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用于修复和潜在治疗颅骨缺损的生物活性植入物的开发。

Development of a bioactive implant for repair and potential healing of cranial defects.

机构信息

Stockholm Craniofacial Centre, Department of Molecular Medicine and Surgery, Plastic Surgery Section;

出版信息

J Neurosurg. 2014 Jan;120(1):273-7. doi: 10.3171/2013.6.JNS1360. Epub 2013 Aug 2.

Abstract

The repair of complex craniofacial bone defects is challenging and a successful result is dependent on the size of the defect, quality of the soft tissue covering the defect, and choice of reconstruction method. The objective of this study was to develop a bioactive cranial implant that could provide a permanent reconstructive solution to the patient by stimulating bone healing of the defect. In this paper the authors report on the feasibility and clinical results of using such a newly developed device for the repair of a large traumatic and therapy-resistant cranial bone defect. The patient had undergone numerous attempts at repair, in which established methods had been tried without success. A mosaic-designed device was manufactured and implanted, comprising interconnected ceramic tiles with a defined calcium phosphate composition. The clinical outcome 30 months after surgery revealed a restored cranial vault without postoperative complications. Computed tomography demonstrated signs of bone ingrowth. Examination with combined (18)F-fluoride PET and CT provided further evidence of bone healing of the cranial defect.

摘要

修复复杂的颅面骨缺损具有挑战性,而成功的结果取决于缺损的大小、覆盖缺损的软组织的质量和重建方法的选择。本研究的目的是开发一种具有生物活性的颅骨植入物,通过刺激缺损处的骨愈合,为患者提供永久性的重建解决方案。本文作者报告了使用这种新开发的设备修复一例大的创伤性和治疗抵抗性颅骨缺损的可行性和临床结果。该患者曾多次尝试修复,均采用了既定的方法,但均未成功。制造并植入了一种由具有特定钙磷成分的互连陶瓷砖组成的拼接设计设备。术后 30 个月的临床结果显示,颅穹窿得到了修复,且无术后并发症。计算机断层扫描显示有骨向内生长的迹象。结合(18)F-氟化物 PET 和 CT 检查进一步证实了颅骨缺损的骨愈合。

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