导线
图形
图论
数学
订单(交换)
计算机科学
算法
理论计算机科学
组合数学
大地测量学
财务
经济
地理
出处
期刊:Psychological Methods
[American Psychological Association]
日期:2012-01-01
卷期号:17 (4): 600-614
被引量:94
摘要
Reactions of neural, psychological, and social systems are rarely, if ever, independent of previous inputs and states.The potential for serial order carryover effects from one condition to the next in a sequence of experimental trials makes counterbalancing of condition order an essential part of experimental design.Here, a method is proposed for generating counterbalanced sequences for repeated-measures designs including those with multiple observations of each condition on one participant and self-adjacencies of conditions.Condition ordering is reframed as a graph theory problem.Experimental conditions are represented as vertices in a graph and directed edges between them represent temporal relationships between conditions.A counterbalanced trial order results from traversing an Euler circuit through such a graph in which each edge is traversed exactly once.This method can be generalized to counterbalance for higher-order serial order carryover effects as well as to create intentional serial order biases.Modern graph theory provides tools for finding other types of paths through such graph representations, providing a tool for generating experimental condition sequences with useful properties.
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