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Published on: September 8, 2023
The Longest Angiographic and Clinical Follow-Up of Microsurgically Treated Giant Intracranial Aneurysms: Experience
Servet İnci1, Atilla Akbay1, Tulay Aslan1
1Department of Neurosurgery, Hacettepe University School of Medicine, Ankara, Turkey.
Background:
Giant intracranial aneurysms (GIAs), if left untreated, have an extremely poor natural history. Despite many reports about the surgical treatment of GIAs, their long-term clinical and angiographic results are unclear. To our knowledge, this study reports the longest clinical and angiographic follow-up of microsurgically treated GIAs in the English literature.
Methods:
Between January 1997 and December 2017, 70 patients with giant anterior circulation aneurysms treated using microsurgery were retrospectively reviewed. The applied microsurgical techniques and especially long-term clinical and angiographic follow-up data were evaluated.
Results:
The mean aneurysm size was 29.2 mm (range, 25-58 mm). The aneurysm neck was occluded in 61 patients (87.2%). Nine aneurysms were clipped using an aneurysm clip compression technique. In 8 patients (11.4%), the aneurysm neck was found smaller at surgery than expected according to angiographic findings. Postoperative angiograms showed complete occlusion in 52 of 61 patients (85.2%). The treatment results at discharge were excellent-good (modified Rankin Scale score ≤2) in 75.3% of the patients. The overall mortality was 7.6%. At long-term clinical follow-up (mean, 105.2 months), 48 patients (78.6%) showed excellent-good outcome. At late angiographic follow-up (mean, 98.0 months), no recurrence was seen in patients with complete aneurysm closure.
Conclusions:
Most giant anterior circulation aneurysms can be successfully clipped, with acceptable morbidity and mortality. Some giant aneurysms have a smaller neck than expected. The aneurysm clip compression technique is useful in clipping of GIAs. This longest clinical and angiographic follow-up in the literature shows that clip ligation has excellent durability in GIAs, also.
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