Department of Bioengineering, University of Washington, Seattle, Washington 98195, USA.
Lab Chip. 2013 Feb 21;13(4):527-35. doi: 10.1039/c2lc40826k.
In order to understand information processing in neural circuits, it is necessary to detect both electrical and chemical signaling with high spatial and temporal resolution. Although the primary currency of neural information processing is electrical, many of the downstream effects of the electrical signals on the circuits that generate them are dependent on activity-dependent increases in intracellular calcium concentration. It is therefore of great utility to be able to record electrical signals in neural circuits at multiple sites, while at the same time detecting optical signals from reporters of intracellular calcium levels. We describe here a microfluidic multi-electrode array (MMEA) capable of high-resolution extracellular recording from brain slices that is optically compatible with calcium imaging at single cell resolution. We show the application of the MMEA device to record waves of spontaneous activity in developing cortical slices and to perform multi-site extracellular recordings during simultaneous calcium imaging of activity. The MMEA has the unique capability to simultaneously allow focal electrical and chemical stimuli at different locations of the surface of a brain slice.
为了理解神经回路中的信息处理,有必要以高时空分辨率同时检测电信号和化学信号。尽管神经信息处理的主要货币是电,但电信号对产生电信号的回路的许多下游影响都依赖于细胞内钙浓度的活性依赖性增加。因此,能够在多个部位同时记录神经回路中的电信号,同时检测细胞内钙水平的光学信号是非常有用的。我们在这里描述了一种微流控多电极阵列 (MMEA),它能够从脑片进行高分辨率的细胞外记录,并且与单细胞分辨率的钙成像光学兼容。我们展示了 MMEA 设备在记录发育中的皮质片层中自发活动波以及在同时进行钙成像的情况下进行多部位细胞外记录中的应用。MMEA 具有独特的能力,可以同时在脑片表面的不同位置进行聚焦电刺激和化学刺激。