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首页> 外文期刊>Neuropsychologia >Effects of heartbeat and respiration on macaque fMRI: implications for functional connectivity.
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Effects of heartbeat and respiration on macaque fMRI: implications for functional connectivity.

机译:心跳和呼吸对猕猴fMRI的影响:对功能连接的影响。

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摘要

The use of functional magnetic resonance imaging (fMRI) in non-human primates is on the increase. It is known that the blood-oxygen-level-dependent (BOLD) signal varies not only as a function of local neuronal energy consumption but also as a function of cardiac and respiratory activity. We mapped these cyclic cardiac and respiratory artifacts in anesthetized macaque monkeys and present an objective analysis of their impact on estimates of functional connectivity (fcMRI). Voxels with significant cardiac and respiratory artifacts were found in much the same regions as previously reported for awake humans. We show two example seeds where removing the artifacts clearly decreased the number of false positive and false negative correlations. In particular, removing the artifacts reduced correlations in the so-called resting state network. Temporal bandpass filtering or spatial smoothing may help to reduce the effects of artifacts in some cases but are not an adequate replacement for an algorithm that explicitly models and removes cyclic cardiac and respiratory artifacts.
机译:功能性磁共振成像(fMRI)在非人类灵长类动物中的使用正在增加。众所周知,血氧水平依赖性(BOLD)信号不仅根据局部神经元能量消耗而变化,而且还随心脏和呼吸活动而变化。我们在麻醉的猕猴中绘制了这些循环的心脏和呼吸伪影,并对其功能对连接性(fcMRI)估计的影响进行了客观分析。在与先前报道的清醒人类相同的区域中,发现了具有明显心脏和呼吸伪像的体素。我们显示了两个示例种子,其中删除伪影明显减少了假正相关和假负相关的数量。特别地,去除伪像降低了所谓的静止状态网络中的相关性。在某些情况下,时间带通滤波或空间平滑可能有助于减少伪影的影响,但对于显式建模并消除循环心脏和呼吸伪影的算法而言,这并不是足够的替代。

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