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M Filippi

Publications and source records attributed to M Filippi.

At least 181 records · Page 10Linked to original sources

Enhanced magnetic resonance imaging in multiple sclerosis.

Gadolinium-enhanced magnetic resonance imaging (MRI) is very sensitive in the detection of active lesions of multiple sclerosis (MS) and has become a valuable tool to monitor the evolution of the disease either natural or modified by treatment. In the past few years, several studies, on the one hand, have assessed several ways to increase the sensitivity of enhanced MRI to disease activity and, on the other, have investigated in vivo the nature and evolution of enhancing lesions using different non-conventional MR techniques to better define the relationship between enhancement and tissue loss in MS. The present review is a summary of these studies whose results are discussed in the context of MS clinical trial planning and monitoring. Multiple Sclerosis (2000) 6 320 - 326

Clinical Trials as Topic↗

Reproducibility of magnetization transfer ratio histogram-derived measures of the brain in healthy volunteers.

Using two MR scanners, we evaluated the intraobserver, interobserver, image-reimage, and interimager variabilities in the assessment of magnetization transfer ratio (MTR) histograms obtained monthly on four occasions from five healthy volunteers. With multiple observers, the mean coefficients of variations ranged from 2.2% to 8.2% for "pure" image-reimage variability, from 1.2% to 4.9% for interobserver variability, and from 2.1% to 4.9% for image-reimage variability. The mean intraobserver coefficients of variations were always lower than 1%. The mean coefficients of variations ranged from 10.2% to 14.6% for pure interimager variability and from 8.6% to 14.3% for interimager variability with multiple observers. Interimager variability accounted for 96.0% of the overall variability of average MTR, for 96.7% of peak location, and for 41.1% of the peak height. The use of different MR scanners is the main source of variability when obtaining MTR histograms.

Adult↗

Cortical/subcortical disease burden and cognitive impairment in patients with multiple sclerosis.

BACKGROUND AND PURPOSE: We assessed whether the extent of macro- and microscopic disease in the cortical and subcortical brain tissue, as revealed by MR and magnetization transfer (MT) imaging, correlates with cognitive dysfunction in patients with multiple sclerosis (MS). METHODS: Dual-echo rapid acquisition with relaxation enhancement (RARE), fast fluid-attenuated inversion recovery (fast-FLAIR), T1-weighted, and MT MR images of the brain were obtained from 16 MS patients with cognitive impairment and from six without. Impaired and unimpaired patients were similar across demographic and other disease-related variables. Total and cortical/subcortical lesion loads were assessed using RARE, fast-FLAIR, and T1-weighted sequences. In each patient, cortical/subcortical disease was also assessed by means of MT ratio (MTR) histographic analysis. RESULTS: All the impaired patients had multiple hyperintense lesions in the cortical/subcortical regions on both RARE and fast-FLAIR images; two unimpaired patients had such lesions on the RARE images and four had them on the fast-FLAIR images. Total and cortical/subcortical RARE/fast-FLAIR hyperintense and T1 hypointense lesion loads were significantly greater in the group of cognitively impaired patients. Patients with cognitive deficits also had significantly lower MTR histographic values for all the variables. A multivariate regression model showed that average cortical/subcortical brain MTR was the only factor that was significantly associated with cognitive impairment. CONCLUSION: The extent and severity of MS disease in the cortical and subcortical regions significantly influence the cognitive functions of MS patients. MTR histographic findings suggest that subtle changes undetectable by conventional imaging are also important in determining MS cognitive decline.

Adult↗

Diagnostic criteria for primary progressive multiple sclerosis: a position paper.

