伴C5/C6椎间孔狭窄神经根型颈椎病影像学特点及临床意义

被引:5
作者
谢栋 [1 ]
王珑清 [2 ]
陈清 [2 ]
赵琦 [2 ]
吴昊 [2 ]
臧祖胜 [1 ]
张耀 [1 ]
宋劭晨 [2 ]
杨立利 [2 ]
机构
[1] 海军军医大学(第二军医大学)第二附属医院骨科第九〇五医院脊柱病区(中国人民解放军海军第九〇五医院骨科二病区)
[2] 海军军医大学(第二军医大学)第二附属医院脊柱外科
关键词
神经根型颈椎病; 椎间孔狭窄; 横径; 纵径; 横截面积; 数字骨科;
D O I
10.16781/j.CN31-2187/R.20220807
中图分类号
R681.55 [];
学科分类号
摘要
目的 观测伴C5/C6椎间孔狭窄神经根型颈椎病患者的颈椎间孔形态及三维空间下的各相关径值,并探讨其临床意义。方法 随机选择2014年9月至2019年7月在海军军医大学(第二军医大学)第二附属医院行手术治疗的492例伴C5/C6椎间孔狭窄神经根型颈椎病患者作为病例组,均行颈椎正侧位X线片、颈椎CT、颈椎MRI等检查。选择来院体检的191名健康成人作为正常成人组。通过CT三维重建图像和X线片观测C5/C6椎间孔形态并测量最佳投射角度下的上前后径、下前后径、纵径、横截面积、椎间隙高度等径值,分析病例组与正常成人组之间、病例组观察侧(狭窄或严重狭窄一侧)椎间孔与对侧椎间孔之间及病例组男女患者之间各径值的差异。结果 病例组C5/C6椎间孔形态因骨赘增生等,以纺锤形、不规则形为主。病例组观察侧椎间孔横径均值、纵径、横截面积、椎间隙平均高度分别为(5.81±1.40)mm、(10.45±1.70)mm、(50.02±15.46)mm2、(4.99±0.89)mm,均小于正常成人组[分别为(7.60±1.37)mm、(11.66±1.95)mm、(72.80±22.48)mm2、(5.78±0.95)mm],差异均有统计学意义(P<0.05)。病例组观察侧椎间孔与对侧椎间孔之间及病例组男女患者之间各径值比较差异均无统计学意义(P>0.05)。结论 伴C5/C6椎间孔狭窄神经根型颈椎病患者的颈椎间孔的形态发生改变,导致椎间孔的横径均值及横截面积减小。术中减压时应更加注重椎间孔横径的有效扩大,以提高手术效果。
引用
收藏
页码:1451 / 1458
页数:8
相关论文
共 20 条
[11]
Anatomical study of cervical intervertebral foramen in patients with cervical spondylotic radiculopathy.[J].Shima Hirai;So Kato;Koji Nakajima;Toru Doi;Yoshitaka Matsubayashi;Yuki Taniguchi;Hirohiko Inanami;Naoto Hayashi;Sakae Tanaka;Yasushi Oshima.Journal of Orthopaedic Science.2020, prepublish
[12]
The incidence of impingement syndrome in cases of cervical radiculopathy: An analysis of 220 cases.[J].Dernek Bahar;Aydoğmuş Suavi;Duymuş Tahir Mutlu;Adıyeke Levent;Yardımcı Merve Yıldız;Kesiktaş Fatma Nur;Sindel Dilsad;Ketenci Aysegul.Journal of Back and Musculoskeletal Rehabilitation.2019, 3
[13]
Differences in Cross-Sectional Intervertebral Foraminal Area From C3 to C7 [J].
Knapik, Derrick M. ;
Abola, Matthew, V ;
Gordon, Zachary L. ;
Seiler, John G. ;
Marcus, Randall E. ;
Liu, Raymond W. .
GLOBAL SPINE JOURNAL, 2018, 8 (06) :600-606
[14]
Influences of different lower cervical bone graft heights on the size of the intervertebral foramen: multiple planar dynamic measurements with laser scanning [J].
Yang, Rui ;
Ma, Mengjun ;
Huang, Lin ;
Ye, Jichao ;
Tang, Yong ;
Wang, Peng ;
Yin, Dezhen ;
Chen, Keng ;
Li, Weiping ;
Shen, Huiyong .
LASERS IN MEDICAL SCIENCE, 2018, 33 (03) :627-635
[15]
Morphometric changes of the cervical intervertebral foramen: A comparative analysis of pre-manipulative positioning and physiological axial rotation.[J].Pierre-Michel Dugailly;Benoît Beyer;Walid Salem;Véronique Feipel.Musculoskeletal Science and Practice.2018,
[16]
Dynamic measurements of cervical neural foramina during neck movements in asymptomatic young volunteers [J].
Chang, Victor ;
Basheer, Azam ;
Baumer, Timothy ;
Oravec, Daniel ;
McDonald, Colin P. ;
Bey, Michael J. ;
Bartol, Stephen ;
Yeni, Yener N. .
SURGICAL AND RADIOLOGIC ANATOMY, 2017, 39 (10) :1069-1078
[17]
Surgical Anatomy of the Uncinate Process and Transverse Foramen Determined by Computed Tomography [J].
Park, Moon Soo ;
Moon, Seong-Hwan ;
Kim, Tae-Hwan ;
Oh, Jae Keun ;
Jung, Jae Kyun ;
Kim, Hyung Joon ;
Riew, K. Daniel .
GLOBAL SPINE JOURNAL, 2015, 5 (05) :383-390
[18]
Morphological and radiometrical study of the human intervertebral foramina of the cervical spine [J].
Ahmed, S. H. ;
El-Shaarawy, E. A. A. ;
Ishaq, M. F. ;
Moniem, M. H. Abdel .
FOLIA MORPHOLOGICA, 2014, 73 (01) :7-18
[19]
Quantitative changes in the cervical neural foramen resulting from axial traction: in vivo imaging study [J].
Liu, Jiayong ;
Ebraheim, Nabil A. ;
Sanford, Chris G., Jr. ;
Patil, Vishwas ;
Elsamaloty, Haitham ;
Treuhaft, Katie ;
Farrell, Steven .
SPINE JOURNAL, 2008, 8 (04) :619-623
[20]
Cervical intervertebral disc space narrowing and size of intervertebral foramina [J].
Lu, J ;
Ebraheim, NA ;
Huntoon, M ;
Haman, SP .
CLINICAL ORTHOPAEDICS AND RELATED RESEARCH, 2000, (370) :259-264