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Research ArticlePEDIATRIC NEUROIMAGING

Mapping Fetal Brain Development of 10 Weeks’ Gestational Age with 9.4T Postmortem MRI and Histologic Sections

Zhonghe Zhang, Yue Gao, Xiangtao Lin, Xue He, Ximing Wang and Shuwei Liu
American Journal of Neuroradiology April 2025, DOI: https://doi.org/10.3174/ajnr.A8595
Zhonghe Zhang
aFrom the Department of Medical Imaging (Z.Z., X.W.), Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan, China
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Yue Gao
bDepartment of Radiology (Y.G.), Qilu Hospital of Shandong University Dezhou Hospital, Dezhou, China
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Xiangtao Lin
cResearch Center for Sectional and Imaging Anatomy (X.L., S.L.), Shandong University Cheeloo College of Medicine, Jinan, China
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Xue He
dDepartment of Imaging (X.H.), Heze Penoy People’s Hospital, Heze, China
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Ximing Wang
aFrom the Department of Medical Imaging (Z.Z., X.W.), Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan, China
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Shuwei Liu
cResearch Center for Sectional and Imaging Anatomy (X.L., S.L.), Shandong University Cheeloo College of Medicine, Jinan, China
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Abstract

BACKGROUND AND PURPOSE: The 10th week of gestational age (GA) is a critical period for evaluating brain development, but there is limited knowledge regarding the specific characteristics at this GA. This study is to map the brain structures at 10 weeks’ GA by using 9.4T MRI and histologic sections.

MATERIALS AND METHODS: Six fetal specimens with normal brain development were imaged by using 9.4T MRI, followed by sectioning and staining. The 3D reconstruction models and quantitative measurements were obtained with Amira software.

RESULTS: Four zones of the laminar organization were identified in T2-weighted MRIs, while 6 zones were delineated in the corresponding histologic sections, demonstrating a strong consistency between the two. The key structures, including the midline structures, choroid plexus, subcortical nuclei, ventricles, brainstem, and cerebellum, were clearly distinguishable with unique characteristics in both MRIs and histologic sections. The 3D visualization model effectively demonstrated the shape, spatial positions, and interrelationships of the early fetal brain structures, and their qualitative measurements were obtained. The lateral ventricles and choroid plexus constituted a substantial proportion, with the lateral ventricles accounting for 43.0% of the cerebral hemisphere and the choroid plexus comprising 41.2% of the lateral ventricles.

CONCLUSIONS: At 10 weeks’ GA, the fetal brain is in an early developmental stage. The integration of 9.4T T2-weighted MRIs, 3D reconstruction, and histologic sections offers a comprehensive view of the early fetal brain’s characteristics, providing valuable insights for clinicians and anatomists.

ABBREVIATIONS:

GA
gestational age
US
ultrasound
micro-CT
microfocus CT

Footnotes

  • This research has been supported by the Academic Promotion Program of Shandong First Medical University; the Ministry of Science and Technology of the People’s Republic of China, National Natural Science Foundation of China, China National Funds for Distinguished Young Scientists (81300497), Department of Education of Shandong Province, Doctoral Foundation of Shandong Province (BS2013YY025), and the Department of Science and Technology of Shandong Province, Natural Science Foundation of Shandong Province, (ZR2021MH216).

  • Disclosure forms provided by the authors are available with the full text and PDF of this article at www.ajnr.org.

  • © 2025 by American Journal of Neuroradiology
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Cite this article
Zhonghe Zhang, Yue Gao, Xiangtao Lin, Xue He, Ximing Wang, Shuwei Liu
Mapping Fetal Brain Development of 10 Weeks’ Gestational Age with 9.4T Postmortem MRI and Histologic Sections
American Journal of Neuroradiology Apr 2025, DOI: 10.3174/ajnr.A8595

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fetal brain development of 10 weeks gestation
Zhonghe Zhang, Yue Gao, Xiangtao Lin, Xue He, Ximing Wang, Shuwei Liu
American Journal of Neuroradiology Apr 2025, DOI: 10.3174/ajnr.A8595
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