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Calibrating the BOLD signal during a motor task using an extended fusion model incorporating DOT BOLD and ASL data

机译:使用包含点粗体和ASL数据的扩展融合模型在电机任务期间校准粗体信号

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摘要

Multimodal imaging improves the accuracy of the localization and the quantification of brain activation when measuring different manifestations of the hemodynamic response associated with cerebral activity. In this study, we incorporated cerebral blood flow (CBF) changes measured with arterial spin labeling (ASL), Diffuse Optical Tomography (DOT) and blood oxygen level-dependent (BOLD) recordings to reconstruct changes in oxy- (ΔHbO2) and deoxyhemoglobin (ΔHbR). Using the Grubb relation between relative changes in CBF and cerebral blood volume (CBV), we incorporated the ASL measurement as a prior to the total hemoglobin concentration change (ΔHbT). We applied this ASL fusion model to both synthetic data and experimental multimodal recordings during a 2-sec finger-tapping task. Our results show that the new approach is very powerful in estimating ΔHbO2 and ΔHbR with high spatial and quantitative accuracy. Moreover, our approach allows the computation of baseline total hemoglobin concentration (HbT0) as well as of the BOLD calibration factor M on a single subject basis. We obtained an average HbT0 of 71 μM, an average M value of 0.18 and an average increase of 13 % in cerebral metabolic rate of oxygen (CMRO2), all of which are in agreement with values previously reported in the literature. Our method yields an independent measurement of M, which provides an alternative measurement to validate the hypercapnic calibration of the BOLD signal.
机译:多峰成像在测量与脑活动相关的血流动力学应答的不同表现时,提高了定位的准确性和脑激活的定量。在这项研究中,我们掺入了用动脉旋转标记(ASL)测量的脑血流(CBF)变化,弥漫光学断层扫描(点)和血氧水平依赖性(粗体)记录,以重建氧 - (ΔHBO2)和脱氧血红蛋白的变化( ΔHBR)。使用CBF和脑血容量(CBV)相对变化之间的GRUBB关系,我们将ASL测量掺入全血红蛋白浓度变化(ΔHBT)之前。我们在2秒的手指攻丝任务期间将此ASL融合模型应用于合成数据和实验多模式记录。我们的研究结果表明,新方法在估计ΔHBO2和ΔHBR方面非常强大,具有高空间和定量精度。此外,我们的方法允许在单个主题的基础上计算基线总血红蛋白浓度(HBT0)以及粗体校准系数M.我们获得了71μm的平均HBT0,平均m值为0.18,氧代谢率的平均增加13%,氧代谢率(cmro2),所有这些都与文献中先前报道的值一致。我们的方法产生了独立测量的M,它提供了替代测量以验证粗体信号的高型校准。

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