login

Understanding normal and impaired word reading: Computational principles in quasi-regular domains.

Psychological ReviewPublished 1 January 1996
David C. Plaut, James L. McClelland, Mark S. Seidenberg, Karalyn Patterson
Citations2,688
SJR quartileQ1
SJR score3.06
SNIP2.88

TL;DR

Analysis of the ability of networks to reproduce data on acquired surface dyslexia support a view of the reading system that incorporates a graded division of labor between semantic and phonological processes, and contrasts in important ways with the standard dual-route account.

Abstract

A connectionist approach to processing in quasi-regular domains, as exemplified by English word reading, is developed. Networks using appropriately structured orthographic and phonological representations were trained to read both regular and exception words, and yet were also able to read pronounceable nonwords as well as skilled readers. A mathematical analysis of a simplified system clarifies the close relationship of word frequency and spelling-sound consistency in influencing naming latencies. These insights were verified in subsequent simulations, including an attractor network that accounted for latency data directly in its time to settle on a response. Further analyses of the ability of networks to reproduce data on acquired surface dyslexia support a view of the reading system that incorporates a graded division of labor between semantic and phonological processes, and contrasts in important ways with the standard dual-route account.

Keywords

PsychologyNeuroscience