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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Anatomical reduction and precise internal fixation of intra‑articular fractures of the distal radius with virtual X‑ray and 3D printing
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Anatomical reduction and precise internal fixation of intra‑articular fractures of the distal radius with virtual X‑ray and 3D printing

机译:具有虚拟X射线和3D印刷的远端半径的关节内骨折的解剖学和精确的内部固定

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摘要

To evaluate and precisely internal fix intra-articular distal radial fracture (IDRF) using the virtual X-ray and three-dimensional (3D) printing technologies. Twenty-one patients with IDRF were recruited, and the data from digital design group (DDG) and real surgery group (RSG) were collected and analyzed. In DDG, the data from thin-slice computed tomography scan, virtual X-ray measurement parameters, including volar tilt, palmar tilt, radius length (D1), ulnar variation (D2), locking plate position parameter (D3) and distance between key nail and joint surface (D4) were collected. The bone was virtually fixed with the locking plate, and the final model of radius with the screw was obtained by 3D printing. In RSG, the locking plate was precisely pre-bended and used in surgery. During the surgery, the key K-wire was accurately placed and the locking plate was adjusted with the aid of the U-shaped navigation arm. The C-arm was used to observe the positions of key K-wires and the locking plate, and the same above-mentioned parameters were measured intra- and post-operatively. The data from RSG and DDG were compared statistically by t test. This approach proved to be successful in all 21 patients, and none of the screws pierced through the wrist joint surface. All the measured parameters, including the volar tilt, palmar tilt, D1-4, in RSG were not significantly different from preoperative DDG data. Virtual X-ray measurement of anatomical reduction parameters and 3D printing can help the anatomical reduction and precise internal fixation by providing quantitative references, preoperatively, intraoperatively and postoperatively.
机译:使用虚拟X射线和三维(3D)印刷技术来评估和精确地内固定关节内侧径向裂缝(IDRF)。招募了二十一名IDRF患者,并收集和分析来自数字设计组(DDG)和实际手术组(RSG)的数据。在DDG中,来自薄片计算机断层扫描扫描,虚拟X射线测量参数的数据,包括Volar Tilt,Palmar倾斜,半径长度(D1),尺方变化(D2),锁定板位置参数(D3)和键之间的距离收集钉子和关节表面(D4)。用锁定板几乎固定骨骼,通过3D打印获得螺钉的半径的最终模型。在RSG中,锁定板精确地预弯曲并用于手术。在手术期间,借助于U形导航臂精确放置钥匙k线,锁定板被调节。 C形臂用于观察钥匙k线和锁定板的位置,并且在可操作地测量相同的上述参数。 RSG和DDG的数据通过T检验进行统计比较。这种方法证明在所有21名患者中都有成功,并且没有螺钉刺穿穿过腕带表面。与术前DDG数据没有显着不同的所有测量参数,包括Volar Tilt,Palmar Tilt,D1-4,没有显着不同。解剖学减少参数和3D打印的虚拟X射线测量可以通过提供定量参考,术前,术语和术后来帮助解剖减小和精确的内部固定。

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  • 作者单位

    Southern Med Univ Sch Basic Med Sci Natl Key Discipline Human Anat 1838 Guangzhou Rd North Guangzhou 510515 Guangdong Peoples R China;

    Putian Univ Dept Orthoped Affiliated Hosp 999 East Shenzhen Rd Putian City 510080 Fujian Peoples R China;

    Guangzhou Med Univ Hand & Foot Surg & Plast Surg Affiliated Shunde Hosp A163 Middle Rd Lecong Ave Foshan 528315 Guangdong Peoples R China;

    Guangzhou Med Univ Affiliated Shunde Hosp A163 Middle Rd Lecong Ave Foshan 528315 Guangdong Peoples R China;

    Guangzhou Med Univ Affiliated Shunde Hosp A163 Middle Rd Lecong Ave Foshan 528315 Guangdong Peoples R China;

    Guangzhou Med Univ Hand & Foot Surg & Plast Surg Affiliated Shunde Hosp A163 Middle Rd Lecong Ave Foshan 528315 Guangdong Peoples R China;

    Guangzhou Med Univ Hand & Foot Surg & Plast Surg Affiliated Shunde Hosp A163 Middle Rd Lecong Ave Foshan 528315 Guangdong Peoples R China;

    Putian Univ Dept Orthoped Affiliated Hosp 999 East Shenzhen Rd Putian City 510080 Fujian Peoples R China;

    Guangzhou Med Univ Hand & Foot Surg & Plast Surg Affiliated Shunde Hosp A163 Middle Rd Lecong Ave Foshan 528315 Guangdong Peoples R China;

    Southern Med Univ Sch Basic Med Sci Natl Key Discipline Human Anat 1838 Guangzhou Rd North Guangzhou 510515 Guangdong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Distal radial fracture (DRF); Intra-articular distal radial fracture (IDRF); Anatomical reduction; Internal fixation; Virtual X-ray; 3D printing;

    机译:远端径向骨折(DRF);关节内远端径向骨折(IDRF);解剖学减少;内部固定;虚拟X射线;3D打印;

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