Encoding schemes in somatosensation: From micro- to meta-topography.

Abstract:

:Encoding schemes are systematic large-scale arrangements that convert incoming sensory information into a format required for further information processing. The increased spatial resolution of brain images obtained with ultra-high field magnetic resonance imaging at 7 T (7T-MRI) and above increases the granularity and precision of processing units that mediate the link between neuronal encoding and functional readouts. Here, these new developments are reviewed with a focus on human tactile encoding schemes derived from small-scale processing units (in the order of 0.5-5 mm) that are relevant for theoretical and practical concepts of somatosensory encoding and cortical plasticity. Precisely, we review recent approaches to characterize meso-scale maps, layer units, and cortical fields in the sensorimotor cortex of the living human brain and discuss their impact on theories of perception, motor control, topographic encoding, and cortical plasticity. Finally, we discuss concepts on the integration of small-scale processing units into functional networks that span multiple topographic maps and multiple cortical areas. Novel research areas are highlighted that may help to bridge the gap between cortical microstructure and meta-topographic models on brain anatomy and function.

journal_name

Neuroimage

journal_title

NeuroImage

authors

Kuehn E,Pleger B

doi

10.1016/j.neuroimage.2020.117255

subject

Has Abstract

pub_date

2020-12-01 00:00:00

pages

117255

eissn

1053-8119

issn

1095-9572

pii

S1053-8119(20)30741-2

journal_volume

223

pub_type

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