A new polyvinyl alcohol hydrogel vascular model (KEZLEX) for microvascular anastomosis training

一种用于显微血管吻合术训练的新型聚乙烯醇水凝胶血管模型(KEZLEX)

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Abstract

BACKGROUND: Microvascular anastomosis is a challenging neurosurgical technique that requires extensive training for one to master it. We developed a new vascular model (KEZLEX, Ono and Co., Ltd., Tokyo, Japan) as a non-animal, realistic tool for practicing microvascular anastomosis under realistic circumstances. METHODS: The model was manufactured from polyvinyl alcohol hydrogel to provide 1.0-3.0 mm diameter (available for 0.5-mm pitch), 6-8 cm long tubes that have qualitatively similar surface characteristics, visibility, and stiffness to human donor and recipient arteries for various bypass surgeries based on three-dimensional computed tomography/magnetic resonance imaging scanning data reconstruction using visible human data set and vessel casts. RESULTS: Trainees can acquire basic microsuturing techniques for end-to-end, end-to-side, and side-to-side anastomoses with handling similar to that for real arteries. To practice standard deep bypass techniques under realistic circumstances, the substitute vessel can be fixed to specific locations of a commercially available brain model with pins. CONCLUSION: Our vascular prosthesis model is simple and easy to set up for repeated practice, and will contribute to facilitate "off-the-job" training by trainees.

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