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Estimation of the Information Pathway in an Insect Brain based on the Physiological Data: How the Motor Command is Generated in a Brain of Moth for the Pheromone Orientation

机译:基于生理数据估算昆虫脑中信息途径的估算:如何在蛾的蛾类中产生电机命令为信息素定位

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Male silkmoth is known for its programmed behavior for the pheromone orientation on the pheromone source detection. Estimation of the functional connection is done based on the possible anatomical connections and physiological response of each neuron. The action command is generated in the premotor center, composed of the lateral accessory lobe (LAL) and the ventral protocerebrum (VPC). The morphology and the physiological response to the pheromone stimulus are obtained for each main type of LAL-VPC neuron through the intensive electro-physiological and immunohisto-chemical experiments. However, how the motor command is generated in LAL-VPC, or the information pathway in the network, is still unknown. Therefore, we investigate the functional connection in LAL-VPC to elucidate the mechanism of the motor command generation based on the detailed experimental data on each neuron. The main pathway is extracted from the obtained connection, from the connection strength and from the dynamics of LAL-VPC network simulation.
机译:雄性丝质炉以其合法源检测对信息素取向的编程行为而闻名。基于每个神经元的可能的解剖连接和生理反应来完成功能连接的估计。动作命令是在主体中心生成的,由横向配件凸角(LAL)和腹侧保护(VPC)组成。通过强化电生理和免疫组化学实验,为每种主要类型的LAL-VPC神经元获得信息素刺激的形态和生理反应。但是,如何在LAL-VPC中生成电机命令,或网络中的信息路径,仍然未知。因此,我们研究了LAL-VPC中的功能连接,以基于每个神经元的详细实验数据来阐明电动机命令生成的机制。主路线从所获得的连接中提取,从连接强度和LAL-VPC网络仿真的动态提取。

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