Department of Integrative Neuroscience, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan.
School of Medicine, University of Toyama, Toyama, Japan.
J Physiol Sci. 2024 May 21;74(1):30. doi: 10.1186/s12576-024-00923-6.
Experiments measuring evoked potentials require flexible and rapid adjustment of stimulation and recording parameters. In this study, we have developed a recording system and an associated Android application that allow making such adjustments wirelessly. The system consists of 3 units: for stimulation, recording and control. Most of the modules in this system are custom made, although the stimulator and tablet are off-the-shelf products. When installed on the tablet, our Android application allows wireless communication with the control unit from a distance of 5 m. In testing, the recording unit had low internal noise and displayed signals faithfully. Upon receiving commands from the control unit, the stimulation unit produced precisely timed pulse outputs. Using this system, we were able to record evoked field potentials in the dentate gyrus of a rat; responses increased as expected with increasing stimulation pulse amplitude and duration.
实验测量诱发电位需要灵活快速地调整刺激和记录参数。在这项研究中,我们开发了一种记录系统和一个相关的安卓应用程序,允许通过无线方式进行这些调整。该系统由 3 个单元组成:刺激、记录和控制。这个系统的大多数模块都是定制的,尽管刺激器和平板电脑是现成的产品。当安装在平板电脑上时,我们的安卓应用程序允许与控制单元进行无线通信,距离可达 5 米。在测试中,记录单元的内部噪声很低,能够忠实地显示信号。当收到控制单元的命令时,刺激单元会产生精确计时的脉冲输出。使用这个系统,我们能够记录大鼠齿状回中的诱发电位;随着刺激脉冲幅度和持续时间的增加,预期的反应也随之增加。