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Electrophysiological Measurements and Analysis of Nociception in Human Infants
Published on: December 20, 2011
Human Parechovirus 3 in Infants: Expanding Our Knowledge of Adverse Outcomes
Lindsay Joseph1, Meryta May1, Marion Thomas1
1From the Lady Cilento Children's Hospital, Brisbane, Australia.
Insights
Human parechovirus genotype 3 (HPeV3) infection in infants can lead to neurodevelopmental issues. This study found 14% of infants with HPeV3 had developmental concerns, highlighting the need for ongoing monitoring.
Area of Science:
- Pediatrics
- Infectious Diseases
- Neuroscience
Background:
- Human parechovirus genotype 3 (HPeV3) is an emerging infection in young infants.
- There is growing concern regarding potential neurologic sequelae in affected infants.
Purpose of the Study:
- To review two epidemics of HPeV infection in Queensland, Australia (2013 and 2015).
- To identify adverse neurodevelopmental outcomes in infants following HPeV infection.
Main Methods:
- Reviewed hospitalized infants with laboratory-confirmed HPeV infection (Oct 2013 - Jun 2016).
- Collected and correlated clinical, demographic, laboratory, and imaging data with developmental outcomes.
- Focused on HPeV3 isolates and pediatrician-assessed neurodevelopmental follow-up.
Main Results:
- 202 patients with HPeV infection; 86.6% were under 3 months old.
- All 89 genotyped isolates were HPeV3.
- 14% (11/77) of infants with follow-up showed neurodevelopmental sequelae; abnormal MRI did not predict outcomes.
Conclusions:
- This is the largest cohort study of HPeV3 with clinical and neurodevelopmental follow-up.
- Early developmental concerns were identified in 11 children.
- Abnormal MRI in acute infection did not predict short-term neurodevelopmental outcomes; further follow-up is needed.
Background:
Human parechovirus particularly genotype 3 (HPeV3) is an emerging infection affecting predominantly young infants. The potential for neurologic sequelae in a vulnerable subset is increasingly apparent. A review of 2 epidemics of human parechovirus (HpeV) infection in 2013 and in 2015 in Queensland, Australia, was undertaken, with an emphasis on identifying adverse neurodevelopmental outcome.
Methods:
All hospitalized cases with laboratory-confirmed HPeV infection between October 2013 June 2016 were identified. Clinical, demographic, laboratory and imaging data were collected and correlated with reported developmental outcome.
Results:
Laboratory-confirmed HPeV infections were identified in 202 patients across 25 hospitals; 86.6% (n = 175) were younger than 3 months 16.3% (n = 33) received intensive care admission. Of 142 cerebrospinal fluid samples which were HPeV polymerase chain reaction positive, all 89 isolates successfully genotyped were HPeV3. Clinical information was available for 145 children; 53.1% (n = 77) had follow-up from a pediatrician, of whom 14% (n = 11) had neurodevelopmental sequelae, ranging from hypotonia and gross motor delay to spastic quadriplegic cerebral palsy and cortical visual impairment. Of 15 children with initially abnormal brain magnetic resonance imaging, 47% (n = 7) had neurodevelopmental concerns, the remainder had normal development at follow-up between 6 and 15 months of age.
Conclusions:
This is the largest cohort of HPeV3 cases with clinical data and pediatrician-assessed neurodevelopmental follow-up to date. Developmental concerns were identified in 11 children at early follow-up. Abnormal magnetic resonance imaging during acute infection did not specifically predict poor neurodevelopmental in short-term follow-up. Continued follow-up of infants and further imaging correlation is needed to explore predictors of long-term morbidity.
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