Focus on the target: Angiographic features of the fistulous point and prognosis of transvenous embolization of cavernous sinus dural arteriovenous fistula

聚焦目标:海绵窦硬脑膜动静脉瘘瘘口血管造影特征及经静脉栓塞术的预后

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Abstract

Background and purpose Transvenous embolization (TVE) is widely utilized as an effective and safe treatment option for cavernous sinus dural arteriovenous fistula (CS-dAVF); however, detecting the exact location of the fistula is challenging. The present study identified the angiographic features of the fistulous point and evaluated the match with the microcatheter tip and fistulous point. Materials and methods An analysis cohort of 45 consecutive patients with CS-dAVF treated by TVE was analyzed retrospectively. The patients were divided into two groups, 22 matches and 23 mismatches, according to whether the fistulous point and the microcatheter tip were in the same compartment of the cavernous sinus (CS). The angiographic findings, the location of the fistulas, the position of the microcatheter tips, the volume of embolic materials, complications, and outcomes were assessed. Results Several angiographic features defined the fistulous points, such as the early opacified area, jellyfish-like sign, changes in the density of the contrast medium, the juncture of different arterial supply, enlarged feeders, and hand-injection angiograms. The fistulas were primarily in the posterosuperior portion of the CS (80%) and medial side (73.3%) according to the internal carotid artery. Both groups achieved effective TVE; the matched group required less embolic material than the mismatched group ( p = 0.024). The patients with cranial nerve dysfunction (CND) required more embolic materials than others ( p = 0.032). Conclusion The fistulous point in most of the CS-dAVFs could be isolated by careful analysis of the angiography images. The matching of the microcatheter tip and fistulous point in the same compartment of CS can reduce the dosage of embolic materials, and a low volume of embolic materials might cause fewer CND complications.

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