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胎儿心脏的四维超声检查与时空图像相关技术

Four-dimensional ultrasonography of the fetal heart with spatiotemporal image correlation.

作者信息

Gonçalves Luís F, Lee Wesley, Chaiworapongsa Tinnakorn, Espinoza Jimmy, Schoen Mary Lou, Falkensammer Peter, Treadwell Marjorie, Romero Roberto

机构信息

Perinatology Research Branch, National Institute of Child Health and Human Development, National Institutes of Health/Department of Health and Human Services, Bethesda, MD, USA.

出版信息

Am J Obstet Gynecol. 2003 Dec;189(6):1792-802. doi: 10.1016/s0002-9378(03)00913-x.

Abstract

OBJECTIVE

This study was undertaken to describe a new technique for the examination of the fetal heart using four-dimensional ultrasonography with spatiotemporal image correlation (STIC).

STUDY DESIGN

Volume data sets of the fetal heart were acquired with a new cardiac gating technique (STIC), which uses automated transverse and longitudinal sweeps of the anterior chest wall. These volumes were obtained from 69 fetuses: 35 normal, 16 with congenital anomalies not affecting the cardiovascular system, and 18 with cardiac abnormalities. Dynamic multiplanar slicing and surface rendering of cardiac structures were performed. To illustrate the STIC technique, two representative volumes from a normal fetus were compared with volumes obtained from fetuses with the following congenital heart anomalies: atrioventricular septal defect, tricuspid stenosis, tricuspid atresia, and interrupted inferior vena cava with abnormal venous drainage.

RESULTS

Volume datasets obtained with a transverse sweep were utilized to demonstrate the cardiac chambers, moderator band, interatrial and interventricular septae, atrioventricular valves, pulmonary veins, and outflow tracts. With the use of a reference dot to navigate the four-chamber view, intracardiac structures could be simultaneously studied in three orthogonal planes. The same volume dataset was used for surface rendering of the atrioventricular valves. The aortic and ductal arches were best visualized when the original plane of acquisition was sagittal. Volumes could be interactively manipulated to simultaneously visualize both outflow tracts, in addition to the aortic and ductal arches. Novel views of specific structures were generated. For example, the location and extent of a ventricular septal defect was imaged in a sagittal view of the interventricular septum. Furthermore, surface-rendered images of the atrioventricular valves were employed to distinguish between normal and pathologic conditions. Representative video clips were posted on the Journal's Web site to demonstrate the diagnostic capabilities of this new technique.

CONCLUSION

Dynamic multiplanar slicing and surface rendering of the fetal heart are feasible with STIC technology. One good quality volume dataset, obtained from a transverse sweep, can be used to examine the four-chamber view and the outflow tracts. This novel method may assist in the evaluation of fetal cardiac anatomy.

摘要

目的

本研究旨在描述一种使用时空图像相关技术(STIC)的四维超声检查胎儿心脏的新技术。

研究设计

采用一种新的心脏门控技术(STIC)获取胎儿心脏的容积数据集,该技术利用前胸壁的自动横向和纵向扫描。这些容积数据来自69例胎儿:35例正常胎儿,16例患有不影响心血管系统的先天性异常,18例患有心脏异常。对心脏结构进行动态多平面切片和表面渲染。为说明STIC技术,将来自正常胎儿的两个代表性容积与来自患有以下先天性心脏异常胎儿的容积进行比较:房室间隔缺损、三尖瓣狭窄、三尖瓣闭锁以及下腔静脉中断伴异常静脉引流。

结果

利用横向扫描获得的容积数据集来显示心腔、节制索、房间隔和室间隔、房室瓣、肺静脉和流出道。通过使用参考点来定位四腔心视图,可以在三个正交平面上同时研究心内结构。同一容积数据集用于房室瓣的表面渲染。当原始采集平面为矢状面时,主动脉弓和动脉导管弓显示最佳。容积数据可进行交互式操作,以同时显示两个流出道以及主动脉弓和动脉导管弓。生成了特定结构的新视图。例如,在室间隔的矢状视图中对室间隔缺损的位置和范围进行成像。此外,利用房室瓣的表面渲染图像来区分正常和病理情况。代表性视频片段发布在该期刊的网站上,以展示这项新技术的诊断能力。

结论

利用STIC技术对胎儿心脏进行动态多平面切片和表面渲染是可行的。从横向扫描获得的一个高质量容积数据集可用于检查四腔心视图和流出道。这种新方法可能有助于评估胎儿心脏解剖结构。

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