Senkov Oleg, Mironov Andrey, Dityatev Alexander
Molecular Neuroplasticity Group, Deutsches Zentrum für Neurodegenerative Erkrankungen Magdeburg, Germany.
Neurotechnologies Department, Institute of Biology and Biomedicine, Lobachevsky State University of Nizhny Novgorod Nizhny Novgorod, Russia ; Nizhny Novgorod State Medical Academy Nizhny Novgorod, Russia.
Front Neurosci. 2015 Nov 5;9:425. doi: 10.3389/fnins.2015.00425. eCollection 2015.
To characterize information transfer in defined brain circuits involving multiple brain regions and to evaluate underlying molecular mechanisms and their dysregulation in major brain diseases, a simple and reliable system is ultimately required for electrophysiological recording of local field potentials (LFPs, or local EEG) in combination with local delivery of drugs, enzymes and gene expression-controlling viruses near the place of recording. Here we provide a new design of a versatile reusable hybrid infusion-recording (HIME) system which can be utilized in freely moving mice performing cognitive tasks. The HIME system allows monitoring neuronal activity in multiple layers in several brain structures. Here, we provide examples of bilateral injection and recordings of full spectrum of learning and memory related oscillations, i.e., theta (4-12 Hz), gamma (40-100) and ripple activity (130-150 Hz), in five hippocampal layers as well as in the CA1 and CA2 regions. Furthermore, the system is designed to be used for parallel recordings in the amygdala, cortex and other brain areas, before and after infusion of reagents of interest, either in or off a cognitive test. We anticipate that the HIME system can be particularly convenient to advance functional neuroglycobiological studies and molecular deciphering of mechanisms governing long-term memory consolidation.
为了表征涉及多个脑区的特定脑回路中的信息传递,并评估主要脑部疾病中潜在的分子机制及其失调情况,最终需要一个简单可靠的系统,用于在记录位置附近结合局部给药、酶和基因表达控制病毒进行局部场电位(LFP,即局部脑电图)的电生理记录。在这里,我们提供了一种新型的通用可重复使用的混合灌注-记录(HIME)系统设计,该系统可用于执行认知任务的自由活动小鼠。HIME系统允许监测多个脑结构中多层的神经元活动。在这里,我们提供了双侧注射以及记录五个海马层以及CA1和CA2区域中与学习和记忆相关的全频谱振荡(即theta(4-12Hz)、gamma(40-100)和涟漪活动(130-150Hz))的示例。此外,该系统设计用于在注入感兴趣的试剂之前和之后,在认知测试期间或之外,对杏仁核、皮层和其他脑区进行并行记录。我们预计HIME系统对于推进功能性神经糖生物学研究以及对长期记忆巩固机制的分子解读可能特别方便。