This study investigated attentional processes in a sample of captive gibbons. An initial aim of the research was to examine subjects' ability to co-orient with photographic images of both conspecific and human models. The gibbons' expectancies about the focus of another's attention was then also assessed, with an expectancy violation paradigm revealing subjects' sensitivity to an incompatibility between visual orientation and the position of a target object. The gibbons were exposed to two conditions; consistent sequences in which the stimulus individual directed attention towards a target object, and inconsistent sequences in which the model's attentional focus was incompatible with the location of this article. Analyses of the subjects' responses were made according to the direction of gazes and the time spent inspecting the depicted model in each of these conditions. The results reveal a tendency for visual co-orientation with both conspecific and human models, suggesting that gibbons are competent in detecting the visual orientation of other species as well as their own. Furthermore, the subjects' tendency to look longer and check back to the depicted model in response to violations in the relationship between an agent and object (target appearing in an opposite direction to model's gaze), suggests that they possess some knowledge of how visual gaze direction relates to external stimuli.
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http://dx.doi.org/10.1016/j.beproc.2005.12.004 | DOI Listing |
Psychoneuroendocrinology
November 2024
College of Veterinary Medicine, University of Arizona, Oro Valley, AZ, USA. Electronic address:
J Struct Biol
June 2021
Department für Geo- und Umweltwissenschaften, Ludwig-Maximilians-Universität München, 80333 Munich, Germany.
Shells of calcifying foraminifera play a major role in marine biogeochemical cycles; fossil shells form important archives for paleoenvironment reconstruction. Despite their importance in many Earth science disciplines, there is still little consensus on foraminiferal shell mineralization. Geochemical, biochemical, and physiological studies showed that foraminiferal shell formation might take place through various and diverse mineralization mechanisms.
View Article and Find Full Text PDFReports an error in "Wolves () and dogs () differ in following human gaze into distant space but respond similar to their packmates' gaze" by Geraldine Werhahn, Zsófia Virányi, Gabriela Barrera, Andrea Sommese and Friederike Range (, 2016[Aug], Vol 130[3], 288-298). In the article, the affiliations for the second and fifth authors should be Wolf Science Center, Ernstbrunn, Austria, and Comparative Cognition, Messerli Research Institute, University of Veterinary Medicine Vienna/ Medical University of Vienna/University of Vienna. The online version of this article has been corrected.
View Article and Find Full Text PDFGaze following into distant space is defined as visual co-orientation with another individual's head direction allowing the gaze follower to gain information on its environment. Human and nonhuman animals share this basic gaze following behavior, suggested to rely on a simple reflexive mechanism and believed to be an important prerequisite for complex forms of social cognition. Pet dogs differ from other species in that they follow only communicative human gaze clearly addressed to them.
View Article and Find Full Text PDFPLoS One
April 2016
Quantitative Imaging group, Department of Imaging Physics, Delft University of Technology, Delft, The Netherlands.
Co-localization analysis is a widely used tool to seek evidence for functional interactions between molecules in different color channels in microscopic images. Here we extend the basic co-localization analysis by including the orientations of the structures on which the molecules reside. We refer to the combination of co-localization of molecules and orientational alignment of the structures on which they reside as co-orientation.
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