Regional variation in brain tissue texture in patients with tonic-clonic seizures.


Journal

PloS one
ISSN: 1932-6203
Titre abrégé: PLoS One
Pays: United States
ID NLM: 101285081

Informations de publication

Date de publication:
2022
Historique:
received: 18 03 2022
accepted: 28 08 2022
entrez: 22 9 2022
pubmed: 23 9 2022
medline: 28 9 2022
Statut: epublish

Résumé

Patients with epilepsy, who later succumb to sudden unexpected death, show altered brain tissue volumes in selected regions. It is unclear whether the alterations in brain tissue volume represent changes in neurons or glial properties, since volumetric procedures have limited sensitivity to assess the source of volume changes (e.g., neuronal loss or glial cell swelling). We assessed a measure, entropy, which can determine tissue homogeneity by evaluating tissue randomness, and thus, shows tissue integrity; the measure is easily calculated from T1-weighted images. T1-weighted images were collected with a 3.0-Tesla MRI from 53 patients with tonic-clonic (TC) seizures and 53 healthy controls; images were bias-corrected, entropy maps calculated, normalized to a common space, smoothed, and compared between groups (TC patients and controls using ANCOVA; covariates, age and sex; SPM12, family-wise error correction for multiple comparisons, p<0.01). Decreased entropy, indicative of increased tissue homogeneity, appeared in major autonomic (ventromedial prefrontal cortex, hippocampus, dorsal and ventral medulla, deep cerebellar nuclei), motor (sensory and motor cortex), or both motor and autonomic regulatory sites (basal-ganglia, ventral-basal cerebellum), and external surfaces of the pons. The anterior and posterior thalamus and midbrain also showed entropy declines. Only a few isolated regions showed increased entropy. Among the spared autonomic regions was the anterior cingulate and anterior insula; the posterior insula and cingulate were, however, affected. The entropy alterations overlapped areas of tissue changes found earlier with volumetric measures, but were more extensive, and indicate widespread injury to tissue within critical autonomic and breathing regulatory areas, as well as prominent damage to more-rostral sites that exert influences on both breathing and cardiovascular regulation. The entropy measures provide easily-collected supplementary information using only T1-weighted images, showing aspects of tissue integrity other than volume change that are important for assessing function.

Identifiants

pubmed: 36137154
doi: 10.1371/journal.pone.0274514
pii: PONE-D-22-08022
pmc: PMC9499268
doi:

Types de publication

Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

e0274514

Subventions

Organisme : NINDS NIH HHS
ID : U01 NS090405
Pays : United States
Organisme : NINDS NIH HHS
ID : U01 NS090407
Pays : United States
Organisme : Department of Health
Pays : United Kingdom

Déclaration de conflit d'intérêts

The authors have declared that no competing interests exist.

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Auteurs

Jennifer A Ogren (JA)

Department of Neurobiology, University of California at Los Angeles, Los Angeles, California, United States of America.

Luke A Allen (LA)

Department of Clinical and Experimental Epilepsy, University College London Institute of Neurology, London, United Kingdom.

Bhaswati Roy (B)

Department of Anesthesiology and Perioperative Medicine, University of California Los Angeles, Los Angeles, California, United States of America.

Beate Diehl (B)

Department of Clinical and Experimental Epilepsy, University College London Institute of Neurology, London, United Kingdom.

John M Stern (JM)

Department of Neurology, University of California Los Angeles, Los Angeles, California, United States of America.

Dawn S Eliashiv (DS)

Department of Neurology, University of California Los Angeles, Los Angeles, California, United States of America.

Samden D Lhatoo (SD)

Department of Neurology, McGovern Medical School, University of Texas Health Science Center at Houston, Houston, Texas, United States of America.

Ronald M Harper (RM)

Department of Neurobiology, University of California at Los Angeles, Los Angeles, California, United States of America.
Brain Research Institute, University of California Los Angeles, Los Angeles, California, United States of America.

Rajesh Kumar (R)

Department of Anesthesiology and Perioperative Medicine, University of California Los Angeles, Los Angeles, California, United States of America.
Brain Research Institute, University of California Los Angeles, Los Angeles, California, United States of America.
Department of Radiological Sciences, University of California Los Angeles, Los Angeles, California, United States of America.
Department of Bioengineering, University of California Los Angeles, Los Angeles, California, United States of America.

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