Ramirez Manuel de Jesus Encarnacion, Nurmukhametov Renat, Musa Gerald, Barrientos Castillo Rossi E, Encarnacion Valerin L Arno, Soriano Sanchez Jose Antonio, Vazquez Cesar Augusto, Efe Ibrahim E
Department of Neurosurgery, People's Friendship University, Moscow, RUS.
Department of Biology, Montclair State University, New Jersey, USA.
Cureus. 2022 Jul 30;14(7):e27472. doi: 10.7759/cureus.27472. eCollection 2022 Jul.
Cadaveric models remain an essential part of medical training across all specialties. Due to their scarcity, high costs, and possible health hazards, there is a need for more accessible and affordable alternatives, especially in low-resource settings. We introduce cost-effective and easily replicable three-dimensional (3D) printed models to help democratize access to hands-on neuroanatomy education. Silicone-based glue is applied on the surface of a 3D-printed or cadaveric bone frame. Using plastiline on a 3 mm 3D acrylonitrile butadiene styrene pen, the desired anatomical structure is printed on the bone frame. A heat gun is used to smoothen the plastic edges. The structure can then be painted according to its appearance in the real anatomy. Using this technique, we successfully generated a variety of anatomical models to study the cerebrovascular anatomy, the course of the cranial nerves in relation to the skull base, and extracranial structures including the spine. Procurement and conservation of cadaveric specimens can be cumbersome. Our model may be an affordable and easily replicable approach to bridging the gap in anatomy education between low- and high-resource facilities.
尸体模型仍然是所有医学专业培训的重要组成部分。由于其稀缺性、高成本以及可能存在的健康风险,需要更易获取且价格合理的替代方案,尤其是在资源匮乏的地区。我们引入了具有成本效益且易于复制的三维(3D)打印模型,以促进实践神经解剖学教育的普及。将硅基胶水涂覆在3D打印或尸体骨骼框架的表面。使用3毫米的3D丙烯腈丁二烯苯乙烯笔蘸上塑形膏,在骨骼框架上绘制出所需的解剖结构。使用热风枪使塑料边缘光滑。然后可以根据其在真实解剖结构中的外观对该结构进行上色。利用这种技术,我们成功制作了各种解剖模型,用于研究脑血管解剖结构、颅神经与颅底的关系以及包括脊柱在内的颅外结构。尸体标本的采购和保存可能很麻烦。我们的模型可能是一种经济实惠且易于复制的方法,可弥合低资源和高资源设施之间在解剖学教育方面的差距。