Hemispheric Asymmetry

A coupled climate model simulation of the Last Glacial Maximum, Part 1: transient multi-decadal response

Oceanography / Sea Ice / Sea surface temperature / Climate Dynamics / Southern Ocean / Atmospheric sciences / System Approach / North Atlantic / Land Surface Temperature / Hemispheric Asymmetry / Arctic Ocean / Last Glacial Maximum / Climate Model / Antarctic circumpolar current / Boundary Condition / Transient Response / Stream Function / Ice Sheets / Mixed layer / Sea Surface Salinity / Atmospheric sciences / System Approach / North Atlantic / Land Surface Temperature / Hemispheric Asymmetry / Arctic Ocean / Last Glacial Maximum / Climate Model / Antarctic circumpolar current / Boundary Condition / Transient Response / Stream Function / Ice Sheets / Mixed layer / Sea Surface Salinity

Electrophysiological evidence of a perceptual precedence of global vs. local visual information

Visual perception / Attention / Electroencephalography / Brain and Cognitive Development / Brain Mapping / Right Hemisphere Functions / Humans / Reaction Time / Hemispheric Asymmetry / Adult / Analysis of Variance / High Density Concrete / Indexation / Left Hemisphere / Visual Evoked Potentials / Right Hemisphere Functions / Humans / Reaction Time / Hemispheric Asymmetry / Adult / Analysis of Variance / High Density Concrete / Indexation / Left Hemisphere / Visual Evoked Potentials

Visual asymmetries in Japanese quail (Coturnix japonica) retain a lifelong potential for plasticity

Psychology / Visual perception / Aging / Behavioral Neuroscience / Right Hemisphere Functions / Female / Animals / Male / Sexual Behavior / Neuronal Plasticity / Hemispheric Asymmetry / Japanese Quail / Eye / Analysis of Variance / Sensory Deprivation / Task Performance and Analysis / Neurosciences / Functional Laterality / Motor activity / Female / Animals / Male / Sexual Behavior / Neuronal Plasticity / Hemispheric Asymmetry / Japanese Quail / Eye / Analysis of Variance / Sensory Deprivation / Task Performance and Analysis / Neurosciences / Functional Laterality / Motor activity
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