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ELECTROPHYSIOLOGICAL MEASURES OF HUMAN MEMORY FUNCTIONS

ELECTROPHYSIOLOGICAL MEASURES OF HUMAN MEMORY FUNCTIONS
人类记忆功能的电生理测量
批准号:
6761786
负责人:
KEN A PALLER
金额:
$22.05万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-04-01 至 2006-06-30

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中文摘要
翻译
该项目的主要长期目标是促进我们对人类记忆的神经认知基础的理解。正在研究的中央记忆功能是那些负责成功回忆个人经历的事件。 情景记忆缺陷在神经和精神疾病以及正常衰老中极为常见。然而,寻找更好的方法来治疗记忆困难的人的关键一步是了解健康个体记忆功能的神经认知结构。 该研究的前提是,情景回忆可以最有效地研究使用的方法来监测的组成过程,因为它们发生。 换句话说,必须使用与相关神经计算相对应的神经生理学测量,以便最终破译正常和紊乱的人类记忆的大脑基底。 拟议的研究计划包括9个实验,旨在研究一系列情景记忆功能,使用健康志愿者头皮电极的脑电位的非侵入性记录。 这些事件相关电位(ERP)似乎对负责有效编码和检索存储信息的过程敏感,如FIRST奖支持的几项先前研究所示。 这些研究中的许多都使用了记忆测试,在这些测试中,受试者并没有被明确地询问他们的记忆。 这些内隐记忆测试表明,一些记忆功能与引起情景回忆的功能是分开的。 因此,内隐记忆和回忆之间的对比可以在认知和神经机制方面提供非常丰富的信息。因此,来自大脑的电记录将被用来监测负责回忆和内隐记忆的记忆功能,提供独立的记忆处理测量,其时间分辨率是目前任何研究人脑活动的方法所无法超越的。 还将使用两种补充方法来支持神经解剖学理论:功能磁共振成像(在2个拟议实验中)和脑电源建模。 这组实验的结果将阐明一组神经指标,索引特定的记忆过程。 这三个具体目标是:(1)提供证据支持脑电活动的测量可以用于监测有助于情景回忆的几种功能的想法;(2)直接对比情景回忆的ERP相关性和内隐记忆的ERP相关性;(3)将人类受试者脑功能测量的数据与当前巩固和提取的神经生物学模型相关联。
英文摘要
The major long-term objective of this project is to advance our understanding of the neurocognitive foundations of human memory. The central memory functions under study are those responsible for the successful recollection of personally experienced episodes. Deficits in episodic memory are extremely common in neurological and psychiatric disorders and in normal aging. However, a critical step towards finding better ways to treat people with memory difficulties is to understand the neurocognitive structure of memory functions in healthy individuals. The proposed research rests on the premise that episodic recollection can be most effectively studied by using methods to monitor the constituent processes as they occur. In other words, neurophysiological measures that correspond to relevant neural computations must be used in order to ultimately decipher the brain substrates of normal and disordered human memory. The proposed research plan includes 9 experiments designed to investigate a range of episodic memory functions using noninvasive recordings of brain potentials from scalp electrodes in healthy volunteers. These event-related potentials (ERPs) appear to be sensitive to processes responsible for effectively encoding and retrieving stored information, as shown in several prior studies supported by the FIRST award. Many of these studies used memory tests in which subjects were not explicitly queried about their memories. These implicit memory tests show that some memory functions are separate from those that give rise to episodic recollection. Contrasts between implicit memory and recollection can thus be extremely informative with respect to both cognitive and neural mechanisms. Accordingly, electrical recordings from the brain will be used to monitor memory functions responsible for both recollection and implicit memory, providing independent measures of memory processing with a temporal resolution unsurpassed by any currently available method for studying the human brain in action. Two supplemental methods will also be used to support neuroanatomical theorizing: functional magnetic resonance imaging (in 2 of the proposed experiments) and brain electrical source modeling. Results from this set of experiments will elucidate a set of neural measures that index specific memory processes. The 3 specific aims are: (1) to provide evidence supporting the idea that measures of the electrical activity of the brain can be used to monitor several functions that contribute to episodic recollection; (2) to directly contrast ERP correlates of episodic recollection and ERP correlates of implicit memory; and (3) to bring data on measures of brain function in human subjects to bear on current neurobiological models of consolidation and retrieval.
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