Natural vision engages a wide range of higher-level regions that integrate visual information over the large-scale brain network. How interareal connectivity reconfigures during the processing of ongoing natural visual scenes and how these dynamic functional changes relate to the underlaying anatomical links between regions is not well understood. Here, we hypothesized that macaque visual brain regions are poly-functional sharing the capacity to change their configuration state depending on the nature of visual input. To address this hypothesis, we reconstructed networks from in-vivo diffusion-weighted imaging (DWI) and functional magnetic resonance imaging (fMRI) data obtained in four alert macaque monkeys viewing naturalistic movie scenes...
The visual systems of humans and nonhuman primates share many similarities in both anatomical and fu...
The macaque brain serves as a model for the human brain, but its suitability is challenged by unique...
In humans, cognitively demanding tasks of many types recruit common frontoparietal brain areas. Perv...
Natural vision engages a wide range of higher-level regions that integrate visual information over t...
The primate brain is a dynamic system interconnected by temporally correlated functional networks. T...
Cortical networks generate temporally correlated brain activity. To clarify the functional significa...
The primate brain is a complex dynamical system displaying long-range temporally correlated function...
The macaque brain serves as a model for the human brain, but its suitability is challenged by unique...
The brain is dynamic. Spontaneous neuronal activity can be observed in cortical and subcortical regi...
Primate evolution has been accompanied by complex reorganizations in brain anatomy and function. Lit...
Evolution-driven functional changes in the primate brain are typically assessed by aligning monkey a...
Primate evolution has been accompanied by complex reorganizations in brain anatomy and function. Lit...
Evolution-driven functional changes in the primate brain are typically assessed by aligning monkey a...
In humans, cognitively demanding tasks of many types recruit common frontoparietal brain areas. Perv...
Major efforts are underway to provide highly detailed descriptions of static anatomical brain connec...
The visual systems of humans and nonhuman primates share many similarities in both anatomical and fu...
The macaque brain serves as a model for the human brain, but its suitability is challenged by unique...
In humans, cognitively demanding tasks of many types recruit common frontoparietal brain areas. Perv...
Natural vision engages a wide range of higher-level regions that integrate visual information over t...
The primate brain is a dynamic system interconnected by temporally correlated functional networks. T...
Cortical networks generate temporally correlated brain activity. To clarify the functional significa...
The primate brain is a complex dynamical system displaying long-range temporally correlated function...
The macaque brain serves as a model for the human brain, but its suitability is challenged by unique...
The brain is dynamic. Spontaneous neuronal activity can be observed in cortical and subcortical regi...
Primate evolution has been accompanied by complex reorganizations in brain anatomy and function. Lit...
Evolution-driven functional changes in the primate brain are typically assessed by aligning monkey a...
Primate evolution has been accompanied by complex reorganizations in brain anatomy and function. Lit...
Evolution-driven functional changes in the primate brain are typically assessed by aligning monkey a...
In humans, cognitively demanding tasks of many types recruit common frontoparietal brain areas. Perv...
Major efforts are underway to provide highly detailed descriptions of static anatomical brain connec...
The visual systems of humans and nonhuman primates share many similarities in both anatomical and fu...
The macaque brain serves as a model for the human brain, but its suitability is challenged by unique...
In humans, cognitively demanding tasks of many types recruit common frontoparietal brain areas. Perv...