature
A physical signature, not an invention
Revealed by
Perfect Posture Test · 15 min
Omega profile · Q-Pro range

The synergy of both registers

Omega combines both inspirations — Alpha's primitive register and Theta's background frequency. For nervous systems whose entry point is neither one nor the other, but their composition.

Observed internally
Inspiration
Alpha + Theta
Who for
Profiles the test directs towards the synergy
Revealed by
Perfect Posture Test · 15 min
Harmonia profile · Q-Go

Cardiac coherence, the universal door

At 0.1 Hz, heart-rate variability reaches its maximum amplitude and the branches of the autonomic system synchronise (McCraty, 1995; Lehrer & Gevirtz, 2014).

Peer-reviewed

Q-Technology uses this register as a design inspiration for Harmonia, its standardised calibration requiring no prior test. Its universal character is our own internal classification.

Q-Technology positioning
Inspiration
Cardiac coherence · 0.1 Hz
Intended effect
Immediate performance · stress subsides
Access
No prior test — universal profile

These values name our profiles. They do not describe the frequency emitted by the circuit, which lies in the radiofrequency domain.

Identified by the Perfect Posture Test · 15 min · “What is your profile?”

ƒ
Two physical objections, and their answers

Two objections come up constantly. Both are legitimate, and both have an answer.

« An object 2 cm across cannot resonate at 7.83 Hz. »

The objection applies primarily to a conventional resonant antenna, which is generally dimensioned as a fraction of the wavelength. A localized LC resonator is not subject to that same direct geometric constraint: its ideal natural frequency follows f₀ = 1/(2π√LC). The values of L and C nevertheless depend on its geometry, materials, parasitic capacitances and coupling environment. With 0.5 µH and 12 nF, the worked example in the patent gives an ideal frequency of approximately 2.05 MHz. The actual resonance of the assembled circuit must be established by measurement. The circuit does not create a low frequency: it selects a band.

« Then why cite 7.83 Hz and 0.1 Hz? »

They are design references, not emitted frequencies. They describe the physiological registers the calibration aims at, not the carrier of the circuit. Any low-frequency component would require a non-linear element. We describe our circuits as passive resonant circuits — inductance, capacitance, resistance. We do not claim any non-linear element, and therefore we claim no frequency conversion.

Passive does not mean linear

These are two independent properties: passive means without a source of energy; linear means that a component only returns frequencies already present at its input. A component can be passive and non-linear — a diode is exactly that: no power supply, yet it rectifies the signal. The crystal radio illustrates the point precisely: the tuned circuit selects the station, and it is the detector — passive, battery-free — that extracts the sound from it. An entirely passive device can therefore produce a low-frequency component, provided it contains a non-linear element. We describe our circuits as passive resonant circuits — inductance, capacitance, resistance. We do not claim any non-linear element, and therefore we claim no frequency conversion. It is written here because the distinction is real and is often badly posed.

The idea that living systems respond to precise frequency registers was the subject of a patent filed on 14 December 1995 by Michel Marignan (FR 2 742 339), then of an international extension filed on 13 June 1997 by Alain Baudry and Michel Marignan (EP 0 988 085 · US 6 461 375 · CA 2 294 631). This portfolio is cited as public prior art: a patent establishes novelty, never efficacy. That portfolio has expired: the principle is in the public domain.

i
What the manufacturer’s technical documentation confirms

It describes activation of the circuit by the high-frequency components of the ambient electromagnetic field; a circuit comprising a high-frequency oscillating circuit, a coupling self-inductance and a low internal resistance, with no internal source of energy; and a mode of operation belonging to the family of radio-identification systems. With the documented example values of L and C, the ideal natural frequency lies around 2.05 MHz — not at 7.83 Hz or 0.1 Hz. The actual resonance of the assembled circuit must be established by measurement.

