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1.
Nutr Neurosci ; 25(8): 1697-1703, 2022 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-33666531

RESUMO

BACKGROUND: Persons with autism spectrum disorder (ASD) can have restrictive diets due to stereotyped behaviors. These restrictive diets can manifest with nutritional deficiencies, such as Vitamin A deficiency. The most frequent manifestation of hypovitaminosis A is vision loss secondary to xerophthalmia. Here the authors report six cases of males with a clinical triad of hypovitaminosis A, cranial hyperostosis, and optic neuropathy. METHODS: A retrospective case series of six males (ages 5-17 years old) with ASD who presented with several weeks of vision loss and nyctalopia were reviewed. RESULTS: All six subjects were found to have a barely detectable Vitamin A level (<10 mcg/dL). Three of the six cases had elevated protein (45.9-74.0 mg/dL) in their CSF. MRI imaging demonstrated mild T2 enhancement of bilateral optic nerve sheaths and CT showed diffuse skull hypertrophy. Upon further history collection, all subjects had a very limited food repertoire with major nutritional deficiencies. Subjects were prescribed high doses of vitamin A and most were noted to have improved vision at follow-up, and all had resolution of imaging abnormalities on repeat scans. No common genetic variant was identified in patients with expanded genetic sequencing. CONCLUSIONS: We present a clinical triad of hypovitaminosis A, cranial hyperostosis, and optic neuropathy in six males with ASD. Skull abnormalities and xeropthalmia likely contributed to the development of vision loss.


Assuntos
Transtorno do Espectro Autista , Hiperostose , Doenças do Nervo Óptico , Deficiência de Vitamina A , Adolescente , Transtorno do Espectro Autista/complicações , Criança , Pré-Escolar , Humanos , Masculino , Nervo Óptico/diagnóstico por imagem , Doenças do Nervo Óptico/etiologia , Estudos Retrospectivos , Vitamina A/uso terapêutico , Deficiência de Vitamina A/complicações
2.
Mult Scler J Exp Transl Clin ; 5(1): 2055217319836664, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30915227

RESUMO

BACKGROUND: Steps towards the development of diagnostic criteria are needed for children with the radiologically isolated syndrome to identify children at risk of clinical demyelination. OBJECTIVES: To evaluate the 2005 and 2016 MAGNIMS magnetic resonance imaging criteria for dissemination in space for multiple sclerosis, both alone and with oligoclonal bands in cerebrospinal fluid added, as predictors of a first clinical event consistent with central nervous system demyelination in children with radiologically isolated syndrome. METHODS: We analysed an international historical cohort of 61 children with radiologically isolated syndrome (≤18 years), defined using the 2010 magnetic resonance imaging dissemination in space criteria (Ped-RIS) who were followed longitudinally (mean 4.2 ± 4.7 years). All index scans also met the 2017 magnetic resonance imaging dissemination in space criteria. RESULTS: Diagnostic indices (95% confidence intervals) for the 2005 dissemination in space criteria, with and without oligoclonal bands, were: sensitivity 66.7% (38.4-88.2%) versus 72.7% (49.8-89.3%); specificity 83.3% (58.6-96.4%) versus 53.9% (37.2-69.9%). For the 2016 MAGNIMS dissemination in space criteria diagnostic indices were: sensitivity 76.5% (50.1-93.2%) versus 100% (84.6-100%); specificity 72.7% (49.8-89.3%) versus 25.6% (13.0-42.1%). CONCLUSIONS: Oligoclonal bands increased the specificity of magnetic resonance imaging criteria in children with Ped-RIS. Clinicians should consider testing cerebrospinal fluid to improve diagnostic certainty. There is rationale to include cerebrospinal fluid analysis for biomarkers including oligoclonal bands in planned prospective studies to develop optimal diagnostic criteria for radiologically isolated syndrome in children.

3.
Neurol Neuroimmunol Neuroinflamm ; 4(6): e395, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28959703

RESUMO

OBJECTIVE: To describe clinical and radiologic outcomes of children with incidental findings on neuroimaging suggestive of CNS demyelination (termed "radiologically isolated syndrome" or RIS). METHODS: Clinical and radiologic data were obtained from a historical cohort of children with no symptoms of demyelinating disease who had MRI scans that met the 2010 MRI criteria for dissemination in space for MS. RESULTS: We identified 38 children (27 girls and 11 boys) with RIS now being prospectively followed at 16 sites in 6 countries. The mean follow-up time was 4.8 ± 5.3 years. The most common reason for initial neuroimaging was headache (20/38, 53%). A first clinical event consistent with CNS demyelination occurred in 16/38 children (42%; 95% confidence interval [CI]: 27%-60%) in a median of 2.0 years (interquartile range [IQR] 1.0-4.3 years). Radiologic evolution developed in 23/38 children (61%; 95% CI: 44%-76%) in a median of 1.1 years (IQR 0.5-1.9 years). The presence of ≥2 unique oligoclonal bands in CSF (hazard ratio [HR] 10.9, 95% CI: 1.4-86.2, p = 0.02) and spinal cord lesions on MRI (HR 7.8, 95% CI: 1.4-43.6, p = 0.02) were associated with an increased risk of a first clinical event after adjustment for age and sex. CONCLUSIONS: We describe the clinical characteristics and outcomes of children with incidental MRI findings highly suggestive of CNS demyelination. Children with RIS had a substantial risk of subsequent clinical symptoms and/or radiologic evolution. The presence of oligoclonal bands in CSF and spinal cord lesions on MRI were associated with an increased risk of a first clinical event.

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