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Hellerstedt, Robin; Talmi, Deborah – Learning & Memory, 2022
Reward is thought to attenuate forgetting through the automatic effect of dopamine on hippocampal memory traces. Here we report a conceptual replication of previous results where we did not observe this effect of reward. Participants encoded eight lists of pictures and recalled picture content immediately or the next day. They were informed that…
Descriptors: Rewards, Recall (Psychology), Brain Hemisphere Functions, Memory
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Yuewen Zhang; Zhenhong Wang – Developmental Science, 2024
Intra-individual response time variability (IIRTV) during cognitive performance is increasingly recognized as an important indicator of attentional control (AC) and related brain region function. However, what determinants contribute to preschoolers' IIRTV received little attention. The present study explored the interaction of dopaminergic…
Descriptors: Genetics, Parent Child Relationship, Reaction Time, Attention Control
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Szollosi, Ágnes; Kéri, Szabolcs; Racsmány, Mihály – Learning & Memory, 2022
Some previous studies have shown that increased stress hormone levels have beneficial effects on memory encoding; however, there is no clear consensus on which encoding-related processes are affected by stress hormones. In the present study, we investigated the relationship between interindividual differences in neuroendocrine response to acute…
Descriptors: Memory, Cognitive Processes, Stress Variables, Recognition (Psychology)
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Wellmanns, Andrea; Schmiemann, Philipp – Journal of Biological Education, 2022
Feedback loop reasoning is an essential part of systems thinking, which includes the analysis and description of system behaviour and regulative measures. In feedback loops, every change can simultaneously represent a cause and an effect. Research on reasoning in feedback loops is limited to investigating students' existing mental models. This…
Descriptors: Feedback (Response), Science Instruction, Visual Aids, Physiology
Clare Carlson – ProQuest LLC, 2024
In an increasingly complex world, it is imperative that undergraduate science courses prepare students to make confident, informed decisions and predictions. The research presented in this thesis focuses on supporting students to engage in mechanistic reasoning (MR) about phenomena in chemistry and biology (that is, thinking about how and why…
Descriptors: Science Instruction, Energy, Biochemistry, Correlation