References
- Ahmad A, Azad S, Azad R. Differentiation of leptomeningeal and vascular enhancement on post-contrast FLAIR MRI sequence: role in early detection of infectious meningitis. J Clin Diagn Res 2015;9:TC08-12
- Finelli DA, Hurst GC, Gullapali RP, Bellon EM. Improved contrast of enhancing brain lesions on postgadolinium, T1-weighted spin-echo images with use of magnetization transfer. Radiology 1994;190:553-559 https://doi.org/10.1148/radiology.190.2.8284415
- Kastrup O, Wanke I, Maschke M. Neuroimaging of infections. NeuroRx 2005;2:324-332 https://doi.org/10.1602/neurorx.2.2.324
- Kamra P, Azad R, Prasad KN, Jha S, Pradhan S, Gupta RK. Infectious meningitis: prospective evaluation with magnetization transfer MRI. Br J Radiol 2004;77:387-394 https://doi.org/10.1259/bjr/23641059
- Galassi W, Phuttharak W, Hesselink JR, Healy JF, Dietrich RB, Imbesi SG. Intracranial meningeal disease: comparison of contrast-enhanced MR imaging with fluid-attenuated inversion recovery and fat-suppressed T1-weighted sequences. AJNR Am J Neuroradiol 2005;26:553-559
- Singh SK, Leeds NE, Ginsberg LE. MR imaging of leptomeningeal metastases: comparison of three sequences. AJNR Am J Neuroradiol 2002;23:817-821
- Mehta RC, Pike GB, Haros SP, Enzmann DR. Central nervous system tumor, infection, and infarction: detection with gadolinium-enhanced magnetization transfer MR imaging. Radiology 1995;195:41-46 https://doi.org/10.1148/radiology.195.1.7892492
- Dousset V, Armand JP, Lacoste D, Mieze S, Letenneur L, Dartigues JF, et al. Magnetization transfer study of HIV encephalitis and progressive multifocal leukoencephalopathy. Groupe d'Epidemiologie Clinique du SIDA en Aquitaine. AJNR Am J Neuroradiol 1997;18:895-901
- Burke JW, Mathews VP, Elster AD, Ulmer JL, McLean FM, Davis SB. Contrast-enhanced magnetization transfer saturation imaging improves MR detection of herpes simplex encephalitis. AJNR Am J Neuroradiol 1996;17:773-776
- Kamran S, Bener AB, Alper D, Bakshi R. Role of fluidattenuated inversion recovery in the diagnosis of meningitis: comparison with contrast-enhanced magnetic resonance imaging. J Comput Assist Tomogr 2004;28:68-72 https://doi.org/10.1097/00004728-200401000-00011
- Mathews VP, Caldemeyer KS, Lowe MJ, Greenspan SL, Weber DM, Ulmer JL. Brain: gadolinium-enhanced fast fluidattenuated inversion-recovery MR imaging. Radiology 1999;211:257-263 https://doi.org/10.1148/radiology.211.1.r99mr25257
- Gupta RK, Kathuria MK, Pradhan S. Magnetization transfer MR imaging in CNS tuberculosis. AJNR Am J Neuroradiol 1999;20:867-875
- Singer MB, Atlas SW, Drayer BP. Subarachnoid space disease: diagnosis with fluid-attenuated inversion-recovery MR imaging and comparison with gadolinium-enhanced spin-echo MR imaging--blinded reader study. Radiology 1998;208:417-422 https://doi.org/10.1148/radiology.208.2.9680570
- Tsuchiya K, Inaoka S, Mizutani Y, Hachiya J. Fast fluidattenuated inversion-recovery MR of intracranial infections. AJNR Am J Neuroradiol 1997;18:909-913
- Vaswani AK, Nizamani WM, Ali M, Aneel G, Shahani BK, Hussain S. Diagnostic accuracy of contrast-enhanced FLAIR magnetic resonance imaging in diagnosis of meningitis correlated with CSF analysis. ISRN Radiol 2014;2014:578986
