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Research Articles

Schema-Based Instruction Implemented under Routine Conditions

ORCID Icon, ORCID Icon, , &
Pages 246-267 | Received 16 Apr 2020, Accepted 05 Sep 2020, Published online: 16 Sep 2020

References

  • Barlow, D. H., Nock, M. K., & Hersen, M. (2009). Single case experimental designs: Strategies studying behavior change (3rd ed.). Boston, MA: Pearson.
  • Begeny, J. C., Codding, R. S., Wang, J., Hida, R. M., Patterson, S. L., Kessler, S., … Ramos, K. A. (2020). An analysis of motivation strategies used within the small‐group Accelerating Mathematics Performance through Practice Strategies (AMPPS‐SG) program. Psychology in the Schools, 57(4), 540–555. https://doi-org.ezproxy.neu.edu/10.1002/pits.22334. doi:10.1002/pits.22334
  • Bruhn, A., McDaniel, S., & Kreigh, C. (2015). Self-monitoring interventions for students with behavior problems: A systematic review of current research. Behavioral Disorders, 40(2), 102–121. doi:10.17988/BD-13-45.1
  • Christ, T. J. (2007). Experimental control and threats to internal validity of concurrent and nonconcurrent multiple baseline designs. Psychology in the Schools, 44(5), 451–459. doi:10.1002/pits.20237
  • Codding, R.S., Begeny, J., Kromminga, K. R., Edmunds, R., Klaft, J., Diggs, C., & Hansen-Burke, A. (2019). Do motivational strategies improve the effects of a small-group math intervention program? Journal of Applied School Psychology, 36(3), 235–260. doi:10.1080/15377903.2019.1682735
  • Codding, R. S., VanDerHeyden, A. M., Martin, R. J., Desai, S., Allard, N., & Perrault, L. (2016). Manipulating treatment dose: Evaluating the frequency of a small group intervention targeting whole number operations. Learning Disabilities Research & Practice, 31(4), 208–220. doi:10.1111/ldrp.12120
  • Cook, S. C., Collins, L. W., Morin, L. L., & Riccomini, P. J. (2020). Schema-based instruction for mathematical word problem solving: An evidence-based review for students with learning disabilities. Learning Disability Quarterly, 43(2), 75–87. doi:10.1177/0731948718823080
  • Cox, S. K., & Root, J. R. (2020). Modified schema-based instruction to develop flexible mathematics problem-solving strategies for students with autism spectrum disorder. Remedial and Special Education, 41(3), 139–151. doi:10.1177/0741932518792660
  • Dowdy, A., Tincani, M., & Schneider, W. J. (2020). Evaluation of publication bias in response interruption and redirection: A meta‐analysis. Journal of Applied Behavior Analysis. doi:10.1002/jaba.724.
  • DuPaul, G. J., Gormley, M. J., & Laracy, S. D. (2013). Comorbidity of LD and ADHD: Implications of DSM-5 for assessment and treatment. Journal of Learning Disabilities, 46(1), 43–51. doi:10.1177/0022219412464351
  • Ferron, J. M., Joo, S. H., & Levin, J. R. (2017). A Monte Carlo evaluation of masked visual analysis in response-guided versus fixed-criteria multiple-baseline designs . Journal of Applied Behavior Analysis, 50(4), 701–716. doi:10.1002/jaba.410
  • Fixsen, D. L., Naoom, S. F., Blase, K. A., Friedman, R. M., & Wallace, F. (2005). Implementation research: A synthesis of the literature (FMHI Publication #231). Tampa, FL: University of South Florida, Louis de la Parte Florida Mental Health Institute, The National Implementation Research Network. Retrieved from http://www.fpg.unc.edu/∼nirn/resources/publications/Monograph/pdf/Monograph_full.pdf
  • Fuchs, L. S., Seethaler, P. M., Sterba, S. K., Craddock, C., Fuchs, D., Compton, D. L., … Changas, P. (2020). Closing the word-problem achievement gap in first grade: Schema-based word-problem intervention with embedded language comprehension instruction. Journal of Educational Psychology. doi:10.1037/edu0000467
  • Geary, D. C. (2011). Cognitive predictors of achievement growth in mathematics: A 5-year longitudinal study. Developmental Psychology, 47(6), 1539–1552. doi:10.1037/a0025510
  • Gersten, R., Chard, D. J., Jayanthi, M., Baker, S. K., Morphy, P., & Flojo, J. (2009). Mathematics instruction for students with learning disabilities: A meta-analysis of instructional components. Review of Educational Research, 79(3), 1202–1242. doi:10.3102/0034654309334431
  • Griffin, C. C., & Jitendra, A. K. (2009). Word problem-solving instruction in inclusive third-grade mathematics classrooms. The Journal of Educational Research, 102, 187–202. doi:10.3200/JOER.102.3.187-202
