Bendels Michael H K, Beed Prateep, Leibold Christian, Schmitz Dietmar, Johenning Friedrich W
NeuroScience Research Center, Charité, Universitätsmedizin Berlin, Berlin, Germany.
J Neurosci Methods. 2008 Oct 30;175(1):44-57. doi: 10.1016/j.jneumeth.2008.08.010. Epub 2008 Aug 15.
Optical uncaging of caged compounds is a well-established method to study the functional anatomy of a brain region on the circuit level. We present an alternative approach to existing experimental setups. Using a low-magnification objective we acquire images for planning the spatial patterns of stimulation. Then high-magnification objectives are used during laser stimulation providing a laser spot between 2 microm and 20 microm size. The core of this system is a video-based control software that monitors and controls the connected devices, allows for planning of the experiment, coordinates the stimulation process and manages automatic data storage. This combines a high-resolution analysis of neuronal circuits with flexible and efficient online planning and execution of a grid of spatial stimulation patterns on a larger scale. The software offers special optical features that enable the system to achieve a maximum degree of spatial reliability. The hardware is mainly built upon standard laboratory devices and thus ideally suited to cost-effectively complement existing electrophysiological setups with a minimal amount of additional equipment. Finally, we demonstrate the performance of the system by mapping the excitatory and inhibitory connections of entorhinal cortex layer II stellate neurons and present an approach for the analysis of photo-induced synaptic responses in high spontaneous activity.
笼锁化合物的光解笼技术是一种在回路水平上研究脑区功能解剖学的成熟方法。我们提出了一种与现有实验装置不同的方法。使用低倍物镜获取图像以规划刺激的空间模式。然后在激光刺激期间使用高倍物镜,提供大小在2微米至20微米之间的激光光斑。该系统的核心是一个基于视频的控制软件,它可以监控和控制连接的设备,允许规划实验,协调刺激过程并管理自动数据存储。这将神经元回路的高分辨率分析与灵活高效的在线规划以及在更大规模上执行空间刺激模式网格相结合。该软件提供特殊的光学功能,使系统能够实现最大程度的空间可靠性。硬件主要基于标准实验室设备构建,因此非常适合以最少的额外设备成本效益高地补充现有的电生理装置。最后,我们通过绘制内嗅皮层II层星状神经元的兴奋性和抑制性连接来展示该系统的性能,并提出一种在高自发活动中分析光诱导突触反应的方法。