首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >Visual cortex combines a stimulus and an error-like signal with a proportion that is dependent on time space and stimulus contrast
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Visual cortex combines a stimulus and an error-like signal with a proportion that is dependent on time space and stimulus contrast

机译:视觉皮层将刺激和类似错误的信号组合在一起比例取决于时间空间和刺激对比

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摘要

Even though the visual cortex is one of the most studied brain areas, the neuronal code in this area is still not fully understood. In the literature, two codes are commonly hypothesized, namely stimulus and predictive (error) codes. Here, we examined whether and how these two codes can coexist in a neuron. To this end, we assumed that neurons could predict a constant stimulus across time or space, since this is the most fundamental type of prediction. Prediction was examined in time using electrophysiology and voltage-sensitive dye imaging in the supragranular layers in area 18 of the anesthetized cat, and in space using a computer model. The distinction into stimulus and error code was made by means of the orientation tuning of the recorded unit. The stimulus was constructed as such that a maximum response to the non-preferred orientation indicated an error signal, and the maximum response to the preferred orientation indicated a stimulus signal. We demonstrate that a single neuron combines stimulus and error-like coding. In addition, we observed that the duration of the error coding varies as a function of stimulus contrast. For low contrast the error-like coding was prolonged by around 60–100%. Finally, the combination of stimulus and error leads to a suboptimal free energy in a recent predictive coding model. We therefore suggest a straightforward modification that can be applied to the free energy model and other predictive coding models. Combining stimulus and error might be advantageous because the stimulus code enables a direct stimulus recognition that is free of assumptions whereas the error code enables an experience dependent inference of ambiguous and non-salient stimuli.
机译:尽管视觉皮层是研究最多的大脑区域之一,但该区域的神经元代码仍未完全了解。在文献中,通常假设两个代码,即刺激代码和预测(错误)代码。在这里,我们检查了这两个代码是否以及如何在神经元中共存。为此,我们假定神经元可以预测时间或空间上的恒定刺激,因为这是最基本的预测类型。使用电生理学和电压敏感染料成像技术,在麻醉猫的区域18中及时发现预测,并使用计算机模型在空间中预测预测。通过记录单元的方向调整来区分激励和错误代码。构造刺激,使得对非优选取向的最大响应指示误差信号,而对优选取向的最大响应指示刺激信号。我们证明了单个神经元结合了刺激和类似错误的编码。此外,我们观察到错误编码的持续时间随刺激对比度的变化而变化。对于低对比度,类似错误的编码可延长约60–100%。最后,刺激和错误的组合导致最近的预测编码模型中的次优自由能。因此,我们建议一种简单的修改方法,可以将其应用于自由能模型和其他预测编码模型。刺激和错误相结合可能是有利的,因为刺激代码实现了无需假设的直接刺激识别,而错误代码则实现了对模棱两可和非突出刺激的依赖于经验的推断。

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