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Published on: August 30, 2020
Subarachnomegaly-venous congestion of infancy
Laura V Sainz1,2, Martin U Schuhmann3
1Institute of Neuroinformatics, ETH, Zürich, Switzerland. lsainz@braintools.es.
Insights
Subarachnomegaly in infants involves enlarged head circumference and fluid spaces. Evidence suggests cerebro-venous issues, not just non-functional arachnoid villi, may be the cause, potentially leading to subtle neurodevelopmental issues.
Area of Science:
- Neurology
- Pediatrics
- Radiology
Background:
- Infantile macrocephaly with enlarged cortical subarachnoid spaces (CSAS) is described under various terms, causing diagnostic confusion.
- This condition may encompass diverse etiological processes, necessitating a clearer definition.
Purpose of the Study:
- To clarify the defining features of infantile macrocephaly with enlarged CSAS.
- To review current understanding of its pathophysiology and associated imaging findings.
Main Methods:
- Comprehensive literature review focusing on defining features.
- Analysis of clinical history, long-term outcomes, and pathophysiological processes.
Main Results:
- Functional and molecular studies challenge the traditional arachnoid villi theory.
- Increasing evidence points to cerebro-venous system abnormalities as a primary factor.
- Long-term studies indicate potential for subtle, irreversible neurodevelopmental consequences.
Conclusions:
- Subarachnomegaly is an age-related infantile condition with enlarged CSAS, often self-limiting.
- Further research is needed on venous outflow impairment and enlarged CSAS, linking imaging to neurodevelopmental outcomes.
Purpose:
Multiple names within the literature refer to a clinical picture affecting infants and consisting of a large or fast growing head circumference with enlarged cortical subarachnoid spaces (CSAS) while cranial sutures are open. This myriad of terms demonstrates the confusion about the entity, that may even group together different etiological processes. In this review, we aim to shed light on this matter in an effort to restate the defining features of the clinical picture and sum the evidence and current understanding of its pathophysiology and related imaging findings.
Methods:
Extensive and updated review of the literature with special focus on defining features, clinical history with long term evaluation and pathophysiological process.
Results:
Functional and molecular CSF studies as well as clinical evidence challenges the common pathophysiological theory based on non-functional arachnoid villi. Conversely, there is increasing evidence supporting cerebro-venous system abnormalities as the main pathophysiological factor. Additionally, long term cohorts studies show that it may have subtle but irreversible neurodevelopmental consequences.
Conclusion:
Subarachnomegaly is an age-related condition of the infancy with radiological enlargement of CSAS and often self limiting course. However, considering the evidence on pathophysiology as outlined herein and long term outcome reports, further research effort is needed to assess the consequences of venous outflow impairment and enlarged CSAS and how this relates to imaging findings and neurodevelopment test results later in life.
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