Recording Visual Evoked Potentials and Auditory Evoked P300 at 9.4T Static Magnetic Field
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Summary
Recording visual evoked potentials and auditory evoked P300 in a 9.4T static magnetic field and it seems that the increased amplitudes of the ERPs are due to the effect of the ultra-high field on the EEG recording system rather than alteration in the intrinsic processes that generate the electrophysiological responses.
- Type
- article
- Published
- 2013-05-01
- Cited by
- 21
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W23650538
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12886068
Keywords
Attraction, Transferability, Agency (philosophy), Economic analysis, Transport engineering
References
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- The benefits of simultaneous EEG-fMRI for EEG analysis.
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- EEG acquisition in ultra-high static magnetic fields up to 9.4 T
- Single trial variability of EEG and fMRI responses to visual stimuli
- Multimodal Imaging of Human Brain Activity: Rational, Biophysical Aspects and Modes of Integration
- Removal of FMRI environment artifacts from EEG data using optimal basis sets
- What we can do and what we cannot do with fMRI
- ISCEV standard for clinical visual evoked potentials (2009 update)
- Properties of the ballistocardiogram artefact as revealed by EEG recordings at 1.5, 3 and 7 T static magnetic field strength.
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- Independent Component Analysis Using an Extended Infomax Algorithm for Mixed Subgaussian and Supergaussian Sources
Cited by
- Multimodal neuroimaging in humans at 9.4 T: a technological breakthrough towards an advanced metabolic imaging scanner
- Brain and gaze based wheelchair navigation enhancement. (Amélioration de la navigation sur fauteuil roulant basée sur le regard et l'activité cérébrale)
- Towards high-quality simultaneous EEG-fMRI at 7 T: Detection and reduction of EEG artifacts due to head motion
- Time-frequency analysis of resting state and evoked EEG data recorded at higher magnetic fields up to 9.4 T.
- Effects of Static Magnetic Fields on the Visual Cortex: reversible Visual Deficits and Reduction of Neuronal Activity.
- Simultaneous EEG-fMRI at ultra-high field: Artifact prevention and safety assessment
- Ultra-high field magnetic resonance imaging of the basal ganglia and related structures
- Comparison of Auditory and Visual Oddball fMRI in Schizophrenia
- Simultaneous EEG-fMRI acquisition at low, high and ultra-high magnetic fields up to 9.4 T: Perspectives and challenges
- Radio frequency calibration methods and sequence optimisation with application to ultra high field MR-PET neuroimaging
- Influence of mental fatigue on P300 and SSVEP during virtual wheelchair navigation
- Simultaneous EEG-fMRI at ultra-high field for the study of human brain function
- When mental fatigue maybe characterized by Event Related Potential (P300) during virtual wheelchair navigation
- A clear view on Parkinson's disease : 7T MRI investigation of the basal ganglia and development of patient-specific deep brain stimulation
- Detecting Driver's Braking Intention Using Recurrent Convolutional Neural Networks Based EEG Analysis
- Influence of Magnetic Fields and their Characteristics on cortical Excitability. Study on healthy adults and pathological aging
- Sensory experience selectively reorganizes the late component of evoked responses
- Simultaneous EEG-fMRI: What Have We Learned and What Does the Future Hold?
- Multimodal magnetic resonance imaging at 3 T and challenges for application at ultra-high field
- ethods for pulse artefact reduction : Experiences with EEG data ecorded at 9 . 4 T static magnetic field
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