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  1.  5
    Temporal recall in the shadow of emotion: separate emotional contexts during encoding enhance the temporal source memory retrieval.Rong Pan, Di Wu, Jingwen Hu, Wenjie Dou, Chuanji Gao, Bao-Ming Li & Xi Jia - 2025 - Cognition and Emotion 39 (1):196-209.
    Episodic memory, with its emphasis on temporal–spatial contexts, has been a longstanding focus in memory research. While previous studies have investigated the role of emotion in temporal source memory using emotionally charged stimuli, such as emotional words or images, the influence of a separated emotional context remains less explored. This study sought to understand the impact of separate emotional contexts on temporal source memory. Participants were shown Chinese characters alongside separate emotional contexts (i.e. a neutral or negative picture) and then (...)
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  2.  18
    Negative emotion amplifies retrieval practice effect for both task-relevant and task-irrelevant information. Di Wu, Chuanji Gao, Bao-Ming Li & Xi Jia - 2023 - Cognition and Emotion 37 (7).
    Selective retrieval of task-relevant information often facilitates memory retention of that information. However, it is still unclear if selective retrieval of task-relevant information can alter memory for task-irrelevant information, and the role of emotional arousal in it. In two experiments, we used emotional and neutral faces as stimuli, and participants were asked to memorise the name (who is this person?) and location (where does he/she come from?) associated with each face in initial study. Then, half of the studied faces were (...)
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  3. Young infants' expectations about self-propelled objects.Renée Baillargeon, Di Wu, Sylvia Yuan, Jie Li & Luo & Yuyan - 2009 - In Bruce M. Hood & Laurie R. Santos, The origins of object knowledge. Oxford: Oxford University Press.
  4.  19
    Neddylation‐CRLs regulate the functions of Treg immune cells. Di Wu & Yi Sun - 2023 - Bioessays 45 (4):2200222.
    Neddylation, a ubiquitylation‐like post‐translational modification, is catalyzed by a cascade composed of three enzymes: E1 activating enzyme, E2 conjugating enzyme, and E3 ligase with cullins as physiological substrates. Specifically, neddylation E2 UBE2M couples with E3 RBX1 to neddylate cullins 1–4, whereas neddylation E2 UBE2F couples with E3 RBX2/SAG to neddylate cullin 5, leading to activation of CRL1‐4 (Cullin‐RING ligases 1–4) and CRL5, respectively. While over‐activation of the neddylation‐CRLs axis occurs frequently in many human cancers, how neddylation‐CRLs regulate the function of (...)
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