The unique clinical characteristics of primary progressive multiple sclerosis (PPMS) pose particular diagnostic difficulties, both in excluding other causes of progressive syndromes and in confirming the diagnosis of MS, which is not adequately addressed by current diagnostic criteria. This article presents new diagnostic criteria developed by a group of investigators on the basis of a review of their considerable experience with PPMS. (We conclude that at least 1 year of clinical progression must be documented before a diagnosis of PPMS is made.) Three levels of diagnostic certainty have been defined-definite, probable, and possible--based on clinical findings, abnormal cerebrospinal fluid, abnormalities on magnetic resonance imaging (MRI) of the brain and spinal cord, and evoked potentials. In definite PPMS, evidence of intrathecal synthesis of immunoglobulin G together with one of the following three MRI criteria is required: (1) nine brain lesions, (2) two spinal cord lesions, or (3) four to eight brain lesions and one spinal cord lesion. Preliminary testing of these criteria was carried out on a cohort of 156 patients participating in a European natural history study of PPMS: 64% fulfilled the criteria for definite PPMS, 35% for probable PPMS, and only 1% for possible PPMS. These criteria now require prospective validation in a cohort of newly diagnosed patients and by postmortem examination.

Diagnosis, Differential↗

Magnetisation transfer imaging in multiple sclerosis.

Magnetisation transfer imaging (MTI) is a magnetic resonance imaging (MRI) technique that has a higher specificity than conventional T2-weighted scans to the heterogeneous pathological substrates of multiple sclerosis (MS) lesions. This review outlines the contribution of MTI in the study of lesion evolution and in the assessment of disease burden in MS. MTI studies of individual MS lesions confirm the pathological heterogeneity of T2-weighted MRI abnormalities and the potential role of unenhanced T1-weighted hypointensities as specific markers of localised severe white matter disruption. Correlative cross-sectional and longitudinal studies using MTI and gadolinium (Gd)-enhanced MRI reveal that MTI findings may vary in lesions with different patterns of enhancement, and that MTI abnormalities are closely related to the onset and recovery of blood-brain barrier disruption in new MS plaques. Measures obtained from MTI scans using whole-brain histogram analysis are highly correlated with the extent of MS abnormalities on conventional MRI scans and predict patients' clinical disability well, since they are sensitive to the amounts of both macro- and microscopic MS disease burden in the whole brain and in specific regions.

Humans↗

MRI correlates of cognitive dysfunction in multiple sclerosis patients.

Studies with conventional magnetic resonance imaging (MRI) support the hypothesis that cognitive impairment in multiple sclerosis (MS) patients is related with the lesion burden. Patterns of frontal lobe cognitive decline were also found to be related with the corresponding regional lesion load, although the total lesion load on T2-weighted MRI scans of the brain seems to be more relevant in determining frontal lobe deficits. Other non-conventional MRI techniques with a higher specificity to the heterogeneous substrates of MS pathology, such as the assessment of hypointense lesion load on T1-weighted scans and the histogram analysis of magnetisation transfer ratio (MTR) maps, have recently been applied to MS cognitive studies. Results from these studies suggest that three factors play a role in the pathogenesis of MS dementia: the burden of MS lesions, the severity of the pathological damage within individual lesions and that of the normal-appearing white matter.

Cognition Disorders↗

Contrast enhancement and the acute lesion in multiple sclerosis.

Gadolinium (Gd)-enhanced MR imaging has greatly improved the understanding of the pathophysiology of multiple sclerosis (MS) and has provided robust outcome measures for monitoring MS activity. Modest correlation between the presence and extent of enhancement and the evolution of MS probably owes to the limited sensitivity and specificity of conventional Gd-enhanced MRI. Triple dose of Gd may enable better assessment of the presence and extent of "low-grade" MS inflammation. Cell-specific imaging techniques and multiparametric MR imaging studies should increase understanding of the pathologic steps between inflammation and irreversible tissue loss, and consequently, better define the mechanisms leading to irreversible neurological disability in MS. Clinical applications of Gd-enhanced MR imaging should include the diagnostic work-up of MS patients, and the assessment of their disease activity over time, in the context of natural history studies or clinical trials. Gd-enhanced MR imaging should always be obtained at presentation in patients with clinically isolated neurological syndromes, because of its ability to show the time dissemination of lesions, and its high predictive value for subsequent evolution to clinically definite MS. In patients with established MS, however, the usefulness of Gd-enhanced MR imaging should depend strictly on specific clinical settings or research questions.

