The frontal eye field (FEF) and superior colliculus (SC) are major and well-studied components of the oculomotor system. The FEF sends strong projections to the SC directly, and neurons in these brain regions transmit a variety of signals related to saccadic eye movements. Electrical microstimulation and pharmacological manipulation targeting the FEF or SC affect saccadic eye movements. These data suggest the causal contribution of each region to saccade generation. To understand how the brain generates behavior, however, it is critical not only to identify the structures and functions of individual regions, but also to elucidate how they interact with each other. In this review article, we first survey previous works that aimed at investig...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Background The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Optogenetics enables temporally and spatially precise control of neuronal activity in vivo. One of t...
The frontal eye field (FEF) and superior colliculus (SC) are major and well-studied components of th...
The frontal eye field (FEF) and superior colliculus (SC) are major and well-studied components of th...
Humans and non-human primates must precisely align the eyes on an object to view it with high visual...
AbstractThe ability of primates to make rapid and accurate saccadic eye movements for exploring the ...
SummaryWhile the motor and attentional roles of the frontal eye field (FEF) are well documented, the...
In addition to its role in shifting the line of sight, the oculomotor system is also involved in the...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Background: The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Neuronal and behavioural modulations by pathway-selective optogenetic stimulation of the primate ocu...
Background: The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Approximately three times per second, human visual perception is interrupted by a saccadic eye movem...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Background The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Optogenetics enables temporally and spatially precise control of neuronal activity in vivo. One of t...
The frontal eye field (FEF) and superior colliculus (SC) are major and well-studied components of th...
The frontal eye field (FEF) and superior colliculus (SC) are major and well-studied components of th...
Humans and non-human primates must precisely align the eyes on an object to view it with high visual...
AbstractThe ability of primates to make rapid and accurate saccadic eye movements for exploring the ...
SummaryWhile the motor and attentional roles of the frontal eye field (FEF) are well documented, the...
In addition to its role in shifting the line of sight, the oculomotor system is also involved in the...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Background: The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Neuronal and behavioural modulations by pathway-selective optogenetic stimulation of the primate ocu...
Background: The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Approximately three times per second, human visual perception is interrupted by a saccadic eye movem...
Two discrete areas in frontal cortex are involved in generating saccadic eye movements—the frontal e...
Background The superior colliculus (SC) has been shown to play a crucial role in the initiation and...
Optogenetics enables temporally and spatially precise control of neuronal activity in vivo. One of t...