A postmortem high-resolution MRI study of the development of cochlear nerve-related structures in the second and third trimesters of pregnancy.

IF 2.9 2区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Quantitative Imaging in Medicine and Surgery Pub Date : 2024-09-01 Epub Date: 2024-08-12 DOI:10.21037/qims-24-626
Hui Zhao, Lixin Sun, Lianxiang Xiao, Linsheng Wang, Na Hu, Mingming Miao, Daniel Thomas Ginat, Carlo A Mallio, Xiangtao Lin
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Abstract

Background: Magnetic resonance imaging (MRI) is used to determine whether cochlear nerve development is normal in infants and adults, but it has not yet been used to evaluate cochlear nerve development or measure cochlear nerve-related structures in the fetus. This study sought to provide imaging data for clinical evaluations concerning cochlear nerve development in the fetus using MRI.

Methods: Postmortem 3.0-Tesla MRI of inner ear was performed in 51 fetuses with normal temporal bones at 25 to 40 weeks of gestation. The continuous scanning protocol incorporated axial three-dimensional (3D) sampling perfection with application-specific contrasts using different flip angle evolution sequences. The images were evaluated to measure the structures of the cochlear aperture (CA), internal auditory canal (IAC), and vestibulocochlear and facial nerves in the cerebellopontine angle (CPA), which have been reported to be associated with cochlear nerve development. We also calculated the ratio between the diameters of the vestibulocochlear and facial nerves. The measurable parameters were compared between the right and left sides. The threshold for statistical significance was set at P<0.05.

Results: The inner ear anatomy was discernible on MRI in all the fetal specimens, and growth of the CA, IAC, vestibulocochlear nerve, and facial nerve in the CPA was observed as fetal age increased. There was no significant difference in the measurements of these structures between the right and left sides (all P>0.05).

Conclusions: MRI can be used to help evaluate the anatomy and development of the cochlear nerve in the fetus. These normative measurements could be valuable for clinical evaluations of the cochlear nerve.

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妊娠第二和第三孕期耳蜗神经相关结构发育的尸检高分辨率核磁共振成像研究。
背景:磁共振成像(MRI)可用于确定婴儿和成人耳蜗神经发育是否正常,但尚未用于评估胎儿耳蜗神经发育或测量耳蜗神经相关结构。本研究旨在利用核磁共振成像为临床评估胎儿耳蜗神经发育提供成像数据:方法:在妊娠 25 至 40 周时,对 51 个颞骨正常的胎儿进行了死后 3.0 特斯拉内耳核磁共振成像。连续扫描方案包括轴向三维(3D)取样完善,使用不同的翻转角演化序列进行特定应用对比。我们对图像进行了评估,以测量耳蜗孔(CA)、内听道(IAC)、小脑角(CPA)的前庭神经和面神经的结构,据报道这些结构与耳蜗神经的发育有关。我们还计算了前庭神经和面神经直径之间的比率。我们对左右两侧的可测量参数进行了比较。统计显著性阈值设定为 PResults:所有胎儿标本的内耳解剖结构在核磁共振成像上均清晰可见,而且随着胎龄的增加,CPA中的CA、IAC、前庭蜗神经和面神经也在增长。这些结构的测量结果在左右两侧没有明显差异(均P>0.05):结论:核磁共振成像可用于帮助评估胎儿耳蜗神经的解剖和发育情况。结论:核磁共振成像可帮助评估胎儿耳蜗神经的解剖和发育情况,这些标准测量值对耳蜗神经的临床评估很有价值。
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来源期刊
Quantitative Imaging in Medicine and Surgery
Quantitative Imaging in Medicine and Surgery Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
4.20
自引率
17.90%
发文量
252
期刊介绍: Information not localized
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