Training can change the functional and structural organization of the brain, and animal models demonstrate that the hippocampus formation is particularly susceptible to training-related neuroplasticity. In humans, however, direct evidence for functional plasticity of the adult hippocampus induced by training is still missing. Here, we used musicians' brains as a model to test for plastic capabilities of the adult human hippocampus. By using functional magnetic resonance imaging optimized for the investigation of auditory processing, we examined brain responses induced by temporal novelty in otherwise isochronous sound patterns in musicians and musical laypersons, since the hippocampus has been suggested previously to be crucially involved i...
Using functional magnetic resonance imaging, we show for the first time that levels of musical exper...
Musical training has emerged as a useful framework for the investigation of training-related plastic...
Cerebello-hippocampal interactions occur during accurate spatiotemporal prediction of movements. In ...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
The development of musical skills by musicians results in specific structural and functional modific...
Using functional magnetic resonance imaging, we show for the first time that levels of musical exper...
Using functional magnetic resonance imaging, we show for the first time that levels of musical exper...
Musical training has emerged as a useful framework for the investigation of training-related plastic...
Cerebello-hippocampal interactions occur during accurate spatiotemporal prediction of movements. In ...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
Training can change the functional and structural organization of the brain, and animal models demon...
The development of musical skills by musicians results in specific structural and functional modific...
Using functional magnetic resonance imaging, we show for the first time that levels of musical exper...
Using functional magnetic resonance imaging, we show for the first time that levels of musical exper...
Musical training has emerged as a useful framework for the investigation of training-related plastic...
Cerebello-hippocampal interactions occur during accurate spatiotemporal prediction of movements. In ...