ScholarGate
Asisten

Bandingkan metode

Tinjau metode pilihan Anda berdampingan; baris yang berbeda akan disorot.

Analisis Potensial Terkait Peristiwa×Lokalisasi Sumber MEG×Nilai Penguncian Fase×
BidangPencitraan SarafPencitraan SarafPencitraan Saraf
KeluargaProcess / pipelineProcess / pipelineProcess / pipeline
Tahun asal196919721999
PencetusGeorge SutherlandDavid CohenJean-Philippe Lachaux
TipeTime-locked EEG analysis pipelineMEG neuroimaging analysis pipelineEEG/MEG functional connectivity analysis
Sumber perintisLuck, S. J. (2005). An Introduction to the Event-Related Potential Technique. MIT Press. link ↗Hauk, O., Friston, K. J., & Leff, A. (2019). Functional neuroimaging of language: understanding the complex relationships between localization and function. Journal of Neurolinguistics, 50, 236–250. link ↗Lachaux, J. P., Rodriguez, E., Martinerie, J., & Varela, F. J. (1999). Measuring phase synchrony in brain signals. Human Brain Mapping, 8(4), 194–208. DOI ↗
AliasERP, evoked potential, averaged EEGMEG localization, magnetic source imaging, MSIPLV, phase synchronization, phase coupling
Terkait333
RingkasanEvent-Related Potential (ERP) analysis is a method for extracting stereotyped brain electrical responses time-locked to stimulus presentation or behavioral events from EEG recordings. Formalized in the cognitive neuroscience literature by researchers including Sutherland and Picton, ERP analysis enables millisecond-level temporal resolution of neural processing and has become foundational for studying perception, attention, memory, and decision-making.Magnetoencephalography (MEG) source localization is the inverse problem of estimating where in the brain neural currents originate from magnetic field measurements at the scalp. Introduced by David Cohen in 1972, MEG offers superior temporal resolution (milliseconds) and spatial specificity compared to EEG, as magnetic fields are less distorted by tissue conductivity, enabling researchers to pinpoint neural activity with high precision.Phase-Locking Value (PLV) is a frequency-domain measure of neural synchronization that quantifies the stability of phase difference between two signals. Introduced by Lachaux and colleagues in 1999, PLV detects phase coupling between brain regions independent of signal amplitude, enabling researchers to characterize functional connectivity from EEG and MEG recordings.
ScholarGateSet data
  1. v1
  2. 2 Sumber
  3. PUBLISHED
  1. v1
  2. 2 Sumber
  3. PUBLISHED
  1. v1
  2. 2 Sumber
  3. PUBLISHED

Ke halaman pencarian Unduh salindia

ScholarGateBandingkan metode: Event-Related Potential Analysis · MEG Source Localization · Phase-Locking Value. Diakses 2026-06-18 dari https://scholargate.app/id/compare