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[三维增强经颅多普勒超声诊断]

[3-dimensional echo-enhanced transcranial Doppler ultrasound diagnosis].

作者信息

Bauer A, Bogdahn U, Haase A, Schlief R

机构信息

Klinische Entwicklung Diagnostika, Ultraschallkontrastmittel, Schering AG, Berlin.

出版信息

Radiologe. 1998 May;38(5):394-8. doi: 10.1007/s001170050370.

Abstract

Echo-enhancing agents improve the signal intensity of transcranial Doppler signals, enabling a novel approach of three-dimensional transcranial vascular imaging by Doppler ultrasound. The basic principle, system requirements and early clinical results with a custom built system are described. Transcranial color Doppler imaging was performed through the temporal bone acoustic window. During i.v. administration of the transpulmonary stable, galactose-based echo-enhancer Levovist (Schering) the video output of the ultrasound scanner was digitized and the spatial position of the recorded frames was simultaneously registered using a mechanical position sensor. After automatic segmentation of the color information, the 3D datasets were reconstructed offline using a Unix-based workstation (Silicon Graphics). Visualization was achieved by maximum intensity projection or surface visualization techniques. Administration of Levovist resulted in good enhancement of the vascular Doppler signal intensity, enabling acquisition of a 3D dataset of the complete circle of Willis with an imaging window of approximately 3-5 min for one i.v. injection. The vascularity of tumors could be recorded as a 3D dataset and further analyzed. The power Doppler technique with echoenhancement proved a valuable tool for 3D dataset recording. 3D datasets clearly facilitated the diagnosis of the vascular anatomy and lesion vascularity and provided additional information on localization of feeders, vascular displacement and extent of tumor vascularity.

摘要

超声造影剂可提高经颅多普勒信号的强度,从而实现一种通过多普勒超声进行三维经颅血管成像的新方法。本文描述了其基本原理、系统要求以及使用定制系统获得的早期临床结果。经颅彩色多普勒成像通过颞骨声学窗口进行。在静脉注射经肺稳定的、基于半乳糖的超声造影剂Levovist(先灵公司)期间,超声扫描仪的视频输出被数字化,并且使用机械位置传感器同时记录所采集帧的空间位置。在对颜色信息进行自动分割后,使用基于Unix的工作站(硅图公司)离线重建三维数据集。通过最大强度投影或表面可视化技术实现可视化。注射Levovist后,血管多普勒信号强度得到良好增强,一次静脉注射约3 - 5分钟的成像窗口即可获取完整 Willis 环的三维数据集。肿瘤血管情况可记录为三维数据集并进一步分析。具有超声造影增强的能量多普勒技术被证明是记录三维数据集的宝贵工具。三维数据集明显有助于血管解剖结构和病变血管情况的诊断,并提供有关供血动脉定位、血管移位和肿瘤血管范围的额外信息。

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