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利用婴儿期扩散光学断层扫描敏感性研究头皮与皮层对应关系的发育变化。

Investigating developmental changes in scalp-to-cortex correspondence using diffuse optical tomography sensitivity in infancy.

作者信息

Fu Xiaoxue, Richards John E

机构信息

University of South Carolina, Department of Psychology, Columbia, South Carolina, United States.

出版信息

Neurophotonics. 2021 Jul;8(3):035003. doi: 10.1117/1.NPh.8.3.035003. Epub 2021 Jul 24.

Abstract

Diffuse optical tomography (DOT) uses near-infrared light spectroscopy (NIRS) to measure changes in cerebral hemoglobin concentration. Anatomical interpretations of NIRS data require accurate descriptions of the cranio-cerebral relations and DOT sensitivity to the underlying cortical structures. Such information is limited for pediatric populations because they undergo rapid head and brain development. We aim to investigate age-related differences in scalp-to-cortex distance and mapping between scalp locations and cortical regions of interest (ROIs) among infants (2 weeks to 24 months with narrow age bins), children (4 and 12 years), and adults (20 to 24 years). We used spatial scalp projection and photon propagation simulation methods with age-matched realistic head models based on MRIs. There were age-group differences in the scalp-to-cortex distances in infancy. The developmental increase was magnified in children and adults. There were systematic age-related differences in the probabilistic mappings between scalp locations and cortical ROIs. Our findings have important implications in the design of sensor placement and making anatomical interpretations in NIRS and fNIRS research. Age-appropriate, realistic head models should be used to provide anatomical guidance for standalone DOT data in infants.

摘要

扩散光学断层扫描(DOT)利用近红外光光谱(NIRS)来测量脑血红蛋白浓度的变化。NIRS数据的解剖学解释需要对颅-脑关系以及DOT对潜在皮质结构的敏感性进行准确描述。对于儿科人群而言,此类信息有限,因为他们的头部和大脑正经历快速发育。我们旨在研究婴儿(年龄范围较窄,2周龄至24月龄)、儿童(4岁和12岁)以及成人(20岁至24岁)在头皮到皮质距离以及头皮位置与感兴趣皮质区域(ROI)之间映射关系方面的年龄相关差异。我们使用基于MRI的年龄匹配真实头部模型,采用空间头皮投影和光子传播模拟方法。婴儿期头皮到皮质的距离存在年龄组差异。在儿童和成人中,这种发育性增加更为明显。头皮位置与皮质ROI之间的概率映射存在与年龄相关的系统性差异。我们的研究结果对近红外光谱(NIRS)和功能近红外光谱(fNIRS)研究中传感器放置的设计以及进行解剖学解释具有重要意义。应使用适合年龄的真实头部模型,为婴儿的独立DOT数据提供解剖学指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1746/8305752/bddf990bb0d2/NPh-008-035003-g001.jpg

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