Combined Use of a Gasket Seal Closure and a Vascularized Pedicle Nasoseptal Flap Multilayered Reconstruction Technique for High-Flow Cerebrospinal Fluid Leaks After Endonasal Endoscopic Skull Base Surgery

2015 ◽  
Vol 83 (2) ◽  
pp. 181-187 ◽  
Author(s):  
Fan Hu ◽  
Ye Gu ◽  
Xiaobiao Zhang ◽  
Tao Xie ◽  
Yong Yu ◽  
...  
2012 ◽  
Vol 32 (6) ◽  
pp. E7 ◽  
Author(s):  
James K. Liu ◽  
Richard F. Schmidt ◽  
Osamah J. Choudhry ◽  
Pratik A. Shukla ◽  
Jean Anderson Eloy

Extended endoscopic endonasal approaches have allowed for a minimally invasive solution for removal of a variety of ventral skull base lesions, including intradural tumors. Depending on the location of the pathological entity, various types of surgical corridors are used, such as transcribriform, transplanum transtuberculum, transsellar, transclival, and transodontoid approaches. Often, a large skull base dural defect with a high-flow CSF leak is created after endoscopic skull base surgery. Successful reconstruction of the cranial base defect is paramount to separate the intracranial contents from the paranasal sinus contents and to prevent postoperative CSF leakage. The vascularized pedicled nasoseptal flap (PNSF) has become the workhorse for cranial base reconstruction after endoscopic skull base surgery, dramatically reducing the rate of postoperative CSF leakage since its implementation. In this report, the authors review the surgical technique and describe the operative nuances and lessons learned for successful multilayered PNSF reconstruction of cranial base defects with high-flow CSF leaks created after endoscopic skull base surgery. The authors specifically highlight important surgical pearls that are critical for successful PNSF reconstruction, including target-specific flap design and harvesting, pedicle preservation, preparation of bony defect and graft site to optimize flap adherence, multilayered closure technique, maximization of the reach of the flap, final flap positioning, and proper bolstering and buttressing of the PNSF to prevent flap dehiscence. Using this technique in 93 patients, the authors' overall postoperative CSF leak rate was 3.2%. An illustrative intraoperative video demonstrating the reconstruction technique is also presented.


2016 ◽  
Vol 7 (1) ◽  
pp. 80-86 ◽  
Author(s):  
Arash Shahangian ◽  
Zachary M. Soler ◽  
Andrew Baker ◽  
Sarah K. Wise ◽  
Shruthi K. Rereddy ◽  
...  

2019 ◽  
Vol 81 (06) ◽  
pp. 645-650
Author(s):  
Roshni V. Khatiwala ◽  
Karthik S. Shastri ◽  
Maria Peris-Celda ◽  
Tyler Kenning ◽  
Carlos D. Pinheiro-Neto

Abstract Background The endoscopic endonasal approach (EEA) has become increasingly used for resection of skull base tumors in the sellar and suprasellar regions. A nasoseptal flap (NSF) is routinely used for anterior skull base reconstruction; however, there are numerous additional allografts and autografts being used in conjunction with the NSF. The role of perioperative cerebrospinal fluid (CSF) diversion is also unclear. Objective This study was aimed to analyze success of high-flow CSF leak repair during EEA procedures without use of CSF diversion through lumbar drainage. Methods A retrospective chart review of patients who had intraoperative high-flow CSF leak during EEA procedures at our institution between January 2013 and December 2017 was performed. CSF leaks were repaired with use of a fascia lata button graft and nasoseptal flap, without use of perioperative lumbar drains. Results A total of 38 patients were identified (10 male, 28 female). Patient BMIs ranged from 19.7 to 49 kg/m2 (median = 31 kg/m2), with 18 patients meeting criteria for obesity (BMI > 30 kg/m2) and 12 patients overweight (25 kg/m2 < BMI < 29.9 kg/m2). There was no incidence of postoperative CSF leak. Conclusion In our experience, the nasoseptal flap used in conjunction with the fascia lata button graft is a safe, effective and robust combination for cranial base reconstruction with high-flow intraoperative CSF leaks, without need for lumbar drains.


2014 ◽  
Vol 81 (1) ◽  
pp. 136-143 ◽  
Author(s):  
Edward D. McCoul ◽  
Vijay K. Anand ◽  
Ameet Singh ◽  
Gurston G. Nyquist ◽  
Madeleine R. Schaberg ◽  
...  

Author(s):  
Ana Carolina Mayor de Carvalho ◽  
Ricardo Landini Lutaif Dolci ◽  
Jeniffer Cristina Kozechen Rickli ◽  
Daniela Akemi Tateno ◽  
Davi Sousa Garcia ◽  
...  

2019 ◽  
Vol 34 (1) ◽  
pp. 70-73 ◽  
Author(s):  
Karan Jolly ◽  
Okechukwu Okonkwo ◽  
Georgios Tsermoulas ◽  
Shahzada K. Ahmed

Background Endoscopic skull base surgery continues to push boundaries with increased complexity of work and subsequently larger defects requiring repair. Robust repair following endoscopic skull base surgery is essential to reduce significant postoperative complications such as cerebrospinal fluid leak, meningitis, and pneumocephalus. Objective To describe and further validate our novel technique of using a polydioxanone plate wrap used in large anterior skull base resections where brain herniation can be of concern. Method After large resections where there is obvious brain herniation, our PDS (polydioxanone) wrap can be deployed to provide rigid support to the brain. The PDS plate is wrapped in a dural graft material and sutured closed in order to allow deployment by releasing the sutures when in position under the bony ridge of the defect. Conclusion Till date we have successfully used this technique in 3 patients following large skull base resections of olfactory meningiomas, where there was herniation of the brain. Postoperatively, there was no evidence of cerebrospinal fluid leak. We therefore recommend the use of the PDS wrap to prevent brain herniation and provide additional support to the repair.


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