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应用伪连续动脉自旋标记灌注 MRI 评估早产儿和足月儿的脑血流模式。

Cerebral blood flow patterns in preterm and term neonates assessed with pseudo-continuous arterial spin labeling perfusion MRI.

机构信息

Department of Neuroscience, Imaging, and Clinical Sciences, University G. d'Annunzio of Chieti-Pescara, Chieti, Italy.

Institute for Advanced Biomedical Technologies (ITAB), University G. d'Annunzio of Chieti-Pescara, Chieti, Italy.

出版信息

Hum Brain Mapp. 2023 Jun 15;44(9):3833-3844. doi: 10.1002/hbm.26315. Epub 2023 Apr 25.

Abstract

In preterm (PT) infants, regional cerebral blood flow (CBF) disturbances may predispose to abnormal brain maturation even without overt brain injury. Therefore, it would be informative to determine the spatial distribution of grey matter (GM) CBF in PT and full-term (FT) newborns at term-equivalent age (TEA) and to assess the relationship between the features of the CBF pattern and both prematurity and prematurity-related brain lesions. In this prospective study, we obtained measures of CBF in 66 PT (51 without and 15 with prematurity-related brain lesions) and 38 FT newborns through pseudo-continuous arterial spin labeling (pCASL) MRI acquired at TEA. The pattern of GM CBF was characterized by combining an atlas-based automated segmentation of structural MRI with spatial normalization and hierarchical clustering. The effects of gestational age (GA) at birth and brain injury on the CBF pattern were investigated. We identified 4 physiologically-derived clusters of brain regions that were labeled Fronto-Temporal, Parieto-Occipital, Insular-Deep GM (DGM) and Sensorimotor, from the least to the most perfused. We demonstrated that GM perfusion was associated with GA at birth in the Fronto-Temporal and Sensorimotor clusters, positively and negatively, respectively. Moreover, the presence of periventricular leukomalacia was associated with significantly increased Fronto-Temporal GM perfusion and decreased Insular-DGM perfusion, while the presence of germinal matrix hemorrhage appeared to mildly decrease the Insular-DGM perfusion. Prematurity and prematurity-related brain injury heterogeneously affect brain perfusion. ASL MRI may, therefore, have strong potential as a noninvasive tool for the accurate stratification of individuals at risk of domain-specific impairment.

摘要

在早产儿(PT)中,即使没有明显的脑损伤,区域性脑血流(CBF)的紊乱也可能导致脑成熟异常。因此,确定足月(FT)新生儿和 PT 新生儿在胎龄相等时的灰质(GM)CBF 的空间分布,并评估 CBF 模式的特征与早产和与早产相关的脑损伤之间的关系,将是有意义的。在这项前瞻性研究中,我们通过在胎龄相等时获得的假性连续动脉自旋标记(pCASL)MRI,测量了 66 名 PT(51 名无与早产相关的脑损伤和 15 名有与早产相关的脑损伤)和 38 名 FT 新生儿的 CBF。通过结构 MRI 的基于图谱的自动分割与空间标准化和层次聚类相结合,对 GM CBF 模式进行了特征描述。研究了出生时的胎龄(GA)和脑损伤对 CBF 模式的影响。我们从最不灌注到最灌注,确定了 4 个与生理相关的脑区聚类,分别为额颞叶、顶枕叶、岛叶深部 GM(DGM)和感觉运动。我们证明 GM 灌注与额颞叶和感觉运动簇的出生时 GA 相关,分别呈正相关和负相关。此外,脑室周围白质软化的存在与额颞叶 GM 灌注显著增加和岛叶 DGM 灌注减少相关,而脑室内出血的存在似乎轻度降低了岛叶 DGM 灌注。早产和与早产相关的脑损伤对脑灌注有不均匀的影响。因此,ASL MRI 可能具有作为一种非侵入性工具,用于对特定领域损伤风险的个体进行准确分层的强大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cb0/10203784/6091ade1c5e6/HBM-44-3833-g006.jpg

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