Dimensions
20 × 20 × 1,3 mm
Mass
0,8 g
Power source
None — passive
Operating family
Radio-identification

These inspirations define four calibrations — four biophysical profiles, at the origin of Nicolas Desjardins' discovery — revealed by the Perfect Posture Test (15 minutes). Every nervous system has its own entry point; the test reveals which one. Observed internally

The effective resonance setting of our circuits, in the radiofrequency domain, is our proprietary parameter. The names Alpha, Theta, Omega and Harmonia designate calibration categories — they are not emitted frequencies. We communicate the physical inspirations, never the setting. The universal signature is the only one of the four whose assignment does not depend on a prior determination.
Alpha engraved plate
Alpha
Theta engraved plate
Theta
Omega arrow-up engraved plate
Omega ↑
Omega arrow-down engraved plate
Omega ↓
Go circuit, engraved plate
Go

The engraved plates name the register. Omega exists in two orientations — arrow up and arrow down are two distinct calibrations. Go is a separate range, with no profile determination.

Module 05 · EMF

EMF · the variable nobody measures

We live in a permanent electromagnetic load that the previous generation never knew.

A 2013 review by Pall proposes that some biological effects observed under electromagnetic field exposure may involve voltage-gated calcium channels. Bandara & Carpenter (2018) call for better assessment of cumulative radiofrequency exposure. Mechanistic review Scientific commentary

Both works belong to the most contested portion of this literature: the first is a review proposing a mechanism, the second a commentary — neither is an experimental trial, and institutional positions run counter to them. They are cited because they structure the debate, not because they have settled it. Applying maximum rigour to inconvenient sources and lesser rigour to convenient ones would be incoherent.
What these two sources actually weigh

Strength of evidence by study type — and where the two cited works sit.

Hierarchy of evidence
Randomised controlled trial, blinded Experimental design
Experimental study (in vitro / in vivo) Primary data
Review proposing a mechanism No new data
Pall, 2013
Commentary / editorial Position piece
Bandara & Carpenter, 2018
Institutional positions
WHO, ICNIRP, SCENIHR: contrary. No non-thermal effect is held to be established below regulatory thresholds.
Why cite them
Because they structure the debate — not because they have settled it.
Applying maximum rigour to inconvenient sources and lesser rigour to convenient ones would be incoherent.
What the circuit captures, and what it restores

Wearables measure health — but emit 24/7. Q-Technology, by contrast, is passive.

EMF load, imposed 24/7
Wi-Fi & 5G
Bluetooth
LED screens
Wearables
Antennas
Q-TECH
passive · resonant
restitution
Restored signal
The circuit captures the ambient electromagnetic energy present in its resonance band and restores it locally.

Q-Technology uses a passive resonant circuit — inductance, capacitance, resistance, with no on-board energy source: no battery, no transmitter of its own. It captures the ambient electromagnetic energy present in its resonance band and restores it locally. This is not “protection” by shielding, but restitution. Working hypothesis

Module 06 · hydration

Why the response varies from one person to the next

If the fascia carries information, then the medium must be conductive. And water governs that conduction.

Immediate or delayed response: water decides

Hydration conditions the conduction of the fascial medium.

Hydrated
Conductive matrix → immediate response.
Dehydrated
signal slowed
Degraded medium → delayed response.

Water is the conductor.

The connective-tissue matrix carries a fixed negative charge that holds water and positive ions. Small variations in hydration strongly change the conductivity of collagen. Peer-reviewed Observable consequence: a well-hydrated person tends to respond immediately; a dehydrated person may respond only after rehydration. Observed internally

Hydration appears to modulate the response — an uncontrolled field observation, which the protocols will test. It says nothing about the placebo question, which is settled by a blinded sham condition. Working hypothesis
Module 07 · two ranges

Q-Go and Q-Pro · two mechanisms, one ecosystem

A universal entry point, and a precision calibration. Together they form a single system.

Q-Go / Q-Pro comparator

Select a range to expand it, or keep both side by side.

Q-Go

Entry point
Harmonia profile · universal coherence
120 s demo tests · immediate performance
Cardiac coherence 0.1 Hz · stress subsides
Universal entry point to the ecosystem

No prior test is required: the Harmonia profile is universal. Q-Go acts on the 120-second demo tests — immediate performance — with an effect inspired by cardiac coherence. It strengthens the whole ecosystem, but does not replace the Q-Pro protocol. Observed internally

Q-Pro

Precision
Alpha · Theta · Omega profiles
120 s demos + Perfect Posture Test (15 min)
Reveals the biophysical profile
Greater brain-wave stability

Q-Pro also acts on the Perfect Posture Test (15 min): it is what reveals the biophysical profile. Q-Pro is used in our protocol to compare several calibrations and observe their association with postural and functional measures. Internal observations suggest greater brain-wave stability in the intended state. Internal measurements are ongoing; no controlled study has yet been initiated. Observed internally

Complete ecosystem = Q-Pro + Q-Go · the calibration-comparison protocol goes through Q-Pro.

