Klimek L, Klein H M, Schneider W, Mösges R, Schmelzer B, Voy E D
Department for Otorhinolaryngology, Head and Neck Surgery, Medical Faculty, RWTH Aachen, Germany.
Acta Otorhinolaryngol Belg. 1993;47(3):329-34.
Until now, bounds of model creation of medical objects had to be set because of the limited capabilities of available manufacturing equipment. Recently, stereolithography was developed as an alternative to current milling operations. In this process the surface of a photohardening liquid plastic compound is traced by a laser beam and hardened in layers. The models thus produced are extremely accurate and retain excellent detail. Specific implants can be designed and prepared as is illustrated in a case report. If tissue-compatible plastics are used, custom-made implants could soon be manufactured directly with the technique described.
到目前为止,由于现有制造设备能力有限,医学模型创建的范围必须受到限制。最近,立体光刻技术作为当前铣削操作的替代方法得到了发展。在这个过程中,激光束在光固化液态塑料化合物的表面进行扫描,并逐层固化。由此产生的模型极其精确,且保留了出色的细节。如一份病例报告所示,特定的植入物可以进行设计和制备。如果使用与组织相容的塑料,定制植入物很快就可以直接用上述技术制造出来。