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Electrical activation of nervous system by sonar-based electronic interface

机译:通过基于声纳的电子接口对神经系统进行电激活

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In this paper we investigated neural activation by means of electrical impulses delivered along the auditory pathway in rats. The pulsed electrical signals, generated by a bio-inspired sonar system and processed by an electronic interface, were used to stimulate the amygdala, the inferior colliculus and the auditory cortex. We modulated the neural activity through different signal patterns related to ultrasound echoes and then performed Principal Component Analysis in order to classify the ECoG response to stimuli. The statistical analysis revealed the existence of a significant difference among responses and background signals. In addition, Fourier Transform of ECoG traces evidenced an increase in beta content in the amygdala while it was found that gamma waves prevail in the inferior colliculus and the auditory cortex, the latter highlighting the ultrasound nature of the electrical stimuli.
机译:在本文中,我们通过沿大鼠听觉途径传递的电脉冲研究了神经激活。由生物启发式声纳系统生成并由电子接口处理的脉冲电信号用于刺激杏仁核,下丘和听觉皮层。我们通过与超声回波相关的不同信号模式来调节神经活动,然后进行主成分分析以对刺激的ECoG反应进行分类。统计分析表明,响应和背景信号之间存在显着差异。此外,ECoG痕迹的傅立叶变换表明杏仁核中β含量增加,而下丘脑和听觉皮层中普遍存在伽马波,后者突出了电刺激的超声性质。

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