The impact of ordinate scaling on the visual analysis of single-case data

被引:45
作者
Dart, Evan H. [1 ]
Radley, Keith C. [1 ]
机构
[1] Univ Southern Mississippi, Hattiesburg, MS 39406 USA
关键词
BASE-LINE TREND; CASE DESIGNS; EFFECT SIZES; CHILDREN; BEHAVIOR; CONTINGENCIES; AIDS; DRO;
D O I
10.1016/j.jsp.2017.03.008
中图分类号
G44 [教育心理学];
学科分类号
0402 ; 040202 ;
摘要
Visual analysis is the primary method for detecting the presence of treatment effects in graphically displayed single-case data and it is often referred to as the "gold standard." Although researchers have developed standards for the application of visual analysis (e.g., Horner et al., 2005), over-and underestimation of effect size magnitude is not uncommon among analysts. Several characteristics have been identified as potential contributors to these errors; however, researchers have largely focused on characteristics of the data itself (e.g., autocorrelation), paying less attention to characteristics of the graphic display which are largely in control of the analyst (e.g., ordinate scaling). The current study investigated the impact that differences in ordinate scaling, a graphic display characteristic, had on experts' accuracy in judgments regarding the magnitude of effect present in single-case percentage data. 32 participants were asked to evaluate eight ABAB data sets (2 each presenting null, small, moderate, and large effects) along with three iterations of each (32 graphs in total) in which only the ordinate scale was manipulated. Results suggest that raters are less accurate in their detection of treatment effects as the ordinate scale is constricted. Additionally, raters were more likely to overestimate the size of a treatment effect when the ordinate scale was constricted. (C) 2017 Society for the Study of School Psychology. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:105 / 118
页数:14
相关论文
共 43 条
[21]   Evaluating Competing Reinforcement Contingencies on Off-Task Behavior in a Preschooler with Intellectual Disability: A Data-Based Case Study [J].
May, Michael E. ;
Howe, Abigail P. .
EDUCATION AND TREATMENT OF CHILDREN, 2013, 36 (01) :97-109
[22]   The impact of baseline trend control on visual analysis of single-case data [J].
Mercer, Sterett H. ;
Sterling, Heather E. .
JOURNAL OF SCHOOL PSYCHOLOGY, 2012, 50 (03) :403-419
[23]   Interrater Agreement Between Visual Analysts of Single-Case Data: A Meta-Analysis [J].
Ninci, Jennifer ;
Vannest, Kimberly J. ;
Willson, Victor ;
Zhang, Nan .
BEHAVIOR MODIFICATION, 2015, 39 (04) :510-541
[24]   The effects of celeration lines on visual data analysis [J].
Normand, MP ;
Bailey, JS .
BEHAVIOR MODIFICATION, 2006, 30 (03) :295-314
[25]  
Parker RI, 2005, SCHOOL PSYCHOL REV, V34, P116
[26]   A Simple Method to Control Positive Baseline Trend Within Data Nonoverlap [J].
Parker, Richard I. ;
Vannest, Kimberly J. ;
Davis, John L. .
JOURNAL OF SPECIAL EDUCATION, 2014, 48 (02) :79-91
[27]   Combining Nonoverlap and Trend for Single-Case Research: Tau-U [J].
Parker, Richard I. ;
Vannest, Kimberly J. ;
Davis, John L. ;
Sauber, Stephanie B. .
BEHAVIOR THERAPY, 2011, 42 (02) :284-299
[28]   The Improvement Rate Difference for Single-Case Research [J].
Parker, Richard I. ;
Vannest, Kimberly J. ;
Brown, Leanne .
EXCEPTIONAL CHILDREN, 2009, 75 (02) :135-150
[29]  
Parsonson B., 1992, Single-case Research Design and Analysis: New Directions for Psychology and Education, P15
[30]   Effect sizes for experimenting psychologists [J].
Rosnow, RL ;
Rosenthal, R .
CANADIAN JOURNAL OF EXPERIMENTAL PSYCHOLOGY-REVUE CANADIENNE DE PSYCHOLOGIE EXPERIMENTALE, 2003, 57 (03) :221-237