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多层螺旋CT静脉成像直接三维建模显示静脉系统:技术、适应证及结果

Three-dimensional modelling of the venous system by direct multislice helical computed tomography venography: technique, indications and results.

作者信息

Uhl J F

机构信息

Varicose Vein Surgical Center, 113 Avenue Victor Hugo, 75116 Paris, France.

出版信息

Phlebology. 2012 Sep;27(6):270-88. doi: 10.1258/phleb.2012.012J07.

DOI:10.1258/phleb.2012.012J07
PMID:23155152
Abstract

The aim of multislice helical computed tomography venography (CTV) is to provide a precise, global and three-dimensional (3D) anatomical depiction of the venous network of the lower limbs. A multislice and multidetector spiral CT acquisition of the lower limbs with contrast injection of the dorsal foot produces about 1000 slices in 30 seconds. Dedicated volume-rendering software can compute a realistic and interactive 3D model of the venous system in realtime. This new tool furnishes an accurate 3D representation of the whole venous system of the lower limb with a realistic 3D model of the limbs, providing a road map of the varicose networks complementary to the duplex ultrasound (DUS). CTV allows a complete morphological study of the deep veins, including the detection of anatomical variations and proximal venous obstruction, not easily detectable by DUS. In the case of deep vein thrombosis, it has been shown to be a good diagnostic tool, well correlated with sonography. It also demonstrates, in some cases, haemodynamic patterns which are not available by DUS, particularly for perforator veins and congenital vascular malformations. The use of virtual reality techniques enables a complete anatomical study of both deep and superficial veins including a virtual dissection of the limbs. CTV is also a great educational tool to learn anatomy of the venous system and a powerful research tool to improve our knowledge of venous anatomy.

摘要

多层螺旋计算机断层扫描静脉造影(CTV)的目的是提供下肢静脉网络精确、全面的三维(3D)解剖图像。通过向足背注射造影剂,对下肢进行多层多探测器螺旋CT扫描,在30秒内可产生约1000层图像。专用的容积再现软件能够实时计算出逼真且可交互的静脉系统3D模型。这个新工具通过逼真的下肢3D模型,提供了下肢整个静脉系统的精确3D呈现,为静脉曲张网络提供了一份补充双功超声(DUS)的路线图。CTV能够对深静脉进行完整的形态学研究,包括检测解剖变异和近端静脉阻塞,而这些在DUS中不易检测到。在深静脉血栓形成的情况下,它已被证明是一种良好的诊断工具,与超声检查相关性良好。在某些情况下,它还能显示DUS无法提供的血流动力学模式,特别是对于穿通静脉和先天性血管畸形。虚拟现实技术的应用能够对深静脉和浅静脉进行完整的解剖学研究,包括对肢体的虚拟解剖。CTV也是学习静脉系统解剖学的优秀教育工具,以及增进我们对静脉解剖学认识的强大研究工具。

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