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Estrella, V.-Z.

Publications and source records attributed to Estrella, V.-Z..

2 recordsLinked to original sources

INFLUENCE OF PREMENSTRUAL SYNDROME ON ATTENTIONAL CAPTURE BY EXPRESSIONS IN THE LUTEAL PHASE

Research on female health has increased thanks to the growing interest in womens well-being. Premenstrual Syndrome (PMS) is characterized by its high incidence and negative emotional symptoms during the luteal phase. While various studies suggest that the menstrual cycle affects emotional processing, the role of PMS has barely been investigated. Prior evidence suggests that the menstrual cycle does not modulate the attentional capture by emotional faces (Alvarez et al., 2022). This study aims to explore PMSs impact on this phenomenon. Forty-seven women performed an attentional capture task in both phases of the menstrual cycle, with emotional faces as distractors. Both behavioral performance and Event-Related Potentials (ERPs) were recorded. Additionally, premenstrual symptoms were monitored over two menstrual cycles. Results showed no significant interaction effect of PMS, either at the behavioral or ERP levels. However, emotional stimuli, particularly angry faces, consistently captured attention more than neutral ones, as reflected in enhanced P1 and N170 components. These results indicate no evidence that PMS modulates exogenous attention to emotional stimuli. Future studies should consider individual affective states, such as depressive and anxiety symptoms associated with PMS, rather than PMS as a category, to further investigate the potential effects of PMS on attentional capture.

neuroscience↗

An extremely fast neural mechanism to detect emotional visual stimuli: A two-experiment study

Defining the brain mechanisms underlying initial emotional evaluation is a key but unexplored clue to understand affective processing. Event-related potentials (ERPs), especially suited for investigating this issue, were recorded in two experiments (n=36 and n=35). We presented emotionally negative (spiders) and neutral (wheels) silhouettes homogenized regarding their visual parameters. In Experiment 1, stimuli appeared at fixation or in the periphery (200 trials per condition and location), the former eliciting a N40 (39 milliseconds) and a P80 (or C1: 80 milliseconds) component, and the latter only a P80. In Experiment 2, stimuli were presented only at fixation (500 trials per condition). Again, a N40 (45 milliseconds) was observed, followed by a P100 (or P1: 105 milliseconds). Analyses revealed significantly greater N40-C1P1 peak-to-peak amplitudes for spiders in both experiments, and ANCOVAs showed that these effects were not explained by C1P1 alone, but that processes underlying N40 significantly contributed. Source analyses pointed to V1 as a N40 focus (more clearly in Experiment 2). Sources for C1P1 included V1 (P80) and V2/LOC (P80 and P100). These results and their timing point to low-order structures (such as visual thalamic nuclei or superior colliculi) or the visual cortex itself, as candidates for initial evaluation structures.

neuroscience↗