- De Coene B, Hajnal JV, Gatehouse P, Longmore DB, White SJ, Oatridge A, et al. MR of the brain using fluid-attenuated inversion recovery (FLAIR) pulse sequences. AJNR Am J Neuroradiol 1992;13:1555-1564
- Parmar H, Sitoh YY, Anand P, Chua V, Hui F. Contrast-enhanced flair imaging in the evaluation of infectious leptomeningeal diseases. Eur J Radiol 2006;58:89-95 https://doi.org/10.1016/j.ejrad.2005.11.012
- Melhem ER, Jara H, Eustace S. Fluid-attenuated inversion recovery MR imaging: identification of protein concentration thresholds for CSF hyperintensity. AJR Am J Roentgenol 1997;169:859-862 https://doi.org/10.2214/ajr.169.3.9275912
- Taoka T, Yuh WT, White ML, Quets JP, Maley JE, Ueda T. Sulcal hyperintensity on fluid-attenuated inversion recovery mr images in patients without apparent cerebrospinal fluid abnormality. AJR Am J Roentgenol 2001;176:519-524 https://doi.org/10.2214/ajr.176.2.1760519
- Mathews VP, Kuharik MA, Edwards MK, D'Amour PG, Azzarelli B, Dreesen RG. Dyke award. Gd-DTPA-enhanced MR imaging of experimental bacterial meningitis: evaluation and comparison with CT. AJR Am J Roentgenol 1989;152:131-136 https://doi.org/10.2214/ajr.152.1.131
- Lee EK, Lee EJ, Kim S, Lee YS. Importance of contrastenhanced fluid-attenuated inversion recovery magnetic resonance imaging in various intracranial pathologic conditions. Korean J Radiol 2016;17:127-141 https://doi.org/10.3348/kjr.2016.17.1.127
- Capone PM, Scheller JM. Neuroimaging of infectious disease. Neurol Clin 2014;32:127-145 https://doi.org/10.1016/j.ncl.2013.07.009
- Splendiani A, Puglielli E, De Amicis R, Necozione S, Masciocchi C, Gallucci M. Contrast-enhanced FLAIR in the early diagnosis of infectious meningitis. Neuroradiology 2005;47:591-598 https://doi.org/10.1007/s00234-005-1383-7
- Quint DJ, Eldevik OP, Cohen JK. Magnetic resonance imaging of normal meningeal enhancement at 1.5 T. Acad Radiol 1996;3:463-468 https://doi.org/10.1016/S1076-6332(96)80002-X
- Joosten AA, van der Valk PD, Geelen JA, Severin WP, Jansen Steur EN. Tuberculous meningitis: pitfalls in diagnosis. Acta Neurol Scand 2000;102:388-394 https://doi.org/10.1034/j.1600-0404.2000.102006388.x
- Grossman SA, Krabak MJ. Leptomeningeal carcinomatosis. Cancer Treat Rev 1999;25:103-119 https://doi.org/10.1053/ctrv.1999.0119
- Hughes DC, Raghavan A, Mordekar SR, Griffiths PD, Connolly DJ. Role of imaging in the diagnosis of acute bacterial meningitis and its complications. Postgrad Med J 2010;86:478-485 https://doi.org/10.1136/pgmj.2010.097022
- Upadhyayula S. Question 2 * is there a role for MRI as an adjunct for diagnosing bacterial meningitis? Arch Dis Child 2013;98:388-390 https://doi.org/10.1136/archdischild-2013-303858
- Lagi F, Bartalesi F, Pecile P, Biagioli T, Caldini AL, Fanelli A, et al. Proposal for a new score-based approach to improve efficiency of diagnostic laboratory workflow for acute bacterial meningitis in adults. J Clin Microbiol 2016;54:1851-1854 https://doi.org/10.1128/JCM.00149-16
- Schutte CM, van der Meyden CH. A prospective study of Glasgow Coma Scale (GCS), age, CSF-neutrophil count, and CSF-protein and glucose levels as prognostic indicators in 100 adult patients with meningitis. J Infect 1998;37:112-115 https://doi.org/10.1016/S0163-4453(98)80163-1
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