Duff Melissa C, Brown-Schmidt Sarah
Department of Communication Sciences and Disorders, University of Iowa, Iowa City IA, USA.
Front Hum Neurosci. 2012 Apr 5;6:69. doi: 10.3389/fnhum.2012.00069. eCollection 2012.
Fundamental to all human languages is an unlimited expressive capacity and creative flexibility that allow speakers to rapidly generate novel and complex utterances. In turn, listeners interpret language "on-line," incrementally integrating multiple sources of information as words unfold over time. A challenge for theories of language processing has been to understand how speakers and listeners generate, gather, integrate, and maintain representations in service of language processing. We propose that many of the processes by which we use language place high demands on and receive contributions from the hippocampal declarative memory system. The hippocampal declarative memory system is long known to support relational binding and representational flexibility. Recent findings demonstrate that these same functions are engaged during the real-time processes that support behavior in-the-moment. Such findings point to the hippocampus as a potentially key contributor to cognitive functions that require on-line integration of multiple sources of information, such as on-line language processing. Evidence supporting this view comes from findings that individuals with hippocampal amnesia show deficits in the use of language flexibly and on-line. We conclude that the relational binding and representational flexibility afforded by the hippocampal declarative memory system positions the hippocampus as a key contributor to language use and processing.
所有人类语言的根本特征在于其具有无限的表达能力和创造性灵活性,这使得说话者能够迅速生成新颖而复杂的话语。相应地,听众会“实时”解读语言,随着单词随着时间展开,逐步整合多种信息来源。语言处理理论面临的一个挑战是理解说话者和听众如何生成、收集、整合并维持用于语言处理的表征。我们提出,我们使用语言的许多过程对海马体陈述性记忆系统提出了很高的要求,并从该系统获得了贡献。长期以来,人们都知道海马体陈述性记忆系统支持关系绑定和表征灵活性。最近的研究结果表明,在支持即时行为的实时过程中,同样的功能也会被激活。这些发现表明,海马体可能是认知功能的关键贡献者,这些认知功能需要在线整合多种信息来源,比如在线语言处理。支持这一观点的证据来自于这样的发现:患有海马体失忆症的个体在灵活和实时使用语言方面存在缺陷。我们得出结论,海马体陈述性记忆系统所提供的关系绑定和表征灵活性使海马体成为语言使用和处理的关键贡献者。