![]() Moreover, the amygdala seems to be involved in FM recall. The present findings are compatible with previous research into autobiographical memory, but also show activations for FM recall different from ordinary, not highly emotional autobiographical memories, as EMO is associated with a more bilateral network. FM > FMC was associated with right hippocampal activations. Keywords memory, confidence, flashbulb memory, event memory, traumatic memories. ROI-analysis revealed activations for EMO in the right amygdala and HATA. literature on social identity and traumatic memories is also discussed. EMO was associated with a more bilateral activation pattern. FM > FMC yielded activations in line with the autobiographical memory network, with mostly left sided-activations. ROI-analyses on mesiotemporal regions were performed. These memories are perceived to have a 'photographic' quality. Therefore, a flashbulb memory for the September 11 th attacks would be memory for where a person was and what they were doing when they found out about the attacks. The main contrast of interest were FM > FMC and activations associated with EMO. A flashbulb memory is a memory laid down in great detail during a highly personally significant event, often a shocking event of national or international importance. The individual emotional reaction to the FM events (EMO) and self-rated retrieval success were included in the SPM model as modulating parameters. Flashbulb memory is a special kind of emotional memory, which refers to vivid and detailed memories of highly emotional events that appear to be recorded in. A definition naming task was used as an implicit baseline. ![]() 20 healthy adults completed a block design with an FM-condition, where the reception events for a number of potential FM events had to be recalled, and a control condition (FMC) comprising reception events lacking FM characteristics. to the news event predicts flashbulb memory qualities and experiences (Schaefer, Halldorson, & Dizon-Reynante, 2011). The present study investigated neural activations related to flashbulb memory (FM) recall and examined whether the amygdala and hippocampus are involved in FM recall.
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