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Setup and data analysis for functional magnetic resonance imaging of awake cat visual cortex

机译:醒猫视觉皮层功能磁共振成像的设置和数据分析

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摘要

Functional magnetic resonance imaging (fMRI) is one of the most commonly used methods in cognitive neuroscience on humans. In recent decades, fMRI has also been used in the awake monkey experiments to localize functional brain areas and to compare the functional differences between human and monkey brains. Several procedures and paradigms have been developed to maintain proper head fixation and to perform motion control training. In this study, we extended the application of fMRI to awake cats without training, receiving a flickering checkerboard visual stimulus projected to a screen in front of them in a block-design paradigm. We found that body movement-induced non-rigid motion introduced artifacts into the functional scans, especially those around the eye and neck. To correct for these artifacts, we developed two methods: one for general experimental design, and the other for studies of whether a checkerboard task could be used as a localizer to optimize the motion-correction parameters. The results demonstrated that, with proper animal fixation and motion correction procedures, it is possible to perform fMRI experiments with untrained awake cats.
机译:功能磁共振成像(fMRI)是人类认知神经科学中最常用的方法之一。在最近的几十年中,功能磁共振成像也已用于清醒的猴子实验中,以定位功能性大脑区域并比较人和猴大脑之间的功能差异。已经开发出几种程序和范例来维持正确的头部固定并进行运动控制训练。在这项研究中,我们将功能磁共振成像技术的应用扩展到无需训练的清醒猫,以块状设计范例接收闪烁的棋盘视觉刺激投射到它们前面的屏幕上。我们发现身体运动引起的非刚性运动将伪像引入功能扫描中,尤其是眼睛和颈部周围的伪像。为了校正这些伪像,我们开发了两种方法:一种用于常规实验设计,另一种用于研究棋盘任务是否可以用作优化运动校正参数的定位器。结果表明,通过适当的动物固定和运动校正程序,可以对未经训练的清醒猫进行功能磁共振成像实验。

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