Robotic Gait Trainer

HomeExercise TherapyRobotic Gait TrainerFlexbot-U Robot Assisted Gait Training | Robotic Gait Trainer for Walking Rehabilitation

Flexbot-U Robot Assisted Gait Training | Robotic Gait Trainer for Walking Rehabilitation

The flexbot u gait training system features standardized eye walking with fully adjustable parameters and independent hip, knee and ankle movement – a breakthrough in robot assisted gait training. Unlike basic robotic gait trainers that move the leg as one unit, this robotic gait and limb training system allows clinicians to target specific joint deficits (e.g., foot drop, stiff knee, hip retraction) with precision. For hospitals seeking robotic gait training for walking rehabilitation, Flexbot-U delivers personalized, quantifiable, and progressive therapy from bed to community walking.

Flexbot-U Gait Training and Evaluation System | Robot Assisted Gait Training | Qian Jing

Gait Training and Evaluation System – Flexbot-U

Model: Flexbot-U – Advanced Robot Assisted Gait Training for Walking Rehabilitation

1. Product Overview

The Flexbot-U Robotic Gait Trainer is a premium robot assisted gait training system designed for patients requiring precise, customizable lower limb rehabilitation. As a core product in the flexbot u gait training system series, it features independent hip, knee, and ankle joint drive, allowing clinicians to target specific deficits with unmatched accuracy.

This robotic gait and limb training system integrates quantitative training intensity setting, 3D virtual reality biofeedback, and comprehensive rehabilitation assessment. As a professional robotic gait trainer, the Flexbot-U delivers robotic gait training for walking rehabilitation across the entire recovery journey – from bedridden positioning to community ambulation.

2. Product Principle

The flexbot u gait training system uses robotic exoskeleton technology with independent actuators at the hip, knee, and ankle. Unlike basic systems that move the leg as one unit, this robot assisted gait training device can adjust each joint angle, torque, and assistive force separately.

A weight-support system unloads partial body weight, while sensors capture real-time kinematic and kinetic data. The robotic gait and limb training system then provides biofeedback and adjusts parameters automatically or via therapist input. This makes the Flexbot-U an ideal robotic gait trainer for complex neurological conditions requiring robotic gait training for walking rehabilitation with fine motor control.

3. Functional Characteristics

FeatureDescription
Natural Gait – Standardized Eye WalkingThe flexbot u gait training system uses "standardized eye walking" control with independent adjustable parameters for hip, knee, and ankle movement, creating a highly natural walking trajectory.
Precision TrainingQuantitatively set exercise training intensity (joint angle, assist torque, speed) to optimize brain functional plasticity – a key advantage of this robot assisted gait training system.
Step-by-Step ProgressionEstablish progressive training sessions from bed walking to standing walking, covering the full rehabilitation continuum.
BiofeedbackReal-time biofeedback (visual + auditory) guides patients to actively correct their movement patterns during robotic gait training for walking rehabilitation.
Virtual Reality3D scenes with emphasis on proprioceptive training to stimulate motor awareness and patient engagement.
Rehabilitation AssessmentIntegrated three-module assessment: isokinetic muscle strength, isometric muscle strength, and proprioception assessment – no separate equipment needed.

4. Why Choose Flexbot-U Robotic Gait Trainer?

Clinical NeedHow Flexbot-U Solves It
Stroke with joint-specific deficitsIndependent hip/knee/ankle control allows targeted correction of foot drop, stiff knee, or hip retraction.
Spinal cord injury (incomplete)The robot assisted gait training system provides graded assistance from full support to minimal guidance.
Proprioceptive loss3D VR scenes focus on proprioceptive training, helping patients re-learn limb position awareness.
Objective progress trackingIsokinetic/isometric strength and proprioception assessments generate quantifiable data for therapy adjustment.
Early to late stage continuityOne robotic gait and limb training system serves patients from bedridden to community walking.

5. Robotic Gait Trainer Flexbot-S vs. Flexbot-U Comparison

FeatureFlexbot-SFlexbot-U
Joint DriveSynchronizedIndependent (hip/knee/ankle)
Gait ControlPreset patternsStandardized eye walking with adjustable parameters
Training IntensityBasic adjustmentQuantitative precision setting
Virtual RealityBasic scenes3D + proprioceptive focus
AssessmentGait parametersIsokinetic/Isometric + Proprioception
Best ForGeneral neuro rehabComplex cases needing robot assisted gait training with fine control

6. Applicable Patients & Places

Patient Types

CategoryConditions
NeurologicalStroke (hemiplegia with specific joint deficits), incomplete spinal cord injury, traumatic brain injury, cerebral palsy, Parkinson's disease
Proprioceptive deficitsPatients with impaired limb position sense
OrthopedicPost-operative requiring quantified strength assessment

Applicable Places

  • Hospital Rehabilitation Departments

  • Neurological Specialty Centers

  • Academic Medical Centers

  • Advanced Outpatient Rehab Clinics

7. Why Choose Us as Your Robotic Gait Trainer Manufacturer?

AdvantageDescription
Clinical ExpertiseThe flexbot u gait training system is used in 500+ hospitals globally for robotic gait training for walking rehabilitation.
Independent Joint ControlUnique among robotic gait and limb training systems – hip, knee, ankle work independently.
All-in-One AssessmentNo need for separate dynamometer or proprioception testing equipment.
Proven OutcomesPublished studies showing gait improvement with robot assisted gait training using Flexbot series.
Global Support2-year warranty, remote training, spare parts for 10+ years.

8. Robotic Gait Trainer FAQ

1. What is Flexbot-U Robotic Gait Trainer?
Flexbot-U is an advanced robot assisted gait training system that provides independent hip, knee, and ankle control for precise walking rehabilitation.
2. How is it different from basic robotic gait trainers?
Unlike standard robotic gait trainers, Flexbot-U offers independent joint drive – each joint (hip, knee, ankle) can be adjusted separately, allowing targeted correction of specific gait deficits.
3. What is "standardized eye walking" in the flexbot u gait training system?
It is a control method that creates a highly natural, repeatable walking trajectory with independently adjustable parameters for each joint, mimicking human physiological gait.
4. Can this robotic gait and limb training system be used for bedridden patients?
Yes. The robotic gait training for walking rehabilitation starts from bed walking mode and progresses step-by-step to standing and community walking.
5. What assessments does Flexbot-U provide?
The flexbot u gait training system includes three assessments: isokinetic muscle strength, isometric muscle strength, and proprioception assessment – all integrated into one device.
6. Does it include virtual reality?
Yes. The robot assisted gait training system features 3D VR scenes with a focus on proprioceptive training to stimulate motor awareness.
7. Is biofeedback available?
Yes. Real-time visual and auditory biofeedback guides patients during robotic gait training for walking rehabilitation, helping them actively correct movement patterns.
8. What is the patient weight capacity?
The robotic gait trainer accommodates patients up to 135 kg.
9. Which patients benefit most from Flexbot-U?
Stroke patients with joint-specific deficits, incomplete spinal cord injury, proprioceptive loss, and anyone requiring robot assisted gait training with fine motor control.

Product Model

Flexbot-U Gait Training and Evaluation System
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