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Tungsten electrode array

Company: FHC
Catalog#: MX61DAW(GK3)
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Headpost Surgery for in vivo Electrophysiological Recording in the Mouse Inferior Colliculus during Locomotion
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2020-12-05
[Abstract]  

The inferior colliculus (IC) is a critical midbrain integration center for auditory and non-auditory information. Although much is known about the response properties of the IC neurons to auditory stimuli, how the IC neural circuits function during movement such as locomotion remains poorly understood. Mice offer a valuable model in this respect, but previous studies of the mouse IC were performed in anesthetized or restrained preparations, making it difficult to study the IC function during behavior. Here we describe a neural recording protocol for the mouse IC in which mice are head-fixed, but can run on a passive treadmill. Mice first receive a headpost surgery, and become habituated to head-fixing while being on a treadmill. Following a few days of habituation, neural recordings of

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[摘要]  [摘要]下丘脑(IC)是听觉和非听觉信息的关键中脑整合中心。尽管对IC神经元对听觉刺激的响应特性了解很多,但对IC神经回路在运动(例如运动)过程中的功能仍知之甚少。小鼠在这方面提供了有价值的模型,但是先前对小鼠IC的研究是在麻醉或约束的制剂中进行的,因此很难研究行为过程中的IC功能。在这里,我们描述了一种用于鼠标IC的神经记录协议,其中鼠标固定在头上,但可以在无源跑步机上运行。小鼠首先收到头条手术,并在跑步机上习惯于固定头部。适应几天后,进行IC神经元活动的神经记录。可以在不同的行为条件下比较神经活动,例如静止不动或在跑步机上跑步。我们描述了如何克服因位置和上覆骨骼而引起的用于清醒IC记录的柱头手术的挑战。该协议允许研究行为小鼠的IC功能,同时允许精确的刺激控制和类似于麻醉制剂的记录方法的使用。

[背景]下丘脑(IC)是一个关键的中脑听觉融合中心,几乎所有提升输入的项目都指向该中心(Winer and Schreiner,2005)。该IC还接收非听觉输入,包括那些从体感区域,提示的听觉和非听觉信息(多模态的集成Gruters一个第二格罗,2012)。由于可用的遗传工具广泛,小鼠为阐明IC功能的细胞和电路级原理提供了重要模型(Ono等人,2017; Goyer等人,2019; Chen和Song,2019; Hoyt等人,2019)。等人,2019; ...

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