Makino Takahiro, Kaito Takashi, Sakai Yusuke, Takenaka Shota, Yoshikawa Hideki
Department of Orthopaedic Surgery, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.
Medicine (Baltimore). 2018 Sep;97(37):e12379. doi: 10.1097/MD.0000000000012379.
Bone ongrowth on the surfaces of titanium (Ti)-coated polyetheretherketone (PEEK) materials has been demonstrated in animal models; however, whether this occurs on the surfaces of Ti-coated PEEK cages in lumbar interbody fusion has not been demonstrated clinically in vivo. This prospective observational study was aimed to develop and validate a computed tomography (CT) color mapping based on Hounsfield unit (HU) values for evaluation of bone ongrowth on the surfaces of the Ti-coated PEEK cage after posterior lumbar interbody fusion (PLIF).Twenty-four consecutive patients (11 men and 13 women; mean age, 67.0 years; range, 20-82 years) who underwent single- or 2-level PLIF since March 2015 were included. Two Ti-coated PEEK cages were inserted in all PLIF segments. From reconstructed sagittal planes from postoperative CT scans (within 1 week and 6 months postoperatively), bone ongrowth on the surfaces of cage frames was evaluated by CT color mapping. Inter- and intraobserver reliability of the assessment of bone ongrowth by CT color mapping was evaluated by Cohen's kappa coefficient. The relation between CT color mapping and HU values on the surfaces of cage frames was also analyzed.A total of 248 surfaces of cage frames were evaluated. Bone ongrowth was observed in 134 of 248 surfaces (54.0%) by CT color mapping. Intraobserver reliability for the evaluation of bone ongrowth was kappa = 0.831, and interobserver reliability was kappa = 0.713. The HU values in the local regions of interest (ROIs) on the surfaces of cage frames where the postoperative bone ongrowth existed on CT color mapping increased significantly postoperatively (P < .001), and the median postoperative change rate of the HU values in the local ROIs was 22.4%.The assessment of bone ongrowth on the surfaces of Ti-coated PEEK cages by CT color mapping had adequate inter- and intraobserver reliability, which was useful especially in detecting local increase in HU values on the surfaces of the cages. This method is an easy and visually comprehensible method for the assessment of bone ongrowth in the bone-implant interface.
在动物模型中已证实钛(Ti)涂层聚醚醚酮(PEEK)材料表面有骨生长;然而,在腰椎椎间融合术中,Ti涂层PEEK椎间融合器表面是否会出现这种情况尚未在临床体内得到证实。这项前瞻性观察研究旨在开发并验证一种基于亨氏单位(HU)值的计算机断层扫描(CT)彩色图谱,用于评估后路腰椎椎间融合术(PLIF)后Ti涂层PEEK椎间融合器表面的骨生长情况。纳入了自2015年3月起接受单节段或双节段PLIF的24例连续患者(11例男性和13例女性;平均年龄67.0岁;范围20 - 82岁)。所有PLIF节段均植入两个Ti涂层PEEK椎间融合器。从术后CT扫描(术后1周内和术后6个月)重建的矢状面图像中,通过CT彩色图谱评估椎间融合器框架表面的骨生长情况。通过科恩kappa系数评估CT彩色图谱评估骨生长的观察者间和观察者内可靠性。还分析了CT彩色图谱与椎间融合器框架表面HU值之间的关系。
共评估了248个椎间融合器框架表面。通过CT彩色图谱在248个表面中的134个(54.0%)观察到骨生长。评估骨生长的观察者内可靠性kappa = 0.831,观察者间可靠性kappa = 0.713。在CT彩色图谱上显示术后存在骨生长的椎间融合器框架表面局部感兴趣区域(ROI)的HU值术后显著增加(P <.001),局部ROI中HU值的术后中位数变化率为22.4%。
通过CT彩色图谱评估Ti涂层PEEK椎间融合器表面的骨生长具有足够的观察者间和观察者内可靠性,这在检测椎间融合器表面HU值的局部增加方面特别有用。该方法是一种评估骨 - 植入物界面骨生长的简单且视觉上易于理解方法。