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初级听觉皮层中表征区域大小对习得声音重要性的编码。

Encoding of learned importance of sound by magnitude of representational area in primary auditory cortex.

作者信息

Rutkowski Richard G, Weinberger Norman M

机构信息

Center for the Neurobiology of Learning and Memory, University of California, Irvine, CA 92697-3800, USA.

出版信息

Proc Natl Acad Sci U S A. 2005 Sep 20;102(38):13664-9. doi: 10.1073/pnas.0506838102. Epub 2005 Sep 8.

Abstract

We hypothesized that learning-induced representational expansion in the primary auditory cortex (AI) directly encodes the degree of behavioral importance of a sound. Rats trained on an operant auditory conditioning task were variably motivated to the conditioned stimulus (CS) through different levels of water deprivation. Mean performance values correlated with deprivation level, validating them as a measure of the overall control and, therefore, behavioral importance of the CS. Electrophysiological mapping revealed expanded representations of the CS, compared with other frequencies in experimental subjects, but not in naive or visually trained controls that received noncontingent CS tones. Importantly, representational area showed a significant positive correlation with mean performance levels for only the CS band, with significant effects for relative area in contrast to only modest changes in absolute area. CS representational expansion was asymmetric into high-frequency zones, thus performance level also was significantly correlated with the relative anterior-posterior location of the enlarged representation. An increased representation of low frequencies, related to the acoustic spectrum of the reward delivery equipment, also was discovered in both experimental and control trained subjects, supporting the conclusion that behaviorally important sounds gain representational area. Furthermore, there was a surprising reduction in total AI area for the experimental and control groups, compared with untrained naive subjects, indicating that the functional dimensions of AI are not fixed. Overall, the findings support the encoding of acquired stimulus importance based on representational size in AI.

摘要

我们假设,初级听觉皮层(AI)中学习诱导的表征扩展直接编码了声音行为重要性的程度。在操作性听觉条件任务中训练的大鼠,通过不同程度的水剥夺对条件刺激(CS)有不同程度的动机。平均表现值与剥夺水平相关,证实它们可作为整体控制的一种度量,因此也是CS行为重要性的度量。电生理图谱显示,与实验对象中的其他频率相比,CS的表征有所扩展,但在接受非偶然CS音调的未训练或视觉训练的对照中则没有。重要的是,表征区域仅与CS频段的平均表现水平呈显著正相关,与相对区域有显著影响,而绝对区域仅有适度变化。CS表征扩展向高频区不对称,因此表现水平也与扩大表征的相对前后位置显著相关。在实验和对照训练的对象中还发现,与奖励发放设备的声谱相关的低频表征增加,支持了行为重要声音获得表征区域的结论。此外,与未训练的未成熟对象相比,实验组和对照组的AI总面积有惊人的减少,表明AI的功能维度不是固定的。总体而言,这些发现支持基于AI中表征大小对获得的刺激重要性进行编码。

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