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首页> 外文期刊>Journal of Neurophysiology >Azimuth coding in primary auditory cortex of the cat. II. Relative latency and interspike interval representation.
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Azimuth coding in primary auditory cortex of the cat. II. Relative latency and interspike interval representation.

机译:猫的初级听觉皮层中的方位角编码。二。相对等待时间和尖峰间隔表示。

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This study was designed to explore a potential representation of sound azimuth in the primary auditory cortex (AI) of the cat by the relative latencies of a population of neurons. An analysis of interspike intervals (ISI) was done to asses azimuth information in the firings of the neurons after the first spike. Thus latencies of simultaneously recorded single-unit (SU) spikes and local field potentials (LFP) in AI of cats were evaluated for sound presented from nine speakers arranged horizontally in the frontal half field in a semicircular array with a radius of 55 cm and the cat's head in the center. SU poststimulus time histograms (PSTH) were made for each speaker location for a 100-ms window after noise-burst onset using 1-ms bins. PSTH peak response latencies for SUs and LFPs decreased monotonically with intensity, and most of the change occurred within 15 dB of the threshold at that particular azimuth. After correction for threshold differences, all latency-intensity functions had roughly the same shape, independent of sound azimuth. Differences with the minimum spike latency observed in an animal at each intensity were calculated for all azimuth-intensity combinations. This relative latency showed a weakly sigmoidal dependence on azimuth that was independent of intensity level >40 dB SPL. SU latency differences also were measured with respect to the latencies of the LFP triggers, simultaneously recorded on the same electrode. This difference was independent of stimulus intensity and showed a nearly linear dependence on sound azimuth. The mean differences across animals for both measures, however, were only significant between contralateral azimuths on one hand and frontal and ipsilateral azimuths on the other hand. Mean unit-LFP latency differences showed a monotonic dependence on azimuth with nearly constant variance and may provide the potential for an unbiased conversion of azimuth into neural firing times. The general trend for the modal ISI was the same as for relative spike latency: the shortest ISIs were found for contralateral azimuths (ISI usually 3 ms) and the longer ones for ipsilateral azimuths (the most frequent ISI was 4 ms, occasionally 5 ms was found). This trend was also independent of intensity level. This suggests that there is little extra information in the timing of extra spikes in addition to that found in the peak PSTH latency.
机译:这项研究旨在通过神经元群体的相对潜伏期探索猫的主听皮层(AI)中声音方位角的潜在表示形式。对尖峰间隔(ISI)进行了分析,以评估第一个尖峰后神经元放电中的方位角信息。因此,针对在猫的AI中同时记录的单个单位(SU)尖峰和局部场电势(LFP)的潜伏期,评估了水平布置在前半场中的九个扬声器的声音,这些扬声器水平排列在半径为55 cm的半圆形阵列中,猫的头在中间。在使用1 ms音桶的噪声爆发开始后的100 ms窗口内,为每个扬声器位置制作SU后刺激时间直方图(PSTH)。 SU和LFP的PSTH峰值响应延迟随强度单调下降,并且大多数变化发生在该特定方位角的阈值15 dB以内。校正阈值差异后,所有延迟强度函数的形状都大致相同,而与声音方位角无关。计算所有方位角强度组合在每种强度下在动物中观察到的最小峰值潜伏期的差异。该相对潜伏期显示出对方位角的微弱S形依赖性,而与强度水平> 40 dB SPL无关。还测量了同时记录在同一电极上的LFP触发延迟的SU延迟差异。这种差异与刺激强度无关,并且对声方位角呈线性关系。但是,这两种措施在动物之间的平均差异仅在一方面对侧方位角与另一方面在额侧和同侧方位角之间显着。平均单位LFP潜伏期差异显示出对方位角的单调依赖性,且方差几乎恒定,并且可能为将方位角无偏转换为神经激发时间提供了可能。模态ISI的总体趋势与相对尖峰潜伏期相同:对侧方位角的ISI最短(ISI通常为3 ms),同侧方位角的ISI最长(最频繁的ISI为4 ms,偶尔为5 ms)找到)。这种趋势也与强度水平无关。这表明除了峰值PSTH延迟中发现的信息外,在额外的尖峰时序中几乎没有其他信息。

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