Interactive Processing of Sensory Input and Motor Output in the Human Hippocampus
- 1 July 1999
- journal article
- Published by MIT Press in Journal of Cognitive Neuroscience
- Vol. 11 (4) , 424-436
- https://doi.org/10.1162/089892999563517
Abstract
Recent studies of visuomotor integration suggest that the motor system may be intimately involved in the detection of salient features of the sensory scene. The final stages of sensory processing occur in hippocampal structures. We measured human neuromagnetic responses during motor reaction to an auditory cue embedded in high-speed multimodal stimulation. Our results demonstrate that large-scale cognitive networks may recruit additional resources from the hippocampus during sensorimotor integration. Hippocampal activity from 300 msec before to 200 msec after cued movements was enhanced significantly over that observed during self-paced movements. The dominant hippocampal activity appeared equally synchronized to both sensory input and motor output, consistent with timing by an intrinsic mechanism, possibly provided by ongoing theta oscillations.Keywords
This publication has 40 references indexed in Scilit:
- Interneurons of the hippocampusHippocampus, 1998
- Significance of the second somatosensory cortex in sensorimotor integrationNeuroReport, 1996
- The Hippocampo-Neocortical DialogueCerebral Cortex, 1996
- Magnetoencephalography—theory, instrumentation, and applications to noninvasive studies of the working human brainReviews of Modern Physics, 1993
- 122-channel squid instrument for investigating the magnetic signals from the human brainPhysica Scripta, 1993
- Working Memory: The Interface between Memory and CognitionJournal of Cognitive Neuroscience, 1992
- Firing of human hippocampal units in relation to voluntary movementsHippocampus, 1991
- Endogenous Potentials Generated in the Human Hippocampal Formation and Amygdala by Infrequent EventsScience, 1980
- The spectral properties of hippocampal EEG related to behaviour in manElectroencephalography and Clinical Neurophysiology, 1980
- Human hippocampal formation EEG desynchronizes during attentiveness and movementElectroencephalography and Clinical Neurophysiology, 1978