首页> 外文期刊>The quarterly journal of experimental psychology: QJEP >The serial nature of the masked onset priming effect revisited
【24h】

The serial nature of the masked onset priming effect revisited

机译:掩盖的起病启动效应的连续性质

获取原文
获取原文并翻译 | 示例
           

摘要

Reading aloud is faster when target wordsonwords are preceded by masked prime wordsonwords that share their first sound with the target (e.g., save-SINK) compared to when primes and targets are unrelated to each other (e.g., farm-SINK). This empirical phenomenon is the masked onset priming effect (MOPE) and is known to be due to serial left-to-right processing of the prime by a sublexical reading mechanism. However, the literature in this domain lacks a critical experiment. It is possible that when primes are real words their orthographic/phonological representations are activated in parallel and holistically during prime presentation, so any phoneme overlap between primes and targets (and not just initial-phoneme overlap) could facilitate target reading aloud. This is the prediction made by the only computational models of reading aloud that are able to simulate the MOPE, namely the DRC1.2.1, CDP+, and CDP++ models. We tested this prediction in the present study and found that initial-phoneme overlap (blip-BEST), but not end-phoneme overlap (flat-BEST), facilitated target reading aloud compared to no phoneme overlap (junk-BEST). These results provide support for a reading mechanism that operates serially and from left to right, yet are inconsistent with all existing computational models of single-word reading aloud.
机译:当目标词/非词前面带有与目标(例如,save-SINK)共享其第一声音的被掩盖的原始词/非词之前时,与原​​始词和目标彼此不相关(例如,farm-SINK)相比,朗读速度更快。 。这种经验现象是被掩盖的起病启动效应(MOPE),并且已知是由于通过次词法读取机制对启动素进行了从左到右的串行处理。但是,该领域的文献缺乏严格的实验。当素数是真实单词时,它们的正交/语音表示形式可能会在素数表示过程中被并行和整体激活,因此素数和目标之间的任何音素重叠(而不仅仅是初始音素重叠)都可以促进目标朗读。这是唯一能够模拟MOPE的大声朗读计算模型做出的预测,即DRC1.2.1,CDP +和CDP ++模型。我们在本研究中测试了此预测,发现与没有音素重叠(垃圾BEST)相比,初始音素重叠(blip-BEST)而非末端音素重叠(flat-BEST)可促进目标朗读。这些结果为读取机制提供了支持,该读取机制可从左至右串行运行,但与大声读取单个单词的所有现有计算模型不一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号