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数字化成形二维钛网在颅骨缺损修补中的应用研究 被引量:3

Application study of digitally formed two-dimensional titanium mesh in skull defect repair
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摘要 目的研究数字化成形二维钛网修补颅骨缺损的应用价值。方法将纳入研究的病例46例随机分为两组,治疗组26例行数字化成形二维钛网颅骨缺损修补术;对照组20例行传统手工塑形三维钛网颅骨缺损修补术。比较两组患者手术时间、术中出血量、术中钛网塑型安装时间、钛钉使用数量、术后并发症和患者对修复后容貌满意度。结果与对照组比较,治疗组手术时间、术中出血量、术中钛网塑型安装时间、钛钉使用数量、术后并发症发生率均明显少于对照组,差异有统计学意义(P<0.05)。治疗组修复后容貌满意度明显高于对照组(P<0.05)。结论采用数字化成形二维钛网进行颅骨修补术手术操作相对简便,手术时间短,出血量、钛钉使用量及手术并发症少,较完美地恢复了患者颅骨外形,并且硬度高,起到较好保护作用。 Objective To study the application value of digitally formed two-dimensional titanium mesh in skull defect repair. Methods 46 cases of patients were randomly divided into two groups. 26 cases in the treatment group were per- formed digitally formed two-dimensional titanium mesh skull defect repair; 20 cases in the control group were performed traditional manually reconstructed three-dimensional titanium mesh skull defect repair. The surgery time, intraoperative blood loss, titanium mesh reconstruction time, number of titanium nail used, postoperative complications and patientsj sat- isfaction with their repaired appearance were compared between the two groups. Results Compared with the control group, the surgery time, intraoperative blood loss, titanium mesh reconstruction time, number of titanium nails used and incidence of postoperative complications in the treatment group were significantly shorter or less (P 〈 0.05); patients' satisfaction with their repaired appearance in the treatment group was significantly higher than that in the control group (P 〈 0.05). Con- clusion The use of digitally formed two-dimensional titanium mesh in skull defect repair is more convenient, which has shorter surgery time, less intraoperative blood loss, number of titanium nails and postoperative complications. Digitally formed two-dimensional titanium mesh can more satisfactorily repair the skull appearance. Its high hardness can ensure better protective effect.
出处 《中国医药导报》 CAS 2012年第23期28-30,共3页 China Medical Herald
基金 广西壮族自治区贺州市科技局科学研究与技术开发计划项目(项目编号:贺科能1104002)
关键词 数字化成型 钛网 颅骨缺损 颅骨缺损修补 Digital molding Titanium mesh Skull defect Skull defect repair
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