Giles L G
Division of Science and Technology, Griffith University, Nathan, Brisbane, Queensland, Australia.
J Manipulative Physiol Ther. 1992 Nov-Dec;15(9):551-5.
Preliminary histological investigation to determine whether vertebral body osteophytosis can compromise adjacent paraspinal autonomic structures.
Histological sections of the L4 to S1 vertebral bodies were cut in the coronal plane at a thickness of 200 microns for morphological studies using transmitted light microscopy.
Morphological evidence is presented which supports the hypothesis that vertebral body osteophytes appear to compromise adjacent paraspinal autonomic structures.
Motion segment osteophytosis may affect viscera via the autonomic nervous system.
进行初步组织学研究,以确定椎体骨质增生是否会损害相邻的椎旁自主神经结构。
将L4至S1椎体的组织学切片在冠状平面上切成200微米厚,用于使用透射光显微镜进行形态学研究。
提供了形态学证据,支持椎体骨赘似乎会损害相邻椎旁自主神经结构这一假说。
运动节段骨质增生可能通过自主神经系统影响内脏。