Sergio Miguel Pereira Soares

Publications

Displaying 1 - 4 of 4
  • Wu, S.-S., Pan, H., Sheldrick, R. C., Shao, J., Liu, X.-M., Zheng, S.-S., Pereira Soares, S. M., Zhang, L., Sun, J., Xu, P., Chen, S.-H., Sun, T., Pang, J.-W., Wu, N., Feng, Y.-C., Chen, N.-R., Zhang, Y.-T., & Jiang, F. (2025). Development and validation of the Parent-Reported Indicator of Developmental Evaluation for Chinese Children (PRIDE) tool. World Journal of Pediatrics, 21, 183-191. doi:10.1007/s12519-025-00878-7.

    Abstract

    Background

    Developmental delay (DD) poses challenges to children's overall development, necessitating early detection and intervention. Existing screening tools in China focus mainly on children with developmental issues in two or more domains, diagnosed as global developmental delay (GDD). However, the recent rise of early childhood development (ECD) concepts has expanded the focus to include not only those with severe brain development impairments but also children who lag in specific domains due to various social-environmental factors, with the aim of promoting positive development through active intervention. To support this approach, corresponding screening tools need to be developed.
    Methods

    The current study used a two-phase design to develop and validate the Parent-Reported Indicator of Developmental Evaluation for Chinese Children (PRIDE) tool. In Phase 1, age-specific milestone forms for PRIDE were created through a survey conducted in urban and rural primary care clinics across four economic regions in China. In Phase 2, PRIDE was validated in a community-based sample. Sensitivity and specificity of both PRIDE and Ages and Stages Questionnaires (ASQ)-3 were estimated using inverse probability weights (IPW) and multiple imputation (MI) to address planned and unplanned missing data.
    Results

    In Phase 1 involving a total of 1160 participants aged 1 to 48 months, 63 items were selected from the initial item pool to create 10 age-specific PRIDE forms. Our Phase 2 study included 777 children within the same age range. PRIDE demonstrated an estimated sensitivity and specificity of 83.3% [95% confidence interval (CI): 56.8%–100.0%] and 84.9% (95% CI: 82.8%–86.9%) in the identification of DD.
    Conclusion

    The findings suggest that PRIDE holds promise as a sensitive tool for detecting DD in community settings.

    Additional information

    supplementary information
  • González Alonso, J., Alemán Bañón, J., DeLuca, V., Miller, D., Pereira Soares, S. M., Puig-Mayenco, E., Slaats, S., & Rothman, J. (2020). Event related potentials at initial exposure in third language acquisition: Implications from an artificial mini-grammar study. Journal of Neurolinguistics, 56: 100939. doi:10.1016/j.jneuroling.2020.100939.

    Abstract

    The present article examines the proposal that typology is a major factor guiding transfer selectivity in L3/Ln acquisition. We tested first exposure in L3/Ln using two artificial languages (ALs) lexically based in English and Spanish, focusing on gender agreement between determiners and nouns, and between nouns and adjectives. 50 L1 Spanish-L2 English speakers took part in the experiment. After receiving implicit training in one of the ALs (Mini-Spanish, N = 26; Mini-English, N = 24), gender violations elicited a fronto-lateral negativity in Mini-English in the earliest time window (200–500 ms), although this was not followed by any other differences in subsequent periods. This effect was highly localized, surfacing only in electrodes of the right-anterior region. In contrast, gender violations in Mini-Spanish elicited a broadly distributed positivity in the 300–600 ms time window. While we do not find typical indices of grammatical processing such as the P600 component, we believe that the between-groups differential appearance of the positivity for gender violations in the 300–600 ms time window reflects differential allocation of attentional resources as a function of the ALs’ lexical similarity to English or Spanish. We take these differences in attention to be precursors of the processes involved in transfer source selection in L3/Ln.
  • Cathomas, F., Azzinnari, D., Bergamini, G., Sigrist, H., Buerge, M., Hoop, V., Wicki, B., Goetze, L., Soares, S. M. P., Kukelova, D., Seifritz, E., Goebbels, S., Nave, K.-A., Ghandour, M. S., Seoighe, C., Hildebrandt, T., Leparc, G., Klein, H., Stupka, E., Hengerer, B. and 1 moreCathomas, F., Azzinnari, D., Bergamini, G., Sigrist, H., Buerge, M., Hoop, V., Wicki, B., Goetze, L., Soares, S. M. P., Kukelova, D., Seifritz, E., Goebbels, S., Nave, K.-A., Ghandour, M. S., Seoighe, C., Hildebrandt, T., Leparc, G., Klein, H., Stupka, E., Hengerer, B., & Pryce, C. R. (2019). Oligodendrocyte gene expression is reduced by and influences effects of chronic social stress in mice. Genes, Brain and Behavior, 18(1): e12475. doi:10.1111/gbb.12475.

