Method Article

Simulator Training for Endovascular Neurosurgery

DOI:

10.3791/60923

May 6th, 2020

In This Article

Summary

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Simulation of complex, high-risk procedures is critical to the education of medical trainees. A protocol for simulator-based endovascular neurosurgery training in a controlled academic environment is described. The protocol includes stepwise guidelines for trainees of varying levels, with a discussion of the advantages and limitations of this model.

Abstract

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Simulation-based training has become common practice across medical specialties, especially for learning complex skills performed in high-risk environments. In the field of endovascular neurosurgery, the demand for consequence- and risk-free learning environments led to the development of simulation devices valuable for medical trainees. The goal of this protocol is to provide instructive guidelines for the use of an endovascular neurosurgery simulator in an academic setting. The simulator provides trainees with the opportunity to receive realistic feedback on their knowledge of anatomy, as well as haptic feedback indicative of their success in handling the catheter-based systems without negative consequences. The utility of this specific protocol in relation to other neuroendovascular training modalities is also discussed.

Introduction

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Simulation-based training is an established educational tool for medical trainees and is particularly beneficial in high-risk fields such as endovascular neurosurgery. Multiple virtual reality training devices utilizing catheter-based systems exist, such as the ANGIO Mentor simulator (Simbionix Ltd., Airport City, Israel) and VIST-C and VIST G5 simulators (Mentice AB, Gothenburg, Sweden), with a significant body of data demonstrating the utility of training on procedural aptitude1. In spite of the usefulness of the simulators, step-by-step procedural instructions for their use are lacking.

Presented is a detailed pro....

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Protocol

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1. Simulator setup

  1. Prior to all procedures, assemble the simulator as shown in Figure 1 and turn on. Refer to Table 1 for the full list of simulator equipment needed to complete each simulation.
  2. Select the patient scenario using the software interface on the attached laptop (Figure 1C).
  3. Select the appropriate arterial sheath or guide catheter from the drop-down menu. This does not need to be physically inserted as part of the simulation, but will act as the femoral access site and allow subsequent entry of wires and catheters into the system (

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Results

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The ANGIO Mentor simulator was previously shown to improve the skills of surgical trainees with varying neuroendovascular experience when performing simulated diagnostic angiograms, thrombectomies, and ruptured aneurysm coil embolizations in an academic setting2. In this study, performance metrics for the aforementioned procedures were established over the course of 30 days in one medical student, one neurosurgery resident, two diagnostic neuroradiology fellows, and one endovascular neurosurgery f.......

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Discussion

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Endovascular surgery is an expanding field that offers a minimally invasive treatment approach to a variety of pathologies. The significant risks associated with vascular injuries nonetheless provides unique educational challenges. With advances in simulation-based training, the education of trainees now allows practice in a risk-free environment that mimics real-life cases. Accordingly, endovascular simulation-based training has been shown to consistently improve performance metrics such as procedure time, fluoroscopy t.......

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Disclosures

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AAK has previously received competitive grants from Covidien Ltd. and Penumbra Inc. and holds consulting arrangements for physician training with Stryker Neurovascular, Covidien Ltd., and Penumbra Inc. JSP has served as a medical consultant to Stryker Neurovascular and Dart NeuroScience LLC. AAK and JSP have no direct financial interests related to this work. The remaining authors have no disclosures concerning the materials or methods used in this study or the findings specified in this paper.

Acknowledgements

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The authors thank all the clinical teams contributing daily to the care of neurovascular patients at UCSD.

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
ANGIO Mentor simulatorSimbionix Ltd., Airport City, IsraelN/aThe setup for the ANGIO Mentor simulator includes the simulator housing as pictured in Figure 1: (A), an external monitor for image projection (x-ray, angiography; B), a laptop for interfacing with the Simbionix Software (C), the simulated femoral artery sheath (with an outer guide-catheter, inner diagnostic microcatheter and guidewire shown; D), a contrast syringe (E), an insufflator for balloon inflation (F), a stent delivery device (G; not used in these patient scenarios), foot pedals for fluoroscopy, roadmap guidance, and angiographic runs (H), and the operator control panel on the simulator housing where the operator is able to control patient and image intensifier positioning (I).

References

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  1. See, K. W., Chui, K. H., Chan, W. H., Wong, K. C., Chan, Y. C. Evidence for Endovascular Simulation Training: A Systematic Review. European Journal of Vascular and Endovascular Surgery. 51 (3), 441-451 (2016).
  2. Pannell, J. S., et al.

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Tags

Endovascular NeurosurgerySimulation TrainingHaptic FeedbackCatheter SystemFluoroscopy GuidanceVessel CatheterizationAneurysm CoilingThrombectomy ProcedureAnatomical KnowledgeProcedural Feedback

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