Publication: Brain Functional Connectivity Is Modified by a Hypocaloric Mediterranean Diet and Physical Activity in Obese Women
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Identifiers
Date
2017-07-01
Authors
Garcia-Casares, Natalia
Bernal-Lopez, Maria R.
Roe-Vellve, Nuria
Gutierrez-Bedmar, Mario
Fernandez-Garcia, Jose C.
Garcia-Arnes, Juan A.
Ramos-Rodriguez, Jose R.
Alfaro, Francisco
Santamaria-Fernandez, Sonia
Steward, Trevor
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
MDPI
Abstract
Functional magnetic resonance imaging (fMRI) in the resting state has shown altered brain connectivity networks in obese individuals. However, the impact of a Mediterranean diet on cerebral connectivity in obese patients when losing weight has not been previously explored. The aim of this study was to examine the connectivity between brain structures before and six months after following a hypocaloric Mediterranean diet and physical activity program in a group of sixteen obese women aged 46.31 +/- 4.07 years. Before and after the intervention program, the body mass index (BMI) (kg/m(2)) was 38.15 +/- 4.7 vs. 34.18 +/- 4.5 (p< 0.02), and body weight (kg) was 98.5 ± 13.1 vs. 88.28 ± 12.2 (p < 0.03). All subjects underwent a pre- and post-intervention fMRI under fasting conditions. Functional connectivity was assessed using seed-based correlations. After the intervention, we found decreased connectivity between the left inferior parietal cortex and the right temporal cortex (p < 0.001), left posterior cingulate (p < 0.001), and right posterior cingulate (p < 0.03); decreased connectivity between the left superior frontal gyrus and the right temporal cortex (p < 0.01); decreased connectivity between the prefrontal cortex and the somatosensory cortex (p < 0.025); and decreased connectivity between the left and right posterior cingulate (p < 0.04). Results were considered significant at a voxel-wise threshold of p ≤ 0.05, and a cluster-level family-wise error correction for multiple comparisons of p ≤ 0.05. In conclusion, functional connectivity between brain structures involved in the pathophysiology of obesity (the inferior parietal lobe, posterior cingulate, temporo-insular cortex, prefrontal cortex) may be modified by a weight loss program including a Mediterranean diet and physical exercise.
Description
MeSH Terms
Default mode network
Salience network
Reward network
Food reward
State
Exercise
Weight
Metaanalysis
Salience network
Reward network
Food reward
State
Exercise
Weight
Metaanalysis
DeCS Terms
Dieta Mediterránea
Encéfalo
Ejercicio Físico
Corteza Prefrontal
Lóbulo Parietal
Peso Corporal
Corteza Somatosensorial
Encéfalo
Ejercicio Físico
Corteza Prefrontal
Lóbulo Parietal
Peso Corporal
Corteza Somatosensorial
CIE Terms
Keywords
Mediterranean diet, physical activity, connectivity, obesity, inferior parietal lobe, temporal lobe, insula, prefrontal cortex, posterior cingulate, somatosensory cortex, functional MRI, resting state
Citation
García-Casares N, Bernal-López MR, Roé-Vellvé N, Gutiérrez-Bedmar M, Fernández-García JC, García-Arnés JA, et al. Brain Functional Connectivity Is Modified by a Hypocaloric Mediterranean Diet and Physical Activity in Obese Women. Nutrients. 2017 Jul 1;9(7):685