Any motor action results from a dynamic interplay of various brain regions involved in different aspects of movement preparation and execution. Establishing a reliable model of how these areas interact is crucial for a better understanding of the mechanisms underlying motor function in both healthy subjects and patients. We used fMRI and dynamic causal modeling to reveal the specific excitatory and inhibitory influences within the human motor system for the generation of voluntary hand movements. We found an intrinsic balance of excitatory and inhibitory couplings among core motor regions within and across hemispheres. Neural coupling within this network was specifically modulated upon uni- and bimanual movements. During unimanual movements...
Whereas the cerebral representation of bimanual spatial coordination has been subject to prior resea...
In bimanual coordination subjects typically show a spontaneous preference for movement symmetry. Whi...
Motor skills are mediated by a dynamic and finely regulated interplay of the primary motor cortex (M...
Motor skills are mediated by a dynamic and finely regulated interplay of the primary motor cortex (M...
Individuation and coordination of finger and hand movements represent crucial processes in motor con...
Voluntary movements depend on a well-regulated interplay between the primary motor cortex (M1) and p...
Neural oscillations are thought to underlie coupling of spatially remote neurons and gating of infor...
Executing difficult actions with the left hand results in bilateral activity of motor areas along th...
In bimanual coordination tasks, subjects normally show a conspicuous advantage of symmetric movement...
Abstract One remarkable aspect of the human motor repertoire is the multitude of bimanual actions it...
The preparation of a voluntary unimanual action requires sequential processing in bihemispheric moto...
The successful control of upper limb movements is an essential skill of the human motor system. Yet,...
Motor control is a fundamental challenge for the central nervous system. In this review, we show tha...
■ Executing difficult actions with the left hand results in bilat-eral activity of motor areas along...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
Whereas the cerebral representation of bimanual spatial coordination has been subject to prior resea...
In bimanual coordination subjects typically show a spontaneous preference for movement symmetry. Whi...
Motor skills are mediated by a dynamic and finely regulated interplay of the primary motor cortex (M...
Motor skills are mediated by a dynamic and finely regulated interplay of the primary motor cortex (M...
Individuation and coordination of finger and hand movements represent crucial processes in motor con...
Voluntary movements depend on a well-regulated interplay between the primary motor cortex (M1) and p...
Neural oscillations are thought to underlie coupling of spatially remote neurons and gating of infor...
Executing difficult actions with the left hand results in bilateral activity of motor areas along th...
In bimanual coordination tasks, subjects normally show a conspicuous advantage of symmetric movement...
Abstract One remarkable aspect of the human motor repertoire is the multitude of bimanual actions it...
The preparation of a voluntary unimanual action requires sequential processing in bihemispheric moto...
The successful control of upper limb movements is an essential skill of the human motor system. Yet,...
Motor control is a fundamental challenge for the central nervous system. In this review, we show tha...
■ Executing difficult actions with the left hand results in bilat-eral activity of motor areas along...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
Whereas the cerebral representation of bimanual spatial coordination has been subject to prior resea...
In bimanual coordination subjects typically show a spontaneous preference for movement symmetry. Whi...
Motor skills are mediated by a dynamic and finely regulated interplay of the primary motor cortex (M...