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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.

Human Movement Rehabilitation

Lokomat gait training Is a robotic-assisted rehabilitation for patients with gait and balance disorder from cerebrovascular disease (stroke), spinal cord injury, brain injury, or from Parkinson’s disease. Provides effective restoration of gait and imitates natural human body movements- Motivates patients with variety o