Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, South Korea.
Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, South Korea..
Neuroimage. 2022 Aug 15;257:119293. doi: 10.1016/j.neuroimage.2022.119293. Epub 2022 May 10.
It is recently discovered that the glymphatic system and meningeal lymphatic system are the primary routes for the clearance of brain waste products. The CSF flow is part of these systems, facilitating the clearance procedure. Nonetheless, the relationship between CSF flow and brain functional activity has been underexplored. To investigate CSF dynamics and functional brain activity simultaneously, recent studies have proposed a CSF inflow index measured on edge slices (CSFedge) of echo-planar imaging (EPI) based functional magnetic resonance imaging (fMRI), however, it lacks the quantitative aspect of the CSF pulsation. We proposed a new method for quantifying CSF pulsation (CSFpulse) based on an interslice CSF pulsation model in the 4 ventricle of EPI-based fMRI. The proposed CSFpulse successfully detected the higher CSF flow during the resting state than the typical task states (visual and motor) (p<.05), which is consistent with previous studies based on phase contrast (PC) MRI and CSF volume MRI, while it was not detected in CSFedge based indices or baseline CSF signals in various regions of interest (ROIs). Moreover, CSFpulse demonstrated dynamic functional changes in CSF pulsation: it decreased during the activation-on blocks while it increased during the activation-off blocks. CSFpulse significantly correlated with stroke volume measured using PC MRI, a standard method for CSF pulsation quantification, under the same functional state, while CSFedge based indices or CSF ROIs showed no correlation with the PC MRI stroke volume. Lastly, the correlation of CSFpulse with global BOLD was weaker than that of CSFedge, suggesting that CSFpulse may reflect distinct CSF physiological information that is less affected by global BOLD effects. Based on these results, the proposed CSFpulse provides CSF pulsatility information more accurately in a quantitative manner than CSFedge based indices from the recent CSF studies or the conventional ROI-based analysis. In addition to the high correlation with PC MRI, CSFpulse is much faster than PC MRI and provides information of functional brain activations simultaneously, advantageous over PC MRI or CSF volume MRI. Accordingly, the suggested CSFpulse can be used for investigating intra-subject functional changes in BOLD and CSF pulsation simultaneously and inter-subject CSF pulsation variations based on conventional EPI-based fMRI, which warrants further investigation.
最近发现,糖质系统和脑膜淋巴系统是清除脑内废物的主要途径。CSF 流是这些系统的一部分,促进了清除过程。然而,CSF 流与大脑功能活动之间的关系尚未得到充分探索。为了同时研究 CSF 动力学和功能性大脑活动,最近的研究提出了一种基于回波平面成像 (EPI) 功能磁共振成像 (fMRI) 的边缘切片上 CSF 流入指数 (CSFedge),但缺乏 CSF 脉动的定量方面。我们提出了一种基于 EPI 基 fMRI 中第四脑室切片间 CSF 脉动模型的 CSF 脉动定量方法 (CSFpulse)。该方法成功地检测到静息状态下比典型任务状态(视觉和运动)更高的 CSF 流动 (p<.05),这与基于相位对比 (PC) MRI 和 CSF 容积 MRI 的先前研究一致,而 CSFedge 基指数或各种感兴趣区域 (ROI) 的基础 CSF 信号则未检测到。此外,CSFpulse 显示 CSF 脉动的动态功能变化:在激活 ON 块期间减少,而在激活 OFF 块期间增加。CSFpulse 在相同功能状态下与使用 PC MRI 测量的 CSF 搏动量显著相关,PC MRI 是 CSF 搏动定量的标准方法,而 CSFedge 基指数或 CSF ROI 则与 PC MRI 搏动量无相关性。最后,CSFpulse 与全局 BOLD 的相关性弱于 CSFedge,这表明 CSFpulse 可能反映了更独特的 CSF 生理信息,受全局 BOLD 影响较小。基于这些结果,与最近的 CSF 研究或传统 ROI 基于分析的 CSFedge 基指数相比,所提出的 CSFpulse 以定量方式更准确地提供 CSF 脉动信息。除了与 PC MRI 高度相关外,CSFpulse 比 PC MRI 快得多,同时提供功能性大脑激活的信息,优于 PC MRI 或 CSF 容积 MRI。因此,建议的 CSFpulse 可用于同时研究 BOLD 和 CSF 搏动的受试者内功能变化,以及基于常规 EPI 基 fMRI 的受试者间 CSF 搏动变化,这值得进一步研究。