Successive presentations of Glass patterns (randomly positioned pairs of dots oriented in a coherent pattern) create a strong sense of global motion along the orientation of the pattern, but ambiguous in direction. Here we report that dynamic “anti-Glass” patterns, created by successive pairs of globally structured pairs of opposite polarity, create an even more powerful motion illusion that is unambiguous in direction: the dark dots always move toward the light. The motion can be cancelled and reversed by introducing a real delay in the presentation of the light dots, suggesting that the effective stimulation of the light is about 3 ms faster than the dark dots. The most plausible explanation for this is that human ON channels are faster than OFF channels, as has been shown in the macaque.

A powerful motion illusion caused by temporal asymmetries in ON and OFF visual pathways / M. DEL VIVA; M. GORI M; D.C. BURR. - In: JOURNAL OF NEUROPHYSIOLOGY. - ISSN 0022-3077. - STAMPA. - 95:(2006), pp. 3928-3932.

A powerful motion illusion caused by temporal asymmetries in ON and OFF visual pathways

DEL VIVA, MARIA;BURR, DAVID CHARLES
2006

Abstract

Successive presentations of Glass patterns (randomly positioned pairs of dots oriented in a coherent pattern) create a strong sense of global motion along the orientation of the pattern, but ambiguous in direction. Here we report that dynamic “anti-Glass” patterns, created by successive pairs of globally structured pairs of opposite polarity, create an even more powerful motion illusion that is unambiguous in direction: the dark dots always move toward the light. The motion can be cancelled and reversed by introducing a real delay in the presentation of the light dots, suggesting that the effective stimulation of the light is about 3 ms faster than the dark dots. The most plausible explanation for this is that human ON channels are faster than OFF channels, as has been shown in the macaque.
2006
95
3928
3932
M. DEL VIVA; M. GORI M; D.C. BURR
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/207457
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