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Comprehensive Endovascular and Open Surgical Management of Cerebral Arteriovenous Malformations
Published on: October 20, 2017
Postoperative imaging for detection of recurrent arteriovenous malformations in children
Peter F Morgenstern1, Caitlin E Hoffman1, Gary Kocharian2
1Department of Neurological Surgery, NewYork-Presbyterian Hospital, Weill Cornell Medical Center; and.
Abstract:
OBJECT The optimal method for detecting recurrent arteriovenous malformations (AVMs) in children is unknown. An inherent preference exists for MR angiography (MRA) surveillance rather than arteriography. The validity of this strategy is uncertain. METHODS A retrospective chart review was performed on pediatric patients treated for cerebral AVMs at a single institution from 1998 to 2012. Patients with complete obliteration of the AVM nidus after treatment and more than 12 months of follow-up were included in the analysis. Data collection focused on recurrence rates, associated risk factors, and surveillance methods. RESULTS A total of 45 patients with a mean age of 11.7 years (range 0.5-18 years) were treated for AVMs via surgical, endovascular, radiosurgical, or combined approaches. Total AVM obliteration on posttreatment digital subtraction angiography (DSA) was confirmed in 27 patients, of whom the 20 with more than 12 months of follow-up were included in subsequent analysis. The mean follow-up duration in this cohort was 5.75 years (median 5.53 years, range 1.11-10.64 years). Recurrence occurred in 3 of 20 patients (15%). Two recurrences were detected by surveillance DSA and 1 at the time of rehemorrhage. No recurrences were detected by MRA. Median time to recurrence was 33.6 months (range 19-71 months). Two patients (10%) underwent follow-up DSA, 5 (25%) had DSA and MRI/MRA, 9 (45%) had MRI/MRA only, 1 (5%) had CT angiography only, and 3 (15%) had no imaging within the first 3 years of follow-up. After 5 years posttreatment, 2 patients (10%) were followed with MRI/MRA only, 2 (10%) with DSA only, and 10 (50%) with continued DSA and MRI/MRA. CONCLUSIONS AVM recurrence in children occurred at a median of 33.6 months, when MRA was more commonly used for surveillance, but failed to detect any recurrences. A recurrence rate of 15% may be an underestimate given the reliance on surveillance MRA over angiography. A new surveillance strategy is proposed, taking into account exposure to diagnostic radiation and the potential for catastrophic rehemorrhage.
Insights
Recurrence of pediatric arteriovenous malformations (AVMs) can occur years after treatment, with MR angiography (MRA) failing to detect any cases. Digital subtraction angiography (DSA) is crucial for monitoring AVM recurrence in children.
Area of Science:
- Pediatric Neurosurgery
- Neuroradiology
- Vascular Malformations
Background:
- Optimal surveillance for recurrent pediatric cerebral arteriovenous malformations (AVMs) remains unclear.
- Current practices often favor MR angiography (MRA) over digital subtraction angiography (DSA), but its effectiveness is uncertain.
Purpose of the Study:
- To evaluate the efficacy of different surveillance methods in detecting AVM recurrence in pediatric patients.
- To determine the recurrence rate and timing in children treated for cerebral AVMs.
Main Methods:
- Retrospective chart review of pediatric patients treated for cerebral AVMs between 1998 and 2012.
- Inclusion criteria: complete AVM obliteration post-treatment and >12 months follow-up.
- Analysis focused on recurrence rates, risk factors, and surveillance imaging modalities (MRA, DSA, CT angiography).
Main Results:
- 15% (3 of 20) of pediatric patients experienced AVM recurrence, with a median time of 33.6 months.
- No recurrences were detected by MRA surveillance.
- Two recurrences were identified by DSA, and one occurred at the time of rehemorrhage.
Conclusions:
- Pediatric AVM recurrence can occur late, and MRA surveillance may miss these events.
- The study suggests a potential underestimation of recurrence rates due to reliance on MRA.
- A revised surveillance strategy is needed, balancing radiation exposure with the risk of rehemorrhage.
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