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在延迟执行测试期间,涉及海马体神经元的集合编码存在风险。

Ensemble codes involving hippocampal neurons are at risk during delayed performance tests.

作者信息

Hampson R E, Deadwyler S A

机构信息

Department of Physiology and Pharmacology, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, NC 27157, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 26;93(24):13487-93. doi: 10.1073/pnas.93.24.13487.

Abstract

Multielectrode recording techniques were used to record ensemble activity from 10 to 16 simultaneously active CA1 and CA3 neurons in the rat hippocampus during performance of a spatial delayed-nonmatch-to-sample task. Extracted sources of variance were used to assess the nature of two different types of errors that accounted for 30% of total trials. The two types of errors included ensemble "miscodes" of sample phase information and errors associated with delay-dependent corruption or disappearance of sample information at the time of the nonmatch response. Statistical assessment of trial sequences and associated "strength" of hippocampal ensemble codes revealed that miscoded error trials always followed delay-dependent error trials in which encoding was "weak," indicating that the two types of errors were "linked." It was determined that the occurrence of weakly encoded, delay-dependent error trials initiated an ensemble encoding "strategy" that increased the chances of being correct on the next trial and avoided the occurrence of further delay-dependent errors. Unexpectedly, the strategy involved "strongly" encoding response position information from the prior (delay-dependent) error trial and carrying it forward to the sample phase of the next trial. This produced a miscode type error on trials in which the "carried over" information obliterated encoding of the sample phase response on the next trial. Application of this strategy, irrespective of outcome, was sufficient to reorient the animal to the proper between trial sequence of response contingencies (nonmatch-to-sample) and boost performance to 73% correct on subsequent trials. The capacity for ensemble analyses of strength of information encoding combined with statistical assessment of trial sequences therefore provided unique insight into the "dynamic" nature of the role hippocampus plays in delay type memory tasks.

摘要

在大鼠海马体执行空间延迟非匹配样本任务期间,采用多电极记录技术同时记录10至16个活跃的CA1和CA3神经元的群体活动。提取的方差源用于评估占总试验30%的两种不同类型错误的性质。这两种类型的错误包括样本相位信息的群体“错误编码”以及与延迟相关的样本信息在非匹配反应时的损坏或消失相关的错误。对试验序列和海马体群体编码相关“强度”的统计评估表明,错误编码的错误试验总是跟随编码“较弱”的延迟相关错误试验,这表明这两种类型的错误是“相关联的”。研究确定,弱编码的、延迟相关的错误试验的出现启动了一种群体编码“策略”,增加了下一次试验正确的机会,并避免了进一步延迟相关错误的发生。出乎意料的是,该策略涉及“强烈”编码来自先前(延迟相关)错误试验的反应位置信息,并将其延续到下一次试验的样本阶段。这在试验中产生了一种错误编码类型的错误,即“延续”的信息在下一次试验中抹去了样本阶段反应的编码。无论结果如何,应用这种策略足以使动物重新定向到正确的试验间反应偶联序列(非匹配样本),并在随后的试验中将表现提高到73%的正确率。因此,对信息编码强度进行群体分析并结合试验序列的统计评估的能力,为海马体在延迟型记忆任务中所起作用的“动态”性质提供了独特的见解。

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