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Invisible noise obscures visible signal in insect motion detection

机译:昆虫运动检测中的隐形噪声遮挡了可见信号

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摘要

The motion energy model is the standard account of motion detection in animals from beetles to humans. Despite this common basis, we show here that a difference in the early stages of visual processing between mammals and insects leads this model to make radically different behavioural predictions. In insects, early filtering is spatially lowpass, which makes the surprising prediction that motion detection can be impaired by “invisible” noise, i.e. noise at a spatial frequency that elicits no response when presented on its own as a signal. We confirm this prediction using the optomotor response of praying mantis Sphodromantis lineola. This does not occur in mammals, where spatially bandpass early filtering means that linear systems techniques, such as deriving channel sensitivity from masking functions, remain approximately valid. Counter-intuitive effects such as masking by invisible noise may occur in neural circuits wherever a nonlinearity is followed by a difference operation.
机译:运动能量模型是从甲虫到人类的动物运动检测的标准方法。尽管有这个共同的基础,我们在这里表明哺乳动物和昆虫在视觉处理的早期阶段的差异导致该模型做出根本不同的行为预测。在昆虫中,早期过滤在空间上是低通的,这令人惊讶地预测到运动检测会受到“不可见”噪声(即以信号形式单独呈现时不引起响应的空间频率噪声)的损害。我们使用螳螂鳞茎线虫的光动反应来确认这一预测。这在哺乳动物中不会发生,在哺乳动物中,空间带通早期过滤意味着线性系统技术(例如从掩盖函数中得出信道灵敏度)仍然大致有效。在非线性电路之后进行差分运算的神经电路中,可能会出现反直观效果,例如被不可见噪声掩盖。

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