局部场电位
计算机科学
多电极阵列
电极阵列
大脑活动与冥想
计算机硬件
神经科学
电极
微电极
工程类
脑电图
电气工程
电压
化学
生物
物理化学
作者
Richard Quansah Amissah,Abdalla M. Albeely,Elise M. Bragg,Melissa L. Perreault,Wilder T. Doucette,Jibran Y. Khokhar
出处
期刊:ENeuro
[Society for Neuroscience]
日期:2023-08-01
卷期号:10 (8): ENEURO.0212-23.2023
被引量:3
标识
DOI:10.1523/eneuro.0212-23.2023
摘要
Local field potential (LFP) recording is a valuable method for assessing brain systems communication. Multiple methods have been developed to collect LFP data to study the rhythmic activity of the brain. These methods range from the use of single or bundled metal electrodes to electrode arrays that can target multiple brain regions. Although these electrodes are efficient in collecting LFP activity, they can be expensive, difficult to build, and less adaptable to different applications, which may include targeting multiple brain regions simultaneously. Here, the building process for a 16-channel customizable multielectrode array (CMEA) that can be used to collect LFP data from different brain regions simultaneously in rats is described. These CMEA electrode arrays are lightweight (<1 g), take little time to build (<1 h), and are affordable ($15 Canadian). The CMEA can also be modified to record single-unit and multiunit activity in addition to LFP activity using both wired and wireless neural data acquisition systems. Moreover, these CMEAs can be used to explore neural activity (LFP and single-unit/multiunit activity) in preliminary studies, before purchasing more expensive electrodes for targeted studies. Together, these characteristics make the described CMEA a competitive alternative to the commercially available multielectrode arrays for its simplicity, low cost, and efficiency in collecting LFP data in freely behaving animals.
科研通智能强力驱动
Strongly Powered by AbleSci AI