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基于头帽的头部固定:在前庭系统单神经元记录中使用的一种改进方案。

The head fixation based on skull cap: An improved protocol used in single unit recording in the vestibular system.

作者信息

Ren Pengyu, Li Bowen, Dong Shiyao, Lyu Boqiang, Gong Shouping, Zhang Qing, Qu Jianqiang, Han Peng

机构信息

Department of Neurosurgery, the Second Affiliated Hospital of Xi'an Jiaotong University, 157 West 5th Road, Xi'an, Shaanxi 710004, China.

Departments of Otolaryngology-Head & Neck Surgery, Johns Hopkins University School of Medicine, 720 Rutland Ave, Baltimore, MD 21205, United States.

出版信息

MethodsX. 2020 Oct 16;7:101109. doi: 10.1016/j.mex.2020.101109. eCollection 2020.

Abstract

Single unit recording has an important application in neuroscience, especially in the vestibular system such as visual stabilization, posture maintenance, spatial orientation and cognition. However, single unit recording conducted in living animals is a demanding technique and non-ideal mechanical stability between the recording location of nerve tissues and the tip of microelectrode always results in failure to obtain successful recordings in the vestibular system. In order to improve the mechanical stability during single unit recording, we constructed a novel head fixation method based on skull cap. This article describes in detail how to construct this novel head fixation. Following the step-by-step procedure mentioned in this article will provide a high-quality mechanical stability for single unit recording in the vestibular system, allowing us to successfully record the nonlinear neural dynamic response over a big magnitude motion stimulation. This improvement of head fixation contributes to the in-depth understanding of the vestibular system.

摘要

单细胞记录在神经科学领域有着重要应用,尤其是在前庭系统中,如视觉稳定、姿势维持、空间定向和认知方面。然而,在活体动物中进行单细胞记录是一项要求苛刻的技术,神经组织记录位置与微电极尖端之间不理想的机械稳定性总是导致在前庭系统中无法成功获得记录。为了提高单细胞记录过程中的机械稳定性,我们构建了一种基于头盖骨的新型头部固定方法。本文详细描述了如何构建这种新型头部固定方法。按照本文所述的逐步程序将为前庭系统中的单细胞记录提供高质量的机械稳定性,使我们能够在大幅度运动刺激下成功记录非线性神经动态反应。这种头部固定方法的改进有助于深入了解前庭系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c93/7596295/0609b0ca745b/fx1.jpg

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