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Robotic Hand Rehabilitation is a cutting-edge technology in rehabilitation medicine designed to assist individuals with hand weakness resulting from neurological conditions such as Stroke, Parkinson’s disease, hemiparesis, or those who have lost hand mobility after injury or surgery. This technology allows patients to practice movements in a systematic, precise, and safe manner under the supervision of a Rehabilitation Medicine physician and a multidisciplinary team.
The hallmark of PYONG Rehabilitation Penthouse is the combination of advanced technology with personalized planning, with the physician assessing and closely directing the treatment at the Gaysorn Tower, 11th Floor, a conveniently located clinic near BTS Chidlom in the heart of Bangkok.
Robotic Hand Rehabilitation refers to a device that assists patients in practicing various hand and finger movements, such as making a fist, spreading fingers, or grasping objects. The machine provides assistance or control to guide the movement as programmed. The main objective is to stimulate neuroplasticity in the brain and nerves, enabling the patient to regain the ability to use their hand for Activities of Daily Living (ADLs), such as holding a glass, writing, or using utensils.
Physician-Led and Expert Supervision: A Rehabilitation Medicine physician and occupational therapists oversee every step, from assessment and planning to progress monitoring.
Three Treatment Modes: The robotic hand at PYONG Rehabilitation is a state-of-the-art model featuring Passive, Active-assisted, and Active modes (compared to older models often having only one mode). This suits patients at all recovery stages, from passive movement assistance to active force generation.
Integrated Therapy: The PYONG Robotic Hand combines Mirror Therapy (using the reflection of the unaffected hand to stimulate the brain and enhance neuroplasticity) with an interactive game system to boost patient motivation and compliance. It also offers real-time feedback via motion sensors, allowing the therapist to instantly adjust the program.
Effective ADL Training: The device supports training for individual fingers and specific grasping/pinching patterns, effectively restoring hand skills essential for daily life compared to other hand exercises.
Comprehensive Technology: Integrates the robot with other treatments like tDCS, TMS, PMS, and Exoskeleton.
Multidisciplinary Team: Includes occupational therapists, physical therapists, and speech therapists.
Convenient Location: Gaysorn Tower, 11th Floor (BTS Chidlom).
Personalized Care: Programs are adjusted based on the patient’s goals and actual functional capacity.
The mechanism involves sensors that detect the patient’s movement and force exertion, then adjust the assistance or resistance force appropriately to the individual’s ability level. The general service steps include:
Rehabilitation Medicine Physician Assessment: Physical examination, hand function evaluation, and defining the training program.
Machine Setup: Adjusting assistance levels and training patterns based on ability.
Repetitive Movement Training: Such as grasping, finger spreading, and object manipulation, with real-time feedback.
Monitoring and Program Adjustment: The medical team and occupational therapist modify the training patterns based on progress.
During the session, the patient will feel support assisting their hand movement, and the process is not painful.
Post-Stroke Rehabilitation
Hemiparesis from brain or spinal cord injury
Hand weakness from Parkinson’s disease
Spasticity causing hand clenching
Peripheral nerve injuries of the arm or hand
Post-operative recovery of the hand or arm
Elderly individuals with age-related hand muscle weakness
Neurodegeneration causing impaired hand function
Difficulty with Activities of Daily Living (ADLs) requiring fine motor skills
Need for hand function recovery for work or daily tasks
Numerous studies have investigated the effectiveness of robotic hand rehabilitation. Research suggests that robotic training enhances brain and nerve recovery by promoting the formation of new neural pathways (neuroplasticity). A study in the Stroke Rehabilitation Journal indicated that patients receiving robotic hand rehabilitation tended to recover hand function better than those undergoing physical therapy alone. Another study in the Journal of Neuro Engineering and Rehabilitation found that repetitive robotic training improved movement precision and helped boost patient motivation.
Generally, 2–4 sessions per week are recommended, depending on the severity and goals. In some cases, such as early post-stroke patients, training may be more frequent to accelerate the recovery process. However, the optimal frequency is determined by an individualized assessment by the physician and the rehabilitation team.
▶︎ Short-term (First 1–2 weeks)
Patients may notice easier hand movement, reduced spasticity, and the ability to use the hand for minor daily tasks.
▶︎ Long-term (4–6 weeks and beyond)
May observe significant progress in grasping objects, hand-eye coordination, and the return of hand use for ADLs such as eating, dressing, or writing.
While robotic hand rehabilitation is generally considered safe and painless, precautions include:
Individuals with a pacemaker or implanted electronic devices.
Individuals with an acute infection or high fever.
Individuals with uncontrolled high blood pressure.
Individuals with open wounds on the arm or hand.
A medical history review and physical examination by a Rehabilitation Medicine physician are conducted before the start of any session to ensure safety.
The cost for Robotic Hand Rehabilitation is approximately 4,000–6,000 Baht per session, depending on the package, and is often included in an Intensive Rehabilitation Program. All patients require an initial assessment by a Rehabilitation Medicine physician to determine the appropriate approach and number of sessions.
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Grupo de Rehabilitación PYONG
Bangkok, Thailand

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