Microsurgical versus endovascular treatment of spinal epidural arteriovenous fistulas with intradural venous drainage: a multicenter study of 81 patients.

AVM = arteriovenous malformation NBCA = N-butyl-cyanoacrylate dAVF = dural arteriovenous fistula dural arteriovenous fistulas edAVF = epidural AVF endovascular procedures extradural arteriovenous fistulas mRS = modified Rankin Scale spinal arteriovenous shunts spinal vascular malformations surgery vascular disorders

Journal

Journal of neurosurgery. Spine
ISSN: 1547-5646
Titre abrégé: J Neurosurg Spine
Pays: United States
ID NLM: 101223545

Informations de publication

Date de publication:
24 Apr 2020
Historique:
received: 30 11 2019
accepted: 18 02 2020
pubmed: 25 4 2020
medline: 25 4 2020
entrez: 25 4 2020
Statut: aheadofprint

Résumé

Spinal arteriovenous shunts are rare vascular lesions and are classified into 4 types (types I-IV). Due to rapid advances in neuroimaging, spinal epidural AVFs (edAVFs), which are similar to type I spinal dural AVFs (dAVFs), have recently been increasingly reported. These 2 entities have several important differences that influence the treatment strategy selected. The purposes of the present study were to compare angiographic and clinical differences between edAVFs and dAVFs and to provide treatment strategies for edAVFs based on a multicenter cohort. A total of 280 consecutive patients with thoracic and lumbosacral spinal dural arteriovenous fistulas (dAVFs) and edAVFs with intradural venous drainage were collected from 19 centers. After angiographic and clinical comparisons, the treatment failure rate by procedure, risk factors for treatment failure, and neurological outcomes were statistically analyzed in edAVF cases. Final diagnoses after an angiographic review included 199 dAVFs and 81 edAVFs. At individual centers, 29 patients (36%) with edAVFs were misdiagnosed with dAVFs. Spinal edAVFs were commonly fed by multiple feeding arteries (54%) shunted into a single or multiple intradural vein(s) (91% and 9%) through a dilated epidural venous plexus. Preoperative modified Rankin Scale (mRS) and Aminoff-Logue gait and micturition grades were worse in patients with edAVFs than in those with dAVFs. Among the microsurgical (n = 42), endovascular (n = 36), and combined (n = 3) treatment groups of edAVFs, the treatment failure rate was significantly higher in the index endovascular treatment group (7.5%, 31%, and 0%, respectively). Endovascular treatment was found to be associated with significantly higher odds of initial treatment failure (OR 5.72, 95% CI 1.45-22.6). In edAVFs, the independent risk factor for treatment failure after microsurgery was the number of intradural draining veins (OR 17.9, 95% CI 1.56-207), while that for treatment failure after the endovascular treatment was the number of feeders (OR 4.11, 95% CI 1.23-13.8). Postoperatively, mRS score and Aminoff-Logue gait and micturition grades significantly improved in edAVFs with a median follow-up of 31 months. Spinal epidural AVFs with intradural venous drainage are a distinct entity and may be classified as type V spinal vascular malformations. Based on the largest multicenter cohort, this study showed that primary microsurgery was superior to endovascular treatment for initial treatment success in patients with spinal edAVFs.

Identifiants

pubmed: 32330891
doi: 10.3171/2020.2.SPINE191432
pii: 2020.2.SPINE191432
doi:
pii:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1-11

Auteurs

Keisuke Takai (K)

8Department of Neurosurgery, Tokyo Metropolitan Neurological Hospital, Tokyo.

Toshiki Endo (T)

2Department of Neurosurgery, Kohnan Hospital, Sendai.

Takao Yasuhara (T)

13Department of Neurosurgery, Okayama University Graduate School of Medicine, Okayama.

Toshitaka Seki (T)

1Department of Neurosurgery, Hokkaido University Hospital, Sapporo.

Kei Watanabe (K)

3Department of Orthopaedic Surgery, Niigata University Medical and Dental Hospital, Niigata.

Yuki Tanaka (Y)

3Department of Orthopaedic Surgery, Niigata University Medical and Dental Hospital, Niigata.

Ryu Kurokawa (R)

4Department of Neurosurgery, Dokkyo Medical University Hospital, Tochigi.

Hideaki Kanaya (H)

4Department of Neurosurgery, Dokkyo Medical University Hospital, Tochigi.

Fumiaki Honda (F)

5Department of Neurosurgery, Gunma University Hospital, Gunma.

Takashi Itabashi (T)

6Department of Orthopaedic Surgery, Japanese Red Cross Narita Hospital, Chiba.

Osamu Ishikawa (O)

7Department of Neurosurgery, The University of Tokyo Hospital, Tokyo.

Hidetoshi Murata (H)

9Department of Neurosurgery, Yokohama City University Hospital, Yokohama.

Takahiro Tanaka (T)

9Department of Neurosurgery, Yokohama City University Hospital, Yokohama.

Yusuke Nishimura (Y)

10Department of Neurosurgery, Nagoya University Hospital, Nagoya.

Kaoru Eguchi (K)

10Department of Neurosurgery, Nagoya University Hospital, Nagoya.

Toshihiro Takami (T)

11Department of Neurosurgery, Osaka City University Graduate School of Medicine, Osaka.

Yusuke Watanabe (Y)

11Department of Neurosurgery, Osaka City University Graduate School of Medicine, Osaka.

Takeo Nishida (T)

12Department of Neurosurgery, Osaka University Graduate School of Medicine, Osaka.

Masafumi Hiramatsu (M)

13Department of Neurosurgery, Okayama University Graduate School of Medicine, Okayama.

Tatsuya Ohtonari (T)

14Department of Spinal Surgery, Brain Attack Center, Ota Memorial Hospital, Hiroshima.

Satoshi Yamaguchi (S)

15Department of Neurosurgery, Hiroshima University Hospital, Hiroshima.

Takafumi Mitsuhara (T)

15Department of Neurosurgery, Hiroshima University Hospital, Hiroshima.

Seishi Matsui (S)

16Department of Neurosurgery, Ehime University Hospital, Ehime.

Hisaaki Uchikado (H)

17Department of Neurosurgery, Kurume University Hospital, Fukuoka.

Gohsuke Hattori (G)

17Department of Neurosurgery, Kurume University Hospital, Fukuoka.

Nobutaka Horie (N)

18Department of Neurosurgery, Nagasaki University Hospital, Nagasaki; and.

Hitoshi Yamahata (H)

19Department of Neurosurgery, Kagoshima University Hospital, Kagoshima, Japan.

Makoto Taniguchi (M)

8Department of Neurosurgery, Tokyo Metropolitan Neurological Hospital, Tokyo.

Classifications MeSH