Brain↗

Correlations between clinical and MRI involvement in multiple sclerosis: assessment using T(1), T(2) and MT histograms.

The degree of disability and cerebellar and brainstem impairments in multiple sclerosis (MS) patients were correlated with several magnetic resonance imaging (MRI) measures of tissue damage in the whole brain, cerebellum and brainstem to determine the relative contributions of the factors underlying the development of disability in MS. Dual-echo conventional spin-echo, T(1)-weighted and magnetization transfer (MT) scans were obtained from 72 patients with MS and 20 age- and sex-matched controls. The following MRI-derived quantities were considered for the brain as a whole, for the cerebellum and for the brainstem: (a) the number and volume of lesions seen on T(2)-weighted images; (b) the number and volume of lesions seen on T(1)-weighted images; (c) the size of these structures measured on T(1)-weighted scans; (d) the average MT ratio (MTR), peak height and peak position for the MT histogram. With univariate analysis, many MRI measures were significantly different in patients with different levels of disability or cerebellar and brainstem functional system impairments. However, with multivariate analysis, only whole-brain average MTR was significantly related to physical disability, while cerebellar and brainstem T(1) lesion volume and average MTR were related to cerebellar and brainstem impairment. This study shows that increased pathological damage in clinically eloquent sites is the major cause of disability in patients with MS. It also suggests that measures derived from MT histogram analysis and T(1) hypointense lesion load should be considered when evaluating long-term MS evolution.

Adult↗

Cumulative effect of a weekly low dose of interferon beta 1a on standard and triple dose contrast-enhanced MRI from multiple sclerosis patients.

In patients with multiple sclerosis (MS), we assessed the short- and long-term effects of a weekly low dose of recombinant human interferon beta 1a (rh-IFN beta 1a) on the development of new magnetic resonance imaging (MRI) lesions enhancing at different gadolinium-DTPA (Gd) doses. Every 4 weeks, standard dose (SD) (0.1 mmol/kg of Gd) and triple dose (TD) (0.3 mmol/kg of Gd) Gd-enhanced brain MRI scans were obtained from 18 patients with relapsing-remitting MS for 3 months before treatment, 4 months after treatment initiation (treatment period [TP] I) and 4 months after 1 year of treatment (TP II) with 44 microg of rh-IFN beta 1a subcutaneously, once a week. The mean numbers of new enhancing lesions/patient/month were 1.4 (baseline), 1.1 (TP I) and 0.7 (TP II) on SD scans and 2.4 (baseline), 1.3 (TP I) and 0.8 (TP II) on TD scans. On average, treatment decreased the rate of new enhancing lesion appearance by 24% (SD scans) and 45% (TD scans) during TP I and by 52% (SD scans) and 66% (TD scans) during TP II. This study indicates that the effect of 44 microg of rh-IFN beta 1a given once a week on MRI-monitored MS activity increases over time. It also suggests that TD MRI is useful in detecting early treatment effect, that would otherwise be missed.

Adjuvants, Immunologic↗

A multiparametric MRI study of frontal lobe dementia in multiple sclerosis.

Previous studies achieved conflicting results when correlating magnetic resonance imaging (MRI) abnormalities and cognitive impairment in multiple sclerosis (MS) patients. Recently, the estimation of MS lesion load on T1-weighted images and the analysis of magnetization transfer ratio (MTR) histograms, increased the degree of the correlation between physical disability and MRI findings in MS. We assessed the relationship of conventional and non-conventional MRI-derived measures with frontal lobe dementia in MS. Dual echo, T1-weighted and MT MRI scans of the brain were obtained in 11 MS patients with and in 11 without frontal lobe dementia, matched for age, sex, education and disability. Total (TLL) and frontal (FLL) lesion loads were assessed from T2- and T1-weighted scans. MTR histogram analysis was performed for the whole brain, the frontal lobe and the cerebellum. Median TLL and FLL were significantly higher in cognitively impaired patients on both T2- and T1-weighted scans. The MRI measure that better discriminated the two groups of patients was T1-weighted TLL (median values were 19.1 ml for demented and 1.9 ml for non-demented patients, P=0.006). Average MTR, peak height and location of overall brain and frontal lobe histograms were significantly lower for cognitively impaired than for cognitively intact patients (P values ranged from 0.0001 to 0.001). Cerebellar MTR histogram metrics did not significantly differ in patients with and without cognitive decline. The presence of cognitive decline in MS is associated with the extent and pathological severity of brain MRI abnormalities.

