Sagol Department of Neurobiology, Faculty of Natural Sciences, University of Haifa, Haifa, Israel.
Curr Protoc. 2022 May;2(5):e399. doi: 10.1002/cpz1.399.
Multi-site extracellular recordings from awake, freely moving rodents are an insightful technique that allows deduction of the dynamics of neural activity within a network of brain regions. Multiple advances in the design and materials of recording setups are available in the literature. However, most of these designs require several skill sets to assemble the electrodes and are expensive. Here, we explain in detail a custom design to build a multi-site (16 sites) electrode array (EA) and record extracellular electrical signals (local field potential and multi-unit spiking activity) at variable depths in freely behaving rodents. This EA weighs ∼3.0 g and costs less than $30. It provides mesoscopic neural activity maps (at millimeter scale) at low spatial resolution, thus enabling the experimenting group to further target specific regions with more expensive high-density probes at the resolution of an individual neuron. The article outlines the processes of building and implanting the array and recording neural activity during a behavior task. We also highlight the limitations of our design and the necessary steps to troubleshoot common issues faced during the initial implementation of the protocols. Finally, we explain the specific data one would obtain while using the probes during social interactions between rodents. © 2022 Wiley Periodicals LLC. Basic Protocol 1: Preparation of the electrode array Basic Protocol 2: Surgical implantation of the electrode array Basic Protocol 3: Recording of neural activity from the electrode array while a mouse performs social investigation of a novel conspecific Basic Protocol 4: Histology and electrode registration.
多部位清醒、自由活动啮齿动物的细胞外记录是一种很有见地的技术,可用于推断脑区网络中神经活动的动态。文献中提供了多种设计和记录设备材料的改进。然而,这些设计大多需要多种技能来组装电极,而且价格昂贵。在这里,我们详细介绍了一种定制设计,用于构建多部位(16 个部位)电极阵列(EA),并在自由活动的啮齿动物中以可变深度记录细胞外电信号(局部场电位和多单位尖峰活动)。该 EA 重约 3.0 g,成本低于 30 美元。它提供了中尺度的神经活动图谱(毫米级),空间分辨率较低,从而使实验组能够用更昂贵的高密度探头针对特定区域进行更精细的分辨率(单个神经元)的研究。本文概述了构建和植入阵列以及在行为任务期间记录神经活动的过程。我们还强调了我们设计的局限性以及在最初实施这些方案时解决常见问题所需的步骤。最后,我们解释了在使用探针进行啮齿动物社交互动时会获得的特定数据。© 2022 威立出版社。 基本方案 1:电极阵列的准备 基本方案 2:电极阵列的手术植入 基本方案 3:当老鼠对新的同种动物进行社会调查时,从电极阵列记录神经活动 基本方案 4:组织学和电极注册。