Neurosurgical simulator for training aneurysm microsurgery-a user suitability study involving neurosurgeons and residents
Research article published in Acta neurochirurgica (2020)
Abstract
BACKGROUND: Due to its complexity and to existing treatment alternatives, exposure to intracranial aneurysm microsurgery at the time of neurosurgical residency is limited. The current state of the art includes training methods like assisting in surgeries, operating under supervision, and video training. These approaches are labor-intensive and difficult to fit into a timetable limited by the new work regulations. Existing virtual reality (VR)-based training modules lack patient-specific exercises and haptic properties and are thus inferior to hands-on training sessions and exposure to real surgical procedures. MATERIALS AND METHODS: We developed a physical simulator able to reproduce the experience of clipping an intracranial aneurysm based on a patient-specific 3D-printed model of the skull, brain, and arteries. The simulator is made of materials that not only imitate tissue properties including arterial wall patency, thickness, and elasticity but also able to recreate a pulsatile blood flow. A sample group of 25 neurosurgeons and residents (n = 16: early residency with less than 4 years of neurosurgical exposure; n = 9: late residency and board-certified neurosurgeons, 4-15 years of neurosurgical exposure) took part to the study. Participants evaluated the simulator and were asked to answer questions about surgical simulation anatomy, realism, haptics, tactility, and general usage, scored on a 5-point Likert scale. In order to evaluate the feasibility of a future validation study on the role of the simulator in neurosurgical postgraduate training, an expert neurosurgeon assessed participants' clipping performance and a comparison between groups was done. RESULTS: The proposed simulator is reliable and potentially useful for training neurosurgical residents and board-certified neurosurgeons. A large majority of participants (84%) found it a better alternative than conventional neurosurgical training methods. CONCLUSION: The integration of a new surgical simulator including blood circulation and pulsatility should be considered as part of the future armamentarium of postgraduate education aimed to ensure high training standards for current and future generations of neurosurgeons involved in intracranial aneurysm surgery.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
Due to its complexity and to existing treatment alternatives, exposure to intracranial aneurysm microsurgery at the time of neurosurgical residency is limited.
Warum dies für die Hirudotherapie relevant ist
This study describes the development and user-suitability evaluation of a physical, 3D-printed neurosurgical simulator for training intracranial aneurysm clipping microsurgery, involving 25 neurosurgeons and residents who rated the simulator highly on anatomy, realism, haptics, and utility. The simulator reproduces skull, brain, and arterial anatomy with pulsatile blood flow. There is no defensible connection to hirudotherapy, the leech secretome, or ASH's domain. The study involves no leeches, no anticoagulant agents, no thrombin inhibitors, and no relevant pharmacological or biological overlap with leech-derived therapeutics. The only tangential link is that aneurysm surgery and cerebrovascular procedures involve blood flow and clotting physiology, but this is far too remote to constitute meaningful relevance. This article should not be considered relevant to the ASH research library.
Zitation
Neurosurgical simulator for training aneurysm microsurgery-a user suitability study involving neurosurgeons and residents
Joseph FJ et al. · Acta neurochirurgica, 2020
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