Access the full text.
Sign up today, get DeepDyve free for 14 days.
Maa Walderveen, F. Barkhof, O. Hommes, C. Polman, H. Tobi, S. Frequin, J. Valk (1995)
Correlating MRI and clinical disease activity in multiple sclerosisNeurology, 45
(1996)
Imaging of axonal damage in multiple sclerosis: relation to MRI appearance, clinical disability, and clinical course [abstract]
B. Weinshenker, B. Bass, G. Rice, J. Noseworthy, W. Carriere, J. Baskerville, G. Ebers (1989)
The natural history of multiple sclerosis: a geographically based study. I. Clinical course and disability.Brain : a journal of neurology, 112 ( Pt 1)
C. Poser, D. Paty, L. Scheinberg, W. Mcdonald, F. Davis, G. Ebers, K. Johnson, W. Sibley, D. Silberberg, W. Tourtellotte (1983)
New diagnostic criteria for multiple sclerosis: Guidelines for research protocolsAnnals of Neurology, 13
R. Mansfield, J. Prime (1987)
Volume Selection Using Gradients and Selective PulsesAnnals of the New York Academy of Sciences, 508
N. Losseff, L. Wang, H. Lai, D. Yoo, M. Gawne-Cain, W. Mcdonald, D. Miller, A. Thompson (1996)
Progressive cerebral atrophy in multiple sclerosis. A serial MRI study.Brain : a journal of neurology, 119 ( Pt 6)
S. Davies, J. Newcombe, S. Williams, W. Mcdonald, J. Clark (1995)
High Resolution Proton NMR Spectroscopy of Multiple Sclerosis LesionsJournal of Neurochemistry, 64
W. Mcdonald (1994)
RACHELLE FISHMAN-MATTHEW MOORE LECTURE: The Pathological and Clinical Dynamics of Multiple SclerosisJournal of Neuropathology and Experimental Neurology, 53
D. Miller, S. Austin, A. Connelly, B. Youl, D. Gadian, W. Mcdonald (1991)
Proton magnetic resonance spectroscopy of an acute and chronic lesion in multiple sclerosisThe Lancet, 337
Cedric Raine, A. Cross (1989)
Axonal dystrophy as a consequence of long-term demyelination.Laboratory investigation; a journal of technical methods and pathology, 60 5
D. Miller (1995)
Magnetic resonance imaging and spectroscopy in multiple sclerosis.Current opinion in neurology, 8 3
N. Stefano, Paul Matthews, S. Narayanan, G. Francis, J. Antel, D. Arnold (1997)
Axonal dysfunction and disability in a relapse of multiple sclerosis: Longitudinal study of a patientNeurology, 49
D. Paty, D. Li (1993)
Interferon beta‐1b is effective in relapsing‐remitting multiple sclerosisNeurology, 43
J. Urenjak, S. Williams, D. Gadian, M. Noble (1992)
Specific Expression of N‐Acetylaspartate in Neurons, Oligodendrocyte‐Type‐2 Astrocyte Progenitors, and Immature Oligodendrocytes In VitroJournal of Neurochemistry, 59
M. Torrens (1990)
Co-Planar Stereotaxic Atlas of the Human Brain—3-Dimensional Proportional System: An Approach to Cerebral Imaging, J. Talairach, P. Tournoux. Georg Thieme Verlag, New York (1988), 122 pp., 130 figs. DM 268Clinical Radiology, 41
L. Fu, Christina Wolfson, Keith Worsley, N. Stefano, D. Collins, S. Narayanan, D. Arnold (1996)
Statistics for Investigation of Multimodal MR Imaging Data and an Application to Multiple Sclerosis PatientsNMR in Biomedicine, 9
S. Patt, B. Sykes (1972)
Water Eliminated Fourier Transform NMR SpectroscopyJournal of Chemical Physics, 56
D. Arnold, P. Matthews, G. Francis, John O'Connor, J. Antel (1992)
Proton magnetic resonance spectroscopic imaging for metabolic characterization of demyelinating plaquesAnnals of Neurology, 31
(1995)
Blood–brain barrier disruption on contrast-enhanced MRI in patients with mild relapsing–remitting multiple sclerosis: relationship to course, gender, and age
PhD Husted, M. Goodin, PhD Hum, PhD Maudsley, MD Tsuruda, MD Bie, G. PhD§, PhD Matson, MD Weiner, Catherine Husted, H. DS, AA Maudsley, JS Tsuruda, SH Bie, GB Matson, Dr Husted (1994)
Biochemical alterations in multiple sclerosis lesions and normal‐appearing white matter detected by in vivo 31P and 1H spectroscopic imagingAnnals of Neurology, 36
R. Grossman, R. Lenkinski, K. Ramer, F. González-Scarano, J. Cohen (1992)
MR proton spectroscopy in multiple sclerosis.AJNR. American journal of neuroradiology, 13 6
M. Kamber (1991)
Automated detection of multiple sclerosis lesions in magnetic resonance images of the human brain
