Literature DB >> 29749910

A novel, low-cost, reusable, high-fidelity neurosurgical training simulator for cerebrovascular bypass surgery.

Ulas Cikla, Balkan Sahin, Sahin Hanalioglu, Azam S Ahmed, David Niemann, Mustafa K Baskaya.   

Abstract

OBJECTIVECerebrovascular bypass surgery is a challenging yet important neurosurgical procedure that is performed to restore circulation in the treatment of carotid occlusive diseases, giant/complex aneurysms, and skull base tumors. It requires advanced microsurgical skills and dedicated training in microsurgical techniques. Most available training tools, however, either lack the realism of the actual bypass surgery (e.g., artificial vessel, chicken wing models) or require special facilities and regulations (e.g., cadaver, live animal, placenta models). The aim of the present study was to design a readily accessible, realistic, easy-to-build, reusable, and high-fidelity simulator to train neurosurgeons or trainees on vascular anastomosis techniques even in the operating room.METHODSThe authors used an anatomical skull and brain model, artificial vessels, and a water pump to simulate both extracranial and intracranial circulations. They demonstrated the step-by-step preparation of the bypass simulator using readily available and affordable equipment and consumables.RESULTSAll necessary steps of a superficial temporal artery-middle cerebral artery bypass surgery (from skin opening to skin closure) were performed on the simulator under a surgical microscope. The simulator was used by both experienced neurosurgeons and trainees. Feedback survey results from the participants of the microsurgery course suggested that the model is superior to existing microanastomosis training kits in simulating real surgery conditions (e.g., depth, blood flow, anatomical constraints) and holds promise for widespread use in neurosurgical training.CONCLUSIONSWith no requirement for specialized laboratory facilities and regulations, this novel, low-cost, reusable, high-fidelity simulator can be readily constructed and used for neurosurgical training with various scenarios and modifications.

Entities:  

Keywords:  CBS = cerebrovascular bypass surgery; EC = extracranial; IC = intracranial; MCA = middle cerebral artery; NOMAT = Northwestern Objective Microanastomosis Assessment Tool; STA = superficial temporal artery; anastomosis; bypass surgery; microsurgery; simulator; training

Year:  2018        PMID: 29749910     DOI: 10.3171/2017.11.JNS17318

Source DB:  PubMed          Journal:  J Neurosurg        ISSN: 0022-3085            Impact factor:   5.115


  4 in total

1.  Crisis Management Simulation: Review of Current Experience.

Authors:  Coulter Small; Divine Nwafor; Devan Patel; Fakhry Dawoud; Abeer Dagra; Jeremy Ciporen; Brandon Lucke-Wold
Journal:  SunText Rev Neurosci Psychol       Date:  2021-03-27

2.  Development and Validation of a Novel Methodological Pipeline to Integrate Neuroimaging and Photogrammetry for Immersive 3D Cadaveric Neurosurgical Simulation.

Authors:  Sahin Hanalioglu; Nicolas Gonzalez Romo; Giancarlo Mignucci-Jiménez; Osman Tunc; Muhammet Enes Gurses; Irakliy Abramov; Yuan Xu; Balkan Sahin; Ilkay Isikay; Ilkan Tatar; Mustafa Berker; Michael T Lawton; Mark C Preul
Journal:  Front Surg       Date:  2022-05-16

3.  Development and initial evaluation of a novel simulation model for comprehensive brain tumor surgery training.

Authors:  Anne Sophie Grosch; Timo Schröder; Torsten Schröder; Julia Onken; Thomas Picht
Journal:  Acta Neurochir (Wien)       Date:  2020-05-08       Impact factor: 2.216

4.  Investigation of Objectivity in Scoring and Evaluating Microvascular Anastomosis Simulation Training.

Authors:  Yasuo Murai; Shun Sato; Atsushi Tsukiyama; Asami Kubota; Akio Morita
Journal:  Neurol Med Chir (Tokyo)       Date:  2021-10-08       Impact factor: 1.742

  4 in total

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