Olabe Jon, Olabe Javier
Department of Neurosurgery Hospital Universitario Son Dureta, 07014 Andrea Doria, Palma de Mallorca, Spain.
Surg Neurol. 2009 Dec;72(6):695-9. doi: 10.1016/j.surneu.2008.12.008. Epub 2009 Mar 29.
Microneurovascular anastomosis and aneurysm clipping require extensive training before mastering the technique and are a surgical challenge. We developed the "infused chicken wing method" to provide a simple but realistic training method minimizing animal use and need for special facilities for animal care and anesthesia.
Fresh chicken wings were used in this model. The main brachial artery was cannulated, and water was infused at 140 mm Hg followed by anatomical neurovascular dissection. Multiple microsurgical training exercises were performed under microscope vision including terminoterminal, lateroterminal, laterolateral vascular anastomosis, and nerve anastomosis. Different complexity aneurysms were created using venous patches, clipping, rupture, and vascular reconstruction techniques were performed.
This novel training model is inexpensive, easily obtainable, and no live animals are required. The diameter and characteristics of arteries and veins used are similar to those of the human brain. Great microsurgical technique progress may be obtained.
The infused chicken wing artery model presents a realistic microvascular training method. It is inexpensive and easy to set up. Such simplicity provides the adequate environment for developing microsurgical technique.
微血管吻合术和动脉瘤夹闭术在掌握该技术之前需要大量训练,并且是一项手术挑战。我们开发了“灌注鸡翅法”,以提供一种简单但逼真的训练方法,最大限度地减少动物使用以及对动物护理和麻醉特殊设施的需求。
本模型使用新鲜鸡翅。将主要肱动脉插管,以140毫米汞柱的压力注入水,随后进行神经血管解剖。在显微镜视野下进行多项显微外科训练操作,包括端端、端侧、侧侧血管吻合以及神经吻合。使用静脉补片创建不同复杂程度的动脉瘤,并进行夹闭、破裂和血管重建技术操作。
这种新型训练模型成本低廉、易于获取,且无需活体动物。所使用的动脉和静脉的直径及特征与人类大脑的相似。可以取得显著的显微外科技术进步。
灌注鸡翅动脉模型提供了一种逼真的微血管训练方法。它成本低廉且易于设置。这种简单性为发展显微外科技术提供了合适的环境。