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Biomedical subjects

Mitchell Metzger

Publications and source records attributed to Mitchell Metzger.

2 recordsLinked to original sources

Spectacles, distinctiveness, and face recognition: a web-based experiment.

This study sought to clarify previous research in the face recognition literature regarding memory for faces with spectacles. A second aim of this research was to further investigate Valentine's face-space model, a leading model of face recognition that predicts better performance on distinctive faces compared to typical faces. Prior to this experiment, independent observers provided distinctiveness ratings for faces with, and without, spectacles. Experimental participants then accessed the PsychExperiments website and completed a face recognition experiment. Based on the judgments of the independent observers, the face-space model predicts that memory for spectacled faces should be superior to memory for non-spectacled faces. An analysis of hit rate (percent correct) supported this notion, as a higher hit rate was observed for spectacled faces compared to non-spectacled faces. However, the analysis of false alarms (false identifications) did not support the predictions made by the face-space model, as participants demonstrated reliably higher false alarm rates for faces with spectacles. A further analysis of response bias suggests that the overall pattern of responding may have been largely due to changes in response criteria for trials where spectacled faces were presented. Implications for models of face recognition are discussed.

Adolescent↗

Cold tolerance: behavioral differences following single or multiple cold exposures.

Previous research has demonstrated that repeated exposure to cold water results in cold tolerance. The present set of experiments examined whether spontaneous behavioral activity and the rate of rewarming differed between cold tolerant and nontolerant rats. Animals receiving six cold exposures (one per day) were compared to subjects receiving a single cold exposure but cooled to match the final day temperature of the six-exposure group. Immediately following the final or only cold exposure, activity was measured by an activity monitor (Exp. 1) or was videotaped and scored by an independent observer (Exp. 2). Furthermore, rats' temperatures were monitored for 90 min (Exp. 2) and 60 min (Exp. 3) following the activity measurement. The results indicated that cold-tolerant rats exhibited activity similar to normal, noncooled subjects, whereas the activity in the single exposure group was impeded. Moreover, rats in the multiple exposure groups rewarmed more quickly than subjects in the single exposure condition. The third experiment also examined if the procedures of Experiments 1 and 2 resulted in associative cold tolerance. Experiment 3 replicated earlier findings, which have shown that exposure to the same cold stimulus in an altered context resulted in a loss of tolerance. These findings suggest that the processing of contextual stimuli is necessary for the acquisition of cold tolerance and that behavioral activity and rewarming rates can be used as alternative measures of cold tolerance.

Animals↗