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Published on: July 4, 2018
Assessment of Pupillary Light Reflex Alterations in Pediatric Diabetic Ketoacidosis-Induced Encephalopathy: A
Elber Y Aydin1, Matthew Garber2, Jose Irazuzta3
1Pediatrics, University of Florida College of Medicine - Jacksonville, Jacksonville, USA.
Insights
Quantitative pupillometry revealed slower pupillary responses in pediatric patients with diabetic ketoacidosis encephalopathy (DKAE). These changes transiently improved as encephalopathy resolved, suggesting pupillometry
Area of Science:
- Pediatric Intensive Care
- Neurology
- Endocrinology
Background:
- Diabetic ketoacidosis encephalopathy (DKAE) is a severe complication of diabetic ketoacidosis (DKA).
- Neurological status changes in pediatric DKA patients require objective monitoring.
- Quantitative pupillometry offers a potential noninvasive method to assess neurological function.
Purpose of the Study:
- To investigate the association between pupillary response changes and neurological status in pediatric patients with DKA.
- To evaluate the utility of quantitative pupillometry in identifying and monitoring DKAE.
Main Methods:
- Retrospective review of 21 pediatric patients (6-17 years) with DKA admitted to the PICU.
- Pupillometry (constriction velocity [CV] and maximum constriction velocity [MCV]) measured at admission (T0) and after DKA/DKAE resolution (T1).
- Comparison of pupillary parameters between patients with and without encephalopathy using ROC curve analysis.
Main Results:
- At T0, significantly lower CV and MCV were observed in patients with encephalopathy compared to those without.
- Pupillary velocities improved significantly over time in the encephalopathic group, normalizing by T1.
- ROC analysis indicated optimal cutoffs for CV (3.26 mm/s) and MCV (4.545 mm/s) for detecting encephalopathy, with high sensitivity and specificity.
Conclusions:
- DKAE is associated with transiently reduced pupillary constriction velocities, indicating autonomic dysfunction.
- Quantitative pupillometry is a promising noninvasive tool for monitoring neurological status in pediatric DKA patients.
- Further research is warranted to explore the role of autonomic nervous system dysfunction in DKAE pathophysiology.
Abstract:
Diabetic ketoacidosis (DKA) encephalopathy (DKAe) and its associated cerebral edema are serious complications of DKA. This study aimed to use quantitative pupillometry to determine whether changes in pupillary response are associated with alterations in neurological status in pediatric patients admitted to the pediatric intensive care unit (PICU) with DKA. Conducted as a retrospective electronic medical record review at Wolfson Children's Hospital in Jacksonville, Florida, the study included 21 pediatric patients, between 6 and 17 years of age, diagnosed with DKA. These patients were divided into two groups based on the presence or absence of encephalopathy at admission. Pupillometry readings were obtained at two time points: at admission (T0) and after the resolution of both DKA and DKAe (T1). At T0, the constriction velocity (CV) and maximum constriction velocity (MCV) were significantly lower in patients with encephalopathy compared to those without. By T1, there was no significant difference between the two groups, though the encephalopathic group demonstrated a significant improvement in pupillary velocities over time, while the non-encephalopathic group did not. The median time between measurements was 12.5 hours (IQR: 10-17) in the encephalopathic group and 10 hours (IQR: 10-11) in the non-encephalopathic group. The area under the curve for CV and MCV of the right eye at admission was 0.864 (95% CI: 0.709-1.0) and 0.845 (95% CI: 0.657-1.0), respectively. The receiver operating characteristic (ROC) curves were generated using SPSS (Statistical Package for the Social Sciences), with slower velocities considered evidence for encephalopathy. The best cutoff for CV was 3.26 mm/s, yielding a sensitivity of 100% and specificity of 54.5%, while the best cutoff for MCV was 4.545 mm/s, with a sensitivity of 90% and specificity of 81.8%. These findings suggest that DKAe leads to a transient slowing of CV and MCV, likely reflecting a temporary alteration in the parasympathetic component of the pupillary light reflex, which resolves as encephalopathy subsides. This raises important questions about the role of autonomic nervous system dysfunction in the pathophysiology of DKAe and highlights the potential utility of pupillometry as a noninvasive tool for monitoring neurological status in pediatric patients with DKA.
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