Computational modelling of the masked onset priming effect in reading aloud

Petroula Mousikou, M. Coltheart, Steven Saunders
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引用次数: 21

Abstract

The masked onset priming effect (MOPE) was first defined by Forster and Davis (1991) as the finding that human naming latencies are faster when a target word (e.g., BREAK) is preceded by a briefly presented masked prime word that shares its initial sound with the target (e.g., belly) compared to when it does not (e.g., merry) or when it rhymes with it (e.g., stake). The present paper presents a review of empirical findings on the MOPE in the English language and their simulations by the DRC computational model of reading (Coltheart, Rastle, Perry, Langdon, & Ziegler, 2001), which offers an explicit account of how the effect might occur in humans. A new version of DRC, called DRC 1.2, which differs from the previous downloadable DRC version mainly in the way its nonlexical route operates, has been recently developed. The performance of DRC 1.2 on simulating the MOPE is evaluated in this paper.
朗读中隐性启动效应的计算模型
掩蔽启动效应(MOPE)最初是由Forster和Davis(1991)定义的,他们发现当一个目标词(如BREAK)之前有一个与目标词(如belly)有相同初始音的短暂呈现的掩蔽启动词时,人类的命名潜伏期比没有(如merry)或与目标词押韵(如stake)时要快。本文回顾了英语语言中MOPE的实证研究结果,并通过DRC阅读计算模型进行了模拟(colheart, Rastle, Perry, Langdon, & Ziegler, 2001),该模型明确说明了这种效应如何在人类中发生。最近开发了DRC的一个新版本,称为DRC 1.2,它与以前的可下载DRC版本的不同之处在于其非词法路由的操作方式。本文对DRC 1.2模拟MOPE的性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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