Literature DB >> 14511835

Neural networks active during tactile form perception: common and differential activity during macrospatial and microspatial tasks.

Mark R Stoesz1, Minming Zhang, Valerie D Weisser, S C Prather, Hui Mao, K Sathian.   

Abstract

Prior studies have shown that tactile perception recruits activity not only in somatosensory but also in visual cortical areas. The present study used functional magnetic resonance imaging to investigate the distribution of neural activity during tactile perception of 2D form. In a macrospatial form task, raised letters (uppercase T and V) were presented upside-down. In a microspatial form task, a bar, either with or without a gap, was presented. Stimuli were applied to the immobilized right index fingerpad. Six neurologically normal volunteers were studied in a block design paradigm, with alternating blocks of rest and covert discrimination between the two alternatives for a task. Each task was studied in a separate run. Contrasting macrospatial form discrimination against rest revealed activity in an extensive, bilateral network of cortical and subcortical regions, including areas of somatosensory cortex and the intraparietal sulcus (IPS), occipito-temporal cortex, dorsal and ventral premotor cortex, medial superior frontal cortex, lateral inferior frontal cortex, thalamus and cerebellar hemispheres. Contrasting (microspatial) gap detection against rest showed activity in a similar network, with the notable exception of the occipito-temporal cortical regions. A direct contrast between the two tasks yielded greater activity for the macrospatial than microspatial task in these occipito-temporal regions bilaterally, and also in foci near the right IPS and in the right cerebellar hemisphere. The occipito-temporal cortical activations were in the lateral occipital complex, a part of the ventral visual pathway active during visual form perception. Thus, macrospatial form perception preferentially recruits this region of extrastriate visual cortex, compared to microspatial form perception.

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Year:  2003        PMID: 14511835     DOI: 10.1016/s0167-8760(03)00123-5

Source DB:  PubMed          Journal:  Int J Psychophysiol        ISSN: 0167-8760            Impact factor:   2.997


  40 in total

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2.  Multisensory cortical processing of object shape and its relation to mental imagery.

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4.  Frontoparietal involvement in passively guided shape and length discrimination: a comparison between subcortical stroke patients and healthy controls.

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5.  Are surface properties integrated into visuohaptic object representations?

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6.  Crossmodal enhancement in the LOC for visuohaptic object recognition over development.

Authors:  R Joanne Jao; Thomas W James; Karin Harman James
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7.  Neural correlates supporting sensory discrimination after left hemisphere stroke.

Authors:  Alexandra Borstad; Petra Schmalbrock; Seongjin Choi; Deborah S Nichols-Larsen
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8.  Tactile discrimination of grating orientation: fMRI activation patterns.

Authors:  Minming Zhang; Erica Mariola; Randall Stilla; Mark Stoesz; Hui Mao; Xiaoping Hu; K Sathian
Journal:  Hum Brain Mapp       Date:  2005-08       Impact factor: 5.038

9.  Short-term visual deprivation alters neural processing of tactile form.

Authors:  Valerie Weisser; Randall Stilla; Scott Peltier; Xiaoping Hu; K Sathian
Journal:  Exp Brain Res       Date:  2005-08-05       Impact factor: 1.972

Review 10.  Cortical plasticity and preserved function in early blindness.

Authors:  Laurent Renier; Anne G De Volder; Josef P Rauschecker
Journal:  Neurosci Biobehav Rev       Date:  2013-02-20       Impact factor: 8.989

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