Title :
An Observation of Micro-Structure and Form of Anulus Fibrosus of Lumbar Interverbral Disc L5-S1
Author :
Zhu, Dong ; Sun, Dahui ; Cheng, ShiHuan ; Wu, Wei ; Gao, JiaZhi ; Xiao, Zhitao ; Gong, He
Author_Institution :
Dept. of Orthopedic Surg., Jilin Univ., Changchun, China
Abstract :
We observed structure and form of adult anulus fibrous of lumbar intervertebral disc at fibrous layer level. Anulus fibrosus of lumbar interverbral disc was delaminated microsurgical technique. 8 testing points were taken in each layer and the angles between their fibers going and horizontal plane were measured. We got the results: Fiber going angle at each measurement point ceaselessly increased with the increasing of fibrous layer from outside to inside along radial direction in horizontal plane. The least fiber going angle was 2530deg. Fiber going angle at the same layer gradually increased from front to back. The fiber going angle was 70-90deg at the middle of back of anulus fibrosus of lumbar interverbral disc. The fiber going was consistent with the posterior longitudinal ligament going. Through the normalized equation and normalized line, the fiber going angle at any point in any layer could be obtained conveniently. We also observe that the fibrosus were interlaced in the front, left and right of an ulus fibrosus of lumbar intervertebral disc. And there were more interlaced areas in local sides of lumber intervertebral disc, but there was not interlaced areas between layers near the middle of posterior anulus fibrosus. So we got the conclusion: analus fibrosus of lumber intervertebral disc has special micro-structure, which was in adaptation with its function. ( We have observed structure and form of lumbar interverbral disc L5-S1, this paper discussed the experiment of lumbar interverbral disc L5-S1 for the first part).
Keywords :
biological techniques; biomechanics; bone; anulus fibrosus form; anulus fibrosus microstructure; fibrosus interlaced areas; fibrous layer level; lumbar interverbral disc L5-S1; Back; Biological materials; Degenerative diseases; Fabrics; Measurement standards; Mechanical factors; Microsurgery; Optical fiber testing; Structural discs; Surgery;
Conference_Titel :
Biomedical Engineering and Informatics, 2009. BMEI '09. 2nd International Conference on
Conference_Location :
Tianjin
Print_ISBN :
978-1-4244-4132-7
Electronic_ISBN :
978-1-4244-4134-1
DOI :
10.1109/BMEI.2009.5304966