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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Responses of neurons in cat primary auditory cortex to bird chirps: effects of temporal and spectral context.
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Responses of neurons in cat primary auditory cortex to bird chirps: effects of temporal and spectral context.

机译:猫初级听觉皮层神经元对鸟鸣的反应:时间和频谱环境的影响。

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摘要

The responses of neurons to natural sounds and simplified natural sounds were recorded in the primary auditory cortex (AI) of halothane-anesthetized cats. Bird chirps were used as the base natural stimuli. They were first presented within the original acoustic context (at least 250 msec of sounds before and after each chirp). The first simplification step consisted of extracting a short segment containing just the chirp from the longer segment. For the second step, the chirp was cleaned of its accompanying background noise. Finally, each chirp was replaced by an artificial version that had approximately the same frequency trajectory but with constant amplitude. Neurons had a wide range of different response patterns to these stimuli, and many neurons had late response components in addition, or instead of, their onset responses. In general, every simplification step had a substantial influence on the responses. Neither the extracted chirp nor the clean chirp evoked a similar response to the chirp presented within its acoustic context. The extracted chirp evoked different responses than its clean version. The artificial chirps evoked stronger responses with a shorter latency than the corresponding clean chirp because of envelope differences. These results illustrate the sensitivity of neurons in AI to small perturbations of their acoustic input. In particular, they pose a challenge to models based on linear summation of energy within a spectrotemporal receptive field.
机译:在氟烷麻醉的猫的初级听觉皮层(AI)中记录了神经元对自然声音和简化自然声音的响应。鸟鸣被用作基本的自然刺激。它们首先在原始声音环境中出现(每次chi之前和之后至少250毫秒的声音)。简化的第一步包括从较长的片段中提取仅包含线性调频的短片段。第二步,将rp声清除掉其伴随的背景噪声。最后,每个each声都由具有近似相同频率轨迹但振幅恒定的人造声代替。神经元对这些刺激具有广泛的不同反应模式,并且许多神经元除了或代替其发作反应外还具有晚期反应成分。通常,每个简化步骤都会对响应产生重大影响。提取的chi和干净的rp均未引起对其在声音环境中出现的the的类似响应。提取的chi引起的反应与其纯净的反应不同。由于包络线的差异,与相应的干净chi相比,人工rp发出了更强的响应,但延迟时间更短。这些结果说明了AI中神经元对其声音输入的微小扰动的敏感性。特别地,它们对基于光谱时域内能量的线性求和的模型提出了挑战。

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