Ghomashchi A, Zheng Z, Majaj N, Trumpis M, Kiorpes L, Viventi J
Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:3138-41. doi: 10.1109/EMBC.2014.6944288.
Many experiments in neuroscience require or would benefit tremendously from a wireless neural recording system. However, commercially available wireless systems are expensive, have moderate to high noise and are often not customizable. Academic wireless systems present impressive capabilities, but are not available for other labs to use. To overcome these limitations, we have developed an ultra-low noise 8 channel wireless electrophysiological data acquisition system using standard, commercially available components. The system is capable of recording many types of neurological signals, including EEG, ECoG, LFP and unit activity. With a diameter of just 25 mm and height of 9 mm, including a CR2032 Lithium coin cell battery, it is designed to fit into a small recording chamber while minimizing the overall implant height (Fig. 1 and 3). Using widely available parts we were able to keep the material cost of our system under $100 dollars. The complete design, including schematic, PCB layout, bill of materials and source code, will be released through an open source license, allowing other labs to modify the design to fit their needs. We have also developed a driver to acquire data using the BCI2000 software system. Feedback from the community will allow us to improve the design and create a more useful neuroscience research tool.
神经科学中的许多实验都需要无线神经记录系统,或者会从该系统中极大受益。然而,市面上现有的无线系统价格昂贵,噪声适中到偏高,且通常不可定制。学术型无线系统虽具备令人瞩目的功能,但其他实验室无法使用。为克服这些限制,我们利用标准的市售组件开发了一种超低噪声8通道无线电生理数据采集系统。该系统能够记录多种类型的神经信号,包括脑电图(EEG)、皮层脑电图(ECoG)、局部场电位(LFP)和单元活动。其直径仅25毫米,高9毫米,包括一个CR2032锂硬币电池,设计用于装入小型记录腔,同时将整体植入高度降至最低(图1和图3)。通过使用广泛可得的部件,我们将系统的材料成本控制在100美元以下。完整的设计,包括原理图、印刷电路板布局、材料清单和源代码,将通过开源许可发布,以便其他实验室根据自身需求修改设计。我们还开发了一个驱动程序,用于使用BCI2000软件系统采集数据。来自业界的反馈将使我们能够改进设计,打造出更实用的神经科学研究工具。