Age-related changes in the microstructural organization of the corpus callosum (CC) may explain declines in bimanual motor performance associated with normal aging. We used diffusion tensor imaging in young (n = 33) and older (n = 33) adults to investigate the microstructural organization of seven specific CC subregions (prefrontal, premotor, primary motor, primary sensory, parietal, temporal and occipital). A set of bimanual tasks was used to assess various aspects of bimanual motor functioning: the Purdue Pegboard test, simultaneous and alternating finger tapping, a choice reaction time test and a complex visuomotor tracking task. The older adults showed age-related deficits on all measures of bimanual motor performance. Correlation analy...
Consider tying your shoes, one of the most automatic movements an adult performs. Each hand works i...
The cerebellum appears to undergo late maturation in children and early decline at older age. Whethe...
Background: The corpus callosum is the largest white matter tract in the human brain, involved in in...
Age-related changes in the microstructural organization of the corpus callosum (CC) may explain decl...
Age-related differences in bimanual motor performance have been extensively documented, but their un...
When manipulating objects with both hands, the corpus callosum (CC) is of paramount importance for i...
Aging of the world population is a fact. Consequently, there is an increasing number of relatively h...
Changes in both brain structure and neurophysiological function regulating homotopic as well as hete...
We studied the relationship between age-related differences in inter- and intra-hemispheric structur...
Background: The corpus callosum is the largest white matter tract in the human brain, involved in in...
Bimanual actions are ubiquitous in daily life. Many coordinated movements of the upper extremities r...
When manipulating objects with both hands, the corpus callosum ( CC ) is of paramount importance for...
Coordinated hand use is an essential component of many activities of daily living. Although previous...
The transfer of information throughout the brain, specifically from one hemisphere to the other, is ...
The ability to learn new motor skills is crucial for activities of daily living, especially in older...
Consider tying your shoes, one of the most automatic movements an adult performs. Each hand works i...
The cerebellum appears to undergo late maturation in children and early decline at older age. Whethe...
Background: The corpus callosum is the largest white matter tract in the human brain, involved in in...
Age-related changes in the microstructural organization of the corpus callosum (CC) may explain decl...
Age-related differences in bimanual motor performance have been extensively documented, but their un...
When manipulating objects with both hands, the corpus callosum (CC) is of paramount importance for i...
Aging of the world population is a fact. Consequently, there is an increasing number of relatively h...
Changes in both brain structure and neurophysiological function regulating homotopic as well as hete...
We studied the relationship between age-related differences in inter- and intra-hemispheric structur...
Background: The corpus callosum is the largest white matter tract in the human brain, involved in in...
Bimanual actions are ubiquitous in daily life. Many coordinated movements of the upper extremities r...
When manipulating objects with both hands, the corpus callosum ( CC ) is of paramount importance for...
Coordinated hand use is an essential component of many activities of daily living. Although previous...
The transfer of information throughout the brain, specifically from one hemisphere to the other, is ...
The ability to learn new motor skills is crucial for activities of daily living, especially in older...
Consider tying your shoes, one of the most automatic movements an adult performs. Each hand works i...
The cerebellum appears to undergo late maturation in children and early decline at older age. Whethe...
Background: The corpus callosum is the largest white matter tract in the human brain, involved in in...