Ren Zhiwei, Liu An, Yang Kaixiang, Wang Dalin, Buser Zorica, Wang Jeffrey C
Department of Orthopaedic Surgery, Elaine Stevely Hoffman Medical Research Center, Keck School of Medicine, University of Southern California, HMR 710, 2011 Zonal Avenue, Los Angeles, CA, 90033, USA.
Department of Orthopedics, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, 710061, China.
Eur Spine J. 2017 Aug;26(8):1999-2006. doi: 10.1007/s00586-017-4953-6. Epub 2017 Jan 23.
To investigate the changes of lumbar neural foramina size during dynamic motion using positional MRI.
Two hundred and fifty neural foramina from 50 patients were analyzed. Lumbar foraminal height, width, and area parameters from L1 to S1 were evaluated for changes in extension, neutral, and flexion positions on T2 parasagittal positional MRI images, and were correlated to lumbar angular motion. One-way analysis of variance (ANOVA) and post hoc analysis were used to examine the differences between levels and positions.
Compared to the neutral position, almost all lumbar foraminal parameters (height, width at inferior level, and area) increased in flexion and decreased in extension at all levels, except for L5-S1 foraminal width at superior and middle levels. The foraminal height and area in all lumbar segments except L5-S1 increased as the lumbar angular motion changed from extension to flexion in <40° group. The foraminal width increased significantly at L3-4 and L4-5 among all groups.
Lumbar foraminal dimensions increased in flexion compared to neutral and extension positions. Lumbar angular motion contributed to the changes of foraminal height and area at most of the segments, while it affected foraminal width only at L3-4 and L4-5. This information can be useful in the understanding of patient symptoms and the correlation with the imaging studies with dynamic foraminal stenosis. Furthermore, data from our study may help with patient positioning for foraminal injections or endoscopic surgery.
使用定位磁共振成像(MRI)研究动态运动过程中腰椎神经孔大小的变化。
分析了50例患者的250个神经孔。在T2矢状位定位MRI图像上评估从L1至S1的腰椎孔高度、宽度和面积参数在伸展、中立和屈曲位的变化,并将其与腰椎角运动相关联。采用单因素方差分析(ANOVA)和事后分析来检验不同节段和体位之间的差异。
与中立位相比,除L5 - S1上、中节段的孔宽度外,几乎所有腰椎孔参数(高度、下位节段宽度和面积)在屈曲位时均增加,在伸展位时均减小。在<40°组中,除L5 - S1外,所有腰椎节段的孔高度和面积随着腰椎角运动从伸展位变为屈曲位而增加。所有组中L3 - 4和L4 - 5的孔宽度显著增加。
与中立位和伸展位相比,腰椎孔尺寸在屈曲位时增加。腰椎角运动在大多数节段导致孔高度和面积的变化,而仅在L3 - 4和L4 - 5影响孔宽度。这些信息有助于理解患者症状以及与动态孔狭窄影像学研究的相关性。此外,我们研究的数据可能有助于指导椎间孔注射或内镜手术时的患者体位摆放。