Understanding the Associations Among Executive Function, Self-regulation, Chronic Stress, and Math Learning Outcomes Across Middle Childhood
| dc.contributor.author | Valdivia Leiva, Isabel Margarita | en |
| dc.contributor.committeechair | Smith, Cynthia Lea | en |
| dc.contributor.committeechair | Hornburg, Caroline Byrd | en |
| dc.contributor.committeemember | Katz, Benjamin D. | en |
| dc.contributor.committeemember | Bell, Martha Ann | en |
| dc.contributor.department | Adult Learning and Human Resource Development | en |
| dc.date.accessioned | 2026-06-18T08:00:41Z | en |
| dc.date.available | 2026-06-18T08:00:41Z | en |
| dc.date.issued | 2026-06-17 | en |
| dc.description.abstract | Existing evidence suggests that having better math skills is associated with having better reading skills, higher socioeconomic status, and general academic motivation - yet, over 60% of the U.S. population is not proficient in math. While math instruction plays a large role in math learning, executive function (EF) and its core components, working memory (WM), inhibitory control (IC), and cognitive flexibility (CF), as well as self-regulation (SR) and chronic stress, are each also associated with children's math learning outcomes (MLO). However, most evidence comes from early childhood and, to date, no study has simultaneously investigated the contribution of those three constructs to MLO across middle childhood, despite this developmental period being a crucial one to acquire foundational math skills. In addition, middle childhood is characterized by the rapid development of EF and SR, and evidence suggests that CS would be detrimental to both developmental trajectories. The present dissertation examined how three core EF skills - WM, IC, and CF - along with SR and CS, were simultaneously associated with MLO, and whether those associations differed across developmental periods, namely, early middle childhood (EMC) and late middle childhood (LMC). It was hypothesized that the associations among MLO and each core EF, as well as MLO and SR, would be positive and stronger for LMC compared to EMC, while the relation between MLO and CS would be negative and weaker for LMC compared to EMC. Children (N = 133) completed one in-person session. WM, IC, and CF were each assessed with NIH Toolbox tests, SR was assessed with the Head-Toes-Knees-Shoulders task, and CS was measured by caregiver report via the Child Life Challenges Scale. MLO was assessed by the Woodcock-Johnson IV Tests of Academic Achievement Applied Problems. Regression analyses predicting MLO with WM, IC, CF, SR, and CS as simultaneous predictors were conducted, with covariates of child age, child gender, and cumulative poverty-related risk (CPRR), a z-score composite of variables associated with living in poverty. Results showed that only WM and SR, but not IC, CF, or CS, were significant and positive predictors of MLO across middle childhood in the simultaneous model. Additional regression analyses explored a potential moderation effect of developmental period (DP), namely EMC and LMC, on the association between each of the predictors of interest and MLO. Only the interaction term between CS and DP was significant. However, when probing the interaction, the simple slopes for EMC and LMC were not significant. Results highlight the relative importance of WM and SR in relation to MLO across middle childhood. Although for this sample CS was not associated with MLO above and beyond WM and SR, future studies could assess additional dimensions of CS (e.g., physiological aspects) in a more diverse population, as well as recruiting larger sample sizes allowing further exploration of a moderation effect. For caregivers and educators, understanding the simultaneous contributions of EF, SR, and CS to MLO could provide evidence key to the design of grade-level specific interventions supporting EF and SR development, which could promote students' MLO during the foundational years of elementary school. | en |
| dc.description.abstractgeneral | Higher math skills predict higher reading skills, higher socioeconomic status, and increased academic motivation - yet, over 60% of the U.S. population is not proficient in math. Factors indirectly related to math teaching and math curriculum, like the capacity to process information (executive function), set goals and follow through while avoiding distractions (self-regulation), and chronic stress, are known to be individually associated with math learning. However, little is known about how those factors, that is, executive function, self-regulation, and chronic stress, are all simultaneously related to math skills and whether that varies across elementary school grades, when foundational math skills are learned. This dissertation examined how those factors predict math outcomes in middle childhood and whether that changes when looking at two distinct developmental periods, specifically, early middle childhood (first and second grade) and late middle childhood (fourth and fifth grade). A sample of 133 children from Southwest Virginia attended a single in-person session and completed tasks assessing their math skills, executive function, and self-regulation, while their caregivers reported on chronic stress and other sociodemographic measures (such as family income and parental education, among others). Results showed that, across middle childhood, a specific executive function skill (working memory, the ability to hold on to and process new information) and self-regulation predicted math skills, but other executive functions nor chronic stress predicted math skills. These findings inform caregivers and educators how to better support math learning in elementary school when basic math knowledge and skills are acquired. | en |
| dc.description.degree | Doctor of Philosophy | en |
| dc.format.medium | ETD | en |
| dc.identifier.other | vt_gsexam:46932 | en |
| dc.identifier.uri | https://hdl.handle.net/10919/143452 | en |
| dc.language.iso | en | en |
| dc.publisher | Virginia Tech | en |
| dc.rights | In Copyright | en |
| dc.rights.uri | http://rightsstatements.org/vocab/InC/1.0/ | en |
| dc.subject | Executive Function | en |
| dc.subject | Self-regulation | en |
| dc.subject | Chronic Stress | en |
| dc.subject | Math Learning Outcomes | en |
| dc.subject | Middle Childhood | en |
| dc.title | Understanding the Associations Among Executive Function, Self-regulation, Chronic Stress, and Math Learning Outcomes Across Middle Childhood | en |
| dc.type | Dissertation | en |
| thesis.degree.discipline | Human Development | en |
| thesis.degree.grantor | Virginia Polytechnic Institute and State University | en |
| thesis.degree.level | doctoral | en |
| thesis.degree.name | Doctor of Philosophy | en |
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