The complete ecosystem is the Q-Pro range and Q-Go. Q-Go strengthens the whole; Q-Pro is used in our protocol to compare several calibrations and observe their association with postural and functional measures.
Module 08 · why asymmetry

Why measure the left/right gap

The chosen parameter is not neutral. Here is why it is useful — and where it can mislead.

01What it is

The difference between the left and the right side on the same movement, read on a dynamometer. Not a posture score: a difference, expressed as a percentage of the strong side.

02Why this parameter

Each subject is their own control. The gap is independent of absolute strength — which varies by a factor of three between people — and it can be read in seconds, by instrument.

03What it says about the nervous system

Voluntary force is an output, not a property of the muscle alone: it depends on the central command and on the sensory integration that precedes it (Horak, 2006). A gap that moves within seconds cannot be a change in the muscle. Peer-reviewed

04What it does not say

An asymmetry is not a pathology, and symmetry is not performance. No clinical threshold is established here, and no diagnosis is made.

05Why it is easy to make it lie

Measurement noise, an always-identical test order, expectancy, regression to the mean: four mechanisms that produce the same drop with no intervention at all.

06What would make it proof

Blinding against a sham circuit, randomised order, the weak side determined in an earlier session, a control group with no intervention, and a sufficient sample. That is the protocol under way — not the data on this page.

Two routes, one identical number

What a narrowing left/right gap can mean — and what else it can mean.

Route A · the hypothesis
Restored signalCentral integrationMotor command
What the mechanism would predict.
Route B · the artefact
Measurement noiseFixed test orderExpectancyRegression to the mean
What produces the same drop with no intervention at all.
Measured gap ÷ 2 to 5
The number alone does not tell the two routes apart.
Only a blinded test against a sham circuit separates them. That is the protocol under way — not the data shown on this page.
Why do we measure asymmetry? See the Science Hub.
Module 09 · internal observations

What is observed in 12 seconds

Internal measurements, unblinded, standardised protocol — presented as such.

The left/right gap narrows

6 subjects · 4 muscle groups · dynamometer · uncontrolled conditions.

Left / right strength · illustrative diagram
weak side
strong side
Before
÷ 2 to 5
weak side
strong side
After
It is preferentially the weak side that improves; the left/right gap narrows. Illustrative diagram — neither an absolute scale nor an average.
÷ 2 to 5
reduction in the left/right gap
≤ 12 s
observed onset delay
6 subjects · 4 muscle groups · dynamometer · uncontrolled conditions (fixed order, no sham circuit, unblinded). A minority of people show no objectifiable variation during the session.
Passif|Non-invasif|Sans batterie|Sans électrode|Observation fonctionnelle|Résultats variables|Ne constitue pas une allégation médicale

Across a series of 6 subjects and 4 muscle groups, left/right asymmetry is divided by 2 to 5, and it is preferentially the weak side that improves. Observed internally Uncontrolled series: fixed order, no sham circuit, unblinded.

These strength observations are functional observations from unaudited internal tests, not a clinical trial. They indicate a direction, not proof of efficacy. Observed internally

Each circuit is individually checked before shipping by measuring its resonance, and the profiles are mutually discriminable by instrument. That check covers circuit conformity, never a physiological effect: no instrument applied to a circuit will ever demonstrate an effect on a person. A physical characterisation of the circuit does not demonstrate a physiological effect. That has to be evaluated in participants, under appropriate control conditions. Observed internally
Isometric strength measurement with a Kinvent K-Push dynamometer
Kinvent K-Push dynamometer — the instrument behind every strength series cited here. Off-the-shelf instrument, standardised protocol, before / after on the same subject.
Module 10 · radical transparency

What is known, what is observed, what is unknown

Rigour also means naming the limits. Here is how each statement is classified.

