Abstract:
:Most of the studies focusing on the effect of stress on false memories by using psychosocial and physiological stressors yielded diverse results. In the present study, we systematically tested the effect of exogenous hydrocortisone using a false memory paradigm. In this placebo-controlled study, 37 healthy men and 38 healthy women (mean age 24.59 years) received either 10 mg of hydrocortisone or placebo 75 min before using the false memory, that is, Deese-Roediger-McDermott (DRM), paradigm. We used emotionally charged and neutral DRM-based word lists to look for false recognition rates in comparison to true recognition rates. Overall, we expected an increase in false memory after hydrocortisone compared to placebo. No differences between the cortisol and the placebo group were revealed for false and for true recognition performance. In general, false recognition rates were lower compared to true recognition rates. Furthermore, we found a valence effect (neutral, positive, negative, disgust word stimuli), indicating higher rates of true and false recognition for emotional compared to neutral words. We further found an interaction effect between sex and recognition. Post hoc t tests showed that for true recognition women showed a significantly better memory performance than men, independent of treatment. This study does not support the hypothesis that cortisol decreases the ability to distinguish between old versus novel words in young healthy individuals. However, sex and emotional valence of word stimuli appear to be important moderators. (PsycINFO Database Record
journal_name
Behav Neuroscijournal_title
Behavioral neuroscienceauthors
Duesenberg M,Weber J,Schaeuffele C,Fleischer J,Hellmann-Regen J,Roepke S,Moritz S,Otte C,Wingenfeld Kdoi
10.1037/bne0000170subject
Has Abstractpub_date
2016-12-01 00:00:00pages
635-42issue
6eissn
0735-7044issn
1939-0084pii
2016-51690-001journal_volume
130pub_type
杂志文章abstract::Highly developed odor learning was shown in the terrestrial slug Limax maximus. In addition, several key cellular elements of the neural network that controls ingestive feeding have been identified. The results of 3 experiments demonstrate an interaction between odor input and ingestive feeding in that olfactory stimu...
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journal_title:Behavioral neuroscience
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journal_title:Behavioral neuroscience
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journal_title:Behavioral neuroscience
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