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Dynamic properties of the action potential encoder in an insect mechanosensory neuron.

机译:昆虫机械感觉神经元中动作电位编码器的动态特性。

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摘要

A variety of sensory receptors show adaptation to dynamic stimuli that can be well characterized as fractional differentiation of the input signal. The cause of this behavior is unknown, but because it can be represented by linear systems theory, it has been assumed to arise during early linear processes of transduction or adaptation, rather than during the nonlinear process of action potential encoding. I measured the action potential encoding properties of an insect mechanoreceptor by direct electrical stimulation of the sensory cell axon and found a dynamic response that is identical to the response given by mechanical stimulation. This indicates that the fractional differentiation is a property of the encoder rather than the transducer.
机译:多种感觉受体表现出对动态刺激的适应性,可以很好地表征为输入信号的分数微分。此行为的原因尚不清楚,但由于可以用线性系统理论来表示,因此已假定它是在早期的线性转导或适应线性过程中发生的,而不是在动作电位编码的非线性过程中发生的。我通过对感觉细胞轴突的直接电刺激来测量昆虫机械感受器的动作电位编码特性,并发现了与机械刺激所给予的响应相同的动态响应。这表明分数微分是编码器而不是传感器的属性。

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