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Three-dimensional sonographic calculation of the volume of intracranial structures in growth-restricted and appropriate-for-gestational age fetuses

机译:生长受限和适合胎龄胎儿颅内结构体积的三维超声计算

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Objectives To evaluate the feasibility and reproducibility of volume segmentation of fetal intracranial structures using three-dimensional (3D) ultrasound imaging, and to estimate differences in the volume of intracranial structures between intrauterine growth-restricted (IUGR) and appropriate-for-gestational age (AGA) fetuses. Methods Total intracranial, frontal, thalamic and cerebellar volumes were measured using 3D ultrasound imaging and Virtual Organ Computer-aided AnaLysis (VOCAL) in 39 IUGR and 39 AGA fetuses matched for gestational age, at 28-34 weeks of gestation. Volumes of, and ratios between, structures were estimated, and differences between IUGR and AGA fetuses were calculated. Volume measurements were performed by two observers, and interobserver and intraobserver intraclass correlation coefficients (ICCs) were calculated for each structure. Results Volumes were satisfactorily obtained in all fetuses. All net volumes except those for the thalamus(P = 0.23) were significantly smaller (P = 0.001) in IUGR fetuses. After adjusting volumes for biparietal diameter the frontal volume was significantly smaller (P = 0.02) and the thalamic volume significantly greater (P = 0.03) in IUGR fetuses than in AGA fetuses. Significant intergroup differences in the ratios between structures were found only in those involving the frontal region. Interobserver ICCs were as follows: total intracranial 0.97 (95% CI, 0.92-0.98), cerebellar 0.69 (95% CI, 0.44-0.75), frontal 0.66 (95% CI, 0.42-0.79) and thalamic 0.54 (95% CI, 0.37-0.72). Conclusions IUGR fetuses show differences in the volume of intracranial structures compared with AGA fetuses, with the largest difference found in the frontal region. These differences might be explained by in-utero processes of neural reorganization induced by chronic hypoxia. © 2009 ISUOG.
机译:目的评估使用三维(3D)超声成像对胎儿颅内结构进行体积分割的可行性和可重复性,并评估宫内生长受限(IUGR)与适合胎龄之间的颅内结构体积差异( AGA)胎儿。方法使用3D超声成像和虚拟器官计算机辅助分析(VOCAL)方法,在39-胎龄为28-34周的39 IUGR和39 AGA胎儿中,测量了颅内,额,丘脑和小脑的总体积。估计结构的体积和比率,并计算IUGR和AGA胎儿之间的差异。由两名观察员进行体积测量,并为每种结构计算观察者间和观察者内类内相关系数(ICC)。结果所有胎儿的体积均令人满意。 IUGR胎儿中除丘脑外的所有净体积(P = 0.23)均显着较小(P = 0.001)。调整双顶径的体积后,IUGR胎儿的额叶体积明显较小(P = 0.02),丘脑体积明显较大(P = 0.03),而AGA胎儿则较小。仅在涉及额叶区域的那些之间发现结构间比率的显着组间差异。观察者间ICC如下:总颅内0.97(95%CI,0.92-0.98),小脑0.69(95%CI,0.44-0.75),额叶0.66(95%CI,0.42-0.79)和丘脑0.54(95%CI, 0.37-0.72)。结论IUGR胎儿的颅内结构与AGA胎儿相比存在差异,额叶区域的差异最大。这些差异可能是由慢性缺氧引起的子宫内重组神经过程解释的。 ©2009 ISUOG。

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