Three tiers of evidence

We lead with the documented. We win the frontier with data.

Frontier
Cell · fascia · re-informing
Hypothesis
Bridge
Autonomic tone · HRV · sleep · stress
Interpretation
Documented
Posture · tests · force plate · ≤ 12 s
Observation

Each level has its status. We never promise on credit.

Documented — postural control is a multisensory integration, established by decades of neuroscience. What is not established is that our device reorganises it: that is what our observations suggest and what our studies must settle. Peer-reviewed

Defensible bridge — possible systemic effects (autonomic tone, HRV, sleep) via the nervous system: to be documented. Observed internally

Frontier — tissue re-informing through resonance: a coherent hypothesis we are testing, not a settled fact. Working hypothesis

An alternative explanation that has to be named: regression to the mean

Measuring a left/right gap twice in a row statistically produces a decrease, independently of any intervention — because the side that measures lowest on the first attempt is more likely to be the one measurement noise pulled down. That explanation accounts both for the drop in asymmetry and for the fact that the weak side improves most. It cannot be ruled out today. It can only be ruled out by three corrections: randomising the order, working blind against a sham circuit, and determining the weak side in an earlier session. The baseline drop will also be measured, by re-testing subjects with no intervention at all. Working hypothesis

We lead with the documented. We win the frontier with data. We never promise on credit — and for a rigorous mind, that is the best signal of seriousness we can offer.

The transparency trap

The quality of this document is not a datum about the product. A page can be perfectly calibrated on its own weaknesses and still describe something that does not work. “They are so transparent they must be right” is a false inference — and transparency at this level is, mechanically, more persuasive than a dishonest pitch. It is written here so that the rigour of the text is not taken for proof. It is not proof.

Module 11 · manufacturing & traceability

Designed in Europe · assembled in France

A passive, traceable technology, compliant with European standards. What can be measured can be traced.

Q-Technology is published by Q-Technology OÜ (Tallinn, Estonia) and assembled in France. The circuit is entirely passive: no battery to recycle, no active emitting electronics, no electrode stuck to the skin.

RoHS
No hazardous substances
REACH
EU chemical safety
FR
Assembled in France
Compliance and exposure

According to the manufacturer’s technical documentation, the device has been tested by an independent testing laboratory, verifying its compliance with the applicable European standard for the assessment of human exposure to radio-identification devices.

What it establishes
Emission stays below the accepted safety thresholds.
What it does not establish
Neither the existence of a useful emission, nor any effect whatsoever.

It is cited for what it is — a safety element verified by a third party — and will not be made to say anything else.

Module 12 · scientific FAQ

The objections, addressed honestly

The questions a rigorous mind rightly asks.

It cannot be ruled out yet, and no claim is made to the contrary. The strength observations were obtained with no sham circuit and no blinding — an expectancy effect therefore cannot be excluded. That is precisely why the protocols we are preparing include a double-blind sham condition, with the key held by an independent third party. It is the only valid answer to this question.

No — but an honest answer requires a distinction. Postural integration (Horak, Peterka) and cardiac coherence (McCraty, Lehrer) rest on established experimental literature. Connective-tissue signalling (Langevin) is a theoretical proposal. The cellular effects of electromagnetic fields (Pall, Bandara) belong to the contested portion of that literature — a mechanistic review and a commentary, not experimental trials. None of these publications demonstrates Q-Technology's own mechanism: the link between the circuit's physical properties and the variations we observe remains an experimental hypothesis, labelled as such throughout this page.

The mechanism is different. This is not an orthopaedic insole acting mechanically on the arch, but a signature that the nervous system integrates. A previous attempt therefore says nothing about the response here — and that response is verifiable within seconds.

Q-Technology is marketed for functional and performance uses and is not intended to diagnose, prevent, treat or cure any disease. No diagnosis, no treatment, no medical claim.

It is neither an EEG nor a stimulator. Internal observations suggest greater stability of brain waves in the intended state — focus, meditation, sport. Internal measurements are ongoing; no controlled study has yet been initiated.

The circuit is a passive resonator — inductance, capacitance, resistance, with no on-board energy source: it captures the ambient electromagnetic energy present in its resonance band and restores it locally. Nothing to charge, nothing to plug in, nothing to stick on the skin.

