Executive functions and school readiness intervention: Impact, moderation, and mediation in the Head Start REDI program | Development and Psychopathology | Cambridge Core (original) (raw)

Abstract

Despite their potentially central role in fostering school readiness, executive function (EF) skills have received little explicit attention in the design and evaluation of school readiness interventions for socioeconomically disadvantaged children. The present study examined a set of five EF measures in the context of a randomized-controlled trial of a research-based intervention integrated into Head Start programs (Head Start REDI). Three hundred fifty-six 4-year-old children (17% Hispanic, 25% African American; 54% girls) were followed over the course of the prekindergarten year. Initial EF predicted gains in cognitive and social–emotional skills and moderated the impact of the Head Start REDI intervention on some outcomes. The REDI intervention promoted gains on two EF measures, which partially mediated intervention effects on school readiness. We discuss the importance of further study of the neurobiological bases of school readiness, the implications for intervention design, and the value of incorporating markers of neurobiological processes into school readiness interventions.

References

Adams, M. J., Foorman, B. R., Lundberg, I., & Beeler, T. (1998). Phonological sensitivity in young children: A classroom curriculum. Baltimore, MD: Paul H. Brookes.Google Scholar

Barkley, R. A. (2001). The EF and self-regulation: An evolutionary neuropsychological perspective. Neuropsychology Review, 11, 1–29.Google Scholar

Baron, R. M., & Kenny, D. A. (1986). The moderator–mediator variable distinction in social psychological research: Conceptual, strategic, and statistical considerations. Journal of Personality and Social Psychology, 51, 1173–1182.Google Scholar

Bierman, K. L., Domitrovich, C. E., Nix, R. L., Gest, S. D., Welsh, J. A., Greenberg, M. T., et al. (2007). Promoting academic and social–emotional school readiness: The Head Start REDI Program. Manuscript submitted for publication.Google Scholar

Blair, C. (2002). School readiness: Integrating cognition and emotion in a neurobiological conceptualization of children's functioning at school entry. American Psychologist, 57, 111–127.CrossRefGoogle Scholar

Blair, C. (2006). How similar are fluid cognition and general intelligence? A developmental neuroscience perspective on fluid cognition as an aspect of human cognitive ability. Behavioral and Brain Sciences, 29, 109–160.CrossRefGoogle Scholar

Blair, C., & Razza, R. P. (2007). Relating effortful control, executive function, and false belief understanding to emerging math and literacy ability in kindergarten. Child Development, 78, 647–680.Google Scholar

Blair, C., Zelazo, P. D., & Greenberg, M. T. (2005). The measurement of executive function in early childhood. Developmental Neuropsychology, 28, 561–571.Google Scholar

Bodrova, E., & Leong, D. J. (2007). Tools of the mind: The Vygotskian approach to early childhood education (2nd ed.). Columbus, OH: Merrill/Prentice Hall.Google Scholar

Bjorklund, D. F., & Kipp, K. (1996). Parental investment theory and gender differences in the evolution of inhibitory mechanisms. Psychological Bulletin, 120, 163–188.CrossRefGoogle Scholar

Brophy, M., Taylor, E., & Hughes, C. (2002). To go or not to go: Inhibitory control in “hard to manage” children. Infant and Child Development, 11, 125–140.Google Scholar

Brownell, R. (2000). Expressive One-Word Picture Vocabulary Test Manual. Novato, CA: Academic Therapy Publications.Google Scholar

Bull, R., & Scerif, G. (2001). Executive functioning as a predictor of children's mathematics ability: Inhibition, switching, and working memory. Developmental Neuropsychology, 19, 273–293.Google Scholar

Campbell, S. B., & Stauffenberg, C. (2008). Child characteristics and family processes that predict behavioral readiness for school. In Crouter, A. & Booth, A. (Eds.), Early disparities in school readiness: How families contribute to transitions into school (pp. 225–258). Mahwah, NJ: Erlbaum.Google Scholar

Carlson, S. M. (2005). Developmentally sensitive measures of executive function in preschool children. Developmental Neuropsychology, 28, 595–616.Google Scholar

Carlson, S. M., & Moses, L. J. (2001). Individual difference in inhibitory control and children's theory of mind. Child Development, 72, 1032–1053.Google Scholar

Catts, H. W., Fey, M. E., Zhang, X., & Tomblin, J. B. (1999). Language basis of reading and reading disabilities: Evidence from a longitudinal investigation. Scientific Studies of Reading, 3, 331–361.CrossRefGoogle Scholar

