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A technique for intraoperative creation of patient-specific titanium mesh implants

机译:术中创建患者专用钛网植入物的技术

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摘要

Prefabricated, patient-specific alloplastic implants for cranioplasty reduce surgical complexity, decrease operative times, minimize exposure and risk of contamination, and have resulted in improved aesthetic results. However, in creating a prefabricated custom implant using a patient’s computed tomography data, a stable, unalterable defect must be clearly defined before surgery. In the event that an intraoperative modification of an exiting skull defect is required, or in cases of tumour resection in which the size of the skull defect is unknown preoperatively, these prefabricated implants cannot be used. The ideal method for alloplastic cranioplasty would enable cost-effective creation of a patient-specific implant with the capacity for intraoperative modification.The present article describes a novel technique of cranioplasty that uses a patient’s computed tomography data to create a custom forming tool (ie, mold), enabling intraoperative creation of a patient-specific titanium mesh implant. The utility of these implants in creating a custom reconstructive solution in cases in which the size of the skull defect is unknown preoperatively will be demonstrated using two case presentations.
机译:用于颅骨成形术的预制的,针对患者的异体植入物可以降低手术的复杂性,减少手术时间,最大程度地减少暴露和污染的风险,并可以改善美学效果。但是,在使用患者的计算机断层扫描数据创建预制的定制植入物时,必须在手术前明确定义稳定,不可改变的缺损。如果需要在术中修改现有的颅骨缺损,或者在术前未知颅骨缺损的大小的肿瘤切除术中,则不能使用这些预制的植入物。同种异体颅骨成形术的理想方法是能够经济有效地创建具有手术修改能力的患者专用植入物。本文介绍了一种颅骨成形术的新技术,该技术使用患者的计算机断层扫描数据创建定制的成形工具(即,模具),从而可以在术中创建患者专用的钛网植入物。这些假体在术前不知道颅骨缺损的大小的情况下在创建定制的重建解决方案中的实用性将通过两个案例演示进行演示。

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