  • Harrison, J. R., State, T. M., Evans, S. W., & Schamberg, T. (2016). Construct and predictive validity of social acceptability: Scores from high school teacher ratings on the School Intervention Rating Form. Journal of Positive Behavior Interventions, 18(2), 111–123. doi:10.1177/1098300715596135
  • Hegarty, M., Mayer, R. E., & Monk, C. A. (1995). Comprehension of arithmetic word problems: A comparison of successful and unsuccessful problem solvers. Journal of Educational Psychology, 87(1), 18–32. doi:10.1037/0022-0663.87.1.18
  • Hirsch, S. E., Macsuga-Gage, A., Park, K., & Dillon, S. (2016). A road map to systemically setting up a group contingency. Beyond Behavior, 25(2), 21–29. doi:10.1177/107429561602500204
  • Individuals with Disabilities Education Improvement Act. (2004). H.R. 1350, 108th Congress.
  • Jitendra, A. K., DiPipi, C. M., & Perron-Jones, N. (2002). An exploratory study of schema-based word-problem—Solving instruction for middle school students with learning disabilities: An emphasis on conceptual and procedural understanding. The Journal of Special Education, 36, 23–38. doi:10.1177/00224669020360010301
  • Jitendra, A. K., Dupuis, D. N., Rodriguez, M. C., Zaslofsky, A. F., Slater, S., Cozine-Corroy, K., & Church, C. (2013). A Randomized Controlled Trial of the Impact of Schema-Based Instruction on Mathematical Outcomes for Third-Grade Students with Mathematics Difficulties. The Elementary School Journal, 114(2), 252–276. doi:10.1086/673199.
  • Jitendra, A. K., Griffin, C. C., Deatline-Buchman, A., & Sczesniak, E. (2007). Mathematical word problem solving in third-grade classrooms. The Journal of Educational Research, 100, 283–302. doi:10.3200/JOER.100.5.283-302
  • Jitendra, A. K., & Hoff, K. (1996). The effects of schema-based instruction on the mathematical word-problem-solving performance of students with learning disabilities. Journal of Learning Disabilities, 29(4), 422–431. 10.3200/JOER.100.5.283-302.
  • Jitendra, A. K., Hoff, K., & Beck, M. M. (1999). Teaching middle school students with learning disabilities to solve word problems using a schema-based approach. Remedial and Special Education, 20, 50–64. doi:10.1177/074193259902000108
  • Jitendra, A. K., Rodriguez, M., Kanive, R., Huang, J.-P., Church, C., Corroy, K. A., & Zaslofsky, A. (2013). Impact of Small-Group Tutoring Interventions on the Mathematical Problem Solving and Achievement of Third-Grade Students With Mathematics Difficulties. Learning Disability Quarterly, 36(1), 21–35. doi:10.1177/0731948712457561.
  • Kelly, J. A. (1980). The simultaneous replication design: The use of a multiple baseline to establish experimental control in single group social skills treatment studies. Journal of Behavioral Therapy and Experimental Psychiatry, 11, 203–207. doi:10.1016/0005-7916(80)90028-2
  • Kratochwill, T. R., & Levin, J. R. (2010). Enhancing the scientific credibility of single-case intervention research: Randomization to the rescue. Psychological Methods, 15(2), 124–144. doi:10.1037/a0017736
  • Krowka, S. K., & Fuchs, L. S. (2017). Cognitive profiles associated with responsiveness to fraction intervention. Learning Disabilities Research & Practice: A Publication of the Division for Learning Disabilities, Council for Exceptional Children, 32(4), 216–230. doi:10.1111/ldrp.12146
  • Manolov, R., Guilera, G., & Solanas, A. (2017). Issues and advances in the systematic review of single-case research: A commentary on the exemplars. Remedial and Special Education, 38(6), 387–393. doi:10.1177/0741932517726143
  • Marshall, S. P. (1995). Schema in problem solving. New York, NY: Cambridge University Press. doi:10.1017/cbo9780511527890.
  • Morano, S., Ruiz, S., Hwang, J., Wertalik, J. L., Moeller, J., Karal, M. A., & Mulloy, A. (2017). Meta-analysis of single-case treatment effects on self-injurious behavior for individuals with autism and intellectual disabilities. Autism & Developmental Language Impairments, 2, 1–26. doi:10.1177/2396941516688399
  • Parker, R. I., Vannest, K. J., & Davis, J. L. (2011). Effect size in single-case research: A review of nine nonoverlap techniques. Behavior Modification, 35(4), 303–322. doi:10.1177/0145445511399147
  • Peltier, C., Lingo, M. E., Deardorff, M. E., Autry, F., & Manwell, C. R. (2020). Improving Word Problem Solving of Immediate, Generalized, and Combined Structured Problems via Schema-Based Instruction. Exceptionality, 28(2), 92–108. doi:10.1080/09362835.2020.1727336.
