brain-computer interface
BCI interface
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Brain Computer Interface (BCI)

Brain-Computer Interface (BCI) is composed of "Brain" + “Computer” + “Interface”, which is a direct communication method between the brain and the outside world. It establishes a direct communication method between the brain and the outside world, and directly translates the collected activities of the central nervous system into signals or commands that can be recognized by external artificial devices. Brain-computer interface is not only an important tool for comprehensively analyzing and understanding the brain, but also the most promising diagnostic and therapeutic tool in the field of Neuroprosthetics

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In order to effectively build a pathway for direct information interaction between the brain and the outside world. The Brain-Computer Interface system mainly includes: Signal acquisition, Signal processing, the control interface between the computer and other devices interface and the closed-loop system of neural feedback

Brain-Computer Interfaces can complete the neurological recovery through two ways: Firstly, its through the neurostimulation technology to adjust the characteristics of brain signals, so that the cortical activation pattern tends to normalize, and then achieve functional recovery. Secondly, through the Brain-Computer Interface to control the external Device to carry out repeated training indirectly to promote the reconstruction of neural pathways, to restore part of the movement ability and movement control level, through the active rehabilitation method, to improve the patient's participation

Current status of Brain-Computer Interface(BCI) domestic and international research
BCI interface

The development of Brain-Computer Interface(BCI) technology can be divided into academic exploration phase, scientific

demonstration phase and application experimentation phase

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Brain-Computer Interface(BCI) Interaction Rehabilitation Training and Evaluation System
BCI neural rehabilitation
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Digital Electroencephalography (EEG)Recording and Analysis System
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Scope of application

Applicable to the acquisition and monitoring of clinical EEG (Electroencephalogram) signals used in hospitals at all levels for neurophysiology testing, analysis and research

Applicable Departments

Rehabilitation Department, Neurology Department, Neurosurgery Department, Stroke Center, Geriatrics Department, Pediatrics,Neuroelectrophysiology Room

Product features
Wireless portability and long battery life
Support 8/16/32 channels real-time EEG (Electroencephalogram) acquisition
Data export and In-depth analysis
Wide range of application scenarios
Real-time analysis function
Movement imagery training support
scientific research cooperation
Scientific cooperation
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RxHEAL Medical relying on Lepu Medical Group,and cooperated with Xi'an Jiaotong University to establish NRR-Neurological Rehabilitation Robotics Research Institute, focusing on Brain-Computer Interface(BCI) rehabilitation robotics, AI (Artificial Intelligence)healthcare and other cutting-edge technologies, to produce fruitful innovations through in-depth cooperation and synergy, and to lead the industry's future development

Research collaboration paper
  • 14
    Published high-level papers in the past three years
  • 7
    Among them, those with impact factors>5
  • 19.12
    The highest impact factor for a single article is
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