Literature DB >> 34637999

Structural and functional motor-network disruptions predict selective action-concept deficits: Evidence from frontal lobe epilepsy.

Sebastian Moguilner1, Agustina Birba2, Daniel Fino3, Roberto Isoardi4, Celeste Huetagoyena5, Raúl Otoya6, Viviana Tirapu7, Fabián Cremaschi8, Lucas Sedeño9, Agustín Ibáñez10, Adolfo M García11.   

Abstract

Built on neurodegenerative lesions models, the disrupted motor grounding hypothesis (DMGH) posits that motor-system alterations selectively impair action comprehension. However, major doubts remain concerning the dissociability, neural signatures, and etiological generalizability of such deficits. Few studies have compared action-concept outcomes between disorders affecting and sparing motor circuitry, and none has examined their multimodal network predictors via data-driven approaches. Here, we first assessed action- and object-concept processing in patients with frontal lobe epilepsy (FLE), patients with posterior cortex epilepsy (PCE), and healthy controls. Then, we examined structural and functional network signatures via diffusion tensor imaging and resting-state connectivity measures. Finally, we used these measures to predict behavioral performance with an XGBoost machine learning regression algorithm. Relative to controls, FLE (but not PCE) patients exhibited selective action-concept deficits together with structural and functional abnormalities along motor networks. The XGBoost model reached a significantly large effect size only for action-concept outcomes in FLE, mainly predicted by structural (cortico-spinal tract, anterior thalamic radiation, uncinate fasciculus) and functional (M1-parietal/supramarginal connectivity) motor networks. These results extend the DMGH, suggesting that action-concept deficits are dissociable markers of frontal/motor (relative to posterior) disruptions, directly related to the structural and functional integrity of motor networks, and traceable beyond canonical movement disorders.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Action semantics; Diffusion tensor imaging; Frontal lobe epilepsy; Functional connectivity; Machine learning

Mesh:

Year:  2021        PMID: 34637999      PMCID: PMC8585706          DOI: 10.1016/j.cortex.2021.08.003

Source DB:  PubMed          Journal:  Cortex        ISSN: 0010-9452            Impact factor:   4.027


  101 in total

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  4 in total

1.  Structural and functional motor-network disruptions predict selective action-concept deficits: Evidence from frontal lobe epilepsy.

Authors:  Sebastian Moguilner; Agustina Birba; Daniel Fino; Roberto Isoardi; Celeste Huetagoyena; Raúl Otoya; Viviana Tirapu; Fabián Cremaschi; Lucas Sedeño; Agustín Ibáñez; Adolfo M García
Journal:  Cortex       Date:  2021-09-22       Impact factor: 4.027

2.  Multimodal Neurocognitive Markers of Naturalistic Discourse Typify Diverse Neurodegenerative Diseases.

Authors:  Agustina Birba; Sol Fittipaldi; Judith C Cediel Escobar; Cecilia Gonzalez Campo; Agustina Legaz; Agostina Galiani; Mariano N Díaz Rivera; Miquel Martorell Caro; Florencia Alifano; Stefanie D Piña-Escudero; Juan Felipe Cardona; Alejandra Neely; Gonzalo Forno; Mariela Carpinella; Andrea Slachevsky; Cecilia Serrano; Lucas Sedeño; Agustín Ibáñez; Adolfo M García
Journal:  Cereb Cortex       Date:  2022-08-03       Impact factor: 4.861

3.  Factor Analysis and Regression Prediction Model of Swimmers' Performance Structure Based on Mixed Genetic Neural Network.

Authors:  Rui Yuan; Yuexing Han
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4.  Artificial Intelligence Applications in the Imaging of Epilepsy and Its Comorbidities: Present and Future.

Authors:  Fernando Cendes; Carrie R McDonald
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  4 in total

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