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Artifactual Time-course Correlations In Echo-planar Fmri With Implications For Studies Of Brain Function

机译:平面回声的伪影时程相关性及其对脑功能研究的意义

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Brain function is widely investigated with functional magnetic resonance imaging (fMRI) in humans and animals. In fMRI, the time courses of voxels typically reflect the local blood-oxygen level, which is taken as an indicator of neuronal activity. Voxel time-course correlations are often explicitly modeled and interpreted in terms of neuronal interactions. They also affect standard analyses that do not explicitly target neuronal interactions. As a consequence, time-course correlations between voxels influence conclusions about cognitive and physiological brain processes in many studies. However, voxel correlations are known to arise not only from cognitive and physiological processes, but also as artifacts of fMRI techniques such as the commonly used echoplanar imaging. We empirically demonstrate this phenomenon by plotting time-course correlation as a function of voxel separation for a human brain in resting state and for a water-filled sphere (called a "phantom"). The phantom served as a test object known not to contain any interacting neuronal systems. The plots for brain and phantom are surprisingly similar. The correlational structure found in the phantom must be artifactual. Artifactual correlations spanning many centimeters occur within and between different imaging slices. Correlations between voxel time courses do not necessarily reflect brain processes. Instead, fMRI is affected by artifactual correlations, which are very strong for neighboring voxels and clearly present even at large distances. This needs to be taken into account in the neuroscientific interpretation of voxel correlations.
机译:在人和动物中,使用功能磁共振成像(fMRI)对脑功能进行了广泛研究。在功能磁共振成像中,体素的时程通常反映出局部血氧水平,该水平被视为神经元活动的指标。体素时程相关性通常根据神经元相互作用进行显式建模和解释。它们还会影响未明确针对神经元相互作用的标准分析。结果,在许多研究中,体素之间的时程相关性会影响有关认知和生理性大脑过程的结论。但是,已知体素相关不仅会从认知和生理过程中产生,而且还会出现在fMRI技术的伪影中,例如常用的回波平面成像。我们通过绘制时程相关性作为人脑在静止状态下和充满水的球体(称为“幻像”)的体素分离函数来经验地证明这种现象。人体模型用作已知不包含任何相互作用的神经元系统的测试对象。大脑和幻影的情节出奇地相似。在幻影中发现的相关结构必须是人为的。跨越许多厘米的伪影相关出现在不同的成像切片之内和之间。体素时间过程之间的相关性不一定反映出大脑的过程。取而代之的是,fMRI受人为相关性的影响,人为相关性对相邻的体素非常强,甚至在很远的距离也很明显。在体素相关性的神经科学解释中需要考虑到这一点。

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