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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >NEURAL HETEROGENEITIES INFLUENCE ENVELOPE AND TEMPORAL CODING AT THE SENSORY PERIPHERY
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NEURAL HETEROGENEITIES INFLUENCE ENVELOPE AND TEMPORAL CODING AT THE SENSORY PERIPHERY

机译:神经异质性对传感周界的影响和时间编码

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Peripheral sensory neurons respond to stimuli containing a wide range of spatio-temporal frequencies. We investigated electroreceptor neuron coding in the gymnoti-form wave-type weakly electric fish Apteronotus leptorhyn-chus. Previous studies used low to mid temporal frequencies (<256 Hz) and showed that electroreceptor neuron responses to sensory stimuli could be almost exclusively accounted for by linear models, thereby implying a rate code. We instead used temporal frequencies up to 425 Hz, which is in the upper behaviorally relevant range for this species. We show that electroreceptors can: (A) respond up to the highest frequencies tested and (B) display strong nonlinearities in their responses to such stimuli. These nonlinearities were manifested by the fact that the responses to repeated presentations of the same stimulus were coherent at temporal frequencies outside of those contained in the stimulus waveform. Specifically, these consisted of low frequencies corresponding to the time varying contrast or envelope of the stimulus as well as higher harmonics of the frequencies contained in the stimulus. Heterogeneities in the afferent population influenced nonlinear coding as afferents with the lowest baseline firing rates tended to display the strongest nonlinear responses. To understand the link between afferent heterogeneity and nonlinear responsiveness, we used a phe-nomenological mathematical model of electrosensory afferents. Varying a single parameter in the model was sufficient to account for the variability seen in our experimental data and yielded a prediction: nonlinear responses to the envelope and at higher harmonics are both due to afferents with lower baseline firing rates displaying greater degrees of rectification in their responses. This prediction was verified experimentally as we found that the coherence between the half-wave rectified stimulus and the response resembled the coherence between the responses to repeated presentations of the stimulus in our dataset. This result shows that rectification cannot only give rise to responses to low frequency envelopes but also at frequencies that are higher than those contained in the stimulus. The latter result implies that information is contained in the fine temporal structure of electroreceptor afferent spike trains. Our results show that heterogeneities in peripheral neuronal populations can have dramatic consequences on the nature of the neural code.
机译:周围感觉神经元对包含多种时空频率的刺激作出反应。我们研究了裸露于鱼鳞状波型弱电鱼Apteronotus leptorhyn-chus中的电感受器神经元编码。以前的研究使用低到中度的瞬时频率(<256 Hz),并表明线性模型几乎可以完全解释电感受器神经元对感觉刺激的反应,从而暗示了速率码。相反,我们使用了高达425 Hz的时间频率,该频率在该物种的行为相关上限内。我们表明,电感受器可以:(A)响应测试的最高频率,并且(B)在对此类刺激的响应中表现出强烈的非线性。这些非线性表现为以下事实:对相同刺激的重复表示,其响应在刺激波形所包含的时间频率以外的时间频率上是连贯的。具体而言,这些频率由对应于刺激的时变对比度或包络的低频以及刺激中包含的频率的高次谐波组成。传入群体中的异质性会影响非线性编码,因为基线触发率最低的传入者倾向于表现出最强的非线性响应。为了理解传入异质性与非线性响应之间的联系,我们使用了电感应传入的现象学数学模型。改变模型中的单个参数足以说明我们在实验数据中看到的变化,并得出了预测:对包络线的非线性响应和高次谐波均归因于基线发射率较低的传入子在其上显示出更大的整流度回应。由于我们发现半波整流刺激和响应之间的相干性类似于我们数据集中对刺激的重复表示的响应之间的相干性,因此通过实验验证了这一预测。该结果表明,整流不仅可以引起对低频包络的响应,而且还可以产生高于刺激中所包含频率的响应。后一个结果暗示信息包含在电感受器传入尖峰序列的精细时间结构中。我们的结果表明,周围神经元群体的异质性会对神经密码的性质产生重大影响。

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