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Special Issue Article

Using singular value decomposition to investigate degraded Chinese character recognition: evidence from eye movements during reading

Hsueh‐Cheng Wang

Corresponding Author

Department of Computer Science, University of Massachusetts at Boston, , USA

Address for correspondence: Hsueh‐Cheng Wang, Department of Computer Science, University of Massachusetts at Boston, 100 Morrissey Blvd,Boston, MA 02125-3393, USA. E‐mail:

hchengwang@gmail.com

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Elizabeth R. Schotter

Department of Psychology, University of California, , USA

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Bernhard Angele

Department of Psychology, University of California, , USA

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Jinmian Yang

Department of Psychology, University of California, , USA

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Dan Simovici

Department of Computer Science, University of Massachusetts at Boston, , USA

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Marc Pomplun

Department of Computer Science, University of Massachusetts at Boston, , USA

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Keith Rayner

Department of Psychology, University of California, , USA

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First published: 20 March 2013
Cited by: 1

Abstract

Previous research indicates that removing initial strokes from Chinese characters makes them harder to read than removing final or internal ones. In the present study, we examined the contribution of important components to character configuration via singular value decomposition. The results indicated that when the least important segments, which did not seriously alter the configuration (contour) of the character, were deleted, subjects read as fast as when no segments were deleted. When the most important segments, which are located in the left side of a character and written first, were deleted, reading speed was greatly slowed. These results suggest that singular value decomposition, which has no information about stroke writing order, can identify the most important strokes for Chinese character identification. Furthermore, they also suggest that contour may be correlated with stroke writing order.

Number of times cited: 1

  • , Universality in eye movements and reading: A trilingual investigation, Cognition, 147, (1), (2016).