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用于在行为小鼠的慢性单细胞记录中进行精确电极定位的反馈控制压电电机微驱动器。

Feedback controlled piezo-motor microdrive for accurate electrode positioning in chronic single unit recording in behaving mice.

机构信息

Nano-Bio Center, Korea Institute of Science and Technology, 39-1, Hawolgok-dong, Seongbuk-gu, Seoul 136-791, Republic of Korea.

出版信息

J Neurosci Methods. 2011 Feb 15;195(2):117-27. doi: 10.1016/j.jneumeth.2010.09.006. Epub 2010 Sep 22.

Abstract

The microdrive is one of the most essential tools for extracellular, single-unit recordings in freely behaving animals to detect and isolate the single-unit activities from brain regions of interest. Due to the increasing number of neuroscience research projects using genetically engineered mice, the demand for effective recording devices in freely moving mice is also increasing. Although manually and automatically operated microdrive devices are available, they are limited in terms of size, weight, accuracy, manipulability, and convenience for single-unit recording in mice. The present study proposed a novel microdrive that employs a small, lightweight piezo-motor and a magnetoresistive (MR) sensor with a closed-loop position feedback control system. The total weight of the device is 1.82 g, which is perfectly suitable for application to mice. Most importantly, the proposed microdrive is capable of monitoring and adjusting electrode movement on-line by integrating a closed-loop feedback control system, which enhances the accuracy of micro-advancement of the electrode by utilizing position feedback. The performance of this newly developed microdrive was extensively evaluated for both mechanical and physiological concerns at both free-loading and various-loading conditions, including agarose gel matrix and then the hippocampus and thalamus of mice. In summary, this proposed microdrive can enhance the quality of recording single unit activities in freely moving mice in terms of the size and weight of the device, the convenience and accuracy of manipulation, and, most of all, in isolating single neurons and recording stability by providing accurate positioning of an electrode.

摘要

微驱动器是在自由活动的动物中进行细胞外、单细胞记录的最基本工具之一,用于检测和分离感兴趣脑区的单细胞活动。由于越来越多的神经科学研究项目使用基因工程小鼠,因此对自由活动小鼠中有效记录设备的需求也在增加。尽管有手动和自动操作的微驱动器可供使用,但它们在尺寸、重量、精度、可操作性以及在小鼠中单细胞记录的便利性方面存在局限性。本研究提出了一种新型微驱动器,它采用小型、轻量级的压电电机和带有闭环位置反馈控制系统的磁阻(MR)传感器。该设备的总重量为 1.82 克,非常适合应用于小鼠。最重要的是,所提出的微驱动器能够通过集成闭环反馈控制系统在线监测和调整电极运动,通过利用位置反馈提高电极微推进的精度。在自由加载和各种加载条件下,包括琼脂糖凝胶基质以及小鼠的海马体和丘脑,对这种新开发的微驱动器的机械和生理性能进行了广泛评估。总之,该微驱动器可以通过提供电极的精确定位,在设备的尺寸和重量、操作的便利性和准确性以及分离单个神经元和记录稳定性方面,提高自由活动小鼠中单细胞活动记录的质量。

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