PubMed Health⌕ Search

PubMed · 16935708

Current diagnostic modalities for intracranial aneurysms.

Abstract

Aneurysm diagnosis has evolved considerably over the last years. Technological advances have brought CT angiography and MR angiography to the forefront of ruptured and nonruptured intracranial aneurysm diagnosis. This article highlights current diagnostic modalities for intracranial aneurysms.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Serge Bracard, René Anxionnat, Luc Picard. 2006. Current diagnostic modalities for intracranial aneurysms.. https://doi.org/10.1016/j.nic.2006.05.002

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Expanded endonasal approach: a fully endoscopic completely transnasal resection of a skull base arteriovenous malformation.

OBJECTIVE AND IMPORTANCE: Vascular lesions with an intraosseus nidus involving the skull base are uncommon and challenging [Gianoli GJ, Amedee RG Vascular malformation of the sphenoid sinus. Ear Nose Throat J. 70:373-375;(1991), Malik GM, Mahmood A, Mehta BA Dural arteriovenous malformation of the skull base with intraosseous vascular nidus. Report of two cases. J. Neurosurg 81:620-623;(1994)]. We present a pediatric patient, with a life-threatening arteriovenous malformation (AVM) of the sphenoid sinus, clivus, and ventral skull base, who failed routine multimodality management of AVMs. An entirely transsphenoidal fully endoscopic resection was used to resect this ventral cranial base AVM with an intraosseus nidus located in the clivus. CLINICAL PRESENTATION: A 4-year-old female presented with recurrent, life-threatening hemorrhages from a clival and ventral skull base AVM of the entire clivus and ventral skull base. The patient had been temporized from the age of 2-4 years with multiple internal and external carotid arterial particulate and alcohol embolizations, including both external and internal carotid artery embolizations, intracranial ligation of the right internal carotid artery, and gamma knife irradiation. Despite these multiple interventions, the patient had persistent, life-threatening hemorrhages from arterial recanalization and recruitment requiring intubation, tracheostomy, and nasopharyngeal packing. INTERVENTION: The patient underwent a three-stage surgical intervention to resect the AVM. An open subfrontal approach, as the first procedure, provided minimal access to the feeding vessels and was therefore aborted. A two-stage image-guided fully endoscopic approach via a sublabial midface approach without external incisions was performed. Postoperative angiography revealed minimal residual shunting in the pharynx and cavernous sinus. The patient has been free of significant hemorrhages over the past three years. CONCLUSION: Technological advances in endoscopic surgery and image guidance are now allowing for purely endoscopic surgical treatment of previously unresectable lesions with acceptable morbidity. We report the successful and safe resection of a ventral cranial base AVM via a fully endoscopic approach. This paper reports the first AVM with a purely intraosseus nidus of the ventral skull base and demonstrates the ability to deal with complex ventral skull base lesions using a fully endoscopic transsphenoidal technique.

Cerebral Angiography↗

Diffusion-weighted imaging of intramural hematoma in vertebral artery dissection.

BACKGROUND AND PURPOSE: Dissections of the carotid and vertebral arteries can be detected by several imaging modalities, but there is yet no consensus on the most efficient and effective choice. METHODS: We performed diffusion-weighted imaging (DWI) in four patients with vertebral artery dissection documented with T2- and T1-weighted axial magnetic resonance imaging (MRI), and conventional angiography. Intervals from the onset of headache to evaluation ranged from one day to two weeks. RESULTS: All the patients showed high signal intensity within the affected vertebral artery on DWI. CONCLUSION: The movements of water molecules are more or less restricted within the clots according to the stage of thrombus formation in arterial dissection. Our study may provide another potential imaging method in the difficult task of proving arterial dissection.

Cerebral Angiography↗