首页> 外文会议>Education Technology and Training, 2008. and 2008 International Workshop on Geoscience and Remote Sensing. ETT and GRS 2008 >Neuronal Ensemble Entropy Coding in the Anterior Cingulate Cortex of Rats under Fear Conditioning
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Neuronal Ensemble Entropy Coding in the Anterior Cingulate Cortex of Rats under Fear Conditioning

机译:恐惧条件下大鼠前扣带回皮层的神经元集成熵编码

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The aim of this study is to investigate neuronal ensemble coding mechanism via entropy under fear conditioning. Entropy is a measurement of uncertainty and the amount of information in a sequence, which can quantify information as well as describe the ensemble coding characteristic. The original data we rerecorded at anterior cingulate cortex (ACC) of rats by implicated 16 channels array under two conditions:pre-training and testing. Then through a high-pass filtering (300 Hz-7.5 KHz) and spike detection, spike trains were obtained via spike sorting. The entropy values were performed in a selected window (500 ms)with a moving step (size of 1/4 window). The results showed that the entropy values were lower in pretraining with no ensemble activity; in testing condition,the entropy values were higher, where presented obvious ensemble activity. Conclusion: in pre-training,no ensemble activity was presented, which indicated that memory was not formed; in testing condition,obvious ensemble activity was manifested, which showed that the fear memory has been built up. The effect on coding firing information of neuronal ensemble by dynamic entropy coding was proved.
机译:这项研究的目的是通过恐惧条件下的熵来研究神经元整体编码机制。熵是对不确定性和序列中信息量的一种度量,它可以量化信息并描述整体编码特性。我们通过牵连的16通道阵列在两个条件下(预训练和测试)在大鼠前扣带回皮层(ACC)重新记录了原始数据。然后通过高通滤波(300 Hz-7.5 KHz)和尖峰检测,通过尖峰分类获得尖峰序列。熵值是在选定的窗口(500毫秒)内以移动步长(1/4窗口的大小)执行的。结果表明,在没有训练活动的情况下,熵值较低。在测试条件下,熵值较高,表现出明显的整体活动。结论:预训练过程中未表现出整体活动,说明记忆未形成。在测试条件下,表现出明显的整体活动,表明恐惧记忆已经建立。证明了通过动态熵编码对神经元集合的放电信息进行编码的效果。

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