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Amygdala Response and Functional Connectivity During Emotion Regulation: a Study of 14 Depressed Adolescents

Overview
Journal J Affect Disord
Date 2012 Mar 10
PMID 22401827
Citations 85
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Abstract

Background: Ineffective emotion regulation and abnormal amygdala activation have each been found in adolescent-onset major depressive disorder. However, amygdala activation during emotion regulation has not been studied in adolescent-onset major depressive disorder.

Method: Fourteen unmedicated adolescents diagnosed with current depression without comorbid psychiatric disorders and fourteen well-matched controls ages 13 to 17 years underwent an emotional regulation task during functional magnetic resonance imaging. During this task, participants viewed negatively-valence images and were asked to notice how they were feeling without trying to change it and maintain their emotional reaction ("Maintain") or to interpret the image in such a way as minimize their emotional response ("Reduce").

Results: Imaging analyses demonstrated that adolescents with depression showed: (1) greater right amygdala activation during the maintain condition relative to controls, (2) less connectivity during the maintain condition between the amygdala and both the insula and medial prefrontal cortex than controls, and (3) a significant positive correlation between amygdala-seeded connectivities during maintenance of emotion and psychosocial functioning.

Limitations: The current study is a cross-sectional comparison and longitudinal investigations with larger sample sizes are needed to examine the association between amygdala reactivity and emotion regulation over time in adolescent MDD.

Conclusions: During the maintain condition, adolescents with depression showed a heightened amygdala response and less reciprocal activation in brain regions that may modulate the amygdala. A poorly modulated, overreactive amygdala may contribute to poor emotion regulation.

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References
1.
Gross J . Antecedent- and response-focused emotion regulation: divergent consequences for experience, expression, and physiology. J Pers Soc Psychol. 1998; 74(1):224-37. DOI: 10.1037//0022-3514.74.1.224. View

2.
Yang T, Simmons A, Matthews S, Tapert S, Frank G, Bischoff-Grethe A . Depressed adolescents demonstrate greater subgenual anterior cingulate activity. Neuroreport. 2009; 20(4):440-4. PMC: 2672880. DOI: 10.1097/WNR.0b013e3283262e10. View

3.
Lancaster J, Woldorff M, Parsons L, Liotti M, Freitas C, Rainey L . Automated Talairach atlas labels for functional brain mapping. Hum Brain Mapp. 2000; 10(3):120-31. PMC: 6871915. DOI: 10.1002/1097-0193(200007)10:3<120::aid-hbm30>3.0.co;2-8. View

4.
Brown S, Myers M, Lippke L, Tapert S, Stewart D, Vik P . Psychometric evaluation of the Customary Drinking and Drug Use Record (CDDR): a measure of adolescent alcohol and drug involvement. J Stud Alcohol. 1998; 59(4):427-38. DOI: 10.15288/jsa.1998.59.427. View

5.
Yang T, Simmons A, Matthews S, Tapert S, Bischoff-Grethe A, Frank G . Increased amygdala activation is related to heart rate during emotion processing in adolescent subjects. Neurosci Lett. 2007; 428(2-3):109-14. PMC: 2171034. DOI: 10.1016/j.neulet.2007.09.039. View