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Temporal characteristics of neuronal sources for implied motion perception (2004)
Presentation / Conference Contribution
Lorteije, J., & Jellema, T. Temporal characteristics of neuronal sources for implied motion perception

Viewing photographs of objects in motion evokes higher fMRI activation in human MT+ than similar photographs without this implied motion. MT+ is traditionally considered to be involved in motion perception. Therefore, this finding suggests feedback f... Read More about Temporal characteristics of neuronal sources for implied motion perception.

Sequential activation of microcircuits underlying somatosensory-evoked potentials in rat neocortex (2004)
Journal Article
Jellema, T., Brunia, C. H. M., & Wadman, W. J. (2004). Sequential activation of microcircuits underlying somatosensory-evoked potentials in rat neocortex. Neuroscience, 129(2), 283-295. https://doi.org/10.1016/j.neuroscience.2004.07.046

Evoked cortical field potentials are widely used in neurophysiological studies into cortical functioning, but insight in the underlying neural mechanisms is severely hampered by ambiguities in the interpretation of the field potentials. The present s... Read More about Sequential activation of microcircuits underlying somatosensory-evoked potentials in rat neocortex.

Coding of visible and hidden actions (2002)
Book Chapter
Jellema, T., & Perrett, D. (2002). Coding of visible and hidden actions. In W. Prinz, & B. Hommel (Eds.), Common Mechanisms in Perception and Action (356-380). Oxford: Oxford University Press

We review the properties of cells in the temporal cortex of the macaque monkey, which are sensitive to visual cues arising from the face and body and their movements. We speculate that the responses of populations of cells in the cortex of the anteri... Read More about Coding of visible and hidden actions.