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Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices
Precision Rehabilitation Using Medical Exoskeleton Devices

Precision Rehabilitation Using Medical Exoskeleton Devices

Price 750000.0 INR/ Piece

MOQ : 1 Piece

Precision Rehabilitation Using Medical Exoskeleton Devices Specification

  • Size
  • Smart exoskeleton for stroke walking therapy
  • Equipment Type
  • Orthopedic rehab smart exoskeleton equipment
  • Power
  • Advanced smart exoskeleton system for rehabilitation therapy Volt (v)
  • Noise Level
  • Smart exoskeleton for paralysis rehabilitation db
  • Operating Type
  • Physiotherapy smart exoskeleton mobility support
  • Shape
  • Smart exoskeleton for paralysis recovery programs
  • Set Contains
  • Wearable smart exoskeleton for rehab clinics
  • Capacity
  • Orthopedic rehabilitation smart exoskeleton system Kg
  • Portable
  • Wearable smart exoskeleton for rehab clinics
  • Feature
  • Intelligent smart exoskeleton for rehab care
  • Voltage
  • Smart robotic exoskeleton for clinical rehabilitation use Statampere (sA)
  • Material
  • Smart exoskeleton for stroke recovery therapy
  • Condition
  • Smart exoskeleton for spinal and joint rehab
  • Application
  • Hospital grade smart exoskeleton rehabilitation equipment
  • Accuracy
  • Smart exoskeleton for functional movement therapy mg
  • Dimension (L*W*H)
  • Clinical smart exoskeleton for physiotherapy hospitals Inch (in)
  • Magnification Power
  • Robotic smart exoskeleton for gait correction mm
  • Color
  • Smart exoskeleton for assisted walking training
  • Storage Instructions
  • Clinical smart exoskeleton for balance training
  • Suitable For Use
  • Advanced smart rehabilitation robotics system
  • Use
  • Smart exoskeleton for functional movement recovery
  • Real-Time Operation
  • Advanced smart rehabilitation robotics equipment Week
  • Lighting Type
  • Robotic smart exoskeleton for gait training therapy
  • Power Consumption
  • Intelligent smart exoskeleton for neuro and ortho recovery Watt (W)
  • Wall Mounted
  • Lower limb smart exoskeleton for physiotherapy training
  • Operation Mode
  • Lower limb smart exoskeleton for physiotherapy treatment
  • Adhesive Type
  • Neuro rehabilitation smart exoskeleton for mobility recovery
  • Technology
  • Hospital grade smart exoskeleton system
  • Attributes
  • Clinical smart gait training exoskeleton
  • Function
  • Physiotherapy smart exoskeleton mobility assistance
  • Warranty
  • Smart exoskeleton for spinal and joint rehabilitation
  • Recyclable
  • No
  • Recommended For
  • Shoulder, Joints, Cervical, Back, Muscles, Nerves
  • Treatment
  • Smart exoskeleton for walking and mobility training
  • Measuring Range
  • Smart exoskeleton system for rehabilitation use Rankine
  • Pressure Range
  • Neuro rehabilitation smart exoskeleton system
  • Frequency Range
  • Intelligent exoskeleton for neuro recovery therapy Hertz (HZ)
  • Usage
  • Smart exoskeleton for orthopedic rehabilitation
  • Age Group
  • Children, Adults, Women, Elders, Infants
  • Display
  • Touch Screen
  • Power Source
  • Electric
  • Weight
  • Clinical smart exoskeleton for rehab centers Kilograms (kg)
 

Precision Rehabilitation Using Medical Exoskeleton Devices Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • FOB Port
  • New Delhi
  • Payment Terms
  • Paypal, Cash Against Delivery (CAD), Cash on Delivery (COD), Cash Advance (CA), Cash in Advance (CID), Cheque, Days after Acceptance (DA), Delivery Point (DP), Letter of Credit at Sight (Sight L/C), Telegraphic Transfer (T/T), Western Union, Letter of Credit (L/C)
  • Supply Ability
  • 1 Piece Per Day
  • Delivery Time
  • 1 Week
  • Sample Available
  • Yes
  • Sample Policy
  • Free samples available with shipping and taxes paid by the buyer
  • Packaging Details
  • as per communication
  • Main Export Market(s)
  • Asia, Australia, Central America, North America, South America, Eastern Europe, Western Europe, Middle East, Africa
  • Main Domestic Market
  • All India
  • Certifications
  • as per communication customer
 

About Precision Rehabilitation Using Medical Exoskeleton Devices

Biotronix Precision Rehabilitation Using Medical Exoskeleton Devices

Precision rehabilitation using medical exoskeleton devices is redefining how physiotherapy is delivered in modern clinical settings. These advanced wearable robotic systems are engineered to provide highly controlled, repeatable, and task-specific movement therapy for patients with neurological and orthopedic impairments. By combining biomechanics, sensor technology, and intelligent control systems, medical exoskeleton devices enable precise movement execution, ensuring accurate rehabilitation while minimizing compensatory patterns. This precision-driven approach leads to improved functional recovery, consistent outcomes, and higher standards of patient care.

