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改良丙烯酸颅骨成形术治疗大面积颅骨缺损

Modified acrylic cranioplasty for large cranial defects.

作者信息

Werndle Melissa C, Crocker Matthew, Zoumprouli Argyro, Papadopoulos Marios C

机构信息

Academic Neurosurgery Unit, St George's, University of London, and Department of Neuroanaesthesia, St George's Hospital, London SW17 0RE, UK.

出版信息

Clin Neurol Neurosurg. 2012 Sep;114(7):962-4. doi: 10.1016/j.clineuro.2012.02.019. Epub 2012 Mar 7.

Abstract

OBJECTIVE

To describe a novel technique for constructing polymethylmethacrylate (acrylic) cranioplasty to repair large cranial defects.

METHODS

A rim of bone is cut from the edge of the skull defect using a craniotome. This bony rim provides a scaffold to fashion the acrylic cement away from the patient thus avoiding thermal injury to the brain. The inner edge of the bony rim is drilled circumferencially to form a groove. Acrylic is then used to fill the defect in the bony rim with continuous manipulation of the paste from both sides to form a dome in the shape of the skull. The groove allows the edge of the acrylic dome to fit snugly with the bony rim thus avoiding sinking. The final cranioplasty, comprised of the hardened acrylic dome with the surrounding bone rim, is firmly attached to the skull with bioplates.

RESULTS

We used the modified acrylic cranioplasty technique in three patients. Modified acrylic cranioplasty is cheaper and immediately available, compared with ten cases of titanium cranioplasty, with similar cosmetic outcome, intraoperative blood loss and operating theatre time.

CONCLUSION

Our technique is quick and easy to perform, avoids thermal injury to the brain and produces a strong implant with excellent cosmesis even with large bony defects.

摘要

目的

描述一种构建聚甲基丙烯酸甲酯(丙烯酸)颅骨成形术以修复大型颅骨缺损的新技术。

方法

使用颅骨钻从颅骨缺损边缘切下一圈骨。该骨圈提供了一个支架,以便在远离患者的情况下塑形丙烯酸水泥,从而避免对大脑造成热损伤。在骨圈的内边缘进行环形钻孔以形成凹槽。然后使用丙烯酸填充骨圈中的缺损,从两侧持续操作糊剂以形成颅骨形状的圆顶。该凹槽使丙烯酸圆顶的边缘与骨圈紧密贴合,从而避免下沉。最终的颅骨成形术由硬化的丙烯酸圆顶和周围的骨圈组成,通过生物板牢固地附着在颅骨上。

结果

我们在三名患者中使用了改良的丙烯酸颅骨成形术技术。与十例钛颅骨成形术相比,改良的丙烯酸颅骨成形术成本更低且可立即使用,在美容效果、术中失血和手术时间方面相似。

结论

我们的技术操作快速简便,避免了对大脑的热损伤,即使对于大型骨缺损也能产生具有出色美容效果的坚固植入物。

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