医学
四分位数
Modic变化
磁共振成像
T2弛豫
无症状的
放松(心理学)
腰痛
气温日变化
腰椎
核医学
自旋晶格弛豫
时间点
核磁共振
放射科
外科
病理
内科学
地质学
哲学
替代医学
物理
美学
大气科学
核四极共振
置信区间
作者
Hanna Hebelka,Mohammad Khalil,Helena Brisby,Kerstin Lagerstrand
出处
期刊:Diagnostic and interventional radiology
[AVES Publishing Co.]
日期:2021-12-30
卷期号:28 (1): 92-97
被引量:1
标识
DOI:10.5152/dir.2021.21514
摘要
PURPOSE The increasing interest of endplate and Modic changes as potential pain generators in low back pain (LBP), along with advancement of functional quantitative magnetic resonance imaging (MRI) techniques, makes it important to characterize the vertebral dynamic behavior in detail. This study aims to perform characterization of the dynamic behavior of the vertebral bodies (VB) by investigating the VB diurnal variation in T2-relaxation time in a cross-sectional asymptomatic group of individuals. METHODS T2-mapping of 30 VBs (L1-L5) in six healthy volunteers (mean age, 40 years; range, 29-65 years) was performed with a 1.5 Tesla MRI at three time points over the day (7 am, 12 am, 5 pm). Volumetric regions of interest were segmented manually to determine VB T2-relaxation time, which was compared between the three time points. RESULTS On a group level only small and not significant diurnal VB variation was detected (all P >.10), with median T2 (ms) (quartiles; Q1, Q3) at the three time points 88.7 (84.1, 99.1), 87.3 (85.0, 96.1) and 87.8 (84.4, 99.2). However, in some VBs up to 7% increase respectively 9% decrease in T2-relaxation time was found during the day. Further, there was a relatively large variation between the individuals in absolute VB T2-relaxation times (range 73.2-108.3 ms), but small differences between the VBs within an individual. CONCLUSION This first T2-mapping study of the VB signal dynamics, in repeated investigations during one day, display variation in T2-relaxation time in specific individual VBs but were negligible on a group level. The result may be of importance when evaluating patients with spinal pathologies and suggest further examinations of dynamic changes not only of the disc but also vertebrae.
科研通智能强力驱动
Strongly Powered by AbleSci AI