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Published on: May 3, 2019
Neurocognitive development after pediatric brain tumor - a longitudinal, retrospective cohort study
Ingrid Tonning Olsson1,2,3, Johan Lundgren2,3, Lars Hjorth2,3
1Department of Psychology, Lund University, Lund, Sweden.
Insights
Pediatric brain tumor survivors, regardless of radiation treatment, experience neurocognitive decline. Those receiving whole-brain radiation therapy or a VP shunt showed faster declines, highlighting the need for rehabilitation.
Area of Science:
- Neuroscience
- Pediatric Oncology
- Neuro-oncology
Background:
- Survivors of pediatric brain tumors (PBTs) treated with cranial radiation therapy (CRT) often face neurocognitive deficits.
- Neurocognitive development in non-irradiated PBT survivors is less understood.
Purpose of the Study:
- To statistically model neurocognitive development in both irradiated and non-irradiated PBT survivors.
- To identify clinical factors associated with the rate of neurocognitive decline in PBT survivors.
Main Methods:
- Retrospective analysis of clinical neurocognitive data from 151 PBT survivors.
- Multilevel linear modeling to assess neurocognitive decline rates and associated factors.
Main Results:
- A decline in neurocognitive scores was observed in most PBT survivors, irrespective of radiation treatment.
- Ventriculo-peritoneal (VP) shunting and whole-brain radiation therapy (WBRT) correlated with faster neurocognitive decline.
- Male sex and supratentorial lateral tumors were linked to lower neurocognitive scores, while verbal learning measures remained stable or improved.
Conclusions:
- PBT survivors exhibit a general trend of neurocognitive decline, underscoring the necessity for routine neurocognitive screening and rehabilitation.
- Survivors treated with WBRT and/or VP shunting face the highest risk of adverse neurocognitive outcomes and require intensive rehabilitation support.
Abstract:
Survivors of Pediatric Brain Tumors (PBTs) treated with cranial radiation therapy (CRT) often experience a decline in neurocognitive test scores. Less is known about the neurocognitive development of non-irradiated survivors of PBTs. The aim of this study was to statistically model neurocognitive development after PBT in both irradiated and non-irradiated survivors and to find clinical variables associated with the rate of decline in neurocognitive scores. A total of 151 survivors were included in the study. Inclusion criteria: Diagnosis of PBT between 2001 and 2013 or earlier diagnosis of PBT and turning 18 years of age between 2006 and 2013. Exclusion criteria: Death within a year from diagnosis, neurocutaneous syndromes, severe intellectual disability. Clinical neurocognitive data were collected retrospectively from medical records. Multilevel linear modeling was used to evaluate the rate of decline in neurocognitive measures and factors associated with the same. A decline was found in most measures for both irradiated and non-irradiated survivors. Ventriculo-peritoneal (VP) shunting and treatment with whole-brain radiation therapy (WBRT) were associated with a faster decline in neurocognitive scores. Male sex and supratentorial lateral tumor were associated with lower scores. Verbal learning measures were either stable or improving. Survivors of PBTs show a pattern of decline in neurocognitive scores irrespective of treatment received, which suggests the need for routine screening for neurocognitive rehabilitation. However, survivors treated with WBRT and/or a VP shunt declined at a faster rate and appear to be at the highest risk of negative neurocognitive outcomes and to have the greatest need for neurocognitive rehabilitation.
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