Human Movement Rehabilitation

Health Videos

At the Advanced Rehabilitation Center, Vejthani Hospital, patients receive specialized Robotic-Assisted Rehabilitation Programs tailored for neurological and orthopedic recovery. Guided by a multidisciplinary team—comprising Physical Medicine and Rehabilitation (PM&R) physicians, physiotherapists, and occupational therapists—the center focuses on restoring motor functions and maximizing human movement capability.

Upper Limb Robotic Rehabilitation Technologies

Luna EMG: Neurorehabilitation Robot for Arm & Muscle Strength

  • Target Patient Profile: Patients with orthopedic conditions and neurological disorders suffering from loss of arm mobility or reduced muscle strength.
  • Mechanism & Clinical Utility: Utilizes Reactive Electromyography (EMG) technology to train and stimulate the sensory-motor cortex. It provides arm support, enabling patients to relearn motion based on physiological human movement patterns.

ArmeoSpring: Motor Control & Muscle Strength Training Device

  • Target Patient Profile: Stroke patients experiencing upper extremity weakness, specifically those who have initiated partial movement but lack sufficient muscular strength and motor control for daily activities.
  • Mechanism & Clinical Utility: Facilitates effective muscle control and functional exertion. Patient performance metrics are displayed on-screen in real time, allowing visual feedback for movement self-correction and optimal rehabilitation.

Hand of Hope: EMG-Driven Robotic Exoskeleton for Hand Rehabilitation

  • Target Patient Profile: Stroke and paralyzed patients with severe loss of hand mobility, impaired muscle function, or inability to perform grasping and opening movements.
  • Mechanism & Clinical Utility: A wearable robotic exoskeleton that detects patient intent via EMG signals. It safely restores natural hand mobility while stimulating central nervous system recovery and motor relearning.

Gait & Balance Robotic Rehabilitation Technologies

Lokomat: World-Leading Robotic-Assisted Gait Training System

  • Target Patient Profile: Patients with severe gait disturbances resulting from Stroke, Spinal Cord Injury (SCI), Traumatic Brain Injury (TBI), or Parkinson’s Disease.
  • Mechanism & Clinical Utility: Delivers highly repetitive, physiologically correct gait training. Integrated with interactive game-like biofeedback exercises, it enhances patient engagement and unlocks maximum physical potential.

C-Mill: Gait Stability & Environmental Adaptation Training

  • Target Patient Profile: Patients preparing to navigate complex, real-world outdoor and community environments.
  • Mechanism & Clinical Utility: Simulates everyday challenges, such as walking in crowded areas or stepping over obstacles. It substantially enhances body balance, gait stability, and higher-level cognitive-motor functions.

Keeogo: Smart Powered Orthosis Walking Assistance Device

  • Target Patient Profile: Individuals requiring active wearable support to increase endurance, stride length, and walking duration.
  • Mechanism & Clinical Utility: A smart-powered dermoskeleton/orthosis that supports lower-limb locomotion. It empowers patients to walk further for extended periods, preserving their pace of life and social engagement with family and community.

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