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A neural network model of the inferior colliculus with modifiable lateral inhibitory synapses for human echolocation

机译:具有可修改的侧向抑制突触的人类回声定位的下丘神经网络模型

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摘要

We propose a neural network model of the inferior colliculus (IC) for human echolocation. Neuronal mechanisms for human echolocation were investigated by simulating the model. The model consists of the neural networks of the central nucleus (ICc) and external nucleus (ICx) of the inferior colliculus. The neurons of the ICc receive interaural sound stimuli via multiple contralateral delay lines and a single ipsilateral delay line. The neurons of the ICc send output signals to the neurons of the ICx in a convergent manner. We stimulated the ICc with pairs of a direct sound (a sonar sound) and an echo sound (the reflection from an object). Information about the distance between the model and the object is expressed by the delay time of the echo sound with respect to the direct sound. The results presented here show that neurons of the ICc responsive to interaural onset time differences contribute to the creation of an auditory distance map in the ICx. We trained the model with various pairs of direct-echo sounds and modified synaptic connection strengths of the networks according to the Hebbian rule. It is shown that self-organized long-term depression of lateral inhibitory synaptic connections plays an important role in enhancing echolocation skills. [References: 42]
机译:我们提出了人类回声定位的下丘脑(IC)的神经网络模型。通过模拟模型研究了人类回声定位的神经元机制。该模型由下丘的中枢神经核(ICc)和外枢神经核(ICx)组成。 ICc的神经元通过多条对侧延迟线和一条同侧延迟线接收耳间声音刺激。 ICc的神经元以收敛的方式将输出信号发送到ICx的神经元。我们用一对直接声音(声纳声音)和回声(物体反射)刺激了ICc。关于模型与物体之间的距离的信息由回声相对于直接声的延迟时间表示。此处显示的结果表明,ICc的神经元对耳间发作时间的差异有反应,这有助于在ICx中创建听觉距离图。我们根据Hebbian规则使用各种直接回声对和改进的网络突触连接强度训练了模型。结果表明,侧向抑制性突触连接的自组织长期抑制在增强回声定位技能中起重要作用。 [参考:42]

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