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Anatomical measurements of the structures relevant to the lumbar spondylolysis articular process and isthmus
RUAN Cai-lian*
Acta Anatomica Sinica ›› 2014, Vol. 45 ›› Issue (1) : 94-97.
Anatomical measurements of the structures relevant to the lumbar spondylolysis articular process and isthmus
Objective To measure the structures relevant to the spondylolysis process and isthmus of the lower lumbar spine by using the imaging method, and to analyze the new lumbar posterior planting bone surgery operation in the process of the safety range and the patients with the relationship between the height and weight. Methods Lateral lumbar spine X-ray images were collected from 300 normal adult males and females, 150 each. The width, length, depth, the spondylolysis depth, graft length and absolute depth of the superior articular process of the 3rd-5th lumbar vertebral were measured with the Digimizer software. The equation of linear regression method was used to analyze these indicators and the patients’height and weight. Results The width, length, depth and the depth of spondylolysis and absolute depth of the articular process, and patients’weight and height in both males and females were not correlated (P> 0.05). There was a significant correlation between planting bone bed length and height (P< 0.05), but not the weight (P> 0.05). Conclusion The image method measuring the lower lumbar spine on the joints and outstanding spondylolysis anatomical structure related to posterior lumbar for bone graft operation provides accurate and reliable operation data.
Lower lumbar spine / Isthmus / Superior articular process / Anatomical structure / Radiography / Adult
[1]Jiang DH. Spiral CT post-processing technique in the diagnosis of lumbar spondylolysis reconstruction[J]. Journal of Zhejiang Combine Traditional Chinese and Western Medicine, 2012, 22 (6): 473-474. (in Chinese)
蒋迪华.螺旋CT后处理重建技术在腰椎峡部裂诊断中的应用[J].浙江中西医结合杂志,2012,22(6):473-474.
[2] Jiao LG, Xi ChY, Xu GP, et al. In the lower lumbar spine joints and isthmus, related to anatomical imaging measurement[J]. Chinese Journal of Spinal Cord, 2012, 22 (5) : 439-442. (in Chinese)
焦力刚, 奚春阳, 徐公平,等.下腰椎上关节突及峡部相关解剖结构的影像学测量[J].中国脊柱脊髓杂志,2012,22(5):439-442.
[3]Chen TF, Xu ShQ, Zhao LF, et al. More than 128 layers spiral CT and its mode of value of post-processing technique in the diagnosis of lumbar GongXia department crack [J]. Journal of Clinical Medicine, 2010, 14 (13) : 123-128. (in Chinese)
陈天凤,许绍奇,赵林芬, 等.128层螺旋CT及其多模式的后处理技术在腰椎弓峡部裂诊断中的价值[J].实用临床医药杂志,2010,14(13):123-128.
[4]Gu XM, Jia LSh, Chen XSh, et al. Biomechanics of lumbar spondylolysis: finite element modeling and validation[J]. Journal of Medical Biological Mechanics, 2010, 25 (1) : 45-50. (in Chinese)
顾晓民,贾连顺, 陈雄生,等.腰椎椎弓峡部裂三维有限元模型的建立与验证[J].医用生物力学,2010,25(1):45-50.
[5]Liu HX, Shen Y, Xu HZ, et al. The joints of the lower lumbar spine degree of joint osteoarthritis and yellow ligament thickness and sacral slope Angle of the relationship between [J]. Chinese Journal of Spinal Cord, 2012, 22 (5) : 401-406. (in Chinese)
柳海晓,沈跃,徐华梓, 等.下腰椎关节突关节骨性关节炎程度与黄韧带厚度和骶骨倾斜角的关系[J].中国脊柱脊髓杂志,2012,22(5):401-406.
[6]Wang DW, Fang QM, Sun ZhZh, et al. The clinical anatomy study lumbar segmental artery[J]. Journal of Binzhou Medical College, 2010 (2) : 117-118,120. (in Chinese)
王大巍, 房清敏, 孙兆忠, 等.下腰椎节段动脉的临床解剖学研究[J].滨州医学院学报,2010,33(2):117-118,120.
[7]Lan ChG, Tang YJ, Liu MA, et al. Under the elderly patients with the clinical imaging anatomical features and treatment of lumbar spinal instability[J]. Journal of Youjiang National Medical Journal, 2009, 31 (3) : 397-399. (in Chinese)
蓝常贡, 唐毓金, 陆敏安, 等.老年患者下腰椎不稳的临床影像解剖特征及治疗[J].右江民族医学院学报,2009,31(3):397-399.
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