MEMS/MST Department, Ikerlan S. Coop., Mondragon, Spain.
Biosens Bioelectron. 2012 Aug-Sep;37(1):1-5. doi: 10.1016/j.bios.2012.03.039. Epub 2012 Apr 7.
Here, we describe new fabrication methods aimed to integrate planar tetrode-like electrodes into a polymer SU-8 based microprobe for neuronal recording applications. New concepts on the fabrication sequences are introduced in order to eliminate the typical electrode-tissue gap associated to the passivation layer. Optimization of the photolithography technique and high step coverage of the sputtering process have been critical steps in this new fabrication process. Impedance characterization confirmed the viability of the electrodes for reliable neuronal recordings with values comparable to commercial probes. Furthermore, a homogeneous sensing behavior was obtained in all the electrodes of each probe. Finally, in vivo action potential and local field potential recordings were successfully obtained from the rat dorsal hippocampus. Peak-to-peak amplitude of action potentials ranged from noise level to up to 400-500 μV. Moreover, action potentials of different amplitudes and shapes were recorded from all the four recording sites, suggesting improved capability of the tetrode to distinguish from different neuronal sources.
在这里,我们描述了新的制造方法,旨在将平面四极管样电极集成到聚合物 SU-8 基微探针中,用于神经元记录应用。为了消除与钝化层相关的典型电极-组织间隙,引入了新的制造顺序概念。光刻技术的优化和溅射工艺的高台阶覆盖是这项新制造工艺的关键步骤。阻抗特性分析证实了这些电极用于可靠的神经元记录的可行性,其值与商业探针相当。此外,在每个探针的所有电极中都获得了均匀的传感行为。最后,成功地从大鼠背侧海马体获得了体内动作电位和局部场电位记录。动作电位的峰峰值幅度从噪声水平到高达 400-500μV 不等。此外,从所有四个记录部位记录到了不同幅度和形状的动作电位,表明四极管能够更好地区分不同的神经元源。