← All products

Vertical Waves

A revolution for pear-shaped limbs. A waved outer surface that stretches over a prominent distal end — so the hardest-to-fit limbs become easy to don.

How the waves work

Three things the wave pattern changes.

A Vertical Waves liner: a close-up shows the waves on the outside only, and an arrow across the waved segment shows it stretching

Smooth inside surface

The wave pattern is only on the outside surface. The inside surface remains smooth and continuous.

Enhanced stretch

The Waves pattern artificially increases the circumference to have more textile material, thereby increasing the stretchability of the liner.

Waves = donning enabler

The stretchy segment with Waves can more easily go over the prominent distal end when donning the liner.

For what indications?

Built for limbs with important circumference variations.

  • Ankle disarticulation

    Symes, Chopart, Pirogoff — a prominent distal end with a narrow ankle segment.

  • Feet

    Borggreve, Van Ness, PFFD — where the ankle segment struggles to stretch over the heel.

  • Knee disarticulation

    Large femoral condyles where compensation is not feasible.

  • Atrophied thigh

    A narrow proximal segment that can be hard to don over the knee.

  • Congenital

    Protruding areas and pear shapes that make donning difficult.

The approaches

Four ways to fit a pear-shaped limb.

Type 1

Fully-compensated

Fills the distal shape so limb + liner is cylindrical.

  • Works with classical sockets
  • Enables vacuum suspension
  • Extreme pear-shapes need thick, less-elastic walls
Type 2

Non-compensated

Follows the limb shape; thickness is constant or tapered.

  • Used with modular or soft sockets
  • Lower distal bulk
  • Textile stretch limit (~30%) can prevent donning
Type 3

Half-compensated

A middle ground — partial compensation.

  • Balances wall thickness against the stretch limit
  • Less distal bulk than fully-compensated
Type 4 · Vertical Waves

Vertical Waves liner

The wave pattern adds textile material for extra stretch.

  • Stretches over the narrowest segment
  • Makes the hardest pear-shapes donnable
  • Smooth inside surface against the skin

Where the classical types reach their donning limit, Vertical Waves makes the fit possible.

The two classical types — and their limits

Type 1 — Fully-compensated
Fully-compensated liner fills the protruding distal segment

Fills the distal segment so limb + liner is cylindrical — works with classical sockets and enables vacuum suspension.

Roll liner onEnter socket

✗ Too-thick walls make liner donning impossible

Thick walls make donning harder
Type 2 — Non-compensated
Non-compensated liner follows the limb shape

Follows the limb shape — used with modular or soft sockets, with lower distal bulk.

Roll liner onEnter socketClose socket

✗ Textile blocks at 30% stretch and liner becomes impossible to don

Textile stretch limit blocks donning

To overcome these limits: Type 3 — Half-compensated and Type 4 — Vertical Waves. The four types compared:

Vertical Waves: the go-to solution for easy donning

Which liner type for your patient?

Calculate the stretch percentage — stretch = (max − min) ÷ min — then read across for the recommended liner type.

A simplification — our experts can advise on a case-by-case basis.

Documentation

Further documentation on Vertical Waves.

The official documents for Vertical Waves — Instructions for Use (multilingual) and regulatory notes.

Instructions for use (PDF) ↓ Regulatory notes for prosthetists (PDF) ↓