paper-with-me

Papers

Complex network modelling of EEG band coupling in dyslexia: an exploratory analysis of auditory processing and diagnosis

2021-06-28 · Nicolás J. Gallego-Molina, Andrés Ortiz, Francisco J. Martínez-Murcia, Marco Formoso, Almudena Giménez

Complex network analysis has an increasing relevance in the study of neurological disorders, enhancing the knowledge of brain's structural and functional organization. Network structure and efficiency reveal different brain states along with different ways of processing the information. This work is structured around the exploratory analysis of the brain processes involved in low-level auditory processing. A complex network analysis was performed on the basis of brain coupling obtained from Electroencephalography (EEG) data, while different auditory stimuli were presented to the subjects. This coupling is inferred from the Phase-Amplitude coupling (PAC) from different EEG electrodes to explore differences between controls and dyslexic subjects. Coupling data allows the construction of a graph, and then, graph theory is used to study the characteristics of the complex networks throughout time for controls and dyslexics. This results in a set of metrics including clustering coefficient, path length and small-worldness. From this, different characteristics linked to the temporal evolution of networks and coupling are pointed out for dyslexics. Our study revealed patterns related to Dyslexia as losing the small-world topology. Finally, these graph-based features are used to classify between controls and dyslexic subjects by means of a Support Vector Machine (SVM).

📄 PDF Abstract BibTeX arXiv:2106.14675

Code (0)

등록된 구현이 없습니다.

Tasks

EEGElectroencephalogram (EEG)

Similar Papers 제목 키워드 기반

Modelling Brain Connectivity Networks by Graph Embedding for Dyslexia Diagnosis

2021-04-12 · Marco A. Formoso, Andrés Ortiz, Francisco J. Martínez-Murcia, Nicolás Gallego-Molina 외

Several methods have been developed to extract information from electroencephalograms (EEG). One of them is Phase-Amplitude Coupling (PAC) which is a type of Cross-Frequency Coupling (CFC) method, consisting in measure t…

EEGElectroencephalogram (EEG)Functional ConnectivityGraph Embedding

Neural source/sink phase connectivity in developmental dyslexia by means of interchannel causality

2023-01-02 · I. RodrÍguez-RodrÍguez, A. Ortiz, N. J. Gallego-Molina, M. A. Formoso 외

While the brain connectivity network can inform the understanding and diagnosis of developmental dyslexia, its cause-effect relationships have not yet enough been examined. Employing electroencephalography signals and ba…

Temporal EigenPAC for dyslexia diagnosis

2021-04-13 · Nicolás Gallego-Molina, Marco Formoso, Andrés Ortiz, Francisco J. Martínez-Murcia 외

Electroencephalography signals allow to explore the functional activity of the brain cortex in a non-invasive way. However, the analysis of these signals is not straightforward due to the presence of different artifacts …

EEGElectroencephalogram (EEG)Functional Connectivity

Handwriting Anomalies and Learning Disabilities through Recurrent Neural Networks and Geometric Pattern Analysis

2024-05-12 · Vasileios Alevizos, Sabrina Edralin, Akebu Simasiku, Dimitra Malliarou 외

Dyslexia and dysgraphia are learning disabilities that profoundly impact reading, writing, and language processing capabilities. Dyslexia primarily affects reading, manifesting as difficulties in word recognition and pho…

Altered structural connectivity of the left visual thalamus in developmental dyslexia

2017-11-16

Developmental dyslexia is characterized by persistent reading and spelling deficits. Partly due to technical challenges with investigating subcortical sensory structures, current research on dyslexia in humans by-and-lar…

Diffusion MRI