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Is the Web As Good As the Lab? Comparable Performance from Web and Lab in Cognitive/perceptual Experiments

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Specialty Psychology
Date 2012 Jul 26
PMID 22829343
Citations 185
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Abstract

With the increasing sophistication and ubiquity of the Internet, behavioral research is on the cusp of a revolution that will do for population sampling what the computer did for stimulus control and measurement. It remains a common assumption, however, that data from self-selected Web samples must involve a trade-off between participant numbers and data quality. Concerns about data quality are heightened for performance-based cognitive and perceptual measures, particularly those that are timed or that involve complex stimuli. In experiments run with uncompensated, anonymous participants whose motivation for participation is unknown, reduced conscientiousness or lack of focus could produce results that would be difficult to interpret due to decreased overall performance, increased variability of performance, or increased measurement noise. Here, we addressed the question of data quality across a range of cognitive and perceptual tests. For three key performance metrics-mean performance, performance variance, and internal reliability-the results from self-selected Web samples did not differ systematically from those obtained from traditionally recruited and/or lab-tested samples. These findings demonstrate that collecting data from uncompensated, anonymous, unsupervised, self-selected participants need not reduce data quality, even for demanding cognitive and perceptual experiments.

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References
1.
McGraw K, Tew M, Williams J . The integrity of Web-delivered experiments: can you trust the data?. Psychol Sci. 2001; 11(6):502-6. DOI: 10.1111/1467-9280.00296. View

2.
Kendler K, Myers J, Potter J, Opalesky J . A web-based study of personality, psychopathology and substance use in twin, other relative and relationship pairs. Twin Res Hum Genet. 2009; 12(2):137-41. DOI: 10.1375/twin.12.2.137. View

3.
Wilmer J, Germine L, Chabris C, Chatterjee G, Williams M, Loken E . Human face recognition ability is specific and highly heritable. Proc Natl Acad Sci U S A. 2010; 107(11):5238-41. PMC: 2841913. DOI: 10.1073/pnas.0913053107. View

4.
Duchaine B, Germine L, Nakayama K . Family resemblance: ten family members with prosopagnosia and within-class object agnosia. Cogn Neuropsychol. 2008; 24(4):419-30. DOI: 10.1080/02643290701380491. View

5.
Ronalds G, De Stavola B, Leon D . The cognitive cost of being a twin: evidence from comparisons within families in the Aberdeen children of the 1950s cohort study. BMJ. 2005; 331(7528):1306. PMC: 1298851. DOI: 10.1136/bmj.38633.594387.3A. View