Cauffman, E., Steinberg, L., & Piquero, A. R. (2004). Psychological, neuropsychological, and physiological correlates of serious anti-social behavior in adolescence: The role of self-control. Criminology, 43, 133–175.Google Scholar

Ceci, S. J. (1991). How much does schooling influence general intelligence and its cognitive components? A reassessment of the evidence. Developmental Psychology, 27, 703–722.Google Scholar

Chang, F., & Burns, B. M. (2005). Attention in preschoolers: Associations with effortful control and motivation. Child Development, 76, 247–263.Google Scholar

Children's Defense Fund. (2005). The state of America's children 2005. Washington, DC: Author.Google Scholar

Cicchetti, D. (2002). The impact of social experience on neurobiological systems: Illustration from a constructivist view of child maltreatment. Cognitive Development, 17, 1407–1428.Google Scholar

Cole, P. M., Usher, B. A., & Cargo, A. P. (1993). Cognitive risk and its association with risk for disruptive behavior disorder in preschoolers. Journal of Clinical Child Psychology, 22, 154–164.CrossRefGoogle Scholar

Coolahan, K., Fantuzzo, J., Mendez, J., & McDermott, P. (2000). Preschool peer interactions and readiness to learn: Relationships between classroom peer play and learning behaviors and conduct. Journal of Educational Psychology, 92, 458–465.Google Scholar

Crick, N. R., Casas, J. F., & Mosher, M. (1997). Relational and overt aggression in preschool. Developmental Psychology, 33, 579–588.Google Scholar

Davidson, M. C., Amso, D., Anderson, L. C., & Diamond, A. (2006). Development of cognitive control and executive functions from 4 to 13 years: Evidence from manipulations of memory, inhibition, and task switching. Neuropsychologia, 44, 2037–2078.CrossRefGoogle Scholar

Davis, H. L., & Pratt, C. (1996). The development of children's theory of mind: The working memory explanation. Australian Journal of Psychology, 47, 25–31.Google Scholar

Denham, S. A., & Burton, R. (2003). Social and emotional prevention and intervention programming for preschoolers. New York: Kluwer/Plenum Press.Google Scholar

Derryberry, D., & Rothbart, M. A. (1997). Reactive and effortful process in the organization of temperament. Developmental Psychopathology, 9, 633–652.Google Scholar

Diamond, A. (2002). Normal development of prefrontal cortex from birth to young adulthood: Cognitive functions, anatomy, and biochemistry. In Stuss, D. T. & Knight, R. T. (Eds.), The frontal lobes (pp. 466–503). London: Oxford University Press.Google Scholar

Diamond, A., Carlson, S. M., & Beck, D. M. (2005). Preschool children's performance in task switching on the Dimensional Change Card Sort Task: Separating the dimensions aids the ability to switch. Developmental Neuropsychology, 28, 689–729.CrossRefGoogle Scholar

Diamond, A., & Taylor, C. (1996). Development of an aspect of executive control: Development of the abilities to remember what I said and to do as I say, not as I do. Developmental Psychobiology, 29, 315–334.Google Scholar

Domitrovich, C. E., Cortes, R., & Greenberg, M. T. (2007). Improving young children's social and emotional competence: A randomized trial of the preschool PATHS curriculum. Journal of Primary Prevention, 28, 67–91.. Developmental Psychology, 33, 113–119.Google Scholar

Gray, J. A. (1982). The neuropsychology of anxiety. London: Oxford University Press.Google Scholar

Greenberg, M. T. (2006). Promoting resilience in children and youth: Preventive interventions and their interface with neuroscience. Annals of the New York Academy of Sciences, 1094, 139–150.CrossRefGoogle Scholar

Greenberg, M. T., & Kusche, C. A. (1993). Promoting social and emotional development in deaf children: The PATHS Project. Seattle, WA: University of Washington Press.Google Scholar

Greenberg, M. T., Kusche, C. A., & Riggs, N. (2004). The PATHS Curriculum: Theory and research on neuro-cognitive development and school success. In Zins, J. E., Weissberg, R. P., Wang, M. C., & Walberg, H. J., (Eds.), Building academic success on social and emotional learning: What does the research say? (pp. 170–188) New York: Teachers College Press.Google Scholar

