Sheinin Anton, Lavi Ayal, Michaelevski Izhak
Department of Biochemistry and Molecular Biology, The George S. Wise Faculty of Life Sciences, Tel-Aviv University, Ramat Aviv 69978, Israel; Sagol School of Neuroscience, Tel-Aviv University, Ramat Aviv 69978, Israel.
Department of Neurobiology, The George S. Wise Faculty of Life Sciences, Tel-Aviv University, Ramat Aviv 69978, Israel; Sagol School of Neuroscience, Tel-Aviv University, Ramat Aviv 69978, Israel.
J Neurosci Methods. 2015 Mar 30;243:8-17. doi: 10.1016/j.jneumeth.2015.01.016. Epub 2015 Jan 22.
Electrical stimulus isolator is a widely used device in electrophysiology. The timing of the stimulus application is usually automated and controlled by the external device or acquisition software; however, the intensity of the stimulus is adjusted manually. Inaccuracy, lack of reproducibility and no automation of the experimental protocol are disadvantages of the manual adjustment. To overcome these shortcomings, we developed StimDuino, an inexpensive Arduino-controlled stimulus isolator allowing highly accurate, reproducible automated setting of the stimulation current.
The intensity of the stimulation current delivered by StimDuino is controlled by Arduino, an open-source microcontroller development platform. The automatic stimulation patterns are software-controlled and the parameters are set from Matlab-coded simple, intuitive and user-friendly graphical user interface. The software also allows remote control of the device over the network.
Electrical current measurements showed that StimDuino produces the requested current output with high accuracy. In both hippocampal slice and in vivo recordings, the fEPSP measurements obtained with StimDuino and the commercial stimulus isolators showed high correlation.
Commercial stimulus isolators are manually managed, while StimDuino generates automatic stimulation patterns with increasing current intensity. The pattern is utilized for the input-output relationship analysis, necessary for assessment of excitability. In contrast to StimuDuino, not all commercial devices are capable for remote control of the parameters and stimulation process.
StimDuino-generated automation of the input-output relationship assessment eliminates need for the current intensity manually adjusting, improves stimulation reproducibility, accuracy and allows on-site and remote control of the stimulation parameters.
电刺激隔离器是电生理学中广泛使用的设备。刺激施加的时间通常是自动化的,并由外部设备或采集软件控制;然而,刺激强度是手动调节的。手动调节存在不准确、缺乏可重复性以及实验方案无自动化等缺点。为克服这些缺点,我们开发了StimDuino,这是一种由Arduino控制的廉价刺激隔离器,可实现刺激电流的高精度、可重复自动设置。
StimDuino输出的刺激电流强度由开源微控制器开发平台Arduino控制。自动刺激模式由软件控制,参数通过Matlab编码的简单、直观且用户友好的图形用户界面设置。该软件还允许通过网络对设备进行远程控制。
电流测量表明,StimDuino能高精度地产生所需的电流输出。在海马切片和体内记录中,使用StimDuino和商用刺激隔离器获得的场兴奋性突触后电位(fEPSP)测量结果显示出高度相关性。
商用刺激隔离器是手动操作的,而StimDuino会生成电流强度递增的自动刺激模式。该模式用于输入 - 输出关系分析,这对于评估兴奋性是必要的。与StimDuino不同,并非所有商用设备都能够远程控制参数和刺激过程。
StimDuino实现的输入 - 输出关系评估自动化消除了手动调节电流强度的需求,提高了刺激的可重复性和准确性,并允许对刺激参数进行现场和远程控制。