System for diagnostics of motor pathology and rehabilitation treatment by biofeedback method "Stadis" (I.

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FOB, CIF & EXW terms available

Key Highlights

  • Made in Russia - engineered for durability
  • Suitable for challenging environments
  • Lower cost of ownership than European alternatives
  • Bulk orders available with volume discounts
  • Documentation and customs clearance assistance provided
The specialised biofeedback simulator "Stadis" allows to assess walking parameters and to carry out rehabilitation based on the results of the examination. The Stadis simulator uses Neurosens biometric sensors to record walking parameters. These miniature devices are mounted on the patient's shins (and/or back) and record rotational velocities and accelerations in three axes, as well as electromyograms in two channels. Up to 20 walking parameters can be recorded in total. The sensors are wireless, battery-powered and transmit data to the software via Wi-Fi. Their operation is not affected by nearby metal structures. The Biofeedback Walking Assessment and Recovery Trainer allows for objective assessment of walking function using biometric sensors and its recovery using biofeedback. Learning to walk correctly takes place in a fun and engaging game environment.

Technical Specifications

Appointment of the device Designed for: 1) analysis of biomechanical/neuromuscular function of walking using specialised equipment; 2) neuromuscular rehabilitation therapy of various anatomical areas based on the patient's interaction with specialised equipment
Method of motion registration Biometric sensors
Automatic calculation of walking time parameters, walking phases, spatial parameters of walking, kinematic parameters of walking availability
Presence of biofeedback (biofeedback). availability
Presence of motivating 3D game environments availability
Ability to pre-assess walking function prior to training. availability
Possibility to select any recorded walking parameter (temporal, spatial, EMG or kinematic) as B availability
Ability to change the complexity of training tasks during training. availability
Possibility of carrying out training in automatic mode (automatic selection of training difficulty) availability
Possibility to control other (not selected as parameters of the EBS) parameters of the patient's walking during training availability
Video recording of evaluation and training procedures availability
Automatic generation of evaluation and training protocol availability
Saving completed assessments and drills, as well as their protocols in the database availability
Possibility to change the list of calculated parameters for biomechanical/neuromuscular function analysis availability
Ability to view previously completed walking function assessments/trainings and their protocols. availability
Ability to create custom templates for walking function assessment and training protocols availability
Built-in protocol template editor availability
Ability to edit evaluation and training protocols availability
Ability to include graphs, figures and tables in the protocols availability
Availability of a consolidated protocol to track the dynamics of rehabilitation availability
Base of medical norms on basic parameters of walking (phases of walking, temporal parameters, spatial parameters, kinematics) availability
Monitoring the condition of equipment during evaluations and drills availability
Types of registration channels accelerometric, gyroscopic, electromyographic
Sensor weight Not more than 40 (± 4) g
Dimensions of the sensor Not more than 60×40×17 (± 2) mm
Wireless communication with PC availability
communication range Not less than 10 metres in line of sight
Maximum number of sensors simultaneously linked to one PC Not less than 12 pcs.
Sensor synchronization accuracy max. 0.005 s discrepancy
Quantization frequency at least 200 Hz
Input range of measured accelerations in each of the three axes At least ±16g
Permissible error of acceleration measurement in each of the three axes not more than ±(0.04 g + 5% of the measured value)
Input range of angular velocities in each of the three axes Not less than ± 2000 deg/sec.
Permissible error of angular velocity measurement in each of the three axes not more than ±(0.5 deg/s + 2% of measured value)
Total number of differential channels per 1 sensor At least 2
In-phase noise reduction (CMRR) At least 100 dB
Lower bandwidth limit at level (-3 ± 0.5) dB in EMG measurement mode max. 5 Hz
Upper limit of the bandwidth at the level of (-3 ± 0.5) dB in the EMG measurement mode at least 500 Hz
Natural noise level in EMG measurement mode Not more than 2 µV RMS
Input differential resistance At least 100 megohms
EMG signal input range max. 0.07 µV - 20 mV
EMG signal measurement error in the input range from 0.07 µV to 20 mV and at the bandwidth from 5 to 500 Hz not more than ±(7 ?V + 5% of the measured value)
Suppression of mains interference by a switchable tap selector filter At least 40 dB
Function for determining the sub-electrode impedance availability

Note: All specifications are provided by the manufacturer and may be subject to change. Please contact us to confirm the latest specifications before placing your order.

Shipping & Payment Information

Shipping Terms

  • FOB: Novorossiysk, Russia
  • CIF: Available to major ports worldwide
  • EXW: Manufacturer's facility, Russia

Delivery Time

  • Sea freight: 30-60 days (depending on destination)
  • Air freight: 14-21 days (for urgent orders)
  • Production lead time: 30-90 days (depending on order size)

Payment Methods

  • Letter of Credit (L/C)
  • Wire Transfer (T/T)
  • Escrow Services

Order Minimums

  • We work with orders starting from 1 container
  • You can mix different products in one container
  • Volume discounts available for larger orders

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