Havighurst, S. S., Harley, A., & Prior, M. (2004). Building preschool children's emotional competence: A parenting program. Early Education and Development, 15, 423–448.. Journal of School Psychology, 43, 465–480.. Child Development, 59, 986–992.Google Scholar

Lengua, L. J., Honorado, E., & Bush, N. R. (2007). Contextual risk and parenting as predictors of effortful control and social competence in preschool children. Journal of Applied Developmental Psychology, 28, 40–55.CrossRefGoogle Scholar

Li-Grining, C. P. (2007). Effortful control among low-income preschoolers in three cities: Stability, change, and individual differences. Developmental Psychology, 43, 208–221.Google Scholar

Lonigan, C. J. (2006). Development, assessment, and promotion of preliteracy skills. Early Education and Development, 17, 91–114.Google Scholar

Lonigan, C. J., Burgess, S. R., & Anthony, J. L. (2000). Development of emergent literacy and early reading skills in preschool children: Evidence from a latent-variable longitudinal study. Developmental Psychology, 36, 596–613.Google Scholar

Lonigan, C. J., Wagner, R. K., Torgesen, J. K., & Rashotte, C. A. (2007). TOPEL: Test of Preschool Early Literacy. Austin, TX: Pro-Ed.Google Scholar

McClelland, M. M., Acock, A. C., & Morrison, F. J. (2006). The impact of kindergarten learning-related skills on academic trajectories at the end of elementary school. Early Childhood Research Quarterly, 21, 471–490.Google Scholar

Miyake, A., Friedman, N. P., Emerson, M. J., Witzki, A. H., Howerter, A., & Wagner, T. D. (2000). The unity and diversity of EF and their contributions to complex frontal lobe tasks: A latent variable analysis. Cognitive Psychology, 41, 49–100.CrossRefGoogle Scholar

Moffitt, T. E. (1993). The neuropsychology of conduct disorder. Development and Psychopathology, 5, 135–151.CrossRefGoogle Scholar

National Early Literacy Panel. (2005). Report on a synthesis of early predictors of reading. Louisville, KY: Author.Google Scholar

Nelson, K. (2003). Narrative and self, myth and memory: Emergence of the cultural self. In Fivush, R. & Haden, C. A. (Eds.), Autobiographical memory and the construction of a narrative self: Developmental and cultural perspectives (pp. 3–28). Mahway, NJ: Erlbaum.Google Scholar

Nigg, J. T., Quamma, J. P., Greenberg, M. T., & Kusche, C. A. (1999). A two-year longitudinal study of neuropsychological and cognitive performance in relation to behavioral problems and competencies in elementary school children. Journal of Abnormal Child Psychology, 27, 51–63.Google Scholar

Normandeau, S., & Guay, F. (1998). Preschool behavior and first grade school achievement: The mediational role of cognitive self-control. Journal of Educational Psychology, 90, 111–121.Google Scholar

O'Connor, T. G., Rutter, M., Beckett, C., Kreppner, J. M., Keaveney, L., & the English and Romanian Adoptees Study Team (2000). The effects of global severe privation on cognitive competence: Extension and longitudinal follow-up. Child Development, 71, 376–390.Google Scholar

Pollak, S. D., Cicchetti, D., & Klorman, R. (1998). Stress, memory, and emotion: Developmental considerations from the study of child maltreatment. Development and Psychopathology, 10, 679–688.Google Scholar

Posner, M. I., & Peterson, S. E. (1990). The attention system of the human brain. Annual Review of Neurosocience, 13, 25–42.Google Scholar

Riggs, N. R., Blair, C. B., & Greenberg, M. T. (2003). Concurrent and 2-year longitudinal relations between executive function and the behavior of 1st and 2nd grade children. Child Neuropsychology, 9, 267–276.Google Scholar

Riggs, N. R., Greenberg, M. T., Kusche, C. A., & Pentz, M. A. (2006). The meditational role of neurocognition in the behavioral outcomes of a social–emotional prevention program in elementary school students: Effects of the PATHS curriculum. Prevention Science, 7, 91–102.Google Scholar

Rothbart, M. K., Posner, M. I., & Hershey, K. L. (1995). Temperament, attention, and developmental psychopathology. In Cicchetti, D. & Cohen, D. J. (Eds.), Developmental psychopathology: Vol. 1. Theory and methods (pp. 315–340). Oxford: Wiley.Google Scholar

