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Technology · Robotic Rehabilitation

Thousands of perfect repetitions. Every session.

A robot never gets tired, never loses form, and counts every repetition. That is why it can deliver the training volume the brain actually needs to rewire.

Session length
60 minutes
Pricing
Weekly & monthly plans
Home visit
Centre only
In 20 seconds

What is actually going wrong

A robot never gets tired, never loses form, and counts every repetition. That is why it can deliver the training volume the brain actually needs to rewire.

Motor recovery scales with the number of correct repetitions. In a conventional hands-on session a therapist can physically support perhaps 50–100 quality repetitions before fatigue degrades quality — theirs and yours. The evidence suggests meaningful cortical reorganisation needs several hundred per session. That gap, not therapist skill, is the real ceiling in neuro rehab.

The problem

A therapist can support 50–100 quality repetitions before fatigue. The brain needs hundreds.

See a doctor today, not a physiotherapist, if you have any of these

  • Unstable fractures or unhealed weight-bearing restrictions
  • Uncontrolled cardiac conditions — medical clearance required first
  • Severe uncontrolled spasticity or fixed contracture (assessed case by case)
  • Open wounds or skin breakdown in harness contact areas

These are uncommon, but they need medical assessment rather than physiotherapy. If you are not sure, call us on +91 86193 28981 and we will tell you honestly where to go.

Cause and symptoms

Why it started, and how it shows up

Most people arrive having been told only what is wrong on a scan. What matters clinically is which of these is driving your particular case.

Common causes

  • Post-stroke hemiparesis requiring high-volume gait retraining
  • Incomplete spinal cord injury with residual motor capacity
  • Post-operative patients unable to safely bear full weight
  • Cerebral palsy and paediatric gait disorders
  • Traumatic brain injury with severe balance impairment
  • Prolonged ICU deconditioning

What patients describe

  • Unable to take steps without two people supporting
  • Gait quality collapses after only a few minutes of walking practice
  • Fear of falling preventing weight-bearing practice
  • Asymmetric step length or persistent foot drop
  • Progress plateaued on conventional therapy
Our approach

What we actually do — step by step

No two programmes are identical, but every one is built from these components in this order.

01

Body-weight supported gait training

A harness offloads a controlled percentage of your body weight so stepping practice can start far earlier and far more safely than free walking allows. Support is reduced week by week as capacity grows.

02

Robotic exoskeleton stepping

The device guides the legs through a physiological gait pattern, so every repetition trains the correct motor sequence rather than reinforcing a compensation.

03

Upper-limb robotic and mirror therapy

Repetitive reach-and-grasp training with real-time feedback for hand and arm recovery.

04

Gamified biofeedback

Screen-based targets convert a tedious 400-repetition set into a task with a score. Adherence rises, and the repetitions actually happen.

05

Objective data every session

Step count, symmetry index, support percentage and active-effort share are logged automatically and appear in your patient dashboard as a trend line.

Recovery timeline

How long it usually takes

A typical progression, not a promise. Your plan is set after assessment and re-checked every two weeks — if the line is flat, we change the plan.

  1. Sessions 1–3

    Familiarisation

    Safe harnessing, tolerance and baseline data capture

    You should be able to: Comfortable in the device for a full session

  2. Weeks 2–6

    Volume build

    Push repetition count up while support comes down

    You should be able to: 500+ steps per session

  3. Weeks 6–12

    Transfer

    Carry the pattern into over-ground walking

    You should be able to: Walking over-ground with a reduced aid

  4. Months 3–6

    Independence

    Community mobility and endurance

    You should be able to: Robotic sessions tapered to a maintenance frequency

Individual results vary. How long you have had the symptoms, other health conditions, and how consistently you do the home programme all change this timeline — often substantially. We will give you a personalised estimate in writing after your assessment, and revise it honestly if progress is slower than expected.

Expected results

What the numbers typically look like

Typical ranges from clinical evidence and our own caseload. Your results depend on how long you have had the problem, what else is going on, and how consistently you do the programme.

Up to 5×

Steps per session vs conventional

Measured at the centre across our neuro caseload

2–4 weeks

Earlier weight-bearing start

Compared with waiting for independent standing balance

90%+

Session adherence

Gamified biofeedback vs conventional repetitive drills

Why patients choose this programme

  • Several times the repetition volume of hands-on therapy alone
  • Consistent movement quality — no drift as the session goes on
  • Earlier safe weight-bearing after surgery or stroke
  • Objective, patient-visible progress data instead of subjective impressions
  • Reduces physical strain on caregivers and therapists
Questions

Robotic Rehabilitation: what people ask us

If your question is not here, send it on WhatsApp. A physiotherapist answers, usually within the hour during centre hours.

  • No — and that would defeat the purpose. The system is set to assist-as-needed: it provides the minimum support required for a correct repetition and withdraws it as you improve. Your active effort share is measured and shown to you each session.

Ready to deal with your robotic rehabilitation?

A 45-minute assessment, a clear explanation of what we found, and a written plan with an estimated number of sessions. No packages sold on day one.

Open Mon–Sat 9:00–19:00 · Home visits available · Cashless insurance accepted