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Detection of irregular, transient fMRI activity in normal controls using 2dTCA: comparison to event-related analysis using known timing.

机译:使用2dTCA在正常对照中检测不规则的暂时性fMRI活动:与使用已知时间的事件相关分析进行比较。

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摘要

When events occur spontaneously during the acquisition of a series of images, traditional modeling methods for detecting functional MRI activation detection cannot be employed. The two-dimensional temporal clustering algorithm, 2dTCA, has been shown to accurately detect random, transient activations in computer simulations without the use of known event timings. In this study we applied the 2dTCA technique to detect the timings and spatial locations of sparse, irregular, transient activations of the visual, auditory, and motor cortices in 12 normal controls. Experiments with one and two independent types of stimuli were employed. Event-related activation using known timing was compared with event-related activation using 2dTCA-detected timing in individuals and across groups. The 2dTCA algorithm detected the activation from all presented stimuli in every subject. When compared with block-design results using a measure of correlation between activation maps, no significant difference was found between the 2dTCA activation maps and the event-related maps using known timing across all subjects. Therefore, 2dTCA has the potential to be an accurate and more practical method for detection of spontaneous, transient events using fMRI.
机译:当在采集一系列图像期间自发发生事件时,无法采用传统的建模方法来检测功能性MRI激活检测。二维时间聚类算法2dTCA已被证明可以在不使用已知事件定时的情况下,准确地检测计算机模拟中的随机瞬态激活。在这项研究中,我们应用了2dTCA技术来检测12个正常对照中视觉,听觉和运动皮层的稀疏,不规则,短暂激活的时间和空间位置。使用具有一种和两种独立类型的刺激的实验。将使用已知时序的事件相关激活与使用2dTCA检测到的时序的事件相关激活进行了比较。 2dTCA算法从每个对象中所有呈现的刺激中检测到激活。当使用激活图之间的相关性度量与模块设计结果进行比较时,使用所有受试者的已知时间,在2dTCA激活图和事件相关图之间未发现显着差异。因此,2dTCA有望成为使用fMRI检测自发性,短暂事件的准确,实用的方法。

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