Strayle-BatraMSkalejM: Three dimensional spiral CT angiography in the detection of cerebral aneurysm. Acta Radiol39: 233–238, 1998.
2.
TackeJKleinHMBertalanffiH: Clinical significance of three-dimensional helical CT in neurosugery. Minim-Invasive-Neurosurg40: 30–35, 1997.
3.
OkuyamaTSaitoK: Diagnosis of unruptured cerebral aneurysms using magnetic resonance angiography and three dimensional computed tomographic angiography. No-Shinkei-Geka25: 1073–1079, 1997.
4.
TakagiRHayashinH: Three dimensional CT angiography for cerebral aneurysm using a multi-angle reconstruction plan method. Nippon-Igaku-Hoshasen-Gakkai-Zasshi58: 238–240, 1998.
5.
OkuyamaTSaitoK: Improvement of MRA and 3D-CTA does away with the need for cerebral angiography in many cerebral aneurysms operations. No-Shinkei-Geka26: 607–612, 1998.
6.
HeringMWakhlooAK: Multi-projektionale angiographie zur darstellung zerebraler aneurysmen. Aktelle-Radiol8: 169–175, 1998.
7.
KatoYSanoH: Application of three-dimensional CT angiography (3D-CTA) to cerebral aneurysms. Syrg- Neurol52: 113–121, 1999.
8.
SatohT: Transluminal imaging with perspective volume rendering of computed tomographic angiography for the delieation of cerebral aneurysms. Neurol Med Chir41: 425–429, 2001.
9.
KatoY: Can 3D-CTA surpass DSA in diagnosis of cerebral aneurysm?Acta Neurochir143: 245–250, 2001.
10.
AlbericoRAMahedraPCaseySJ: Evaluation of the circle of Willis with three dimensional CT angiography in patients with suspected intracranial aneurysmas. Am J Neuroradiol16: 157–178, 1995.
11.
WilmsGGuffensM: Spiral CT of intracranial aneurysms: correlation with digital subtraction and magnetic resonance angiography. Neuroradiology38: 20–25, 1996.
12.
AokiSSasakiY: Cerebral aneurysms: detection and delination using 3-D- CT angiography. Am J Neuroradiol: 1115–1120, 1992.