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使用新半自动方法测量胎儿脑内结构容积。

Volume of Structures in the Fetal Brain Measured with a New Semiautomated Method.

机构信息

From the Departments of Obstetrics and Gynecology (R.B., D.H., A.P., E.K.)

From the Departments of Obstetrics and Gynecology (R.B., D.H., A.P., E.K.).

出版信息

AJNR Am J Neuroradiol. 2017 Nov;38(11):2193-2198. doi: 10.3174/ajnr.A5349. Epub 2017 Aug 24.

Abstract

BACKGROUND AND PURPOSE

Measuring the volume of fetal brain structures is challenging due to fetal motion, low resolution, and artifacts caused by maternal tissue. Our aim was to introduce a new, simple, Matlab-based semiautomated method to measure the volume of structures in the fetal brain and present normal volumetric curves of the structures measured.

MATERIALS AND METHODS

The volume of the supratentorial brain, left and right hemispheres, cerebellum, and left and right eyeballs was measured retrospectively by the new semiautomated method in MR imaging examinations of 94 healthy fetuses. Four volume ratios were calculated. Interobserver agreement was calculated with the intraclass correlation coefficient, and a Bland-Altman plot was drawn for comparison of manual and semiautomated method measurements of the supratentorial brain.

RESULTS

We present normal volumetric curves and normal percentile values of the structures measured according to gestational age and of the ratios between the cerebellum and the supratentorial brain volume and the total eyeball and the supratentorial brain volume. Interobserver agreement was good or excellent for all structures measured. The Bland-Altman plot between manual and semiautomated measurements showed a maximal relative difference of 7.84%.

CONCLUSIONS

We present a technologically simple, reproducible method that can be applied prospectively and retrospectively on any MR imaging protocol, and we present normal volumetric curves measured. The method shows results like manual measurements while being less time-consuming and user-dependent. By applying this method on different cranial and extracranial structures, anatomic and pathologic, we believe that fetal volumetry can turn from a research tool into a practical clinical one.

摘要

背景与目的

由于胎儿运动、低分辨率和母体组织产生的伪影,测量胎儿脑结构的体积具有挑战性。我们的目的是介绍一种新的、简单的基于 Matlab 的半自动方法,用于测量胎儿脑结构的体积,并呈现所测量结构的正常体积曲线。

材料与方法

通过新的半自动方法,对 94 例健康胎儿的磁共振成像检查进行回顾性测量,测量幕上脑、左右半球、小脑和左右眼球的体积。计算了四个体积比。使用组内相关系数计算观察者间一致性,并绘制 Bland-Altman 图,比较手动和半自动方法测量幕上脑的结果。

结果

我们根据胎龄呈现了所测量结构的正常体积曲线和百分位数,以及小脑与幕上脑体积比和总眼球与幕上脑体积比的正常百分比。对于所有测量的结构,观察者间一致性均为良好或优秀。手动和半自动测量之间的 Bland-Altman 图显示最大相对差异为 7.84%。

结论

我们提出了一种技术简单、可重复性好的方法,可以在任何磁共振成像方案中前瞻性和回顾性地应用,并呈现所测量的正常体积曲线。该方法的结果与手动测量相似,但耗时更少且对用户的依赖性更小。通过将这种方法应用于不同的颅内外结构,包括解剖和病理结构,我们相信胎儿体积测量可以从研究工具转变为实际的临床工具。

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