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1.
J Perinatol ; 42(6): 738-744, 2022 06.
Article in English | MEDLINE | ID: mdl-35361885

ABSTRACT

OBJECTIVE: Studies suggest that parents of NICU infants are at increased risk of mental health disorders. We sought to characterize this risk using a large database. STUDY DESIGN: The Military Health System was used to retrospectively link records between parents and infants admitted to a NICU over 5 years and were matched to similar families without NICU exposure. The total study population included 35,012 infants. Logistic regression was used to estimate the association between NICU exposure and parental mental health diagnoses within 5 years of infant birth. RESULTS: Maternal NICU exposure was associated with incident diagnoses of depression (OR: 1.18-1.27, p < 0.0001), anxiety (OR: 1.06-1.18, p = 0.0151), alcohol/opiate dependence (OR: 1.29-1.52, p = 0.0079), and adjustment disorder (OR: 0.97-1.18, p = 0.0224). Paternal NICU exposure was associated with alcohol/opiate dependence (OR: 0.78-1.42, p = 0.0339). CONCLUSION: Parents of NICU infants are at risk of developing mental health disorders. Future work should identify characteristics that predict highest risk to develop effective interventions.


Subject(s)
Military Health Services , Opioid-Related Disorders , Humans , Infant , Infant, Newborn , Intensive Care Units, Neonatal , Mental Health , Parents/psychology , Retrospective Studies
2.
Brain Res ; 971(1): 95-106, 2003 May 02.
Article in English | MEDLINE | ID: mdl-12691842

ABSTRACT

Genetic ablation of iron regulatory protein 2 (IRP-2), a protein responsible for post-transcriptional regulation of expression of several iron metabolism proteins, predisposes IRP-2 -/- mice to develop adult onset neurodegenerative disease. Ferric iron reproducibly accumulates within axonal tracts and neuronal cell bodies in discrete regions of the brain, and areas of iron accumulation colocalize with areas of high ferritin expression. To better evaluate the onset and progression of neurodegeneration in IRP-2 -/- mice, we performed a high-resolution magnetic resonance imaging study comparing live, age-matched wild-type and IRP-2 -/- mice, using an 11.7-Tesla magnet and a custom-designed head coil. The mice were perfused after imaging, and iron stains and immunohistochemical studies were performed. We detected increases in the number of pixels with low T(2) values expected from accumulations of iron in IRP-2 -/- mice. Moreover, in several areas of the brain, including the substantia nigra and the superior colliculus, we detected areas with unusually high T(2) values that likely represented accumulation of water. On histopathological examination we discovered relatively small vacuoles in these brain regions of IRP-2 -/- mice. Our ability to gather T(2) data within regions of interest enabled us to define a bimodal T(2) intensity pattern that likely represents both ferritin iron accumulation and its associated pathological consequences within the brain. Our discoveries may have significant applications for the diagnosis and treatment of human diseases if such high-resolution techniques can be adapted for use in human subjects.


Subject(s)
Brain/metabolism , Brain/pathology , Ferritins/analysis , Iron Regulatory Protein 2/deficiency , Magnetic Resonance Imaging , Animals , Brain/diagnostic imaging , Female , Image Processing, Computer-Assisted , Immunohistochemistry , Male , Mice , Mice, Knockout , Nerve Degeneration/diagnostic imaging , Neurons/metabolism , Neurons/pathology , Radiography , Vacuoles/pathology
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