IEEE Trans Neural Syst Rehabil Eng. 2014 May;22(3):453-9. doi: 10.1109/TNSRE.2013.2289911. Epub 2013 Nov 13.
When extracellular action potentials (spikes) from cultured neurons are recorded using microelectrode arrays in open wells, their amplitudes are usually quite small (often below the noise level) despite the extracellular currents originating from the relatively large surface area of neural cell somata. In this paper rat cortical neurons were seeded into one well of a two well system separated by 3 × 10 μm microtunnels and then seven days later into the second well forming a feed-forward network between two small neuronal assemblies. In contrast to measurements in the open well spikes recorded from axons within the restricted volumes imposed by the microtunnels are often several orders of magnitude larger than in the open well, with high signal to noise ratio, despite the currents originating in the much smaller surface area of the axon. Average signal amplitudes exceeding 250 μV are typical, with some signals as large as 4.5 mV (signal-to-noise ratio up to 450), 20 times greater than the maximum recorded from electrodes in adjacent but open wells. We confirm the dependence of signal amplitude on the impedance of the microtunnel and discuss possible reasons for the phenomenon.
当使用微电极阵列在开放井中记录培养神经元的细胞外动作电位(尖峰)时,尽管源自神经细胞体相对较大表面积的细胞外电流,但它们的幅度通常非常小(通常低于噪声水平)。在本文中,将大鼠皮质神经元接种到由 3×10 μm 微隧道隔开的双井系统的一个井中,然后在七天后接种到第二个井中,在两个小神经元集合体之间形成前馈网络。与在开放井中的测量相比,在微隧道所限制的体积内记录的轴突中的尖峰通常比在开放井中高几个数量级,具有高信噪比,尽管电流源自轴突的小得多的表面积。平均信号幅度超过 250 μV 是典型的,有些信号高达 4.5 mV(信噪比高达 450),比从相邻但开放井中的电极记录的最大值大 20 倍。我们确认信号幅度与微隧道阻抗的依赖性,并讨论这种现象的可能原因。