You can’t fix what you can’t measure. So we built the measurement for geroscience.

Vibrome® reads the body’s biomechanical state — passively, over clothing, in ~10 minutes. Not a new assay. A new class of healthspan, lifespan, and longevity signal, captured longitudinally.

Explore the technology
Vibrome®, powered by Level 42 AI® Powered by Vibrome® signals

Geroscience has no map or periodic table.

There is no validated biomarker of aging. Every longevity claim therefore waits on disease, disability or death to settle the argument — three to five decades of waiting.

The same person photographed as a boy The same person photographed as an old man

Snapshots

Months apart. The variables that define healthspan and lifespan trajectories live between visits.

Downstream

Blood chemistry and imaging register the consequences. Once a marker moves, the biomechanical change that produced it has already occurred.

Population

A normal range says nothing about a departure from your own “song”.

The circularity

30–50 yrs

No surrogate endpoint without a long trial. No short trial without a surrogate endpoint.

The Vibrome® solution is a quantitative measure that moves and is interpretable on short, long and longer timescales.

Five orders of magnitude.
Four beyond human perception.

Medicine diagnoses by looking — wearables, CT, MRI. But imagine trying to understand a symphony by watching the orchestra with a camera. You would see the instruments. You would miss the music.

Below touch

0.05 – 2 Hz

Respiratory mechanics, ballistocardiography, gut motility

Below hearing

2 – 50 Hz

Cardiac wall motion, tremor, motor-unit firing, joint loading

Within hearing

50 Hz – 2 kHz

Heart sounds, breath sounds, crackles, wheeze, bruits

Within hearing

2 – 20 kHz

Voice, cough, fine adventitious sound

Light

> 20 kHz + optical

Ultrasound and beyond

Touch / body vibration Hearing Sight / light

Medicine sees anatomy. It rarely hears and feels physiology.

Healthspan is the integral.
Lifespan is the sum. Longevity is both.

Healthspan maximization and lifespan optimization are not two programs. They are one measurement read at two scales — integrated over an interval, or summed across a life.

Explore healthspan measurement and WELLcare

Healthspan

How long the body stays at its own healthy baseline, free of illness. The longer normal functions stay stable and in balance, the longer each period of health lasts.

Lifespan

How many times the body recovers to its own baseline after illness or injury. Resilience is that capacity to restore stable function, and it weakens with age and repeated disease.

Longevity

How long each period of health lasts, and how many times the body recovers to start a new one. Frailty and death occur when it can no longer return to its own baseline.

Studying infectious disease over days, non-communicable disease over years, and maternal–fetal & degenerative disease development across decades of consequence lets us measure biology at three radically different speeds: fast shocks, slow erosion, and the earliest programming of lifelong reserve. Together they expose the full measurement challenge — healthspan is the integral of biological function over time, lifespan is the sum of time lived, and longevity is both.

The Vibrome® solution is a quantitative measure that moves and is interpretable on short, long and longer timescales.

Biology breaks mechanically before it breaks chemically.

Moving tissue radiates energy through a layered, pre-stressed body and out to the skin surface. Stiffness, damping and coupling shift before any blood assay or vital sign moves.

Established traditional medicine

Decades of literature

Medicine has read the body's motion by touch and sound for centuries. Seismocardiography, ballistocardiography, gyrocardiography and forcecardiography made it measurable — and Vibrome® builds on all four.

What Vibrome® adds

Beyond what light can see

Hear the unheard. Feel the imperceptible. See the unseen. Vibrome® fuses synchronized, co-located sensors to capture the body’s mechanical signals across the skin surface, from sub-hertz breathing motion through the audible range.

Vibrome®: one full-bandwidth biosignal

Where the information is

The body produces mechanical signals across more than five orders of magnitude, from slow breathing below 1 Hz to ultrasound above 20 kHz. Conventional digital devices and human senses catch only part of this broad spectrum of health information. Vibrome® harvests and interprets the rest.

One equation. Five forces.

A score says something changed. The Vibrome® master-equation decomposition says which force moved — and therefore which intervention to test.

We model healthspan as a sequence of biological states, where sudden or gradual disease triggers push the body between health and illness while its accumulated repair capacity determines how well it recovers.

Flow drives the system.

Simulated illustration of how this term changes signal shape. Not measured data.

  • Respiration
  • Circulation
  • Cardiac output
  • Vascular shear stress
A normal artery beside one narrowed by cholesterol
d𝒱/dt = + + − +

The Vibrome® Master Equation is a conceptual framework to map and organize emerging music-of-the-body, not a clinical test. Each term is built from measurable biomechanical signals and is now being tested against established clinical outcomes.

The asset is not the sensor. It's the data corpus and the algorithms.

Longitudinal mechanical recordings spanning all three timescales of human disease, captured at clinical research centers. There is no public dataset to buy and no way to backfill the years.

Fast days to weeksAcute infectious disease
Slow months to yearsChronic non-communicable disease
Slowest years to decadesMaternal–fetal development and degenerative disease
The corpus20,000+

participants across six registered human trials, all passive acquisition.

The hardware2,500

imPulse® UNA units manufactured in the pilot run. FDA registered and listed, product code DQC.

The method5 forces

Sensor fusion, feature extraction and master-equation decomposition, indexed to time and context.

Why it compounds

Passive capture makes recording repeatable, so every subject can be re-measured. Every sample is indexed to time and context, so each new session deepens that person's own baseline rather than adding one more row.

Why it can't be bought

Mechanical biosignatures are not in any public repository. Building an equivalent corpus takes the hardware, the clinical sites and the elapsed calendar time — in that order.

What this does not establish: longevity is not a validated surrogate endpoint — for us or for anyone — and evidence for disease-state discrimination is not evidence for longevity measurement. No device-related adverse events have been reported to date. See the six trials, partners and regulatory status

Don't Panic! One number to watch. Five you can act on.

Ten minutes and a few clicks, over clothing, with nothing entering the body — safe to repeat several times a day. Milliways™ reads each recording in context through the Vibrome® master equation and shows one number to watch.

Milliways™ · illustrative view

Recording in context
78/ 100

Accumulated Variance Age™

± 4 over 30 days

FFlowstable
TStructurestable
CTimingaligned
SEntropyrising
HCoherenceimproving

Signal quality: high · 26 of 30 nights captured · baseline over 41 days
Illustrative interface. Not a clinical result.

Accumulated Variance Age™

Distance travelled from your own history — not your position on a population curve.

MechanoResilience Score™

How far the signal moves, how fast it returns, how reliably the rhythms re-couple.

Differential aging reflects how quickly a person moves through these states. Chronological time passes at the same rate for everyone; biological aging speeds up when disease shocks exceed the body's reserve, and slows when repair capacity remains strong.

Eurhythmics™ is one instrument on the staff.

The same Vibrome® signal class runs across people, animals and machines. Each brand is a different instrument reading it.

Bring Vibrome® to your healthspan research.

Potential partners: please describe what you need to measure and which change keeps slipping past you.

  • ~10 minper recording, over clothing
  • 20,000+participants in the corpus
  • 2 daysto a reply from our team

Research groups

Longitudinal biosignature patterns, with context on every sample.

Aging science

Response, recovery and coordination as measured dynamics.

Biotech & pharma

Intervention-sensitive endpoints — from decades to weeks.

Sport & occupational

Mechanical change around load, exertion and recovery.

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