D. Paty, David Li, J. Oger, L. Kastrukoff, R. Koopmans, Elizabeth Tanton, Gou Zhao (1994)
Magnetic resonance imaging in the evaluation of clinical trials in multiple sclerosisAnnals of Neurology, 36
N. Losseff, S. Webb, Ji Oriordan, Renee Page, Longlong Wang, G. Barker, P. Tofts, W. Mcdonald, D. Miller, A. Thompson (1996)
Spinal cord atrophy and disability in multiple sclerosis. A new reproducible and sensitive MRI method with potential to monitor disease progression.Brain : a journal of neurology, 119 ( Pt 3)
C. Davie, C. Hawkins, G. Barker, A. Brennan, P. Tofts, D. Miller, W. Mcdonald (1994)
Serial proton magnetic resonance spectroscopy in acute multiple sclerosis lesions.Brain : a journal of neurology, 117 ( Pt 1)
Alan Evans, Sean Marrett, P. Neelin, D. Collins, D. Bub (1992)
Anatomical mapping of functional activation in stereotactic coordinate spaceNeuroImage, 1
C. Davie, G. Barker, S. Webb, P. Tofts, A. Thompson, A. Harding, W. Mcdonald, D. Miller (1995)
Persistent functional deficit in multiple sclerosis and autosomal dominant cerebellar ataxia is associated with axon loss.Brain : a journal of neurology, 118 ( Pt 6)
D. Arnold, P. Matthews, G. Francis, J. Antel (1990)
Proton magnetic resonance spectroscopy of human brain in vivo in the evaluation of multiple sclerosis: Assessment of the load of diseaseMagnetic Resonance in Medicine, 14
P. Hecke, G. Marchal, K. Johannik, P. Demaerel, G. Wilms, Herwig Carton, A. Baert (1991)
Human brain proton localized NMR spectroscopy in multiple sclerosisMagnetic Resonance in Medicine, 18
M. Simmons, C. Frondoza, J. Coyle (1991)
Immunocytochemical localization of N-acetyl-aspartate with monoclonal antibodiesNeuroscience, 45
D. Arnold, P. Matthews, N. Stefano (1997)
MRI and Proton MRS in the Evaluation of Multiple Sclerosis
Jullie Pan, H. Hetherington, J. Vaughan, G. Mitchell, G. Pohost, J. Whitaker (1996)
Evaluation of multiple sclerosis by 1H spectroscopic imaging at 4.1 TMagnetic Resonance in Medicine, 36
D. Miller, P. Albert, F. Barkhof, G. Francis, Joseph Frank, S. Hodgkinson, F. Lublin, D. Paty, S. Reingold, J. Simon (1996)
Guidelines for the use of magnetic resonance techniques in monitoring the treatment of multiple sclerosisAnnals of Neurology, 39
D. Arnold, Gerald Riess, P. Matthews, G. Francis, D. Collins, C. Wolfson, J. Antel (1994)
Use of proton magnetic resonance spectroscopy for monitoring disease progression in multiple sclerosisAnnals of Neurology, 36
MD Smith, MD Stone, PhD Albert, MD Frank, MD Martin, MD Armstrong, E. H.MaloniRND., MD McFarlin, Maria McFarland (1993)
Clinical worsening in multiple sclerosis is associated with increased frequency and area of gadopentetate dimeglumine–enhancing magnetic resonance imaging lesionsAnnals of Neurology, 33
R. Grossman, B. Braffman, J. Brorson, H. Goldberg, D. Silberberg, F. González-Scarano (1988)
Multiple sclerosis: serial study of gadolinium-enhanced MR imaging.Radiology, 169 1
N. Stefano, P. Matthews, J. Antel, M. Preul, Gordon Francis, D. Arnold (1995)
Chemical pathology of acute demyelinating lesions and its correlation with disabilityAnnals of Neurology, 38
R. Jennrich, Mark Schluchter (1986)
Unbalanced repeated-measures models with structured covariance matrices.Biometrics, 42 4
D. Barnes, P. Munro, B. Youl, J. Prineas, W. Mcdonald (1991)
The longstanding MS lesion. A quantitative MRI and electron microscopic study.Brain : a journal of neurology, 114 ( Pt 3)
J. Kurtzke (1983)
Rating neurologic impairment in multiple sclerosisNeurology, 33
M. Willoughby, BAScS Grochowski, MD Li, MD Oger, M. Kastrukoff, M. Paty, Dr Willoughby (1989)
Serial magnetic resonance scanning in multiple sclerosis: A second prospective study in relapsing patientsAnnals of Neurology, 25
R. Beer, A. Boogaart, D. Ormondt, W. Pijnappel, J. Hollander, A. Marien, P. Luyten (1992)
Application of time‐domain fitting in the quantification of in vivo 1H spectroscopic imaging data setsNMR in Biomedicine, 5
(1997)
Received October
David Miller (1994)
Magnetic resonance in monitoring the treatment of multiple sclerosisAnnals of Neurology, 36
