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April 5, 2026Journal of Pediatric Neurosciences0 citations

Neurochemical Determinants of Febrile Seizure Susceptibility in Children

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AAAbid AhmadOBObair Yousuf BabaSAShowkat Ahmad

Key Points

  • The aim is to assess serum electrolyte levels and their neurochemical implications in febrile children with and without seizures.
  • Conducted a case-control study with 200 children aged 6 months to 5 years.
  • Divided into two groups: 100 children with febrile seizures and 100 febrile controls.
  • Analyzed serum sodium, calcium, and magnesium using an automated biochemistry analyzer.
  • Compared data using independent-sample t test at a significance level of P < 0.05.
  • Children with febrile seizures had lower serum sodium levels (135.5 mmol/L) compared to controls (140.4 mmol/L).
  • Calcium levels were lower in seizure cases (8.54 mg/dL) than controls (9.25 mg/dL).
  • Magnesium levels also significantly differed, with patients at 1.81 mg/dL versus controls at 2.07 mg/dL (P < 0.001).
  • No significant inter-electrolyte correlations were observed.

Abstract

A bstract Purpose: This study aimed to assess and compare serum levels of sodium, calcium, and magnesium in febrile children with and without seizures, and to examine the neurochemical association between electrolyte imbalance and neuronal excitability. Materials and Methods: A prospective case–control study was conducted over 1 year in the Department of Pediatrics, including 200 children aged 6 months to 5 years, 100 with febrile seizures (FSs) and 100 age- and sex-matched febrile controls. Serum sodium, calcium, and magnesium levels were analyzed using an automated biochemistry analyzer. Data were compared using the independent-sample t test (Statistical Package for the Social Sciences, version 20.0; P < 0.05 considered significant). Results: Children with FSs had significantly lower serum sodium (135.5 ± 4.03 mmol/L), calcium (8.54 ± 0.33 mg/dL), and magnesium (1.81 ± 0.20 mg/dL) levels than controls (140.4 ± 2.78, 9.25 ± 0.51, and 2.07 ± 0.19, respectively; P < 0.001 for all). Most cases were under 2 years of age, and upper respiratory infections were the predominant cause of fever. No significant inter-electrolyte correlations were observed. Conclusion: Altered ionic homeostasis may be associated with transient changes in cortical excitability during febrile illness. Electrolyte evaluation may be considered in selected cases, such as prolonged or recurrent seizures; however, larger prospective outcome-based studies are required before universal routine screening can be recommended. Future studies integrating electrophysiological and neuroimaging correlates are warranted to elucidate the neurochemical mechanisms underlying FSs.

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Cite This Study

Ahmad et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd13a79560c99a0a2f18https://doi.org/10.4103/jpn.jpn_134_25
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