Antonova-Rafi, Yulia ValeriivnaMahmoud Moataz Sarwat Youssef2023-11-012023-11-012023Mahmoud Moataz Sarwat Youssef. Hardware and software complex for studying the influence of sound signals on the central nervous system : graduate work to obtain a bachelor's degree : 163 Biomedical engineering / Mahmoud Moataz Sarvat Youssef. - Kyiv, 2023. - 78 p.https://ela.kpi.ua/handle/123456789/61960The topic of the work: software and hardware complex for researching the influence of audio signals on the functional state of the central nervous system. The purpose of the work is the development and implementation of a software-hardware complex for researching the influence of sound stimuli with specified frequency characteristics on the functional state of the central nervous system and experimental verification of the work of this complex. An automated methodology for researching psychomotor indicators of the central nervous system was developed, the use of filtered signals was proposed for researching the influence of audio stimuli of a given frequency on the electrical activity of the brain and psychophysiological indicators. The tasks of the work: to analyze modern studies of the influence of sound stimuli with different characteristics on the electrical activity of the brain and psychophysiological indicators; to develop a hardware and software complex that allows to objectively investigate the influence of audio stimuli with predetermined frequency characteristics on the functional state of the central nervous system; experimentally check the operation of the developed complex.78 p.enhardware and software complexfunctional state of the central nervous systemAuditory evoked potentials (AEPs)psychomotor indicatorsatorstapping testsound stimulussignal filteringfrequency rangeMATLABC#electroencephalographyEEG rhythmsHardware and software complex for studying the influence of sound signals on the central nervous systemАпаратно-програмний комплекс для дослідження впливу звукових сигналів на центральну нервову системуBachelor Thesis