首页> 外文学位 >Impairments in the acquisition of new object-name associations after unilateral temporal lobectomy despite fast-mapping encoding.
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Impairments in the acquisition of new object-name associations after unilateral temporal lobectomy despite fast-mapping encoding.

机译:尽管进行了快速映射编码,但单侧颞叶切除术后获得新的对象名称关联的障碍。

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摘要

Learning new object-name associations (i.e., word learning) is an ability crucial to normal development starting in early childhood and continuing through the lifespan. To learn a new word, an object must be associated with an arbitrary phonological (or orthographic) string representing a word. The declarative memory system formulates and encodes associations between two arbitrary stimuli and has been well established as playing a critical role for adult word learning. Research investigating the neural substrates of the declarative memory system and word learning has implicated the hippocampus and the surrounding medial temporal lobe (MTL) as crucial structures. A substantial literature on populations with damage to these particular structures (e.g., hippocampal amnesia, temporal lobectomy) has supports the view that without these structures, declarative learning, and word learning by extension, is grossly impaired. However, a recent study Sharon and colleagues (2011) suggested that non-MTL structures may be sufficient to support word learning under special study conditions ("fast mapping") (Sharon, Moscovitch, & Gilboa, 2011). Fast mapping is a word-learning phenomenon described as the ability to acquire the name for a new word in a single exposure to an unknown word and unfamiliar referent alongside a known word with its referent (e.g., Carey & Bartlett, 1978; Carey, 2010).;This study evaluated the ability of patients with unilateral temporal lobectomy (TL) following early-onset temporal lobe epilepsy to learn new object-name associations in two different word learning conditions: fast mapping (FM) and explicit encoding (EE). The word learning performance was evaluated relative to a group of healthy normal comparison participants (NC). The goal of this study was to examine the role of the hippocampus in word learning to answer the question: does a FM condition promote word learning in participants with temporal lobe epilepsy who have had a left temporal lobectomy?;NC participants were able to acquire a rich representation of novel items (as evidenced by improved familiarity ratings and generalization of items) while TL participants had severely impaired performance on free recall, recognition testing, and generalization tasks. TL participants did not learn novel object-name associations despite a FM paradigm while the NC group performed significantly above chance on recognition testing. These findings in conjunction with broadly similar results obtained from hippocampal amnesic patients tested using the same paradigm (Warren & Duff, 2012), support the necessity of the hippocampus for rapid and flexible associations to be obtained via the declarative memory system.
机译:学习新的对象名称关联(即单词学习)是从幼儿期开始一直延续到整个寿命的关键能力。要学习一个新单词,必须将一个对象与代表该单词的任意语音(正字)字符串相关联。声明式记忆系统可对两个任意刺激之间的关联进行公式化和编码,并且已被确立为在成人单词学习中发挥关键作用。声明式记忆系统和单词学习的神经基础的研究已经将海马和周围的颞颞叶(MTL)视为关键结构。关于破坏这些特定结构(例如海马健忘症,颞叶切除术)的人群的大量文献支持以下观点:如果没有这些结构,则说明性学习和扩展单词学习将受到严重损害。但是,最近的一项研究Sharon及其同事(2011年)提出,非MTL结构可能足以支持特殊学习条件(“快速映射”)下的单词学习(Sharon,Moscovitch和Gilboa,2011年)。快速映射是一种单词学习现象,被描述为一次接触一个未知单词和不熟悉的指称对象以及一个已知单词及其指称对象就可以获取一个新单词的名称的能力(例如,Carey&Bartlett,1978; Carey,2010) );这项研究评估了在早期发作的颞叶癫痫发作后进行单侧颞叶切除术(TL)的患者在两种不同的单词学习条件下学习新的对象名称关联的能力:快速映射(FM)和显式编码(EE)。相对于一组健康的正常比较参与者(NC)评估了单词学习性能。这项研究的目的是检验海马在单词学习中的作用,以回答以下问题:FM条件是否能促进颞叶癫痫患者左颞叶切除术中的单词学习?新颖项目的丰富表示(通过提高熟悉度和项目泛化证明),而TL参与者在自由召回,识别测试和泛化任务上的表现受到严重损害。尽管有FM范例,但TL参与者仍未学习新颖的对象名称关联,而NC小组在识别测试中的表现明显高于偶然性。这些发现与使用相同范式测试的海马健忘症患者获得的广泛相似结果相结合(Warren&Duff,2012),支持通过声明式记忆系统海马体快速而灵活地关联的必要性。

著录项

  • 作者

    Schmitt, Kendra Marie.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Language Linguistics.;Psychology Developmental.;Health Sciences Speech Pathology.
  • 学位 M.A.
  • 年度 2013
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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