  • Peltier, C., & Vannest, K. J. (2017). A meta-analysis of schema instruction on the problem-solving performance of elementary school students. Review of Educational Research, 87(5), 899–920. doi:10.3102/0034654317720163
  • Peltier, C., Vannest, K. J., & Marbach, J. J. (2018). A meta-analysis of schema instruction implemented in single-case experimental designs. The Journal of Special Education, 52(2), 89–100. doi:10.1177/0022466918763173
  • Peng, P., Namkung, J., Barnes, M., & Sun, C. (2016). A meta-analysis of mathematics and working memory: Moderating effects of working memory domain, type of mathematics skill, and sample characteristics. Journal of Educational Psychology, 108(4), 455–473. doi:10.1037/edu0000079
  • Peng, P., Wang, C., & Namkung, J. (2018). Understanding the cognition related to mathematics difficulties: A meta-analysis on the cognitive deficit profiles and the bottleneck theory. Review of Educational Research, 88(3), 434–476. doi:10.3102/0034654317753350
  • Powell, S. R. (2011). Solving word problems using schemas: A review of the literature. Learning Disabilities Research & Practice: A Publication of the Division for Learning Disabilities, Council for Exceptional Children, 26(2), 94–108. doi:10.1111/j.1540-5826.2011.00329.x
  • Powell, S. R., Cirino, P. T., & Malone, A. S. (2017). Child-level predictors of responsiveness to evidence-based mathematics intervention. Exceptional Children, 83(4), 359–377. doi:10.1177/0014402917690728
  • Pustejovsky, J. E. (2016). scdhlm: A web-based calculator for between-case standardized mean differences (Version 0.3.1) [Web application]. Retrieved from: https://jepusto.shinyapps.io/scdhlm
  • Pustejovsky, J. E. (2018). Using response ratios for meta-analyzing single-case designs with behavioral outcomes. Journal of School Psychology, 68, 99–112. doi:10.1016/j.jsp.2018.02.003
  • Pustejovsky, J. E., Hedges, L. V., & Shadish, W. R. (2014). Design-comparable effect sizes in multiple baseline designs: A general modeling framework. Journal of Educational and Behavioral Statistics, 39(5), 368–393. doi:10.3102/1076998614547577
  • Pustejovsky, J. E., & Swan, D. M. (2018). Single-case effect size calculator (Version 0.5) Web application. Retrieved from https://jepusto.shinyapps.io/SCD-effect-sizes/
  • Reimers, T. M., Wacker, D. P., & Cooper, L. J. (1991). Evaluation of the acceptability of treatments for their children’s behavioral difficulties: Ratings by parents receiving services in an outpatient clinic. Child & Family Behavior Therapy, 13, 53–71. doi:10.1300/J019v13n02_04
  • Rockwell, S. B., Griffin, C. C., & Jones, H. A. (2011). Schema-based strategy instruction in mathematics and the word problem-solving performance of a student with autism. Focus on Autism and Other Developmental Disabilities, 26, 87–95. doi:10.1177/1088357611405039
  • Travers, J. C., Cook, B. G., Therrien, W. J., & Coyne, M. D. (2016). Replication research and special education. Remedial and Special Education, 37(4), 195–204. doi:10.1177/0741932516648462
  • U.S. Department of Education, Institute of Education Sciences, What Works Clearinghouse. (2017, October). What works clearinghouse: Procedures and standards handbook (Version 4.0). Retrieved from http://whatworks.ed.gov
  • Valentine, J. C., Tanner-Smith, E. E., Pustejovsky, J. E., & Lau, T. S. (2016). Between-case standardized mean difference effect sizes for single-case designs: A primer. Oslo, Norway: The Campbell Collaboration. doi:10.4073/cmdp.2016.1
  • Van Camp, A. M., Wehby, J. H., Martin, B. L. N., Wright, J. R., & Sutherland, K. S. (2020). Increasing opportunities to respond to intensify academic and behavioral interventions: a meta-analysis. School Psychology Review, 49(1), 31–46. 10.1080/2372966X.2020.1717369.
  • VanDerHeyden, A. M., & Harvey, M. (2012). Using data to advance learning outcomes in schools. Journal of Positive Behavior Interventions, 15, 205–213. doi:10.1177/1098300712442387
  • van Dijk, W., Gage, N. A., & Grasley-Boy, N. (2019). The relation between classroom management and mathematics achievement: A multilevel structural equation model. Psychology in the Schools, 56(7), 1173–1186. doi:10.1002/pits.22254
  • van Garderen, D., Scheuermann, A., & Jackson, C. (2012). Developing representational ability in mathematics for students with learning disabilities: A content analysis of grades 6 and 7 textbooks. Learning Disability Quarterly, 35(1), 24–38. doi:10.1177/0731948711429726

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