Department of Neurobiology and Behavior, University of California, Irvine, CA 92697-3800, USA.
Proc Natl Acad Sci U S A. 2010 Feb 23;107(8):3793-8. doi: 10.1073/pnas.1000159107. Epub 2010 Feb 4.
Neuronal plasticity that develops in the cortex during learning is assumed to represent memory content, but the functions of such plasticity are actually unknown. The shift in spectral tuning in primary auditory cortex (A1) to the frequency of a tone signal is a compelling candidate for a substrate of memory because it has all of the cardinal attributes of associative memory: associativity, specificity, rapid induction, consolidation, and long-term retention. Tuning shifts increase the representational area of the signal in A1, as an increasing function of performance level, suggesting that area encodes the magnitude of acquired stimulus significance. The present study addresses the question of the specific function of learning-induced associative representational plasticity. We tested the hypothesis that specific increases in A1 representational area for an auditory signal serve the mnemonic function of enhancing memory strength for that signal. Rats were trained to bar-press for reward contingent on the presence of a signal tone (5.0 kHz), and assessed for memory strength during extinction. The amount of representational area gain for the signal frequency band was significantly positively correlated with resistance to extinction to the signal frequency in two studies that spanned the range of task difficulty. These findings indicate that specific gain in cortical representational area underlies the strength of the behaviorally-relevant contents of memory. Thus, mnemonic functions of cortical plasticity are determinable.
学习过程中皮层中产生的神经元可塑性被认为代表了记忆内容,但这种可塑性的功能实际上是未知的。初级听觉皮层(A1)中频谱调谐向音调信号频率的转变是记忆基质的有力候选者,因为它具有联想记忆的所有主要属性:关联性、特异性、快速诱导、巩固和长期保留。调谐转移增加了 A1 中信号的表示区域,作为性能水平的递增函数,这表明该区域编码了获得的刺激意义的大小。本研究探讨了学习诱导的联想表示性可塑性的具体功能问题。我们检验了这样一个假设,即 A1 对听觉信号的代表性区域的特定增加,有助于增强该信号的记忆强度的记忆功能。大鼠接受训练,在信号音(5.0 kHz)存在的情况下按压杆以获得奖励,并在消退期间评估记忆强度。在两项研究中,信号频率带的代表性区域增益量与信号频率的抗消退能力呈显著正相关,这两项研究涵盖了任务难度范围。这些发现表明,皮层代表性区域的特定增益是记忆中与行为相关内容强度的基础。因此,可以确定皮层可塑性的记忆功能。