首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dejittered spike-conditioned stimulus waveforms yield improved estimates of neuronal feature selectivity and spike-timing precision of sensory interneurons.
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Dejittered spike-conditioned stimulus waveforms yield improved estimates of neuronal feature selectivity and spike-timing precision of sensory interneurons.

机译:去抖动的尖峰条件刺激波形可改善神经元特征选择性和感觉中间神经元的尖峰定时精度的估计值。

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What is the meaning associated with a single action potential in a neural spike train? The answer depends on the way the question is formulated. One general approach toward formulating this question involves estimating the average stimulus waveform preceding spikes in a spike train. Many different algorithms have been used to obtain such estimates, ranging from spike-triggered averaging of stimuli to correlation-based extraction of "stimulus-reconstruction" kernels or spatiotemporal receptive fields. We demonstrate that all of these approaches miscalculate the stimulus feature selectivity of a neuron. Their errors arise from the manner in which the stimulus waveforms are aligned to one another during the calculations. Specifically, the waveform segments are locked to the precise time of spike occurrence, ignoring the intrinsic "jitter" in the stimulus-to-spike latency. We present an algorithm that takes this jitter into account. "Dejittered" estimates of the feature selectivity of a neuron are more accurate (i.e., provide a better estimate of the mean waveform eliciting a spike) and more precise (i.e., have smaller variance around that waveform) than estimates obtained using standard techniques. Moreover, this approach yields an explicit measure of spike-timing precision. We applied this technique to study feature selectivity and spike-timing precision in two types of sensory interneurons in the cricket cercal system. The dejittered estimates of the mean stimulus waveforms preceding spikes were up to three times larger than estimates based on the standard techniques used in previous studies and had power that extended into higher-frequency ranges. Spike timing precision was approximately 5 ms.
机译:与神经尖峰序列中的单个动作电位相关的含义是什么?答案取决于问题的表达方式。解决这个问题的一种通用方法涉及估算尖峰序列中尖峰之前的平均刺激波形。已经使用了许多不同的算法来获得这种估计,范围从刺激的尖峰触发平均到“刺激重建”内核或时空接受域的基于相关性的提取。我们证明,所有这些方法都错误地计算了神经元的刺激特征选择性。它们的误差来自在计算过程中激励波形彼此对齐的方式。具体而言,将波形段锁定到尖峰发生的精确时间,而忽略了激励到尖峰等待时间中的固有“抖动”。我们提出了一种将这种抖动考虑在内的算法。与使用标准技术获得的估计相比,神经元的特征选择性的“去抖动”估计更准确(即,提供引起尖峰的平均波形的更好估计)和更精确(即,在该波形周围具有较小的方差)。此外,这种方法可以显着衡量尖峰定时精度。我们应用了这项技术来研究板球盲肠系统中两种类型的感觉神经元的特征选择性和尖峰定时精度。尖峰之前平均刺激波形的去抖动估计比基于先前研究中使用的标准技术的估计高三倍,并且功率可以扩展到更高的频率范围。峰值定时精度约为5 ms。

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