Analysis And Classification Of Eeg Signals For Brain Computer Interfaces Data Acquisition Methods For Human Brain Activity
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Author |
: Szczepan Paszkiel |
Publisher |
: Springer Nature |
Total Pages |
: 131 |
Release |
: 2019-08-31 |
ISBN-10 |
: 9783030305819 |
ISBN-13 |
: 3030305813 |
Rating |
: 4/5 (19 Downloads) |
Synopsis Analysis and Classification of EEG Signals for Brain–Computer Interfaces by : Szczepan Paszkiel
This book addresses the problem of EEG signal analysis and the need to classify it for practical use in many sample implementations of brain–computer interfaces. In addition, it offers a wealth of information, ranging from the description of data acquisition methods in the field of human brain work, to the use of Moore–Penrose pseudo inversion to reconstruct the EEG signal and the LORETA method to locate sources of EEG signal generation for the needs of BCI technology. In turn, the book explores the use of neural networks for the classification of changes in the EEG signal based on facial expressions. Further topics touch on machine learning, deep learning, and neural networks. The book also includes dedicated implementation chapters on the use of brain–computer technology in the field of mobile robot control based on Python and the LabVIEW environment. In closing, it discusses the problem of the correlation between brain–computer technology and virtual reality technology.
Author |
: Szczepan Paszkiel |
Publisher |
: |
Total Pages |
: |
Release |
: 2020 |
ISBN-10 |
: 3030305821 |
ISBN-13 |
: 9783030305826 |
Rating |
: 4/5 (21 Downloads) |
Synopsis Analysis and Classification of EEG Signals for Brain-computer Interfaces: Data acquisition methods for human brain activity by : Szczepan Paszkiel
This book addresses the problem of EEG signal analysis and the need to classify it for practical use in many sample implementations of brain-computer interfaces. In addition, it offers a wealth of information, ranging from the description of data acquisition methods in the field of human brain work, to the use of Moore-Penrose pseudo inversion to reconstruct the EEG signal and the LORETA method to locate sources of EEG signal generation for the needs of BCI technology. In turn, the book explores the use of neural networks for the classification of changes in the EEG signal based on facial expressions. Further topics touch on machine learning, deep learning, and neural networks. The book also includes dedicated implementation chapters on the use of brain-computer technology in the field of mobile robot control based on Python and the LabVIEW environment. In closing, it discusses the problem of the correlation between brain-computer technology and virtual reality technology.
Author |
: Szczepan Paszkiel |
Publisher |
: Springer Nature |
Total Pages |
: 117 |
Release |
: 2022-07-08 |
ISBN-10 |
: 9783031055010 |
ISBN-13 |
: 3031055012 |
Rating |
: 4/5 (10 Downloads) |
Synopsis Applications of Brain-Computer Interfaces in Intelligent Technologies by : Szczepan Paszkiel
The BCI technology finds newer and newer implementations. Year by year, the number of publications in this field grows exponentially. This book attempts to describe the implementation of the brain-computer technology based on both STM32 and Arduino microcontrollers. In addition, the application of BCI technology in the field of intelligent houses, robotic lines as well as in the field of bionic prostheses was presented. One of the chapters of the monograph also discusses the issue of fMRI in the context of the possibility of analyzing images made as part of fMRI through solutions based on machine learning. A practical implementation of the TensorFlow framework was presented. The fMRI technique is also often implemented in BCI solutions. The conducted literature studies show that the technology of BCI is undoubtedly a technology of the future. However, there is a need for continuous development of biomedical signal processing methods in order to obtain the most efficient implementations in the case of non-invasive implementation of BCI technology based on EEG. The further development of BCI technology has a huge impact on the techniques of rehabilitation of people with disabilities. Nowadays, wheelchairs are being constructed, thanks to which a disabled person is physically able to direct his position in a certain direction and at a certain speed. Thanks to BCI, it is also possible to create an individual speech synthesizer, with the help of which a paralyzed person will be able to communicate with the outside world. New limb prostheses that will replace the lost locomotor system in almost one hundred percent are still being developed. Some prostheses are connected to the human nervous system, thanks to which they are able to send feedback to our brain about the shape, hardness and temperature of the object held in the artificial limb.
Author |
: Szczepan Paszkiel |
Publisher |
: Springer Nature |
Total Pages |
: 348 |
Release |
: 2021-03-29 |
ISBN-10 |
: 9783030722548 |
ISBN-13 |
: 3030722546 |
Rating |
: 4/5 (48 Downloads) |
Synopsis Control, Computer Engineering and Neuroscience by : Szczepan Paszkiel
This book presents the proceedings of the 4th International Scientific Conference IC BCI 2021 Opole, Poland. The event was held at Opole University of Technology in Poland on 21 September 2021. Since 2014, the conference has taken place every two years at the University’s Faculty of Electrical Engineering, Automatic Control and Informatics. The conference focused on the issues relating to new trends in modern brain–computer interfaces (BCI) and control engineering, including neurobiology–neurosurgery, cognitive science–bioethics, biophysics–biochemistry, modeling–neuroinformatics, BCI technology, biomedical engineering, control and robotics, computer engineering and neurorehabilitation–biofeedback.
