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The minimum resting-state fNIRS imaging duration for accurate and stable mapping of brain connectivity network in children

机译:最小静止状态fNIRS成像持续时间可准确稳定地绘制儿童的大脑连接网络

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摘要

Resting-state functional near-infrared spectroscopy (fNIRS) is a potential technique for the study of brain functional connectivity (FC) and networks in children. However, the necessary fNIRS scanning duration required to map accurate and stable functional brain connectivity and graph theory metrics in the resting-state brain activity remains largely unknown. Here, we acquired resting-state fNIRS imaging data from 53 healthy children to provide the first empirical evidence for the minimum imaging time required to obtain accurate and stable FC and graph theory metrics of brain network activity (e.g., nodal efficiency and network global and local efficiency). Our results showed that FC was accurately and stably achieved after 7.0-min fNIRS imaging duration, whereas the necessary scanning time for accurate and stable network measures was a minimum of 2.5 min at low network thresholds. These quantitative results provide direct evidence for the choice of the resting-state fNIRS imaging time in children in brain FC and network topology study. The current study also demonstrates that these methods are feasible and cost-effective in the application of time-constrained infants and critically ill children.
机译:静止状态功能近红外光谱(fNIRS)是研究儿童脑功能连通性(FC)和网络的一项潜在技术。然而,在静止状态的大脑活动中绘制准确而稳定的功能性大脑连通性和图论指标所需的必要fNIRS扫描持续时间仍然未知。在这里,我们从53名健康儿童那里获得了静止状态fNIRS成像数据,以提供获得准确,稳定的大脑网络活动的FC和图论指标所需的最少成像时间的第一个经验证据(例如,节点效率以及网络的全局和局部)效率)。我们的结果表明,在7.0分钟的fNIRS成像持续时间后,可以准确而稳定地实现FC,而在低网络阈值下,准确而稳定的网络测量所需的扫描时间最少为2.5分钟。这些定量结果为脑部FC和网络拓扑研究中儿童静息状态fNIRS成像时间的选择提供了直接的证据。当前的研究还表明,这些方法在受时间限制的婴儿和重症儿童中的应用是可行且具有成本效益的。

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