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Biomedical signals provide unprecedented insight into abnormal or
anomalous neurological conditions. The computer-aided diagnosis
(CAD) system plays a key role in detecting neurological
abnormalities and improving diagnosis and treatment consistency in
medicine. This book covers different aspects of biomedical
signals-based systems used in the automatic
detection/identification of neurological disorders. Several
biomedical signals are introduced and analyzed, including
electroencephalogram (EEG), electrocardiogram (ECG), heart rate
(HR), magnetoencephalogram (MEG), and electromyogram (EMG). It
explains the role of the CAD system in processing biomedical
signals and the application to neurological disorder diagnosis. The
book provides the basics of biomedical signal processing,
optimization methods, and machine learning/deep learning techniques
used in designing CAD systems for neurological disorders.
Focusses on important perspectives of the Internet of Drones (IoD)
Emphasizes drone deployment in smart cities, smart agriculture,
smart healthcare, and 3D mapping Covers challenges in drone design
for applications with security and privacy issues Reviews
diversified drone applications with real-use cases from modern
drone players ranging from startup companies to big giants in the
drone industry Includes different aspects of drone design such as
hardware and software architecture, potential applications, and
opportunities
Biomedical signals provide unprecedented insight into abnormal or
anomalous neurological conditions. The computer-aided diagnosis
(CAD) system plays a key role in detecting neurological
abnormalities and improving diagnosis and treatment consistency in
medicine. This book covers different aspects of biomedical
signals-based systems used in the automatic
detection/identification of neurological disorders. Several
biomedical signals are introduced and analyzed, including
electroencephalogram (EEG), electrocardiogram (ECG), heart rate
(HR), magnetoencephalogram (MEG), and electromyogram (EMG). It
explains the role of the CAD system in processing biomedical
signals and the application to neurological disorder diagnosis. The
book provides the basics of biomedical signal processing,
optimization methods, and machine learning/deep learning techniques
used in designing CAD systems for neurological disorders.
The book focuses on both theory and applications in the broad areas
of communication technology, computer science and information
security. This two volume book contains the Proceedings of 4th
International Conference on Advanced Computing, Networking and
Informatics. This book brings together academic scientists,
professors, research scholars and students to share and disseminate
information on knowledge and scientific research works related to
computing, networking, and informatics to discuss the practical
challenges encountered and the solutions adopted. The book also
promotes translation of basic research into applied investigation
and convert applied investigation into practice.
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