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Published on: December 4, 2013
Memory function and hippocampal volumes in preterm born very-low-birth-weight (VLBW) young adults
Synne Aanes1, Knut Jørgen Bjuland1, Jon Skranes2
1Department of Laboratory Medicine, Children's and Women's Health, Norwegian University of Science and Technology, Trondheim, Norway.
Insights
Very low birth weight (VLBW) young adults show impaired memory function and reduced hippocampal volume. These deficits correlate with perinatal factors, suggesting aberrant brain development after preterm birth.
Area of Science:
- Neuroscience
- Developmental Psychology
- Medical Imaging
Background:
- Hippocampi are crucial for learning and memory.
- Previous research linked reduced hippocampal volume to memory deficits in VLBW children and adolescents.
- The relationship in VLBW adults remained underexplored.
Purpose of the Study:
- To investigate memory function and hippocampal volume in VLBW young adults.
- To compare VLBW adults with term-born controls.
- To explore structure-function relationships and perinatal risk factors.
Main Methods:
- Recruited 42 non-disabled VLBW and 61 control young adults (19-20 years).
- Utilized Wechsler Memory Scale-III for memory assessment.
- Employed Magnetic Resonance Imaging (MRI) for hippocampal volume measurement.
Main Results:
- VLBW adults scored lower on immediate and delayed memory indices (visual, general).
- VLBW group exhibited smaller absolute and relative hippocampal volumes compared to controls.
- In VLBW group, poorer memory function correlated with smaller hippocampal volume, lower birth weight, and longer NICU stays.
Conclusions:
- VLBW young adults demonstrate persistent memory deficits and reduced hippocampal volume.
- Findings suggest a structure-function relationship linked to preterm birth complications.
- Aberrant hippocampal development may underlie cognitive impairments in VLBW individuals.
Abstract:
The hippocampi are regarded as core structures for learning and memory functions, which is important for daily functioning and educational achievements. Previous studies have linked reduction in hippocampal volume to working memory problems in very low birth weight (VLBW; ≤ 1500 g) children and reduced general cognitive ability in VLBW adolescents. However, the relationship between memory function and hippocampal volume has not been described in VLBW subjects reaching adulthood. The aim of the study was to investigate memory function and hippocampal volume in VLBW young adults, both in relation to perinatal risk factors and compared to term born controls, and to look for structure-function relationships. Using Wechsler Memory Scale-III and MRI, we included 42 non-disabled VLBW and 61 control individuals at age 19-20 years, and related our findings to perinatal risk factors in the VLBW-group. The VLBW young adults achieved lower scores on several subtests of the Wechsler Memory Scale-III, resulting in lower results in the immediate memory indices (visual and auditory), the working memory index, and in the visual delayed and general memory delayed indices, but not in the auditory delayed and auditory recognition delayed indices. The VLBW group had smaller absolute and relative hippocampal volumes than the controls. In the VLBW group inferior memory function, especially for the working memory index, was related to smaller hippocampal volume, and both correlated with lower birth weight and more days in the neonatal intensive care unit (NICU). Our results may indicate a structural-functional relationship in the VLBW group due to aberrant hippocampal development and functioning after preterm birth.
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