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Published on: February 29, 2020
Chiari I malformation and altered cerebrospinal fluid dynamics-the highs and the lows
Soumya Mukherjee1, Neeraj Kalra2, Daniel Warren3
1Department of Paediatric Neurosurgery, Leeds General Infirmary, Great George Street, Leeds, LS1 3EX, UK. soumya1701@googlemail.com.
Insights
Pediatric Chiari I malformation can alter cerebrospinal fluid (CSF) dynamics. Careful assessment of CSF issues is crucial for effective treatment and avoiding unnecessary surgeries.
Area of Science:
- Neurosurgery
- Pediatric Neurology
- Cerebrospinal Fluid Dynamics
Background:
- Chiari I malformation in children can present with altered cerebrospinal fluid (CSF) dynamics.
- Acquired Chiari malformation (ACM) may mimic Chiari I and is linked to intracranial hypotension or idiopathic intracranial hypertension (IIH).
Purpose of the Study:
- To review altered CSF dynamics in pediatric Chiari I malformation.
- To present institutional experience with operative management of pediatric Chiari I malformation.
Main Methods:
- Comprehensive literature review.
- Retrospective analysis of 61 pediatric cases undergoing foramen magnum decompression (FMD) for Chiari I malformation (February 2006 - February 2019).
Main Results:
- 80% of cases had no CSF dynamic issues.
- 8% presented with hydrocephalus requiring CSF diversion before FMD.
- 10% developed hydrocephalus post-FMD, needing long-term CSF diversion.
Conclusions:
- Management of intracranial hypotension in pediatric ACM requires thorough radiological assessment to avoid unnecessary posterior fossa decompression.
- For failed Chiari I malformation with IIH, intracranial pressure monitoring is vital to guide long-term CSF diversion.
Purpose:
This paper reviews the altered cerebrospinal fluid dynamics that can be associated with paediatric Chiari I malformation and we present our own institutional experience.
Methods:
We conducted a thorough review of the literature and retrospectively analyzed all cases of operatively managed paediatric Chiari 1 malformation at our institution between February 2006 and February 2019.
Results:
Acquired Chiari malformation (ACM) can radiologically mimic Chiari I and has been associated with both intracranial hypotension (either secondary to lumboperitoneal shunting or spontaneous CSF hypotension) and idiopathic intracranial hypertension (IIH). At our institution, 61 paediatric cases (range, 2-15 years) underwent foramen magnum decompression (FMD) for Chiari I malformation. Whilst 80% (50/61) of cases underwent FMD with no preceding or post-operative problems of CSF dynamics, 8% (5/61) of cases had hydrocephalus at initial presentation requiring CSF diversion followed by FMD for persistent Chiari, and 10% (6/61) developed hydrocephalus following FMD and required long-term CSF diversion.
Conclusions:
In paediatric ACM, the management of intracranial hypotension involves thorough radiological assessment and inclusion/adjustment of a valve in the case of lumboperitoneal shunting or epidural blood patch or interventional techniques in the case of spontaneous CSF leak. Thereby, unwarranted posterior fossa decompression surgery is avoided. In the case of IIH and Chiari I malformation, children who have recurrent symptoms despite adequate posterior fossa decompression surgery (failed Chiari), there is a strong role for intracranial pressure monitoring as raised intracranial pressure may indicate long-term CSF diversion.
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