Author |
: Siuly Siuly |
Publisher |
: Springer |
Total Pages |
: 257 |
Release |
: 2017-01-03 |
ISBN-10 |
: 9783319476537 |
ISBN-13 |
: 331947653X |
Rating |
: 4/5 (37 Downloads) |
Synopsis EEG Signal Analysis and Classification by : Siuly Siuly
This book presents advanced methodologies in two areas related to electroencephalogram (EEG) signals: detection of epileptic seizures and identification of mental states in brain computer interface (BCI) systems. The proposed methods enable the extraction of this vital information from EEG signals in order to accurately detect abnormalities revealed by the EEG. New methods will relieve the time-consuming and error-prone practices that are currently in use. Common signal processing methodologies include wavelet transformation and Fourier transformation, but these methods are not capable of managing the size of EEG data. Addressing the issue, this book examines new EEG signal analysis approaches with a combination of statistical techniques (e.g. random sampling, optimum allocation) and machine learning methods. The developed methods provide better results than the existing methods. The book also offers applications of the developed methodologies that have been tested on several real-time benchmark databases. This book concludes with thoughts on the future of the field and anticipated research challenges. It gives new direction to the field of analysis and classification of EEG signals through these more efficient methodologies. Researchers and experts will benefit from its suggested improvements to the current computer-aided based diagnostic systems for the precise analysis and management of EEG signals. /div
Author |
: Aboul Ella Hassanien |
Publisher |
: Springer |
Total Pages |
: 422 |
Release |
: 2014-11-01 |
ISBN-10 |
: 9783319109787 |
ISBN-13 |
: 3319109782 |
Rating |
: 4/5 (87 Downloads) |
Synopsis Brain-Computer Interfaces by : Aboul Ella Hassanien
The success of a BCI system depends as much on the system itself as on the user’s ability to produce distinctive EEG activity. BCI systems can be divided into two groups according to the placement of the electrodes used to detect and measure neurons firing in the brain. These groups are: invasive systems, electrodes are inserted directly into the cortex are used for single cell or multi unit recording, and electrocorticography (EcoG), electrodes are placed on the surface of the cortex (or dura); noninvasive systems, they are placed on the scalp and use electroencephalography (EEG) or magnetoencephalography (MEG) to detect neuron activity. The book is basically divided into three parts. The first part of the book covers the basic concepts and overviews of Brain Computer Interface. The second part describes new theoretical developments of BCI systems. The third part covers views on real applications of BCI systems.
Author |
: Dipali Bansal |
Publisher |
: Academic Press |
Total Pages |
: 222 |
Release |
: 2019-03-14 |
ISBN-10 |
: 9780128146880 |
ISBN-13 |
: 0128146885 |
Rating |
: 4/5 (80 Downloads) |
Synopsis EEG-Based Brain-Computer Interfaces by : Dipali Bansal
EEG-Based Brain-Computer Interface: Cognitive Analysis and Control Applications provides a technical approach to using brain signals for control applications, along with the EEG-related advances in BCI. The research and techniques in this book discuss time and frequency domain analysis on deliberate eye-blinking data as the basis for EEG-triggering control applications. In addition, the book provides experimental scenarios and features algorithms for acquiring real-time EEG signals using commercially available units that interface with MATLAB software for acquisition and control. - Details techniques for multiple types of analysis (including ERP, scalp map, sub-band power and independent component) to acquire data from deliberate eye-blinking - Demonstrates how to use EEGs to develop more intuitive BCIs in real-time scenarios - Includes algorithms and scenarios that interface with MATLAB software for interactive use
Author |
: Wai Yie Leong |
Publisher |
: Healthcare Technologies |
Total Pages |
: 0 |
Release |
: 2019-03 |
ISBN-10 |
: 1785613707 |
ISBN-13 |
: 9781785613708 |
Rating |
: 4/5 (07 Downloads) |
Synopsis EEG Signal Processing by : Wai Yie Leong
Electroencephalography (EEG) is an electrophysiological monitoring method used to record the brain activity in brain-computer interface (BCI) systems. It records the electrical activity of the brain, is typically non-invasive with electrodes placed along the scalp, requires relatively simple and inexpensive equipment, and is easier to use than other methods. EEG-based BCI methods provide modest speed and accuracy which is why multichannel systems and proper signal processing methods are used for feature extraction, feature selection and feature classification to discriminate among several mental tasks. This edited book presents state of the art aspects of EEG signal processing methods, with an emphasis on advanced strategies, case studies, clinical practices and applications such as EEG for meditation, auditory selective attention, sleep apnoea; person authentication; handedness detection, Parkinson's disease, motor imagery, smart air travel support and brain signal classification.
Author |
: Pradeep Kumar Singh |
Publisher |
: Springer Nature |
Total Pages |
: 1164 |
Release |
: 2019-09-23 |
ISBN-10 |
: 9783030305772 |
ISBN-13 |
: 3030305775 |
Rating |
: 4/5 (72 Downloads) |
Synopsis Proceedings of ICETIT 2019 by : Pradeep Kumar Singh
This book presents high-quality, original contributions (both theoretical and experimental) on Information Security, Machine Learning, Data Mining and Internet of Things (IoT). It gathers papers presented at ICETIT 2019, the 1st International Conference on Emerging Trends in Information Technology, which was held in Delhi, India, in June 2019. This conference series represents a targeted response to the growing need for research that reports on and assesses the practical implications of IoT and network technologies, AI and machine learning, data analytics and cloud computing, security and privacy, and next generation computing technologies.
Author |
: Yizhang Jiang |
Publisher |
: Frontiers Media SA |
Total Pages |
: 413 |
Release |
: 2023-02-17 |
ISBN-10 |
: 9782832505175 |
ISBN-13 |
: 2832505171 |
Rating |
: 4/5 (75 Downloads) |
Synopsis Emotion recognition using brain-computer interfaces and advanced artificial intelligence by : Yizhang Jiang