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Electrophysiological Detection of Cortical Neurons under Gamma-Aminobutyric Acid and Glutamate Modulation Based on Implantable Microelectrode Array Combined with Microinjection*

机译:植入式微电极阵列结合显微注射技术在γ-氨基丁酸和谷氨酸调节下对皮质神经元的电生理检测*

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Understanding the relationships between different cortical neurons under excitatory or inhibitory modulation is important for researches of many neurological disorders. In order to monitor the neural activities in cortex under gamma-aminobutyric acid (GABA) and glutamate (Glu) modulation, an implantable microelectrode array (MEA) was combined with microinjection capillary. The neurons in motor cortex of rat were modulated by GABA and Glu injection, and multichannel neural electrophysiological signals were simultaneously recorded. Spike analysis showed that the interneurons recorded by the MEA were inhibited after GABA injection and excited after Glu injection, but one pyramidal neuron was found to be not sensitive to the drug. The local field potentials (LFP) were most affected in the frequency band of 5~10 Hz after Glu injection, which greatly increased the amplitudes of the spindle-like waveforms. The MEA combined with microinjection provided a low-cost and effective tool for neurological drug modulation and evaluation in brain tissue.
机译:理解在兴奋性或抑制性调制下不同皮层神经元之间的关系对于许多神经系统疾病的研究很重要。为了监测在γ-氨基丁酸(GABA)和谷氨酸(Glu)调节下皮层中的神经活动,将可植入微电极阵列(MEA)与微注射毛细管相结合。通过GABA和Glu注射调节大鼠运动皮层神经元,同时记录多通道神经电生理信号。峰值分析表明,MEA记录的中间神经元在GABA注射后被抑制,而在Glu注射后被激发,但是发现一个锥体神经元对该药物不敏感。 Glu注入后5〜10 Hz的频带中,局部场电势(LFP)受到的影响最大,这极大地增加了纺锤状波形的幅度。 MEA与显微注射相结合为脑组织中神经药物的调制和评估提供了一种低成本且有效的工具。

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