The neural correlates of texture perception: A systematic review and activation likelihood estimation meta-analysis of functional magnetic resonance imaging studies.

activation likelihood estimation meta-analysis discriminative touch functional magnetic resonance imaging systematic review

Journal

Brain and behavior
ISSN: 2162-3279
Titre abrégé: Brain Behav
Pays: United States
ID NLM: 101570837

Informations de publication

Date de publication:
11 2023
Historique:
revised: 11 09 2023
received: 15 02 2023
accepted: 12 09 2023
medline: 13 11 2023
pubmed: 26 9 2023
entrez: 26 9 2023
Statut: ppublish

Résumé

Humans use discriminative touch to perceive texture through dynamic interactions with surfaces, activating low-threshold mechanoreceptors in the skin. It was largely assumed that texture was processed in primary somatosensory regions in the brain; however, imaging studies indicate heterogeneous patterns of brain activity associated with texture processing. To address this, we conducted a coordinate-based activation likelihood estimation meta-analysis of 13 functional magnetic resonance imaging studies (comprising 15 experiments contributing 228 participants and 275 foci) selected by a systematic review. Concordant activations for texture perception occurred in the left primary somatosensory and motor regions, with bilateral activations in the secondary somatosensory, posterior insula, and premotor and supplementary motor cortices. We also evaluated differences between studies that compared touch processing to non-haptic control (e.g., rest or visual control) or those that used haptic control (e.g., shape or orientation perception) to specifically investigate texture encoding. Studies employing a haptic control revealed concordance for texture processing only in the left secondary somatosensory cortex. Contrast analyses demonstrated greater concordance of activations in the left primary somatosensory regions and inferior parietal cortex for studies with a non-haptic control, compared to experiments accounting for other haptic aspects. These findings suggest that texture processing may recruit higher order integrative structures, and the secondary somatosensory cortex may play a key role in encoding textural properties. The present study provides unique insight into the neural correlates of texture-related processing by assessing the influence of non-textural haptic elements and identifies opportunities for a future research design to understand the neural processing of texture.

Identifiants

pubmed: 37749852
doi: 10.1002/brb3.3264
pmc: PMC10636420
doi:

Types de publication

Journal Article Meta-Analysis Research Support, Non-U.S. Gov't Systematic Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

e3264

Informations de copyright

© 2023 The Authors. Brain and Behavior published by Wiley Periodicals LLC.

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Auteurs

Jessica Henderson (J)

School of Psychology, University of Liverpool, Liverpool, UK.

Tyler Mari (T)

School of Psychology, University of Liverpool, Liverpool, UK.

Danielle Hewitt (D)

School of Psychology, University of Liverpool, Liverpool, UK.

Alice Newton-Fenner (A)

School of Psychology, University of Liverpool, Liverpool, UK.
Institute of Risk and Uncertainty, University of Liverpool, Liverpool, UK.

Timo Giesbrecht (T)

Unilever, Research and Development, Port Sunlight, UK.

Alan Marshall (A)

Department of Electrical Engineering and Electronics, University of Liverpool, Liverpool, UK.

Andrej Stancak (A)

School of Psychology, University of Liverpool, Liverpool, UK.
Institute of Risk and Uncertainty, University of Liverpool, Liverpool, UK.

Nicholas Fallon (N)

School of Psychology, University of Liverpool, Liverpool, UK.

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