基于US传感器的接口激活自下而上和自上而下的听觉通路

D. Menniti, M. G. Bianco, S. Pullano, R. Citraro, E. Russo, G. Sarro, A. Fiorillo
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引用次数: 0

摘要

本文研究了电刺激下大鼠自下而上和自上而下听觉通路的神经激活。电子信号由生物声纳产生,并由电子接口处理,被认为是模仿哺乳动物的生物声纳。我们通过与超声回波相关的不同信号模式刺激下丘和听觉皮层。为了研究神经对刺激的反应,我们对皮质电图记录进行了主成分分析和频谱分析。很明显,神经元调节其功能状态以响应外部刺激及其特征,强烈强调电输入是由上行和下行声纤维有效编码的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Activation of bottom-up and top-down auditory pathways by US sensors based interface
In this paper we investigate the neural activation of both bottom-up and top-down auditory pathways in rats by means of electrical stimulation. The electrical signals are generated by a bio-inspired sonar and processed by an electronic interface, thought to emulate the mammals biosonar. We stimulate the Inferior Colliculus and the Auditory Cortex through different signal patterns related to ultrasound echoes. In order to investigate neural response to stimuli, we perform Principal Component Analysis and spectral analysis on the electrocorticographic recordings. It is clear that neurons modulate their functional state in response to the external stimulus and its features, strongly highlighting that the electrical inputs are efficiently encoded by both ascending and descending acoustic fibers.
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