AI Article Synopsis

  • - The study aimed to explore microstructural changes in the brains of patients with vitamin B12 deficiency using diffusion-weighted MRI, despite structural imaging showing no changes in most patients.
  • - Researchers analyzed MRI images from 2014-2016, comparing 37 patients with B12 deficiency to age- and sex-matched controls with normal B12 levels, while excluding those with pathological findings.
  • - Results showed significantly higher apparent diffusion coefficient (ADC) values in several brain regions (like the amygdala and hypothalamus) among B12-deficient patients, suggesting potential microstructural changes even when conventional imaging appears normal.

Article Abstract

Context: The structural imaging of brain does not demonstrate any changes in the vast majority of patients with vitamin B12 deficiency, even in the advanced stages.

Aims: We investigated the microstructural changes in the brain with diffusion imaging among patients with biochemical evidence of B12 deficiency.

Patients And Methods: We retrospectively analyzed all diffusion-weighted MRI images between the periods 2014-2016 who had biochemical evidence of B12. The age-sex matched controls were chosen from the group with normal B12 levels. Patients with pathological findings in conventional MRI images were excluded from the study.

Results: About 37 patients were recruited (22 women, 15 men; mean age, 34.1 ± 9.9 years; age range). They were about thirty-four age-and sex-matched controls (with normal B12 levels), which were also included in the study. The mean apparent diffusion coefficient (ADC) value of amygdala (773.8 ± 49.9 vs. 742.2 ± 24.2, = 0.01), hypothalamus (721.3 ± 39.2 vs. 700.2 ± 38.2, = 0.02), striate cortex (737.6 ± 77.6 vs. 704.3 ± 58.2, = 0.04), suprafrontal gyrus (740.7 ± 46.9 vs. 711.6 ± 40.7, = 0.007) and medulla oblongata-olivary nucleus (787.3 ± 56.4 vs. 759.7 ± 46.2, = 0.02) were significantly higher in B12 deficiency group compared to controls, whereas ADC values were similar at hippocampus, thalamus, insula, corpus striatum, cingulate gyrus, occipital gyrus, dentate nucleus, cerebral pedicle, tegmentum, pons, and posterior medulla oblongata.

Conclusions: Our study indicates that a significant increase in ADC values occurs in multiple brain regions in patients with vitamin B12.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7001445PMC
http://dx.doi.org/10.4103/aian.AIAN_485_18DOI Listing

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