Dementia↗

Quantitative brain volumetric analysis from patients with multiple sclerosis: a follow-up study.

Using magnetic resonance imaging (MRI), we measured in patients with multiple sclerosis (MS) the brain volume changes over a one year period and correlated them with changes in disability. Three-dimensional T1-weighted magnetization prepared rapid acquisition gradient-echo (MP-RAGE) (with subsequent reconstruction of 1-mm thick axial slices) scans of the brain were obtained at baseline and after one year from 14 MS patients. The average percentage decrease of total brain volume was ten times higher for patients who had a deterioration in their expanded disability status scale (EDSS) scores than for those who had not (mean percentage changes were -4.7 and -0.4%, respectively). Over a short time follow-up period, the decrease of brain volume was higher in the MS patients with clinical evolution compared to those with unchanged disability.

Brain↗

MRI and magnetization transfer imaging changes in the brain and cervical cord of patients with Devic's neuromyelitis optica.

OBJECTIVES: To assess MRI and magnetization transfer (MT) imaging changes in the brain and cervical cord from patients with Devic's neuromyelitis optica (DNO), and to compare them with those from patients with MS. BACKGROUND: In MS, MT imaging detects changes within the normal-appearing brain tissue (NABT). MS lesions in the cord usually are isointense on T1-weighted images. No study has investigated these two aspects in patients with DNO. METHODS: The authors obtained dual echo, fast fluid-attenuated inversion recovery, T1-weighted, and MT scans of the brain from 8 DNO patients, 10 MS patients, and 9 healthy volunteers. T2-weighted, short-tau inversion recovery, T1-weighted, and MT scans of the cervical cord also were obtained. The authors identified lesions visible on the different scans and quantified the volumes for those in the brain. MT ratio (MTR) histogram analysis of the NABT and of the entire cervical cord also was performed. RESULTS: No brain abnormalities were found on the T2-weighted scans from healthy volunteers and from seven DNO patients. No significant difference was found for any of the NABT-MTR histogram metrics between DNO patients and controls, whereas MS patients had a significantly lower histogram average MTR and peak height. No abnormalities were seen on any of the scans of the cervical cord from healthy volunteers. All DNO patients had a single lesion longer than two vertebral segments. Five of them were hypointense on T1-weighted scans. The authors identified 24 cord lesions from MS patients: 22 were shorter than two vertebral segments and none was hypointense. There was no difference in cervical cord MTR histogram metrics between DNO and MS patients. CONCLUSIONS: This study demonstrates that patients with Devic's neuromyelitis optica (DNO) and MS have different imaging characteristics of the brain and cervical cord. This provides further evidence that DNO is a clinical entity separate from MS.

Adult↗

The contribution of magnetic resonance imaging to the diagnosis of multiple sclerosis.

MRI is very sensitive in showing MS lesions throughout the CNS. Using MRI for diagnostic purposes, however useful, is a complex issue because of limited specificity of findings and a variety of options as to when, how, and which patients to examine. Comparability of data and a common view regarding the impact of MRI are needed. Following a review of the typical appearance and pattern of MS lesions including differential diagnostic considerations, we suggest economic MRI examination protocols for the brain and spine. Recommendations for referral to MRI consider the need to avoid misdiagnosis and the probability of detecting findings of diagnostic relevance. We also suggest MRI classes of evidence for MS to determine the diagnostic weight of findings and their incorporation into the clinical evaluation. These proposals should help to optimize and standardize the use of MRI in the diagnosis of MS.

