语法遗传学课程

IF 0.6 0 LANGUAGE & LINGUISTICS
K. Wexler
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引用次数: 0

摘要

本文从Lenneberg的语言生物学概念及其发展出发,首先回顾了语言发展及其与遗传学接口的研究实例,然后就如何研究语法遗传学提出了一些具体的建议。本文的核心建议是,研究语法遗传学的一个重要的、可能是必要的途径是研究与语法计算系统的儿童(和基因配对)版本的表型相对应的基因型,而不是结构或标准化语言测试的严格描述性测量。在某些情况下,这些表型具有广泛的解释能力,表明它们直接涉及语言计算系统的部分。讨论的主要例子是唯一检查约束(UCC)的表型。特别是,有人提出,可以有效地开始研究UCC的有限性、对象群省略和相关现象发展的遗传基础。这里的第二个不太发达的例子是通用阶段要求(UPR),它对应于一个更晚的发展阶段,用于调节儿童的言语行为和许多其他现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Program for the Genetics of Grammar
Departing from Lenneberg’s biological conception of language and its de- velopment, this paper first reviews select examples from research on lan- guage development and its interface with genetics before making some specific proposals with regard to how the genetics of grammar could be investigated. The central proposal of this paper is that an important, per- haps necessary, avenue for studying the genetics of grammar is to study the genotypes corresponding to phenotypes of child (and genetically im- paired) versions of the computational system of grammar, as opposed to strictly descriptive measures of a construction or standardized linguistic tests. In some cases, these phenotypes have wide explanatory ability, sug- gesting that they directly involve parts of the computational system of lan- guage. The primary example discussed is the phenotype of the Unique Checking Constraint (UCC). In particular, it is proposed that one could usefully start to investigate the genetic basis for he development of finite- ness, object clitic omission, and related phenomena of the UCC. A second, less developed example here, corresponding to a much later developmen- tal stage, is the Universal Phase Requirement (UPR), regulating verbal pas- sives and many other phenomena in children.
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来源期刊
Biolinguistics
Biolinguistics LANGUAGE & LINGUISTICS-
CiteScore
1.50
自引率
0.00%
发文量
5
审稿时长
12 weeks
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