    Abstract

    Oligodendrocyte gene expression is downregulated in stress-related neuropsychiatric disorders,
    including depression. In mice, chronic social stress (CSS) leads to depression-relevant changes
    in brain and emotional behavior, and the present study shows the involvement of oligodendrocytes in this model. In C57BL/6 (BL/6) mice, RNA-sequencing (RNA-Seq) was conducted with
    prefrontal cortex, amygdala and hippocampus from CSS and controls; a gene enrichment database for neurons, astrocytes and oligodendrocytes was used to identify cell origin of deregulated genes, and cell deconvolution was applied. To assess the potential causal contribution of
    reduced oligodendrocyte gene expression to CSS effects, mice heterozygous for the oligodendrocyte gene cyclic nucleotide phosphodiesterase (Cnp1) on a BL/6 background were studied;
    a 2 genotype (wildtype, Cnp1+/−
    ) × 2 environment (control, CSS) design was used to investigate
    effects on emotional behavior and amygdala microglia. In BL/6 mice, in prefrontal cortex and
    amygdala tissue comprising gray and white matter, CSS downregulated expression of multiple
    oligodendroycte genes encoding myelin and myelin-axon-integrity proteins, and cell deconvolution identified a lower proportion of oligodendrocytes in amygdala. Quantification of oligodendrocyte proteins in amygdala gray matter did not yield evidence for reduced translation,
    suggesting that CSS impacts primarily on white matter oligodendrocytes or the myelin transcriptome. In Cnp1 mice, social interaction was reduced by CSS in Cnp1+/− mice specifically;
    using ionized calcium-binding adaptor molecule 1 (IBA1) expression, microglia activity was
    increased additively by Cnp1+/− and CSS in amygdala gray and white matter. This study provides back-translational evidence that oligodendrocyte changes are relevant to the pathophysiology and potentially the treatment of stress-related neuropsychiatric disorders.
  • Soares, S. M. P., Ong, G., Abutalebi, J., Del Maschio, N., Sewell, D., & Weekes, B. (2019). A diffusion model approach to analyzing performance on the flanker task: the role of the DLPFC. Bilingualism: Language and Cognition, 22(5), 1194-1208. doi:10.1017/S1366728918000974.

    Abstract

    The anterior cingulate cortex (ACC) and the dorsolateral prefrontal cortex (DLPFC) are involved in conflict detection and
    conflict resolution, respectively. Here, we investigate how lifelong bilingualism induces neuroplasticity to these structures by
    employing a novel analysis of behavioural performance. We correlated grey matter volume (GMV) in seniors reported by
    Abutalebi et al. (2015) with behavioral Flanker task performance fitted using the diffusion model (Ratcliff, 1978). As
    predicted, we observed significant correlations between GMV in the DLPFC and Flanker performance. However, for
    monolinguals the non-decision time parameter was significantly correlated with GMV in the left DLPFC, whereas for
    bilinguals the correlation was significant in the right DLPFC. We also found a significant correlation between age and GMV
    in left DLPFC and the non-decision time parameter for the conflict effect for monolinguals only.
    We submit that this is due to cumulative demands on cognitive control over a lifetime of bilingual language processing

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