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External Excitation of Neurons Using Electric and Magnetic Fields in One- and Two-dimensional Cultures

机译:一维和二维文化中使用电场和磁场对神经元的外部激励

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摘要

A neuron will fire an action potential when its membrane potential exceeds a certain threshold. In typical activity of the brain, this occurs as a result of chemical inputs to its synapses. However, neurons can also be excited by an imposed electric field. In particular, recent clinical applications activate neurons by creating an electric field externally. It is therefore of interest to investigate how the neuron responds to the external field and what causes the action potential. Fortunately, precise and controlled application of an external electric field is possible for embryonic neuronal cells that are excised, dissociated and grown in cultures. This allows the investigation of these questions in a highly reproducible system.In this paper some of the techniques used for controlled application of external electric field on neuronal cultures are reviewed. The networks can be either one dimensional, i.e. patterned in linear forms or allowed to grow on the whole plane of the substrate, and thus two dimensional. Furthermore, the excitation can be created by the direct application of electric field via electrodes immersed in the fluid (bath electrodes) or by inducing the electric field using the remote creation of magnetic pulses.
机译:当神经元的膜电位超过一定阈值时,它将激发动作电位。在大脑的典型活动中,这是由于其突触的化学输入而发生的。但是,神经元也可以通过施加的电场来激发。特别地,最近的临床应用通过在外部产生电场来激活神经元。因此,研究神经元对外部场的反应以及引起动作电位的原因很有意义。幸运的是,对于在培养物中被切除,解离和生长的胚胎神经元细胞,可以精确而受控地施加外部电场。这允许在高度可重现的系统中研究这些问题。在本文中,对一些用于在神经元培养物中控制施加外部电场的技术进行了综述。网络可以是一维的,即以线性形式构图,或者可以在衬底的整个平面上生长,因此可以是二维的。此外,可以通过经由浸没在流体中的电极(浴电极)直接施加电场或通过使用远程产生的磁脉冲感应电场来产生激励。

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