Maduri Rodolfo, Viaroli Edoardo, Levivier Marc, Daniel Roy T, Messerer Mahmoud
Department of Clinical Neurosciences, Service of Neurosurgery, University Hospital of Lausanne (CHUV), Lausanne, Switzerland.
Pediatr Neurosurg. 2017;52(5):351-355. doi: 10.1159/000479329. Epub 2017 Aug 19.
Cranioplasty is considered a simple reconstructive procedure, usually performed in a single stage. In some clinical conditions, such as in children with multifocal flap osteolysis, it could represent a surgical challenge. In these patients, the partially resorbed autologous flap should be removed and replaced with a precustomed prosthesis which should perfectly match the expected bone defect. We describe the technique used for a navigated cranioplasty in a 3-year-old child with multifocal autologous flap osteolysis. We decided to perform a cranioplasty using a custom-made hydroxyapatite porous ceramic flap. The prosthesis was produced with an epoxy resin 3D skull model of the patient, which included a removable flap corresponding to the planned cranioplasty. Preoperatively, a CT scan of the 3D skull model was performed without the removable flap. The CT scan images of the 3D skull model were merged with the preoperative 3D CT scan of the patient and navigated during the cranioplasty to define with precision the cranioplasty margins. After removal of the autologous resorbed flap, the hydroxyapatite prosthesis matched perfectly with the skull defect. The anatomical result was excellent. Thus, the implementation of cranioplasty with image merge navigation of a 3D skull model may improve cranioplasty accuracy, allowing precise anatomic reconstruction in complex skull defect cases.
颅骨成形术被认为是一种简单的重建手术,通常在一个阶段完成。在某些临床情况下,比如患有多灶性皮瓣骨质溶解症的儿童,它可能是一项手术挑战。对于这些患者,应移除部分吸收的自体皮瓣,并用预先定制的假体进行替换,该假体应与预期的骨缺损完美匹配。我们描述了在一名患有多灶性自体皮瓣骨质溶解症的3岁儿童中进行导航颅骨成形术所使用的技术。我们决定使用定制的羟基磷灰石多孔陶瓷皮瓣进行颅骨成形术。该假体是根据患者的环氧树脂3D颅骨模型制作的,其中包括一个与计划的颅骨成形术相对应的可移除皮瓣。术前,在没有可移除皮瓣的情况下对3D颅骨模型进行了CT扫描。将3D颅骨模型的CT扫描图像与患者术前的3D CT扫描图像合并,并在颅骨成形术期间进行导航,以精确确定颅骨成形术的边缘。移除自体吸收皮瓣后,羟基磷灰石假体与颅骨缺损完美匹配。解剖结果非常理想。因此,通过3D颅骨模型的图像合并导航实施颅骨成形术可能会提高颅骨成形术的准确性,从而在复杂颅骨缺损病例中实现精确的解剖重建。