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.
Model: Flexbot-U – Advanced Robot Assisted Gait Training for Walking Rehabilitation
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.
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.
| Feature | Description |
|---|---|
| Natural Gait – Standardized Eye Walking | The 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 Training | Quantitatively 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 Progression | Establish progressive training sessions from bed walking to standing walking, covering the full rehabilitation continuum. |
| Biofeedback | Real-time biofeedback (visual + auditory) guides patients to actively correct their movement patterns during robotic gait training for walking rehabilitation. |
| Virtual Reality | 3D scenes with emphasis on proprioceptive training to stimulate motor awareness and patient engagement. |
| Rehabilitation Assessment | Integrated three-module assessment: isokinetic muscle strength, isometric muscle strength, and proprioception assessment – no separate equipment needed. |
| Clinical Need | How Flexbot-U Solves It |
|---|---|
| Stroke with joint-specific deficits | Independent 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 loss | 3D VR scenes focus on proprioceptive training, helping patients re-learn limb position awareness. |
| Objective progress tracking | Isokinetic/isometric strength and proprioception assessments generate quantifiable data for therapy adjustment. |
| Early to late stage continuity | One robotic gait and limb training system serves patients from bedridden to community walking. |
| Feature | Flexbot-S | Flexbot-U |
|---|---|---|
| Joint Drive | Synchronized | Independent (hip/knee/ankle) |
| Gait Control | Preset patterns | Standardized eye walking with adjustable parameters |
| Training Intensity | Basic adjustment | Quantitative precision setting |
| Virtual Reality | Basic scenes | 3D + proprioceptive focus |
| Assessment | Gait parameters | Isokinetic/Isometric + Proprioception |
| Best For | General neuro rehab | Complex cases needing robot assisted gait training with fine control |
| Category | Conditions |
|---|---|
| Neurological | Stroke (hemiplegia with specific joint deficits), incomplete spinal cord injury, traumatic brain injury, cerebral palsy, Parkinson's disease |
| Proprioceptive deficits | Patients with impaired limb position sense |
| Orthopedic | Post-operative requiring quantified strength assessment |
Hospital Rehabilitation Departments
Neurological Specialty Centers
Academic Medical Centers
Advanced Outpatient Rehab Clinics
| Advantage | Description |
|---|---|
| Clinical Expertise | The flexbot u gait training system is used in 500+ hospitals globally for robotic gait training for walking rehabilitation. |
| Independent Joint Control | Unique among robotic gait and limb training systems – hip, knee, ankle work independently. |
| All-in-One Assessment | No need for separate dynamometer or proprioception testing equipment. |
| Proven Outcomes | Published studies showing gait improvement with robot assisted gait training using Flexbot series. |
| Global Support | 2-year warranty, remote training, spare parts for 10+ years. |
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E-mail: info@qjmed.com
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