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Contacting biological cells with electronic circuits

机译:使生物细胞与电子电路接触

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Information processing in real biological neuronal networks differs in many aspects from information processing in electronic circuits. Though information is represented in both systems by electrical signals, charge carriers on the biological side are ions while electrons transmit electrical current in the silicon-based microelectronic world. In order to bridge this fundamental gap, several methods has been used during the last decades that provide electrical access to neuronal tissue. This talk first discuss the properties of the most prominent methods such as long-term stability, temporal and spatial resolution as well as the number of contacts. Technical limitations of these techniques still prevent deeper insight into biological neuronal networks. It is explained how typical properties of CMOS fabrication like surface planarity or large scale integration can improve common contact techniques. Presenting the most recent chip development in this field, it is demonstrated how CMOS chips can be used as a substrate for neuronal cell cultures while sensing the electrical activity in a non-invasive mode. CMOS processing allows electronic circuits to be integrated under the sensor surface. These active sensor pixels are the basis for dense, large sensor arrays which allow electrical imaging of complex neural networks with sub-cellular resolution. The emerging applications of these sensor devices deliver insight into biological information processing thus providing a basis for future man-machine interfaces like implants or prostheses. Summary form only given.
机译:实际生物神经网络中的信息处理在电子电路中的信息处理中的许多方面不同。尽管信息通过电信号在两个系统中表示,但是生物侧的电荷载波是离子,而电子在基于硅基微电子世界中传输电流。为了弥合这一根本的差距,在过去几十年中已经使用了几种方法,该方法提供对神经元组织的电气接触。这次谈判首先讨论最突出的方法的性质,如长期稳定性,时间和空间分辨率以及触点的数量。这些技术的技术限制仍然防止深入了解生物神经元网络。据解释了CMOS制造的典型特性,如表面平面度或大规模集成可以改善常见的接触技术。呈现该领域中最近的芯片开发,证明了CMOS芯片如何用作神经元细胞培养物的基板,同时在非侵入模式中感测电活动。 CMOS处理允许在传感器表面下集成电子电路。这些有源传感器像素是致密的大传感器阵列的基础,其允许具有子蜂窝分辨率的复杂神经网络的电成像。这些传感器设备的新兴应用能够进入生物信息处理的洞察,从而为未来的人机界面提供植入物或假体的基础。摘要表格仅给出。

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