Donders Institute for Brain, Cognition and Behaviour, Radboud University, Nijmegen, The Netherlands.
ATLAS Neuroengineering, Leuven, Belgium.
J Neural Eng. 2022 Jun 6;19(3). doi: 10.1088/1741-2552/ac6771.
. Understanding the function of brain cortices requires simultaneous investigation at multiple spatial and temporal scales and to link neural activity to an animal's behavior. A major challenge is to measure within- and across-layer information in actively behaving animals, in particular in mice that have become a major species in neuroscience due to an extensive genetic toolkit. Here we describe the Hybrid Drive, a new chronic implant for mice that combines tetrode arrays to record within-layer information with silicon probes to simultaneously measure across-layer information.. The design of our device combines up to 14 tetrodes and 2 silicon probes, that can be arranged in custom arrays to generate unique areas-specific (and multi-area) layouts.. We show that large numbers of neurons and layer-resolved local field potentials can be recorded from the same brain region across weeks without loss in electrophysiological signal quality. The drive's lightweight structure (≈3.5 g) leaves animal behavior largely unchanged, compared to other tetrode drives, during a variety of experimental paradigms. We demonstrate how the data collected with the Hybrid Drive allow state-of-the-art analysis in a series of experiments linking the spiking activity of CA1 pyramidal layer neurons to the oscillatory activity across hippocampal layers.. Our new device fits a gap in the existing technology and increases the range and precision of questions that can be addressed about neural computations in freely behaving mice.
. 理解大脑皮层的功能需要在多个时空尺度上进行同步研究,并将神经活动与动物的行为联系起来。一个主要的挑战是在活跃的动物中测量层内和层间的信息,特别是在由于广泛的遗传工具包而成为神经科学主要物种的小鼠中。在这里,我们描述了一种新型的慢性植入物 Hybrid Drive,它将用于记录层内信息的 tetrode 阵列与用于同时测量层间信息的硅探针相结合。. 我们设备的设计结合了多达 14 个 tetrodes 和 2 个硅探针,可以以定制的方式排列,以生成独特的区域特定(和多区域)布局。. 我们表明,大量的神经元和分层分辨的局部场电位可以在数周内从同一脑区记录下来,而不会损失电生理信号质量。与其他 tetrode 驱动器相比,驱动器的轻质结构(≈3.5 g)在各种实验范式中对动物行为的影响很小。我们展示了如何使用 Hybrid Drive 收集的数据在一系列实验中进行最先进的分析,这些实验将 CA1 锥体神经元的尖峰活动与海马层之间的振荡活动联系起来。. 我们的新设备填补了现有技术的空白,并增加了可以解决自由行为小鼠中神经计算问题的范围和精度。