HALL OF HEROES

The Challenge

A growing body of research concludes that elementary school children’s academic and social success in middle school depends on social preparation as well as academic readiness. To prepare children for a successful transition to middle school, research indicates effective social interventions must: (1) be adaptable to individual students’ needs, and (2) provide teachers and other program implementers with clear and immediate feedback about each child’s progress toward social goals.

Our Response

With Small Business Innovation Research (SBIR) funding, we’ve developed Hall of Heroes, an innovative Intelligent Social Tutoring System (ISTS) — an engaging game that dynamically adapts content to individual students and documents their progress toward specific measurable social goals. We’ve rigorously tested Hall of Heroes to ensure usability, feasibility, and effectiveness in meeting student outcomes.

Hall of Heroes allows players to navigate customizable avatars through challenging social situations in a virtual middle school for superheroes. The social tutoring adapts to students’ choices, focusing on their individual social needs and keeping the game appropriately challenging. Players’ actions are recorded for teacher monitoring and reporting through Centervention, the online implementation support center.

Supporting grants

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Highlights

Engaging for students

Students navigate a virtual school, engaging with other middle-school characters to solve realistic social challenges. The software dynamically adapts content to individual students.

Real-time reporting

Hall of Heroes measures student performance via embedded metrics and assessments on key concepts and strategies. Educators can generate reports showing learning trends and suggesting additional strategies.

Online implementation support

The implementation center includes account management, game deployment, progress & performance monitoring, report generation, and additional resources to help students achieve real world success.

DEB CHILDRESS, PHD

Chief of Research and Learning Content

BIOGRAPHY

Dr. Childress obtained her PhD in psychology at the University of North Carolina at Chapel Hill. Prior to coming to 3C Institute, she served as a research associate and a postdoctoral fellow in the Carolina Institute for Developmental Disabilities at the University of North Carolina at Chapel Hill working on a longitudinal imaging study aimed at identifying the early markers of autism through behavioral and imaging methodologies. She has 19 years of autism research experience, during which she has examined the behavioral, personality, and cognitive characteristics of individuals with autism and their family members. Dr. Childress also has experience developing behavioral and parent report measurement tools, coordinating multi-site research studies, and collecting data from children and families. She has taught courses and seminars in general child development, autism, and cognitive development at the University of North Carolina at Chapel Hill.

Expertise

  • autism
  • early development
  • behavioral measurement
  • integrating behavioral and biological measurement

Education

  • Postdoctoral fellowship, Carolina Institute for Developmental Disabilities (Institutional NRSA-NICHD), University of North Carolina at Chapel Hill
  • PhD, developmental psychology, University of North Carolina at Chapel Hill
  • BS, psychology (minor in sociology), University of Iowa

Selected Publications

  • Elison, J. T., Wolff, J. J., Heimer, D. C., Paterson, S. J., Gu, H., Hazlett, H. C., Styner, M, Gerig, G., & Piven, J. (in press). Frontolimbic neural circuitry at 6 months predicts individual differences in joint attention at 9 months. Developmental Science.
  • Wassink, T. H., Vieland, V. J., Sheffield, V. C., Bartlett, C. W., Goedken, R., Childress, D. & Piven, J. (2008). Posterior probability of linkage analysis of autism dataset identifies linkage to chromosome 16. Psychiatric Genetics,18(2),85-91.
  • Losh, M., Childress, D., Lam K. & Piven, J. (2008). Defining key features of the broad autism phenotype: A comparison across parents of multiple- and single-incidence autism families. American Journal of Medical Genetics (Neuropsychiatric Genetics), 147B(4):424-33.
  • Wassink, T. H., Piven, J., Vieland, V. J., Jenkins, L., Frantz R., Bartlett, C. W., Goedken, R., … Sheffield, V.C. (2005). Evaluation of the chromosome 2q37.3 gene CENTG2 as an autism susceptibility gene. American Journal of Medical Genetics (Neuropsychiatric Genetics), 136, 36-44.
  • Barrett, S., Beck, J., Bernier, R., Bisson, E., Braun, T., Casavant, T., Childress, D., … Vieland, V. (1999). An autosomal genomic screen for autism. American Journal of Medical Genetics (Neuropsychiatric Genetics), 88, 609-615. doi: 10.1002/(SICI)1096-8628(19991215)88:63.0.CO;2-L
  • Piven, J., Palmer, P., Landa, R., Santangelo, S., Jacobi, D. & Childress, D. (1997). Personality and language characteristics in parents from multiple-incidence autism families. American Journal of Medical Genetics (Neuropsychiatric Genetics), 74, 398-411.
  • Piven, J., Palmer, P., Jacobi, D., Childress, D. & Arndt, S. (1997). Broader autism phenotype: Evidence from a family history study of multiple-incidence autism families. American Journal of Psychiatry, 154, 185-190.