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首页> 外文期刊>NeuroImage >Comparison of 'silent' clustered and sparse temporal fMRI acquisitions in tonal and speech perception tasks.
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Comparison of 'silent' clustered and sparse temporal fMRI acquisitions in tonal and speech perception tasks.

机译:比较“无声的”聚类和稀疏的颞fMRI采集在音调和语音感知任务中的作用。

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In the functional imaging of auditory cortical functions, long silent periods between the data acquisitions prevent interferences between scanner noise and the auditory stimulus processing. Recent fMRI studies have shown that sparse temporal acquisition designs are advantageous over continuous scanning protocols on physiological, perceptual, and cognitive levels. Sparse temporal acquisition schemes (STA) which use a single volume acquisition after each trial imply the advantage of auditory stimulation devoid of ambient scanner noise but have the drawback of a reduced statistical power. To alleviate this effect, STA schemes have been extended to clustered-sparse temporal acquisition (CTA) designs which record several subsequent BOLD contrast images in rapid succession. In the present study, we collected data from 13 healthy volunteers performing a speech and a tonal discrimination task using both a CTA and STA scheme to carry out a systematic evaluation of these acquisition protocols. By statistical modeling of the fMRI data sets, we revealed stronger effect sizes for the STA protocol regardless of the task, reflecting the better signal-to-noise-ratio of MR images acquired with this scheme. In contrast, we demonstrate higher statistical power for the use of a CTA protocol. Accordingly, in the context of standard fMRI analysis, the CTA protocol clearly outperformed the STA scheme at the level of single-subject analysis and fixed-effects group analysis. Our results clearly suggest that it is advantageous to acquire several sample points per trial if one wants to use the benefit of "silent" fMRI. Furthermore, our data demonstrate the feasibility of the clustered acquisition of subsequent imaging volumes along the T1-decay.
机译:在听觉皮层功能的功能成像中,数据采集之间的长静默时间可防止扫描仪噪声与听觉刺激处理之间的干扰。最近的功能磁共振成像研究表明,在生理,知觉和认知水平上,稀疏的时间采集设计优于连续扫描方案。在每次试验后使用单个体积采集的稀疏时间采集方案(STA)暗示了听觉刺激的优点,没有周围的扫描仪噪声,但缺点是统计能力降低。为了减轻这种影响,STA方案已扩展到聚类稀疏时间采集(CTA)设计,该设计可以连续快速记录几个后续的BOLD对比图像。在本研究中,我们使用CTA和STA方案收集了13位健康志愿者的数据,这些志愿者执行语音和声调歧视任务,以对这些采集协议进行系统评估。通过功能磁共振成像数据集的统计建模,我们发现了与任务无关的STA协议更强的效果量,反映出通过该方案获取的MR图像具有更好的信噪比。相反,我们证明了使用CTA协议具有更高的统计能力。因此,在标准功能磁共振成像分析的背景下,CTA协议在单主题分析和固定效应组分析的水平上明显优于STA方案。我们的结果清楚地表明,如果一个人想利用“沉默的” fMRI的好处,那么每次试验获取几个样本点是有利的。此外,我们的数据证明了沿T1衰减聚类采集后续成像体积的可行性。

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