多巴胺能基因型和亲子关系的相互作用与学龄前儿童个体内反应时间变异性的关系:重复研究。

IF 3.1 1区 心理学 Q2 PSYCHOLOGY, DEVELOPMENTAL Developmental Science Pub Date : 2024-08-20 DOI:10.1111/desc.13561
Yuewen Zhang, Zhenhong Wang
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引用次数: 0

摘要

认知表现过程中的个体内反应时间变异性(IIRTV)越来越被认为是注意力控制(AC)和相关脑区功能的重要指标。然而,学龄前儿童个体内反应时间变异性的决定因素却很少受到关注。本研究探讨了多巴胺能多基因综合评分(DPCS)和亲子关系在学龄前儿童IIRTV中的相互作用。在初始样本中,有 452 名学龄前儿童(中位年龄 = 5.17,标准差 = 0.92)参与了研究。研究使用改良的 "侧翼任务 "来评估儿童的 IIRTV,并要求其父母填写 "亲子关系量表 "来评估亲子关系(亲密/冲突)。研究人员从儿童的唾液样本中提取了DNA数据,并根据与多巴胺水平较低相关的COMT、DAT1和DRD2等位基因的数量创建了DPCS。结果表明,DPCS 与亲子亲密程度之间存在明显的相互作用,从而影响学龄前儿童的 IIRTV。具体来说,与 DPCS 较低的学龄前儿童相比,DPCS 较高的学龄前儿童在亲子亲密程度较高的情况下表现出较低的 IIRTV,而在亲子亲密程度较低的情况下表现出较高的 IIRTV,这支持了差异易感性理论(DST)。我们对 280 名学龄前儿童(中位年龄 = 4.80,标差 = 0.86)进行了直接复制尝试,以研究结果是否与我们的探索性结果一致。DPCS和亲子亲密程度对IIRTV的交互作用得到了证实。此外,在重复研究中,DPCS 和亲子冲突对 IIRTV 也有显著的交互作用。研究结果表明,学龄前儿童的IIRTV作为交流和相关脑区功能的指标,受到多巴胺能基因型和亲子关系相互作用的影响。研究亮点:我们研究了基因×环境机制,以强调作为注意力控制(AC)指标的中国学龄前儿童个体内反应时变异性。多巴胺能多基因综合评分(COMT、DAT1和DRD2)与亲子关系相互作用,预测了学龄前儿童个体内反应时变异性。我们进行了直接复制尝试,结果与我们的探索性结果一致,这增加了本研究结果的可信度。研究结果凸显了考虑包括多基因和环境因素在内的前体因素的重要性,这些前体因素有助于AC等早期认知能力的发展。
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The interplay of dopaminergic genotype and parent-child relationship in relation to intra-individual response time variability in preschoolers: A replication study.

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 polygenic composite score (DPCS) and the parent-child relationship in relation to preschoolers' IIRTV. In the initial sample, 452 preschoolers (M age = 5.17, SD = 0.92) participated in the study. The modified Flanker task was used to evaluate children's IIRTV and their parents were requested to complete the Parent-Child Relationship Scale to assess the parent-child relationship (closeness/conflict). DNA data were extracted from children's saliva samples, and a DPCS was created by the number of COMT, DAT1, and DRD2 alleles associated with lower dopamine levels. Results showed that DPCS significantly interacted with the parent-child closeness to impact preschoolers' IIRTV. Specifically, preschoolers with higher DPCS exhibited lower IIRTV under higher levels of the parent-child closeness, and greater IIRTV under lower levels of the parent-child closeness compared to those with lower DPCS, which supported the differential susceptibility theory (DST). A direct replication attempt with 280 preschoolers (M age = 4.80, SD = 0.86) was conducted to investigate whether the results were in accordance with our exploratory outcomes. The interactive effect of DPCS and the parent-child closeness on IIRTV was confirmed. Additionally, the significant interactive effect of DPCS and the parent-child conflict on IIRTV was found in the replication study. The findings indicate that preschoolers' IIRTV, as an indicator of AC and related brain region function, is influenced by the interactions of dopaminergic genotypes and the parent-child relationship. RESEARCH HIGHLIGHTS: We investigated the Gene × Environment mechanism to underline the intra-individual response time variability as an indicator of attentional control (AC) in Chinese preschoolers. Dopaminergic polygenic composite score (COMT, DAT1, and DRD2) interacted with the parent-child relationship to predict preschoolers' intra-individual reaction time variability. A direct replication attempt has been conducted, and the results were in accordance with our exploratory outcomes, which increased the credibility of the present findings. The findings highlight the importance of considering precursors, including polygenic and environmental factors, which contribute to the development of early cognitive performance such as AC.

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来源期刊
CiteScore
8.10
自引率
8.10%
发文量
132
期刊介绍: Developmental Science publishes cutting-edge theory and up-to-the-minute research on scientific developmental psychology from leading thinkers in the field. It is currently the only journal that specifically focuses on human developmental cognitive neuroscience. Coverage includes: - Clinical, computational and comparative approaches to development - Key advances in cognitive and social development - Developmental cognitive neuroscience - Functional neuroimaging of the developing brain
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