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Research ArticleAdult Brain

Dedicated 3D-T2-STIR-ZOOMit Imaging Improves Demyelinating Lesion Detection in the Anterior Visual Pathways of Patients with Multiple Sclerosis

E. Pravatà, L. Roccatagliata, M.P. Sormani, L. Carmisciano, C. Lienerth, R. Sacco, A. Kaelin-Lang, A. Cianfoni, C. Zecca and C. Gobbi
American Journal of Neuroradiology June 2021, 42 (6) 1061-1068; DOI: https://doi.org/10.3174/ajnr.A7082
E. Pravatà
aFrom the Department of Neuroradiology (E.P., A.C.), Neurocenter of Southern Switzerland, Lugano, Switzerland
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L. Roccatagliata
bDepartment of Health Sciences (L.R., M.P.S., L.C.), University of Genova, Genova, Italy
cDipartimento di Scienze della Salute – DISSAL (L.R., M.P.S.), Istituto di Ricovero e Cura a Carattere Scientifico Ospedale Policlinico San Martino, Genoa, Italy
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M.P. Sormani
bDepartment of Health Sciences (L.R., M.P.S., L.C.), University of Genova, Genova, Italy
cDipartimento di Scienze della Salute – DISSAL (L.R., M.P.S.), Istituto di Ricovero e Cura a Carattere Scientifico Ospedale Policlinico San Martino, Genoa, Italy
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L. Carmisciano
bDepartment of Health Sciences (L.R., M.P.S., L.C.), University of Genova, Genova, Italy
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C. Lienerth
dBayer Vital GmbH (C.L.), Leverkusen, Germany
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R. Sacco
eDepartment of Neurology (R.S., A.K.-L., C.Z., C.G.), Neurocenter of Southern Switzerland, Lugano, Switzerland
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A. Kaelin-Lang
eDepartment of Neurology (R.S., A.K.-L., C.Z., C.G.), Neurocenter of Southern Switzerland, Lugano, Switzerland
fFaculty of Biomedical Sciences (A.K.-L., A.C., C.Z., C.G.), Università della Svizzera Italiana, Lugano, Switzerland
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A. Cianfoni
aFrom the Department of Neuroradiology (E.P., A.C.), Neurocenter of Southern Switzerland, Lugano, Switzerland
fFaculty of Biomedical Sciences (A.K.-L., A.C., C.Z., C.G.), Università della Svizzera Italiana, Lugano, Switzerland
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C. Zecca
eDepartment of Neurology (R.S., A.K.-L., C.Z., C.G.), Neurocenter of Southern Switzerland, Lugano, Switzerland
fFaculty of Biomedical Sciences (A.K.-L., A.C., C.Z., C.G.), Università della Svizzera Italiana, Lugano, Switzerland
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C. Gobbi
eDepartment of Neurology (R.S., A.K.-L., C.Z., C.G.), Neurocenter of Southern Switzerland, Lugano, Switzerland
fFaculty of Biomedical Sciences (A.K.-L., A.C., C.Z., C.G.), Università della Svizzera Italiana, Lugano, Switzerland
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Abstract

BACKGROUND AND PURPOSE: Demyelinating lesions in the anterior visual pathways represent an underestimated marker of disease dissemination in patients with MS. We prospectively investigated whether a dedicated high-resolution MR imaging technique, the 3D-T2-STIR-ZOOMit, improves demyelinating lesion detection compared with the current clinical standard sequence, the 2D-T2-STIR.

MATERIALS AND METHODS: 3T MR imaging of the anterior visual pathways (optic nerves, chiasm, and tracts) was performed using 3D-T2-STIR-ZOOMit and 2D-T2-STIR, in patients with MS and healthy controls. Two experienced neuroradiologists assessed, independently, demyelinating lesions using both sequences separately. 3D-T2-STIR-ZOOMit scan-rescan reproducibility was tested in 12 patients. The Cohen κ was used for interrater agreement, and the intraclass correlation coefficient for reproducibility. Between-sequence detection differences and the effects of location and previous acute optic neuritis were assessed using a binomial mixed-effects model.

RESULTS: Forty-eight patients with MS with (n = 19) or without (n = 29) past optic neuritis and 19 healthy controls were evaluated. Readers' agreement was strong (3D-T2-STIR-ZOOMit: 0.85; 2D-T2-STIR: 0.90). The 3D-T2-STIR-ZOOMit scan-rescan intraclass correlation coefficient was 0.97 (95% CI, 0.96–0.98; P < .001), indicating excellent reproducibility. Overall, 3D-T2-STIR-ZOOMit detected more than twice the demyelinating lesions (n = 89) than 2D-T2-STIR (n = 43) (OR = 2.7; 95% CI, 1.7–4.1; P < .001). In the intracranial anterior visual pathway segments, 33 of the 36 demyelinating lesions (91.7%) detected by 3D-T2-STIR-ZOOMit were not disclosed by 2D-T2-STIR. 3D-T2-STIR-ZOOMit increased detection of demyelinating lesion probability by 1.8-fold in patients with past optic neuritis (OR = 1.8; 95% CI, 1.2–3.1; P = .01) and 5.9-fold in patients without past optic neuritis (OR = 5.9; 95% CI, 2.5–13.8; P < .001). No false-positive demyelinating lesions were detected in healthy controls.

CONCLUSIONS: Dedicated 3D-T2-STIR-ZOOMit images improved substantially the detection of MS disease dissemination in the anterior visual pathways, particularly in the intracranial segments and in patients without past optic neuritis.

ABBREVIATIONS:

AON
acute optic neuritis
aVP
anterior visual pathway
DL
demyelinating lesion
HC
healthy controls
iCanal
intracanalicular optic nerve
iCran
intracranial optic nerve
iOrb
intraorbital optic nerve
OC
optic chiasm
OT
optic tract
pON
past optic neuritis
  • © 2021 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 42 (6)
American Journal of Neuroradiology
Vol. 42, Issue 6
1 Jun 2021
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Dedicated 3D-T2-STIR-ZOOMit Imaging Improves Demyelinating Lesion Detection in the Anterior Visual Pathways of Patients with Multiple Sclerosis
E. Pravatà, L. Roccatagliata, M.P. Sormani, L. Carmisciano, C. Lienerth, R. Sacco, A. Kaelin-Lang, A. Cianfoni, C. Zecca, C. Gobbi
American Journal of Neuroradiology Jun 2021, 42 (6) 1061-1068; DOI: 10.3174/ajnr.A7082

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Dedicated 3D-T2-STIR-ZOOMit Imaging Improves Demyelinating Lesion Detection in the Anterior Visual Pathways of Patients with Multiple Sclerosis
E. Pravatà, L. Roccatagliata, M.P. Sormani, L. Carmisciano, C. Lienerth, R. Sacco, A. Kaelin-Lang, A. Cianfoni, C. Zecca, C. Gobbi
American Journal of Neuroradiology Jun 2021, 42 (6) 1061-1068; DOI: 10.3174/ajnr.A7082
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