fMRI, EEG, and MEG are complementary technologies with significant potential to investigate abnormalities in brain activity and functional connectivity in neurodegenerative diseases. While fMRI provides more detailed spatial resolution of functional brain changes, EEG and MEG offer unparalleled temporal resolution, enabling the detection of rapid neural dynamics. These methods, individually or in combination, are valuable tools for early diagnosis, differential diagnosis, and prognostication in the appropriate clinical context. They also hold promise for predicting treatment responses and enabling therapeutic monitoring. Beyond clinical applications, fMRI, EEG, and MEG contribute to scientific insights into neurodegenerative processes. These include identifying compensatory hyperactivation of brain circuits, uncovering disruptions in neural oscillations across specific frequency bands, and exploring genetic modulation of functional brain activity. Together, these technologies provide a multifaceted approach to understanding and addressing the complexities of neurodegenerative diseases.

Functional connectivity in neurodegenerative conditions / Basaia, S., Orlandi, F., Lumaca, L., Filippi, M., Agosta, F.. - (2025), pp. 191-218. [10.1016/b978-0-443-19099-5.00008-8]

Functional connectivity in neurodegenerative conditions

Basaia, Silvia
Primo
;
Orlandi, Francesca
Secondo
;
Filippi, Massimo
Penultimo
;
Agosta, Federica
Ultimo
2025-01-01

Abstract

fMRI, EEG, and MEG are complementary technologies with significant potential to investigate abnormalities in brain activity and functional connectivity in neurodegenerative diseases. While fMRI provides more detailed spatial resolution of functional brain changes, EEG and MEG offer unparalleled temporal resolution, enabling the detection of rapid neural dynamics. These methods, individually or in combination, are valuable tools for early diagnosis, differential diagnosis, and prognostication in the appropriate clinical context. They also hold promise for predicting treatment responses and enabling therapeutic monitoring. Beyond clinical applications, fMRI, EEG, and MEG contribute to scientific insights into neurodegenerative processes. These include identifying compensatory hyperactivation of brain circuits, uncovering disruptions in neural oscillations across specific frequency bands, and exploring genetic modulation of functional brain activity. Together, these technologies provide a multifaceted approach to understanding and addressing the complexities of neurodegenerative diseases.
2025
Inglese
Functional connectivity of the human brain: from mechanisms to clinical applications
Maria A. Rocca, Massimo Filippi
9780443190995
191
218
28
Esperti non anonimi
Internazionale
Goal 3: Good health and well-being
Alzheimer's disease (AD) Electroencephalography Frontotemporal lobar degeneration (FTLD) Lewy body disease (LBD) Magnetoencephalography Mild cognitive impairment (MCI) Neurodegenerative diseases Progressive supranuclear palsy (PSP)
No
2 Contributo in Volume::2.1 Contributo in volume (Capitolo o Saggio)
5
268
Functional connectivity in neurodegenerative conditions / Basaia, S., Orlandi, F., Lumaca, L., Filippi, M., Agosta, F.. - (2025), pp. 191-218. [10.1016/b978-0-443-19099-5.00008-8]
reserved
Basaia, Silvia; Orlandi, Francesca; Lumaca, Laura; Filippi, Massimo; Agosta, Federica
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11768/191718
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