Book contents
- Frontmatter
- Contents
- List of contributors
- List of abbreviations
- Preface
- Section 1 Bilateral Predominantly Symmetric Abnormalities
- Section 2 Sellar, Perisellar and Midline Lesions
- 38 Rathke's Cleft Cyst
- 39 Pituitary Microadenoma
- 40 Lymphocytic Hypophysitis
- 41 Pituitary Macroadenoma
- 42 Ectopic Posterior Pituitary Lobe
- 43 Langerhans Cell Histiocytosis
- 44 Craniopharyngioma
- 45 Hypothalamic Hamartoma
- 46 Optic Glioma
- 47 Perisellar Meningioma
- 48 Hemangioma of the Cavernous Sinus
- 49 Tolosa–Hunt Syndrome
- 50 Carotid-Cavernous Sinus Fistula
- 51 Perisellar Aneurysm
- 52 Chordoma
- 53 Chondrosarcoma
- 54 Colloid Cyst
- 55 Aqueductal Stenosis
- 56 Progressive Supranuclear Palsy (PSP)
- 57 Joubert Syndrome
- 58 Rhombencephalosynapsis
- 59 Multiple System Atrophy (MSA)
- 60 Maple Syrup Urine Disease (MSUD)
- 61 Chiari 2 Malformation
- 62 Tectal Glioma
- 63 Brainstem Glioma
- 64 Duret Hemorrhage
- 65 Hypertrophic Olivary Degeneration
- 66 Osmotic Myelinolysis
- 67 Germinoma
- 68 Pineoblastoma
- 69 Pineal Cyst
- 70 Vein of Galen Aneurysmal Malformation (VGAM)
- 71 Corpus Callosum Dysgenesis
- 72 Septo-Optic Dysplasia
- 73 Holoprosencephaly
- 74 Atretic Parietal Encephalocele
- 75 Dermoid Cyst
- 76 Lipoma
- Section 3 Parenchymal Defects or Abnormal Volume
- Section 4 Abnormalities Without Significant Mass Effect
- Section 5 Primarily Extra-Axial Focal Space-Occupying Lesions
- Section 6 Primarily Intra-Axial Masses
- Section 7 Intracranial Calcifications
- Index
- References
46 - Optic Glioma
from Section 2 - Sellar, Perisellar and Midline Lesions
Published online by Cambridge University Press: 05 August 2013
- Frontmatter
- Contents
- List of contributors
- List of abbreviations
- Preface
- Section 1 Bilateral Predominantly Symmetric Abnormalities
- Section 2 Sellar, Perisellar and Midline Lesions
- 38 Rathke's Cleft Cyst
- 39 Pituitary Microadenoma
- 40 Lymphocytic Hypophysitis
- 41 Pituitary Macroadenoma
- 42 Ectopic Posterior Pituitary Lobe
- 43 Langerhans Cell Histiocytosis
- 44 Craniopharyngioma
- 45 Hypothalamic Hamartoma
- 46 Optic Glioma
- 47 Perisellar Meningioma
- 48 Hemangioma of the Cavernous Sinus
- 49 Tolosa–Hunt Syndrome
- 50 Carotid-Cavernous Sinus Fistula
- 51 Perisellar Aneurysm
- 52 Chordoma
- 53 Chondrosarcoma
- 54 Colloid Cyst
- 55 Aqueductal Stenosis
- 56 Progressive Supranuclear Palsy (PSP)
- 57 Joubert Syndrome
- 58 Rhombencephalosynapsis
- 59 Multiple System Atrophy (MSA)
- 60 Maple Syrup Urine Disease (MSUD)
- 61 Chiari 2 Malformation
- 62 Tectal Glioma
- 63 Brainstem Glioma
- 64 Duret Hemorrhage
- 65 Hypertrophic Olivary Degeneration
- 66 Osmotic Myelinolysis
- 67 Germinoma
- 68 Pineoblastoma
- 69 Pineal Cyst
- 70 Vein of Galen Aneurysmal Malformation (VGAM)
- 71 Corpus Callosum Dysgenesis
- 72 Septo-Optic Dysplasia
- 73 Holoprosencephaly
- 74 Atretic Parietal Encephalocele
- 75 Dermoid Cyst
- 76 Lipoma
- Section 3 Parenchymal Defects or Abnormal Volume
- Section 4 Abnormalities Without Significant Mass Effect
- Section 5 Primarily Extra-Axial Focal Space-Occupying Lesions
- Section 6 Primarily Intra-Axial Masses
- Section 7 Intracranial Calcifications
- Index
- References
Summary
Specific Imaging Findings
Optic pathway gliomas (OPG) are found in the optic nerve, optic chiasm and optic tracts, with unilateral (most common) or bilateral distribution. They typically show fusiform enlargement of the optic pathway, which is iso- to hypodense on nonenhanced CT, T1 iso- to hypointense, and T2 iso- to hyperintense. Post-contrast enhancement varies from completely absent to intense. Kinking of the affected nerve and enlargement of the optic canal are frequently associated findings. OPG may show extension of neoplastic glial cells into the subarachnoid spaces with thickening and enhancement of the perioptic meninges, called “arachnoidal hyperplasia” or “arachnoidal gliomatosis”. This finding is almost exclusively seen in patients with neurofibromatosis type-1 (NF-1). On the other hand, cystic components seen as focal well-demarcated areas of hypointense T1 and hyperintense T2 signal are much more common in the sporadic OPG. Sporadic OPGs also tend to be larger, extend beyond the optic pathways, and progress over time. Extension of hyperintense T2 signal into adjacent tissue, especially hypothalamus, is suggestive of invasion. The majority of the OPG are relatively benign tumors and spontaneous regression may occur, especially in association with NF-1. The enhancement pattern may change over time, appear and disappear, which is without clear clinical implications in NF-1 patients. Findings of relatively low myo-inositol levels on MR spectroscopy and of increased permeability on perfusion imaging are suggestive of more aggressive neoplasms.
- Type
- Chapter
- Information
- Brain Imaging with MRI and CTAn Image Pattern Approach, pp. 95 - 96Publisher: Cambridge University PressPrint publication year: 2012