The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and detection of direction and speed of motion in visual stimuli. Here, we characterized how neuronal populations in hMT+ encode the speed of moving visual stimuli. We evaluated human intracranial electrocorticography (ECoG) responses elicited by square-wave dartboard moving stimuli with different spatial and temporal frequency to investigate whether hMT+ neuronal populations encode the stimulus speed directly, or whether they separate motion into its spatial and temporal components. We extracted two components from the ECoG responses: (1) the power in the high-frequency band (HFB: 65-95 Hz) as a measure of the neuronal population spiking activity...
The main visual pathway that conveys motion information to the middle temporal complex (hMT+) origin...
AbstractWe have shown previously that neurons in the middle temporal (MT) area of primate cortex hav...
Abstract The main visual pathway that conveys motion information to the middle temporal complex (hMT...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
Perception of dynamic scenes in our environment results from the evaluation of visual features such ...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
The main visual pathway that conveys motion information to the middle temporal complex (hMT+) origin...
AbstractWe have shown previously that neurons in the middle temporal (MT) area of primate cortex hav...
Abstract The main visual pathway that conveys motion information to the middle temporal complex (hMT...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
The human middle temporal complex (hMT+) has a crucial biological relevance for the processing and d...
Perception of dynamic scenes in our environment results from the evaluation of visual features such ...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
Changes in brain neuronal activity are reflected by hemodynamic responses mapped through Blood Oxyge...
The main visual pathway that conveys motion information to the middle temporal complex (hMT+) origin...
AbstractWe have shown previously that neurons in the middle temporal (MT) area of primate cortex hav...
Abstract The main visual pathway that conveys motion information to the middle temporal complex (hMT...