...
首页> 外文期刊>Molecular imaging >Imaging Bone–Cartilage Interactions in Osteoarthritis Using [ 18F]-NaF PET-MRI
【24h】

Imaging Bone–Cartilage Interactions in Osteoarthritis Using [ 18F]-NaF PET-MRI

机译:使用[ 18 F] -NaF PET-MRI对骨关节炎中的骨-软骨相互作用进行成像

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Purpose: Simultaneous positron emission tomography–magnetic resonance imaging (PET-MRI) is an emerging technology providing both anatomical and functional images without increasing the scan time. Compared to the traditional PET/computed tomography imaging, it also exposes the patient to significantly less radiation and provides better anatomical images as MRI provides superior soft tissue characterization. Using PET-MRI, we aim to study interactions between cartilage composition and bone function simultaneously, in knee osteoarthritis (OA). Procedures: In this article, bone turnover and remodeling was studied using [~(18)F]-sodium fluoride (NaF) PET data. Quantitative MR-derived T_(1ρ)relaxation times characterized the biochemical cartilage degeneration. Sixteen participants with early signs of OA of the knee received intravenous injections of [~(18)F]-NaF at the onset of PET-MR image acquisition. Regions of interest were identified, and kinetic analysis of dynamic PET data provided the rate of uptake ( K_(i) ) and the normalized uptake (standardized uptake value) of [~(18)F]-NaF in the bone. Morphological MR images and quantitative voxel-based T_(1ρ)maps of cartilage were obtained using an atlas-based registration technique to segment cartilage automatically. Voxel-by-voxel statistical parameter mapping was used to investigate the relationship between bone and cartilage. Results: Increases in cartilage T_(1ρ), indicating degenerative changes, were associated with increased turnover in the adjoining bone but reduced turnover in the nonadjoining compartments. Associations between pain and increased bone uptake were seen in the absence of morphological lesions in cartilage, but the relationship was reversed in the presence of incident cartilage lesions. Conclusion: This study shows significant cartilage and bone interactions in OA of the knee joint using simultaneous [~(18)F]-NaF PET-MR, the first in human study. These observations highlight the complex biomechanical and biochemical interactions in the whole knee joint in OA, which potentially could help assess therapeutic targets in treating OA.
机译:目的:同时进行正电子发射断层扫描-磁共振成像(PET-MRI)是一项新兴技术,可在不增加扫描时间的情况下提供解剖学图像和功能图像。与传统的PET /计算机断层扫描成像相比,由于MRI提供了卓越的软组织表征,它还使患者暴露于更少的辐射下,并提供了更好的解剖图像。使用PET-MRI,我们旨在研究膝关节骨关节炎(OA)中软骨成分与骨骼功能之间的相互作用。程序:在本文中,使用[〜(18)F]-氟化钠(NaF)PET数据研究了骨转换和重塑。 MR定量的T_(1ρ)松弛时间表征了生化软骨的变性。在PET-MR图像采集开始时,有16位具有膝OA早期迹象的参与者接受了静脉注射[〜(18)F] -NaF。确定了感兴趣的区域,动态PET数据的动力学分析提供了骨骼中[〜(18)F] -NaF的摄取率(K_(i))和归一化摄取(标准化摄取值)。使用基于图谱的配准技术自动分割软骨,获得形态学的MR图像和定量的基于体素的T_(1ρ)软骨图。使用逐个体素统计参数映射来研究骨骼与软骨之间的关系。结果:软骨T_(1ρ)的增加表明退行性改变,与相邻骨骼的周转率增加有关,但与不相邻隔室的周转率下降有关。在软骨没有形态学病变的情况下,疼痛与骨吸收增加之间存在关联,但是在软骨发生病变的情况下这种关系被逆转。结论:这项研究表明,同时进行[〜(18)F] -NaF PET-MR是人类研究中的首例,膝关节骨关节炎的软骨和骨相互作用显着。这些观察结果突出了OA整个膝关节中复杂的生物力学和生化相互作用,这可能有助于评估OA的治疗目标。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号