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Development of a Neural Network Model for Controlling Horizontal Saccadic Eye Movements

机译:用于控制水平眼跳运动的神经网络模型的开发

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We present a neural network that mimics the timing, firing rate and synchrony of the neuronal populations involved in the execution of horizontal saccades. While each involved neuron encompasses dendritic, axonal and synaptic components, the control mechanism of the saccades is also investigated in our study. The proposed saccade generator captures in essence the neural dynamics of the Hodgkin-Huxley model and a time-varying FitzHugh-Nagumo model. It evolves so that a burst discharge (pulse) from the agonist motoneurons and a pause in firing from antagonist motoneurons serve as the neural inputs to the agonist and antagonist muscles. The importance of simulating horizontal saccades is that it provides a framework for early diagnosis and treatment of injuries sustained during the mild traumatic brain injury.
机译:我们提出了一个神经网络,该神经网络模仿了水平扫视的执行过程中涉及的神经元群体的时机,放电率和同步性。虽然每个涉及的神经元都包含树突状,轴突和突触成分,但在我们的研究中还研究了扫视的控制机制。提出的扫视发生器本质上捕获了Hodgkin-Huxley模型和时变的FitzHugh-Nagumo模型的神经动力学。它的发展使得激动剂运动神经元的爆发放电(脉冲)和拮抗运动神经元的发射停顿充当了激动剂和拮抗肌的神经输入。模拟水平扫视的重要性在于,它为早期诊断和治疗轻度颅脑损伤期间遭受的损伤提供了框架。

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