Obien Marie Engelene J, Hierlemann Andreas, Frey Urs
Annu Int Conf IEEE Eng Med Biol Soc. 2015 Aug;2015:881-4. doi: 10.1109/EMBC.2015.7318503.
High-density microelectrode arrays (HDMEAs) provide the capability to monitor the extracellular electric potential of multiple neurons at subcellular resolution over extended periods of time. In contrast, patch clamp allows for intracellular, sub-threshold recordings from a single patched neuron for very limited time on the order of an hour. Therefore, it will be beneficial to combine HDMEA and patch clamp for simultaneous intra- and extracellular recording of neuronal activity. Previously, it has been shown that the HDMEA can be used to localize and steer a glass micropipette towards a target location without using an optical microscope [1]. Here, we present an automated system, implemented in LabVIEW, which automatically locates and moves the glass micropipette towards a user-defined target. The presented system constitutes a first step towards developing an automated system to navigate a pipette to patch a neuron in vitro.
高密度微电极阵列(HDMEAs)能够在较长时间内以亚细胞分辨率监测多个神经元的细胞外电势。相比之下,膜片钳技术只能在大约一小时的非常有限的时间内对单个膜片钳制的神经元进行细胞内、阈下记录。因此,将高密度微电极阵列和膜片钳技术结合起来同时进行细胞内和细胞外神经元活动记录将是有益的。此前已经表明,高密度微电极阵列可用于在不使用光学显微镜的情况下将玻璃微吸管定位并引导至目标位置[1]。在此,我们展示了一个在LabVIEW中实现的自动化系统,该系统可自动将玻璃微吸管定位并移向用户定义的目标。所展示的系统是开发一个自动化系统以引导移液器在体外对神经元进行膜片钳制的第一步。