A minority of people show no objectifiable variation during the session. We are not publishing the proportion until our response criteria are settled. Hydration and baseline nervous load are among the variables we are exploring. We do not yet know whether they predict the size of the variation, and they must not be used to explain away an absence of response after the fact. A re-test after rehydration is offered on an exploratory basis.

Observations cover wear time and test sessions. We have no longitudinal data. The duration of the effects is not documented. Nothing is communicated that has not been measured.

That is correct, which is why no claim is made to supply this frequency: it is permanently present. The hypothesis concerns something else — a passive resonant circuit locally alters the distribution of the electromagnetic field in its immediate vicinity. That is a near-field effect, documented in medical imaging. Whether such an alteration produces a physiological effect remains an unproven hypothesis, and that is what the studies test.

No. These are two independent properties. A component can be passive — with no source of energy — and non-linear: a diode is exactly that. We describe our circuits as passive resonant circuits — inductance, capacitance, resistance. We do not claim any non-linear element, and therefore we claim no frequency conversion.

Module 13 · bibliography

References

A peer-reviewed selection supporting the mechanisms invoked.

Peer-reviewed
Horak FB — Postural orientation & equilibrium. Age and Ageing, 2006.DOI
Peer-reviewed
Kavounoudias A, Roll R — Plantar sole & postural control. J Physiol, 2001/2003.
Peer-reviewed
Peterka RJ — Sensorimotor integration in human postural control. J Neurophysiol, 2002.DOI
Peer-reviewed
McCraty R et al. — HRV & cardiac coherence (0,1 Hz). Am J Cardiology, 1995.
Theoretical proposal
Langevin HM — Connective tissue: a body-wide signaling network? Medical Hypotheses, 2006 — theoretical proposal.
Peer-reviewed
Bandara P, Carpenter DO — EMF cumulative effects. Lancet Planetary Health, 2018.
Peer-reviewed
Pall ML — EMF & voltage-gated calcium channels. J Cell Mol Med, 2013.
Peer-reviewed
Penhune VB, Steele CJ — Cerebellum, M1 & motor sequence learning. Behav Brain Res, 2012.
Peer-reviewed
Foot somatosensory input & posture. Frontiers in Human Neuroscience, 2020 (PMC7352194).
Peer-reviewed
Xie L et al. — Sleep drives metabolite clearance from the adult brain (glymphatique). Science, 2013.DOI
Peer-reviewed
Fawcett JW, Oohashi T, Pizzorusso T — Perineuronal nets & ECM (plasticity). Nat Rev Neurosci, 2019.DOI
Peer-reviewed
Levin M — Molecular bioelectric signaling in development & regeneration, 2014.
Peer-reviewed
Cifra M, Pospíšil P — Ultra-weak photon emission from biological systems, 2014.
Peer-reviewed
Khazipov R, Luhmann HJ — Early patterns of electrical activity in the developing brain, 2006.
Peer-reviewed
Lehrer PM, Gevirtz R — Heart rate variability biofeedback: how & why does it work? Front Psychol, 2014.
Patent · public domain
Marignan M — Resonant-circuit device for action on living systems. FR 2 742 339, filed 14 Dec 1995 (expired).
Patent · public domain
Baudry A, Marignan M — International extension. EP 0 988 085 · US 6 461 375 · CA 2 294 631, filed 13 June 1997 (expired).
Go further

The response is observable in seconds.

The Perfect Posture Test reveals the biophysical profile in 15 minutes. The 120-second demos are run on the spot.

Perfect Posture Test carried out in clinic by a certified tester
Perfect Posture Test in clinic — 15 minutes, with a certified tester. That is where the biophysical profile is identified, and where the measurement is repeated in front of you.
Passive|Non-invasive|No battery|No electrode|Functional observation|Results vary|Not a medical claim

Nicolas Desjardins · DBA(c) · PhD(c) IMD · Master en Neurosciences (en cours) · Scientific documentation updated July 2026. Q-Technology is marketed for functional and performance uses. It is not intended to diagnose, prevent, treat or cure any disease. The internal observations cited are unaudited data, presented as such.