Suzuki Y, Matsumoto K
Department of Neurosurgery, Showa University School of Medicine, Tokyo.
No Shinkei Geka. 1999 Dec;27(12):1091-6.
Three-dimensional CT angiography (3D-CTA) and digital subtraction angiography (DSA) were compared as means for imaging the skull base venous system. 3D-CTA and DSA were performed on 209 sides of 109 patients to visualize the superficial Sylvian vein (SSV), deep middle cerebral vein (DMCV), and basal vein of Rosenthal (BVR). 3D-CTA clearly visualized the SSV, especially when it coursed along the middle cranial fossa, and flowed into the transverse sinus. However, 3D-CTA could not confirm the point of flow into the sphenoparietal sinus (SPS), cavernous sinus (CS), or pterygoid plexus. 3D-CTA was superior to DSA for delineating the flow of the insular vein or DMCV into the SPS, CS or BVR. The flow of the DMCV passed through the uncal vein into the SPS or CS in more than 60% of the cases, but into the BVR in only a few cases. The flow of the BVR passed into great vein of Galen in about half of the cases, and into the CS through the DMCV in almost all the others. The 3D-CTA provided excellent delineation of veins and their stereoscopic anatomical relationships with the bone structure or the arteries and it must be useful for landmarking and kind of venous treatment during operation. 3D-CTA is potentially a powerful means for operative planning of the pterional and anterior temporal approaches.
比较三维CT血管造影(3D-CTA)和数字减影血管造影(DSA)作为颅底静脉系统成像手段的效果。对109例患者的209侧进行3D-CTA和DSA检查,以观察大脑外侧浅静脉(SSV)、大脑中深静脉(DMCV)和罗森塔尔基底静脉(BVR)。3D-CTA能清晰显示SSV,尤其是当其沿颅中窝走行并流入横窦时。然而,3D-CTA无法确定其流入蝶顶窦(SPS)、海绵窦(CS)或翼静脉丛的位置。在描绘岛叶静脉或DMCV流入SPS、CS或BVR方面,3D-CTA优于DSA。在超过60%的病例中,DMCV的血流通过钩静脉流入SPS或CS,但仅有少数病例流入BVR。在约一半的病例中,BVR的血流流入大脑大静脉,在几乎所有其他病例中,通过DMCV流入CS。3D-CTA能很好地描绘静脉及其与骨骼结构或动脉的立体解剖关系,对于手术中的定位和某些静脉治疗肯定有用。3D-CTA可能是翼点入路和前颞叶入路手术规划的有力手段。