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HOW THE DEVELOPMENT AND TESTING OF THE EFFICIENCY OF THE HARDWARE AND SOFTWARE COMPLEX WAS CONDUCTED
GENERAL RESEARCH
Even before the development of the hardware and software complex, a huge number of studies were conducted in the scientific and medical community on the topic of the positive impact of general (not individualized) biofeedback for people with ADHD. The team of developers, scientists, teachers, and researchers relied on the experience of their predecessors and on their own unique experience and research.
RESEARCH TO DEVELOP AND IMPROVE THE EFFICIENCY OF THE NEURRO COMPLEX
CLINICAL RESEARCH
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Medical and scientific research involving volunteers will determine how effective the new method of treating ADHD symptoms is compared to existing ones. How safe is the new process – are there any side effects.
PRACTICAL RESEARCH:
Research that allows testing and confirming in practice is an indicator of the effectiveness of the new method of treating the disorder.
Olga Andreevna Dzhafarova Candidate of Physical and Mathematical Sciences, Associate Professor, Head of the Laboratory of Computerized Biofeedback Systems, Federal State Budgetary Scientific Institution "Research Institute of Molecular Biology and Biophysics", Novosibirsk.
Elena Nikolaevna Danilenko Researcher, Laboratory of Computerized Biofeedback Systems, Federal State Budgetary Scientific Institution "Research Institute of Molecular Biology and Biophysics".
At the beginning and end of each school year, EEG dynamics were analyzed, the time to complete the Schulte test was assessed, and the academic performance of all children was monitored based on the average score for each subject. The results were compared with children from parallel classes.
Research result.
The overall effectiveness of the course was 94%. All children from the experimental class successfully completed primary and secondary school, and academic performance indicators met academic requirements. The organization of rooms for conducting correction courses in the school showed high efficiency and influenced the social and psychological adaptation of children with ADHD to normal learning conditions. And children with disorders ceased to fall out of sight of medical structures or teaching staff.
Bazanova Olga Mikhailovna - Laboratory of Affective, Cognitive and Translational Neuroscience, Department of Experimental, Clinical Neuroscience, Federal State Research Institute of Physiology and Fundamental Medicine, Novosibirsk, Russia
- Department of Neurology, Novosibirsk State University, Novosibirsk, Russia
Elena Aleksandrovna Sapina - Laboratory of Computer Systems of Biofeedback, Research Institute of Molecular Biology and Biophysics, Novosibirsk, Russia
- Department of Psychology, Novosibirsk State University of Economics and Management, Novosibirsk, Russia
Tibor Auer (UK) - Department of Psychology, Royal Holloway, University of London, Egham, UK
- MRC Cognition and Brain Sciences, University of Cambridge, Cambridge, UK
Different symptom targets were used in the groups. Participants were assessed before, after, and 6 months after completion of the intervention. Data completed by teachers and parents, psychometric and behavioural rating scales, and 19-channel EEG and forehead EMG recordings were compared.
All groups of children with ADHD achieved a significant TBR value, which was not noticeable in the control group. Overall, high alpha activity was recorded in the individualized group, not in the standard group. Even after 6 months of observation, the group with the individualized approach in combination with EMG showed the highest level of clinical improvement.
Results of the study.
The process allowed us to identify various alpha activity indicators as biomarkers that are associated with ADHD symptoms. And also to see the success and clinically higher efficiency of the individually adjusted (taking into account alpha activity dispersions) TBR NFT in comparison with the standard and non-individualized.
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