Haumesser Jens K, Kühn Johanna, Güttler Christopher, Nguyen Dieu-Huong, Beck Maximilian H, Kühn Andrea A, van Riesen Christoph
Department of Neurology, Movement Disorder and Neuromodulation Unit Berlin, Charité University Medicine Berlin.
Department of Neurology, Movement Disorder and Neuromodulation Unit Berlin, Charité University Medicine Berlin;
J Vis Exp. 2017 Jun 22(124):55940. doi: 10.3791/55940.
Converging evidence shows that many neuropsychiatric diseases should be understood as disorders of large-scale neuronal networks. To better understand the pathophysiological basis of these diseases, it is necessary to precisely characterize in which way the processing of information is disturbed between the different neuronal parts of the circuit. Using extracellular in vivo electrophysiological recordings, it is possible to accurately delineate neuronal activity within a neuronal network. The application of this method has several advantages over alternative techniques, e.g., functional magnetic resonance imaging and calcium imaging, as it allows a unique temporal and spatial resolution and does not rely on genetically engineered organisms. However, the use of extracellular in vivo recordings is limited since it is an invasive technique that cannot be universally applied. In this article, a simple and easy to use method is presented with which it is possible to simultaneously record extracellular potentials such as local field potentials and multiunit activity at multiple sites of a network. It is detailed how a precise targeting of subcortical nuclei can be achieved using a combination of stereotactic surgery and online analysis of multi-unit recordings. Thus, it is demonstrated, how a complete network such as the hyperdirect cortico-basal ganglia loop can be studied in anesthetized animals in vivo.
越来越多的证据表明,许多神经精神疾病应被理解为大规模神经元网络的紊乱。为了更好地理解这些疾病的病理生理基础,有必要精确描述在回路的不同神经元部分之间信息处理是如何受到干扰的。使用细胞外体内电生理记录,可以准确描绘神经元网络内的神经元活动。与其他技术(如功能磁共振成像和钙成像)相比,这种方法的应用具有几个优点,因为它具有独特的时间和空间分辨率,并且不依赖于基因工程生物。然而,细胞外体内记录的使用受到限制,因为它是一种侵入性技术,不能普遍应用。在本文中,提出了一种简单易用的方法,利用该方法可以在网络的多个位点同时记录细胞外电位,如局部场电位和多单位活动。详细介绍了如何结合立体定向手术和多单位记录的在线分析来实现对皮质下核的精确靶向。因此,展示了如何在麻醉动物体内研究完整的网络,如超直接皮质 - 基底神经节环路。