Literature DB >> 24343722

[Multi-channel in vivo recording technique: microdrive array fabrication and electrode implantation in mice].

Xiao-Yu Ma1, Yi-Yao Zhang, Li-Na Wang, Long-Nian Lin.   

Abstract

Here we describe and illustrate our methods for multi-channel in vivo recording in mice, including the fabrication of the microdrive array and the surgical procedure for implanting electrodes. The multi-channel microdrive is fabricated from printed circuit board base, screws, nuts and clamping screws. Rotation of the screw drives both the nut and the attached electrodes to move forward simultaneously. Each full turn of the screw corresponds to 280 µm in depth penetration. The recording electrodes are self-made tetrodes consisting 4 wires (13 µm in diameter). The major steps of headstage fabrication include: tetrode making, microdrive construction, headstage assembling and tetrode plating. The finished headstage is suitable for multi-channel recording in freely moving rodents with the modest weight and the adjustable number of recording electrodes. Additionally, the recording site is allowed to be manipulated after implantation at any time. In the latter part of this paper, we introduce the procedure of the implant surgery to record in bilateral hippocampus in mice. Using these headstages, we simultaneously recorded population activity in bilateral CA1 in freely behaving mice.

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Year:  2013        PMID: 24343722

Source DB:  PubMed          Journal:  Sheng Li Xue Bao        ISSN: 0371-0874


  2 in total

1.  Protocol for recording the discharge of locus coeruleus neurons in free-moving mice during different sleep-wake stages.

Authors:  Yue Liang; Wu Shi; Dandan Hu; Anfeng Xiang; Ling Zhang
Journal:  STAR Protoc       Date:  2021-12-01

2.  A Temporal Activity of CA1 Neurons Underlying Short-Term Memory for Social Recognition Altered in PTEN Mouse Models of Autism Spectrum Disorder.

Authors:  An-Ping Chai; Xue-Feng Chen; Xiao-Shan Xu; Na Zhang; Meng Li; Jin-Nan Li; Lei Zhang; Dai Zhang; Xia Zhang; Rong-Rong Mao; Yu-Qiang Ding; Lin Xu; Qi-Xin Zhou
Journal:  Front Cell Neurosci       Date:  2021-07-15       Impact factor: 5.505

  2 in total

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