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Surgical training technology for cerebrovascular anastomosis.

机译:脑血管吻合术外科训练技术。

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摘要

Cerebrovascular anastomosis (for example in the management of Moyamoya disease or complex aneurysms) is a rarely performed but essential procedure in neurosurgery. Because of the complexity of this technique and the infrequent clinical opportunities to maintain skills relevant to this surgery, laboratory training is important to develop a consistent and competent performance of cerebrovascular anastomosis. We reviewed the literature pertaining to the training practices surrounding cerebrovascular anastomosis in order to understand the ways in which trainees should best develop these skills. A wide variety of training methods have been described. These may be classified into five general categories, according to training materials used, being synthetic material, living animal, animal carcass, human cadaver, and computer simulation. Ideally, a novice begins training with non-biological material. After gaining sufficient dexterity, the trainee will be able to practice using biological materials followed by high fidelity models prior to actual surgery. Unfortunately, the effectiveness of each model has generally, to our knowledge, only been judged subjectively. Objective quantification methods are necessary to accelerate the acquisition of competence.
机译:脑血管吻合术(例如在Moyamoya疾病或复杂动脉瘤的管理中)是神经外科的很少但基本的程序。由于这种技术的复杂性和不经常的临床机会维持与这种手术相关的技能,实验室培训对于开发巨大且具有胜过脑血管吻合术的绩效是重要的。我们审查了与脑血管吻合术周围培训实践有关的文献,以了解学员应最佳地发展这些技能的方式。已经描述了各种各样的训练方法。根据所使用的培训材料,这些可以分为五个一般类别,是合成材料,生物动物,动物尸体,人体尸体和计算机模拟。理想情况下,新手从非生物材料开始培训。在获得足够的灵敏度后,实习生将能够在实际手术前使用生物材料进行高保真模型。不幸的是,每个模型的有效性一般都是为了主观判断。客观量化方法是加速获取能力的必要方法。

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