Brain↗

MRI in multiple sclerosis during the menstrual cycle: relationship with sex hormone patterns.

We investigated MRI activity in MS during the menstrual cycle in relation to physiologic sex hormone fluctuations. Eight women with relapsing-remitting MS were submitted to serial brain gadolinium-enhanced MRI examinations over a 3-month period in two alternate follicular and luteal phases of the menstrual cycle. The ratio of progesterone/17-beta-estradiol during the luteal phase was significantly associated with both number (r = 0.6, p = 0.03) and volume (r = 0.7, p = 0.009) of enhancing lesions, providing support for a role of these hormones as immunomodulatory factors in MS.

Adult↗

Brain MRI correlates of magnetization transfer imaging metrics in patients with multiple sclerosis.

Previous studies suggested that magnetization transfer ratio (MTR) histograms are highly correlated with other magnetic resonance imaging (MRI) measures and can be used as a reliable method for quantifying overall disease burden in multiple sclerosis (MS). However, the relative influence of burden and severity of macroscopic MS lesions and degree of brain atrophy on various MTR histogram parameters has not yet been fully elucidated. Aim of the present study was to investigate which MRI measure best predicts the values of MTR histogram parameters in MS patients. Forty-two MS patients underwent brain dual-echo. T1-weighted and magnetization transfer imaging (MTI) MRI scans. Hyperintense lesion load (LL) on proton density (PD)-weighted and hypointense LL on T1-weighted images were measured using a local thresholding technique. A measure of brain atrophy was derived from T1-weighted images by computing the volume of brain tissue segmented from a slab of five consecutive slices rostral to the velum interpositum. On MTI scans, MTR histogram analysis was performed for the whole brain and average lesion MTR was also calculated. PD-weighted LL, T1-weighted LL and brain volume were significantly correlated with several MTI-derived measures. When a multivariate analysis was performed, brain volume alone significantly predicted the values of all the MTR histogram-derived measures (P values ranged from 0.003 to 0.0002). The ratio between hypointense T1-weighted and hyperintense PD-weighted LL significantly predicted average lesion MTR (P<0.05). Our results confirm that MTR can be used as a reliable method to assess both the overall disease burden and the individual lesion intrinsic nature in MS patients. The significant influence of brain atrophy on MTR histogram parameters supports the concept that this method also provides information on the loss of brain parenchyma in MS.

Adult↗

Quantitative MRI in CADASIL: correlation with disability and cognitive performance.

OBJECTIVE: To study correlations between total lesion load on brain MRI and clinical features, and to evaluate the influence of demographic variables on quantitative MRI variables in cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). BACKGROUND: CADASIL is a hereditary form of small-vessel disease caused by mutations within the Notch3 gene. MRI abnormalities have been found both in asymptomatic and symptomatic CADASIL individuals. METHODS: Quantitative measurements on cerebral MRI were performed in 64 CADASIL individuals. MRI lesions were quantified using a semi-automated segmentation technique based on local thresholds. RESULTS: MRI total lesion volume correlated significantly with disability (Rankin Scale) on both T1- and proton density (PD)-weighted images. There was a significant inverse correlation between total lesion volume and overall cognitive performance as determined by the Mini-Mental State Examination. Age but not sex was correlated with lesion load both on T1- and PD-weighted images. There was no detectable influence of the Notch3 genotype on quantitative MRI variables. CONCLUSIONS: This study demonstrates correlations between MRI lesion volume and clinical characteristics in CADASIL. Longitudinal studies are now warranted to investigate whether quantitative MRI could be used as an adjunct outcome measure in future therapeutic trials in CADASIL.

Adult↗

Short-term evolution of new multiple sclerosis lesions enhancing on standard and triple dose gadolinium-enhanced brain MRI scans.