(1988)
Improved harmonic retrieval from noisy signals by invoking prior knowledge
J. Wolinsky, P. Narayana, Marc MD (1990)
Proton magnetic resonance spectroscopy in multiple sclerosisNeurology, 40
MD Gass, PhD Barker, Mrcp Kidd, Mrcp Thorpe, Dcr MacManus, Dcr Brennan, P. Tofts, A. DPhil, MD Thompson, PhD McDonald, MD Miller, G. Barker, J. Thorpe, P. Tofts, A. Thompson, Miller WI, Neurol (1994)
Correlation of magnetization transfer ration with clinical disability in multiple sclerosisAnnals of Neurology, 36
J. Moffett, M. Namboodiri, C. Cangro, J. Neale (1991)
Immunohistochemical localization of N-acetylaspartate in rat brain.Neuroreport, 2 3
(1994)
J Neuropathol Exp Neurol
D. Cottrell, M. Kremenchutzky, G. Rice, W. Koopman, W. Hader, J. Baskerville, G. Ebers (1999)
The natural history of multiple sclerosis: a geographically based study. 5. The clinical features and natural history of primary progressive multiple sclerosis.Brain : a journal of neurology, 122 ( Pt 4)
P. Matthews, G. Francis, J. Antel, D. Arnold (1991)
Proton magnetic resonance spectroscopy for metabolic characterization of plaques in multiple sclerosisNeurology, 41
Massimo Filippi, D. Paty, L. Kappos, F. Barkhof, D. Compston, A. Thompson, G. Zhao, C. Wiles, W. Mcdonald, David Miller (1995)
Correlations between changes in disability and T2‐weighted brain MRI activity in multiple sclerosisNeurology, 45
Paul Matthews, E. Pioro, S. Narayanan, N. Stefano, L. Fu, G. Francis, J. Antel, Christina Wolfson, D. Arnold (1996)
Assessment of lesion pathology in multiple sclerosis using quantitative MRI morphometry and magnetic resonance spectroscopy.Brain : a journal of neurology, 119 ( Pt 3)
Abstract It has been difficult to establish a strong correlation between total brain T2-weighted lesion volume on MRI and clinical disability in multiple sclerosis, in part because of the lack of pathological specificity of T2-weighted MRI signal changes. Proton magnetic resonance spectroscopy studies have shown that measurements of the resonance intensity of N-acetylaspartate (which is localized exclusively in neurons and neuronal processes in the mature brain) can provide a specific index of axonal damage or dysfunction. Here we report a 30-month longitudinal study of 29 patients with multiple sclerosis who had either a relapsing or a secondary progressive clinical course. Conventional brain MRI and single-voxel proton magnetic resonance spectroscopy examinations were obtained at intervals of 6-8 months with concurrent clinical evaluation. At the onset of the study, the brain N-acetylaspartate:creatine resonance intensity ratio was abnormally low for the whole group of patients (control mean = 2.93 +/- 0.2, patient mean = 2.56 +/- 0.4, P < 0.005). There were no significant differences between the relapsing and secondary progressive subgroups. Over the follow-up period, there was a trend towards a decrease (8%) in the brain N-acetylaspartate:creatine ratio for the 11 relapsing patients and a significant (P < 0.001) correlation between changes in the brain N-acetylaspartate:creatine ratio and expanded disability scale scores for the patients in this group. This correlation was even more evident for the patients who had clinically relevant relapses during the 30 months of follow-up (seven of 11 patients). Increases in T2-weighted lesion volumes (35% in 30 months for the group as a whole, P < 0.0001, without differences between the subgroups) did not correlate with disability either in the group of patients as a whole or in the different subgroups. We conclude that indices of axonal damage or loss such as brain N-acetylaspartate may provide a specific measure of pathological changes relevant to disability. Total T2-weighted lesion volumes, although more sensitive to changes with time than brain N-acetylaspartate, may be less relevant to understanding the progression of disability. This content is only available as a PDF.
Brain – Oxford University Press
Published: Aug 1, 1998
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.