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A Novel Modular Headmount Design for non-invasive Scalp EEG Recordings in Awake Animal Models

机译:一种新型模块化头部设计,用于唤醒动物模型中的非侵入式头皮eeg记录

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We have designed and developed a novel, non-invasive modular headmount to be used for awake animal scalp electroencephalography (EEG). The design is based on a developing rat that will accommodate rapid head growth. Desired characteristics include non-invasiveness, adjustable quantity and positioning, light weight, and tolerability by the animal. Axial Dependent Modular Electrode Mount (ADMEM), as designed here, addresses the aforementioned constraints by using light-weight and adjustable materials. The initial prototype of ADMEM has been tested in vivo with rat pups, using the open field test to assess for stress and anxiety at two post-installation time-points: one day after ADMEM installation (acute time-point) and four days after ADMEM installation (sub-acute time-point). There was no significant difference in normal developmental weight gain between Control and ADMEM rat groups. Although no significant difference was found in the level of anxiety between groups at the acute time-point, the ADMEM group spent significantly less time in the center of the open field test, suggesting higher anxiety. The test also showed no difference in the measured traveled distances between Control and ADMEM groups on either time-points.
机译:我们设计并开发了一种新颖的非侵入式模块化头部,用于唤醒动物头皮脑电图(EEG)。该设计基于一种发展大鼠,该大鼠将容纳快速的头部生长。所需特性包括非侵入性,可调节的数量和定位,重量轻,并且通过动物的可耐受性。轴向依赖性模块化电极支架(Admem),如这里所设计的,通过使用轻量级和可调节材料来解决上述约束。 Admem的初始原型已在体内用大鼠幼仔测试,使用开放的现场测试来评估两个安装后的时间点的压力和焦虑:Admem安装(急性时间点)和40天后的一天安装(子急性时间点)。对照和ACMEM大鼠基团之间的正常发育重量增益没有显着差异。虽然在急性时间点的群体之间的焦虑水平中没有发现显着差异,但是在开放的场地测试中,Admem Gram在开放的野外测试中的时间明显减少了时间,表明焦虑较高。该试验还显示了在任一点之间的控制和ADMEM组之间测量的行驶距离的差异。

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