Item does not contain fulltextThe blood oxygenation level-dependent (BOLD) response to entrained neuronal firing in the human visual cortex and lateral geniculate nuclei was investigated. Periodic checkerboard flashes at a range of frequencies (4-20 Hz) were used to drive the visual cortex neurons into entrained oscillatory firing. This is compared to a checkerboard flashing aperiodically, with the same average number of flashes per unit time. A magnetoencephalography (MEG) measurement was made to confirm that the periodic paradigm elicited entrainment. We found that for frequencies of 10 and 15 Hz, the periodic stimulus gave a smaller BOLD response than for the aperiodic stimulus. Detailed investigation at 15 Hz showed that the aperiodic s...
SummaryBackgroundActivity in the living human brain can be studied using multiple methods, spanning ...
The dependency of positive BOLD (PBOLD) and post-stimulus undershoot (PSU) on the temporal frequency...
Human subjects were trained with neurofeedback (NFB) to enhance the power of narrow-band gamma oscil...
Item does not contain fulltextThe blood oxygenation level-dependent (BOLD) response to entrained neu...
The blood oxygenation level-dependent (BOLD) response to entrained neuronal firing in the human visu...
It is believed that human primary visual cortex (V1) increases activity with increasing temporal fre...
It is believed that human primary visual cortex (V1) increases activity with increasing temporal fre...
Despite intense research on the blood oxygenation level-dependent (BOLD) signal underlying fMRI, our...
Over the past decades, numerous studies have linked cortical gamma oscillations (∼30-100 Hz) to neur...
Examining the transients of the blood-oxygenation-level-dependent (BOLD) signal using functional mag...
Although functional magnetic resonance imaging is an important tool for measuring brain activity, t...
Prestimulus oscillatory neural activity in the visual cortex has large consequences for perception a...
The dependency of positive BOLD (PBOLD) and post-stimulus undershoot (PSU) on the temporal frequency...
The sensitivity of the sensory systems to temporal changes of the environment constitutes one of the...
The relationship between blood oxygenation level dependent-functional magnetic resonance imaging (BO...
SummaryBackgroundActivity in the living human brain can be studied using multiple methods, spanning ...
The dependency of positive BOLD (PBOLD) and post-stimulus undershoot (PSU) on the temporal frequency...
Human subjects were trained with neurofeedback (NFB) to enhance the power of narrow-band gamma oscil...
Item does not contain fulltextThe blood oxygenation level-dependent (BOLD) response to entrained neu...
The blood oxygenation level-dependent (BOLD) response to entrained neuronal firing in the human visu...
It is believed that human primary visual cortex (V1) increases activity with increasing temporal fre...
It is believed that human primary visual cortex (V1) increases activity with increasing temporal fre...
Despite intense research on the blood oxygenation level-dependent (BOLD) signal underlying fMRI, our...
Over the past decades, numerous studies have linked cortical gamma oscillations (∼30-100 Hz) to neur...
Examining the transients of the blood-oxygenation-level-dependent (BOLD) signal using functional mag...
Although functional magnetic resonance imaging is an important tool for measuring brain activity, t...
Prestimulus oscillatory neural activity in the visual cortex has large consequences for perception a...
The dependency of positive BOLD (PBOLD) and post-stimulus undershoot (PSU) on the temporal frequency...
The sensitivity of the sensory systems to temporal changes of the environment constitutes one of the...
The relationship between blood oxygenation level dependent-functional magnetic resonance imaging (BO...
SummaryBackgroundActivity in the living human brain can be studied using multiple methods, spanning ...
The dependency of positive BOLD (PBOLD) and post-stimulus undershoot (PSU) on the temporal frequency...
Human subjects were trained with neurofeedback (NFB) to enhance the power of narrow-band gamma oscil...