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Atlantoaxial pedicle screw fixation for old odontoid fracture combined with atlantoaxial instability
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作者 郝定均 《外科研究与新技术》 2011年第2期86-86,共1页
Objective To explore the clinical effect of the trans-atlantoaxial pedicle screw-rod internal fixation and fusion in treatment of old odontoid fracture combined with atlantoaxial instability. Methods The study involve... Objective To explore the clinical effect of the trans-atlantoaxial pedicle screw-rod internal fixation and fusion in treatment of old odontoid fracture combined with atlantoaxial instability. Methods The study involved 48 patients with 展开更多
关键词 Atlantoaxial pedicle screw fixation for old odontoid fracture combined with atlantoaxial instability
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股骨近端髓内钉治疗老年人股骨粗隆间骨折的临床疗效分析 被引量:3
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作者 关钦强 饶明亮 刘东海 《中国实用医药》 2015年第1期22-23,共2页
目的探讨股骨近端髓内钉治疗老年人股骨粗隆间骨折的临床疗效。方法 100例老年股骨粗隆间骨折患者,根据治疗方法不同,分为对照组(动力加压钢板固定法治疗)和观察组(股骨近端髓内钉治疗),每组50例。比较两组患者的疗效差异。结果观察组5... 目的探讨股骨近端髓内钉治疗老年人股骨粗隆间骨折的临床疗效。方法 100例老年股骨粗隆间骨折患者,根据治疗方法不同,分为对照组(动力加压钢板固定法治疗)和观察组(股骨近端髓内钉治疗),每组50例。比较两组患者的疗效差异。结果观察组50例患者,经股骨近端髓内钉内固定治疗,临床总有效率为92.0%,明显高于对照组的74.0%,两组比较差异具有统计学意义(P<0.05)。结论股骨近端髓内钉治疗老年人股骨粗隆间骨折的临床疗效确切,值得推广应用。 展开更多
关键词 股骨近端髓内钉 老年人 股骨粗隆间骨折
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Printed Three-dimensional Anatomic Templates for Virtual Preoperative Planning Before Reconstruction of Old Pelvic Injuries: Initial Results 被引量:38
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作者 Xin-Bao Wu Jun-Qiang Wang +5 位作者 Chun-Peng Zhao Xu Sun Yin Shi Zi-An Zhang Yu-Neng Li Man-Yi Wang 《Chinese Medical Journal》 SCIE CAS CSCD 2015年第4期477-482,共6页
Background:Old pelvis fractures are among the most challenging fractures to treat because of their complex anatomy,difficult-to-access surgical sites,and the relatively low incidence of such cases.Proper evaluation a... Background:Old pelvis fractures are among the most challenging fractures to treat because of their complex anatomy,difficult-to-access surgical sites,and the relatively low incidence of such cases.Proper evaluation and surgical planning are necessary to achieve the pelvic ring symmetry and stable fixation of the fracture.The goal of this study was to assess the use of three-dimensional (3D) printing techniques for surgical management of old pelvic fractures.Methods:First,16 dried human cadaveric pelvises were used to confirm the anatomical accuracy of the 3D models printed based on radiographic data.Next,nine clinical cases between January 2009 and April 2013 were used to evaluate the surgical reconstruction based on the 3D printed models.The pelvic injuries were all type C,and the average time from injury to reconstruction was 11 weeks (range:8-17 weeks).The workflow consisted of.:(1) Printing patient-specific bone models based on preoperative computed tomography (CT) scans,(2) virtual fracture reduction using the printed 3D anatomic template,(3) virtual fracture fixation using Kirschner wires,and (4) preoperatively measuring the osteotomy and implant position relative to landmarks using the virtually defined deformation.These models aided communication between surgical team members during the procedure.This technique was validated by comparing the preoperative planning to the intraoperative procedure.Results:The accuracy of the 3D printed models was within specification.Production of a model from standard CT DICOM data took 7 hours (range:6-9 hours).Preoperative planning using the 3D printed models was feasible in all cases.Good correlation was found between the preoperative planning and postoperative follow-up X-ray in all nine cases.The patients were followed for 3-29 months (median:5 months).The fracture healing time was 9-17 weeks (mean:l0 weeks).No delayed incision healing,wound infection,or nonunions occurred.The results were excellent in two cases,good in five,and poor in two based on the Majeed score.Conclusions:The 3D printing planning technique for pelvic surgery was successfully integrated into a clinical workflow to improve patient-specific preoperative planning by providing a visual and haptic model of the injury and allowing patient-specific adaptation of each osteosynthesis implant to the virtually reduced pelvis. 展开更多
关键词 old fracture PELVIS Preoperative Planning Surgery Three-dimensional Printing
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