Hemicraniectomy: A New Model for Human Electrophysiology with High Spatio-Temporal Resolution
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Summary
Evidence is provided that the hemicraniectomy model provides a means for studying neural dynamics in humans with enhanced spatial and temporal resolution and a metric for trial-by-trial EMG/EEG coupling is provided.
- Type
- dissertation
- Published
- 2010-11-01
- Cited by
- 65
- References
- 59
- Access
- Open access
- OpenAlex
- https://openalex.org/W19925193
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7380737
Keywords
Chemistry, Molecular biology, Humanities, Physics, Art
References
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- Electric Fields of the Brain: The Neurophysics of EEG
- The surface EEG in relation to its sources
- Validating the boundary element method for forward and inverse EEG computations in the presence of a hole in the skull
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- EEG versus MEG localization accuracy: Theory and experiment
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- Age-Related Changes in 1/f Neural Electrophysiological Noise
- Spreading depression in continuous electroencephalography of brain trauma
- Analysis of Neural Activity in Human Motor Cortex - towards Brain Machine Interface System
- Subsequent memory effect in intracranial and scalp EEG
- Single trial discrimination of individual finger movements on one hand: A combined MEG and EEG study
- Preparatory attention after lesions to the lateral or orbital prefrontal cortex – An event-related potentials study
- Contribution of Subregions of Human Frontal Cortex to Novelty Processing
- Differential Go/NoGo Activity in Both Contingent Negative Variation and Spectral Power
- Spanning the rich spectrum of the human brain: slow waves to gamma and beyond
- Whole-scalp EEG mapping of somatosensory evoked potentials in macaque monkeys
- Imaging retinotopic maps in the human brain
- Decompressive Craniectomy as the Primary Surgical Intervention for Hemorrhagic Contusion
- Dynamic network communication as a unifying neural basis for cognition, development, aging, and disease
- A Method for Event-related Phase/Amplitude Coupling
- Neural Mechanisms of Episodic Memory formation
- Signal quality of endovascular electroencephalography
- Determination of trajectories using non-invasive BCI techniques in 3D environments
- α Power Modulation and Event-Related Slow Wave Provide Dissociable Correlates of Visual Working Memory
- Executive functions after focal lesions to the lateral, orbital and medial subdivisions of the prefrontal cortex : neuropsychological, behavioral and electrophysiological findings
- Instantaneous Voltage as an Alternative to Power- and Phase-Based Interpretation of Oscillatory Brain Activity
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