Key Features

  • Medical-grade wearable exoskeleton designed for precision rehabilitation

  • Intelligent adaptive assistance aligned with patient motor capability

  • Multi-joint support for hips, knees, and ankles to ensure biomechanical accuracy

  • Real-time sensor-based control for precise, smooth, and synchronized movement

  • Adjustable assistance and body-weight support for stage-wise rehabilitation

  • Therapist-controlled interface for customized and goal-oriented therapy planning

  • Advanced safety systems, including emergency stop and torque limitation

  • Continuous data acquisition for precise monitoring and outcome evaluation

Applications

  • Neurological rehabilitation for stroke, spinal cord injury, and traumatic brain injury

  • Neurodegenerative condition therapy, including Parkinsonas disease and multiple sclerosis

  • Orthopedic rehabilitation after joint replacement, fractures, and ligament reconstruction

  • Post-surgical rehabilitation for early mobilization and controlled movement training

  • Gait retraining, balance correction, and posture rehabilitation

  • Precision-based rehabilitation programs in hospitals and physiotherapy centers

Benefits

  • Delivers precise, repeatable movements essential for motor relearning

  • Enhances neuroplasticity through controlled, task-specific training

  • Improves movement accuracy, coordination, and functional control

  • Ensures high patient safety during upright and assisted mobility therapy

  • Provides objective, data-driven insights into rehabilitation progress

  • Reduces therapist physical strain during intensive precision training

  • Increases patient confidence, motivation, and therapy adherence

Technical Specifications

  • System type: Wearable lower-limb medical rehabilitation exoskeleton

  • User weight range: Approximately 40a120 kg

  • User height range: Approximately 150a195 cm

  • Assisted joints: Hip (2 degrees of freedom), Knee (1 degree of freedom), Ankle (1 degree of freedom per side)

  • Actuation system: High-torque brushless DC motors with integrated torque sensors

  • Power supply: Rechargeable lithium-ion battery pack

  • Battery backup: Approximately 3a5 hours of continuous operation

  • Charging time: Approximately 2a3 hours

  • Training modes: Passive, active-assist, resistive, adaptive

  • Sensor system: IMU sensors, joint encoders, force and torque sensors

  • Safety features: Emergency stop button, torque limiters, mechanical braking system

  • Connectivity: Bluetooth, Wi-Fi, USB data export

  • Compliance: Medical device certifications (model dependent)

  • Operating temperature: 10AC to 40AC

  • Storage temperature: a20AC to 60AC


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Smart Exoskeleton for Advanced Stroke Recovery

Engineered for effective stroke rehabilitation, this smart exoskeleton provides controlled assistance for regaining movement and strength. The device integrates physiotherapy protocols and gait training to support a comprehensive recovery strategy and facilitate improved functional mobility for patients in clinical and hospital settings.


User-Friendly Touchscreen and Real-Time Monitoring

A responsive touchscreen interface allows clinicians to easily configure exercises and monitor patient progress in real time. This streamlines the rehabilitation process and ensures tailored therapies based on individual requirements, enhancing patient engagement and clinical outcomes.


Designed for Multi-Age and Clinical Versatility

Adaptable to a wide range of patients, including children, women, and elders, this exoskeleton is suitable for hospital-based rehabilitation centers and clinics. Its portability and ergonomic design support therapeutic progress across diverse orthopedic, neurological, and musculoskeletal conditions.

FAQ's of Precision Rehabilitation Using Medical Exoskeleton Devices:


Q: How does the smart exoskeleton assist in stroke recovery?

A: The exoskeleton uses intelligent technology to support muscle and nerve function, facilitating movement and gait training tailored to stroke rehabilitation. It provides real-time feedback and assistance, promoting neurological recovery and improved mobility.

Q: What features make this exoskeleton suitable for hospital physiotherapy?

A: This device offers hospital-grade durability, a user-friendly touchscreen, multiple operation and measurement modes, and high accuracy. It can be used for orthopedic, neuro, and spinal rehabilitation, fitting seamlessly into clinical protocols for both children and adults.

Q: When is it appropriate to use the exoskeleton during rehabilitation?

A: The exoskeleton is suitable for use in the early and advanced stages of neuro-orthopedic rehabilitation. After initial clinical assessment, therapists can incorporate it into treatment plans for patients needing gait, mobility, or functional movement support.

Q: Where can this exoskeleton be used?

A: Primarily designed for hospitals and rehabilitation centers, this wearable device can also be used in specialized clinics. Its portability allows for easy movement within different therapeutic environments as required by care plans.

Q: What is the process for using the smart exoskeleton in therapy sessions?

A: A clinician or therapist programs the device using the touchscreen interface, selects appropriate therapy settings, and fits the exoskeleton to the patient's lower limb or required area. During sessions, real-time operation enables on-the-go adjustments and monitoring.

Q: What patient benefits are provided by this exoskeleton?

A: Patients benefit from enhanced movement accuracy, muscle strengthening, and support in regaining walking ability. The exoskeleton accelerates recovery, reduces dependency, and helps restore independence for various neurological and orthopedic conditions.

Q: How should the device be stored and maintained after use?

A: After therapy sessions, store the exoskeleton as per the provided clinical storage guidelines, ensuring it remains clean and free from damage. Regular maintenance checks are recommended to keep the equipment in optimal condition for continued use.

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