We compared the short-term magnetic resonance imaging (MRI) evolution of new multiple sclerosis (MS) lesions enhancing after single dose (SD) (0.1 mmol/kg) or triple dose (TD) (0.3 mmol/kg) gadolinium-DTPA (Gd) to explore possible differences in the pathological substrates of acute MS lesions. Brain MRI scans were obtained at baseline and every 4 weeks for a 3-month period in 18 relapsing-remitting MS patients. At each time point, using two separate sessions, we obtained dual echo and T1-weighted scans before and after SD and TD of Gd. New enhancing lesions detected at month 1 and 2 were entered into the analysis. The presence of corresponding hypointense lesions on unenhanced T1-weighted scans and hyperintense lesions on T2/proton density (PD)-weighted images was assessed on the same scan and on the scans performed 1 month before and 1 month after the new lesion development. Persistence of enhancement was evaluated on the SD and TD scans obtained 1 month after new lesion appearance. One-hundred and sixty lesions were studied. Of these, 97 lesions were enhancing after both SD and TD (group A) and 63 lesions only after TD (group B). Thirty (31%) of the lesions enhancing after both SD and TD and ten (16%) of the lesions enhancing only after TD had corresponding T1-weighted lesions (P = 0.03). Of these lesions, 87% in group A and 40% in group B (P = 0.003) were not hypointense on the previous scans. No differences were found in the frequencies of corresponding T2/PD-weighted abnormalities (92% in Group A vs. 87% in Group B lesions). Of these hyperintense areas, 62% in group A and 56% in group B were not present on the previous scans. On follow-up scans, 52% of the lesions enhancing after SD and TD and 70% of the lesions enhancing only after TD did not show enhancement after the injection of both the doses of Gd (P = 0.02). The frequencies of corresponding T2/PD and T1-weighted abnormalities were higher in Group A than in Group B lesions, but the differences were not statistically significant. Our findings suggest that the pathological process is less severe in MS lesions enhancing only after TD injection than in those enhancing after the SD.

Adult↗

Predictive value of gadolinium-enhanced magnetic resonance imaging for relapse rate and changes in disability or impairment in multiple sclerosis: a meta-analysis. Gadolinium MRI Meta-analysis Group.

BACKGROUND: Reliable prognostic factors are lacking for multiple sclerosis (MS). Gadolinium enhancement in magnetic resonance imaging (MRI) of the brain detects with high sensitivity disturbance of the blood-brain barrier, an early event in the development of inflammatory lesions in MS. To investigate the prognostic value of gadolinium-enhanced MRI, we did a meta-analysis of longitudinal MRI studies. METHODS: From the members of MAGNIMS (European Magnetic Resonance Network in Multiple Sclerosis) and additional centres in the USA, we collected data from five natural-course studies and four placebo groups of clinical trials completed between 1992 and 1995. We included a total of 307 patients, 237 with relapsing disease course and 70 with secondary progressive disease course. We investigated by regression analysis the relation between initial count of gadolinium-enhancing lesions and subsequent worsening of disability or impairment as measured by the expanded disability status scale (EDSS) and relapse rate. FINDINGS: The relapse rate in the first year was predicted with moderate ability by the mean number of gadolinium-enhancing lesions in monthly scans during the first 6 months (relative risk per five lesions 1.13, p=0.023). The predictive value of the number of gadolinium-enhancing lesions in one baseline scan was less strong. The best predictor for relapse rate was the variation (SD) of lesion counts in the first six monthly scans which allowed an estimate of relapse in the first year (relative risk 1.2, p=0.020) and in the second year (risk ratio=1.59, p=0.010). Neither the initial scan nor monthly scans over six months were predictive of change in the EDSS in the subsequent 12 months or 24 months. The mean of gadolinium-enhancing-lesion counts in the first six monthly scans was weakly predictive of EDSS change after 1 year (odds ratio=1.34, p=0.082) and 2 years (odds ratio=1.65, p=0.049). INTERPRETATION: Although disturbance of the blood-brain barrier as shown by gadolinium enhancement in MRI is a predictor of the occurrence of relapses, it is not a strong predictor of the development of cumulative impairment or disability. This discrepancy supports the idea that variant pathogenetic mechanisms are operative in the occurrence of relapses and in the development of long-term disability in MS.

Adolescent↗