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Robust speech recognition with dynamic synapses

机译:具有动态突触的强大语音识别

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We have developed a speech recognition system employing the concept of dynamic synapses. A dynamic synapse incorporates fundamental features of biological neurons including presynaptic mechanisms influencing the probability of neurotransmitter release from an axon terminal. With these mechanisms, the probability of neurotransmitter release becomes a function of the temporal pattern of action potential occurrence, and hence, transforming a spike train into a sequence of discrete release events. When presynaptic mechanisms vary quantitatively across the axon terminals of a single neuron, an array of spatially distributed temporal patterns can be generated. In other words, information is coded in the spatio-temporal patterns of release events which provides an exponential growth of coding capacity for the output signals of a single neuron. A dynamic learning algorithm is developed in which alterations of the presynaptic mechanisms lead to different pattern transformation functions while changes in the postsynaptic mechanisms determines how the synaptic signals are to be combined. We demonstrate the computational capability of dynamic synapses by performing speech recognition from unprocessed, noisy raw waveforms of words spoken by multiple speakers with a simple neural network consisting of a small number of neurons connected with dynamic synapses. The system is highly robust against noise, and outperformed human listeners under some conditions.
机译:我们已经开发出一种采用动态突触概念的语音识别系统。动态突触结合了生物神经元的基本特征,包括影响神经递质从轴突末端释放的可能性的突触前机制。通过这些机制,神经递质释放的可能性成为动作电位发生的时间模式的函数,因此,将尖峰序列转换为一系列离散的释放事件。当突触前机制在单个神经元的轴突末端之间发生定量变化时,可以生成一系列空间分布的时间模式。换句话说,信息以释放事件的时空模式进行编码,这为单个神经元的输出信号提供了编码能力的指数增长。开发了一种动态学习算法,其中突触前机制的改变导致不同的模式转换功能,而突触后机制的变化决定了如何组合突触信号。我们通过从一个简单的神经网络(由少量与动态突触相连的神经元组成的神经网络)执行未经说话的,嘈杂的原始语音波形(由多个说话者说话)中识别出语音,从而证明了动态突触的计算能力。该系统具有极强的抗噪能力,在某些情况下性能优于人类听众。

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