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首页> 外文期刊>The Journal of Comparative Neurology >Tone responses in core versus belt auditory cortex in the developing chinchilla.
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Tone responses in core versus belt auditory cortex in the developing chinchilla.

机译:发育中的黄鼠的核心与皮带听觉皮层的音调反应。

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Single-unit responses to tone pip stimuli were isolated from numerous microelectrode penetrations of core primary auditory cortex (AI) and a dorsocaudal (DC) belt region in the ketamine-anesthetized chinchilla (laniger). Results are reported at postnatal day 3 (P3), P15, P30, and from adult animals. The AI core could be distinguished from the DC belt on the basis of its strict tonotopic organization, evident in all chinchillas studied (including the youngest). Averaged by age group and compared to their core counterparts, belt neurons generally had similar absolute (spike rate) thresholds and onset latencies (at a given sound pressure level), but lower maximum spike rates, broader tuning bandwidths, and more complex (multipeaked) receptive fields. Most notably, the fraction of complex belt units in the near-newborn (P3) group was high ( approximately 50%), and did not systematically increase with age, while that of complex core units was approximately 10% at P3 and increased steadily to about 40% in adulthood. These results provide further evidence to support the hypothesis that, at least to some extent, core and belt auditory cortex may constitute parallel processing streams which represent different aspects of complex acoustic stimuli. J. Comp. Neurol. 492:101-109, 2005. (c) 2005 Wiley-Liss, Inc.
机译:氯胺酮麻醉的黄鼠(laniger)的许多主要核心听觉皮层(AI)和背尾(DC)带区域的微电极穿透中分离出对音调点刺激的单反应。在出生后第3天(P3),P15,P30和成年动物报告结果。在所有研究的龙猫(包括最小的龙猫)中都可以明显看出,AI核心可以根据其严格的局部组织来区别于DC带。按年龄组平均并与核心同类相比,腰带神经元通常具有相似的绝对(峰值)阈值和发作潜伏期(在给定的声压水平下),但是较低的最大峰值速率,更宽的调谐带宽和更复杂的(多峰)接受领域。最值得注意的是,在近新生儿(P3)组中,复杂腰带单元的比例很高(大约50%),并且不会随着年龄的增长而系统地增加,而在P3时,复杂核心单元的比例大约为10%,并且逐渐增加到成年后约40%。这些结果提供了进一步的证据来支持这一假说,即至少在一定程度上,核心和腰带听觉皮层可能构成了代表复杂声刺激不同方面的并行处理流。 J.比较神经元。 492:101-109,2005.(c)2005 Wiley-Liss,Inc.

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