| Literature DB >> 27103315 |
Lucie Nussbaum-Hermassi1, Guido Ahle2, Chistophe Zaenker2, Camelia Duca3, Izzie Jacques Namer4,5,6.
Abstract
BACKGROUND: Optic nerve sheath meningiomas account for only 2% of orbital lesions and 42% of optic nerve tumors. Diagnosis remains difficult because histologic confirmation carries a high risk of visual loss. Therefore, a less invasive and specific diagnostic method for differentiating optic nerve sheath meningiomas from other optic nerve lesions is needed to overcome the limitations of computed tomography and magnetic resonance imaging, and make the best individualized treatment decision. This case is a good illustration of the clinical and imaging difficulties inherent in this rare tumor, which may be hard to differentiate from other causes. CASEEntities:
Keywords: Optic nerve sheath meningioma; Pentetreotide; SPECT/CT; Somatostatin receptor
Mesh:
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Year: 2016 PMID: 27103315 PMCID: PMC4841063 DOI: 10.1186/s13256-016-0885-8
Source DB: PubMed Journal: J Med Case Rep ISSN: 1752-1947
Fig. 1Multimodal imaging: matched transverse, postcontrast spin-echo T1-weighted (a), and fluid-attenuated inversion recovery (b) 1.5-T MRI scans, fused MRI/SPECT (c) and 111In-pentetreotide SPECT images (d). Transverse postcontrast gradient echo T1-weighted MRI scan (e) showing the location of coronal slices, and three-level coronal T2-weighted fat-suppressed MRI scan (f), fused MRI/SPECT image (g) and [111In]-pentetreotide SPECT image (h). MRI scan showed right tortuous optic nerve enlargement (b, dotted arrow), with a peripherally increased signal on fluid-attenuated inversion recovery (b, dotted arrow) and on coronal T2-weighted fat-suppressed sequences (f, dotted arrow). Therefore, uniform contrast enhancement (a and e, solid arrows) affected the last third of the nerve corresponding to an intense [111In]-pentetreotide uptake (d and h). The asterisk (*) shows the physiological uptake of [111In]-pentetreotide in the pituitary (c and d)