Rueda, M. R., Posner, M. I., & Rothbart, M. K. (2005). The development of executive attention: Contributions to the emergence of self regulation. Developmental Neuropsychology, 28, 573–594.Google Scholar

Ryan, R. M., Fauth, R. C., & Brooks-Gunn, J. (2006). Childhood poverty: Implications for school readiness and early childhood education. In Spodek, B. & Saracho, O. N. (Eds.), Handbook of research on the education of children (2nd ed., pp. 323–346.) Mahwah, NJ: Erlbaum.Google Scholar

Sanchez, M. M., Ladd, C. O., & Plotsky, P. M. (2001). Early adverse experiences as a risk factor for later psychopathology: Evidence from rodent and primate models. Development and Psychopathology, 13, 419–449.Google Scholar

Shonkoff, J. P., & Phillips, D. A. (Eds.) (2000). From neurons to neighborhoods: The science of early childhood development. Washington, DC: National Academy Press.Google Scholar

Smith-Donald, R., Raver, C. C., Hayes, T., & Richardson, B. (2007). Preliminary construct and concurrent validity of the preschool self-regulation assessment (PSRA) for field-based research. Early Childhood Research Quarterly, 22, 173–187.Google Scholar

Snow, C. E., Burns, M. S., & Griffin, P. (Eds.). (1998). Preventing reading difficulties in young children. Washington, DC: National Academy Press.Google Scholar

Sobel, M. E. (1982). Asymptotic confidence intervals for indirect effects in structural equation models. In Leinhardt, S. (Ed.), Sociological methodology (pp. 290–312). Washington, DC: American Sociological Association.Google Scholar

Sobel, M. E. (1986). Some new results on indirect effects and their standard errors in covariance structure models. In Tuma, N. (Ed.), Sociological methodology (pp. 159–186). Washington, DC: American Sociological Association.Google Scholar

Vaughn, B. E., Vollenweider, M., Bost, K. K., & Azria-Evans, , Snider, J. B. (2003). Negative interactions and social competence for preschool children in two samples: Reconsidering the interpretation of aggressive behavior for young children. Merrill–Palmer Quarterly, 49, 245–278.Google Scholar

Victor, J. B., Halverson, C. F. Jr. & Montague, R. B. (1985). Relations between reflection–impulsivity and behavioral impulsivity in preschool children. Developmental Psychology, 21, 141–148.Google Scholar

Vitaro, F., Gagnon, C., & Tremblay, R. E. (1990). Predicting stable peer rejection from kindergarten to grade one. Journal of Clinical Child Psychology, 19, 257–264.Google Scholar

Wasik, B. A., & Bond, M. A. (2001). Beyond the pages of a book: Interactive book reading and language development in preschool classrooms. Journal of Educational Psychology, 93, 243–250.Google Scholar

Wasik, B. A., Bond, M. A., & Hindman, A. (2006). The effects of a language and literacy intervention on Head Start children and teachers. Journal of Educational Psychology, 98, 63–74.Google Scholar

Wechsler, D. (2002). Wechsler Preschool and Primary Scale of Intelligence—III. San Antonio, TX: Psychological Corporation.Google Scholar

Werthamer-Larsson, L., Kellam, S., & Wheeler, L. (1991). Effect of first-grade classroom environment on shy behavior, aggressive behavior, and concentration problems. American Journal of Community Psychology, 19, 585–602.Google Scholar

White, J. L., Moffitt, T. E., Caspi, A., Bartusch, D. J., Needles, D. J., Stouthamer-Loeber, M. (1994). Measuring impulsivity and examining its relation to delinquency. Journal of Abnormal Psychology, 103, 192–205.Google Scholar

Whitehurst, G. J., Arnold, D., Epstein, J. N., Angell, A. L., Smith, M., & Fischel, J. E. (1994). A picture book reading intervention in daycare and home for children from low-income families. Developmental Psychology, 30, 679–689.CrossRefGoogle Scholar

Zelazo, P. D., Muller, U., Frye, D., & Marcovitch, S. (2003). The development of executive function. Monographs of the Society for Research in Child Development, 68, 11–27.Google Scholar

Zill, N., Resnick, G., Kiim, K., O'Donnell, K., Sorongon, A., McKey, R. H., et al. (2003). Head Start FACES 2000: A whole-child perspective on program performance. Retrieved from USDHHS Administration for Child and Family webpage: http://www.acf.hhs.gov/programs/opre/hs/faces/reports/faces00Google Scholar