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脊柱生物力学生长调节与青少年进行性脊柱侧弯——“恶性循环”发病机制假说的验证:国际脊柱侧弯研究学会电子焦点小组辩论总结

Biomechanical spinal growth modulation and progressive adolescent scoliosis--a test of the 'vicious cycle' pathogenetic hypothesis: summary of an electronic focus group debate of the IBSE.

作者信息

Stokes Ian A F, Burwell R Geoffrey, Dangerfield Peter H

机构信息

Department of Orthopaedics and Rehabilitation, University of Vermont, Burlington, Vermont 05405, USA.

出版信息

Scoliosis. 2006 Oct 18;1:16. doi: 10.1186/1748-7161-1-16.

Abstract

There is no generally accepted scientific theory for the causes of adolescent idiopathic scoliosis (AIS). As part of its mission to widen understanding of scoliosis etiology, the International Federated Body on Scoliosis Etiology (IBSE) introduced the electronic focus group (EFG) as a means of increasing debate on knowledge of important topics. This has been designated as an on-line Delphi discussion. The text for this debate was written by Dr Ian A Stokes. It evaluates the hypothesis that in progressive scoliosis vertebral body wedging during adolescent growth results from asymmetric muscular loading in a "vicious cycle" (vicious cycle hypothesis of pathogenesis) by affecting vertebral body growth plates (endplate physes). A frontal plane mathematical simulation tested whether the calculated loading asymmetry created by muscles in a scoliotic spine could explain the observed rate of scoliosis increase by measuring the vertebral growth modulation by altered compression. The model deals only with vertebral (not disc) wedging. It assumes that a pre-existing scoliosis curve initiates the mechanically-modulated alteration of vertebral body growth that in turn causes worsening of the scoliosis, while everything else is anatomically and physiologically 'normal' The results provide quantitative data consistent with the vicious cycle hypothesis. Dr Stokes' biomechanical research engenders controversy. A new speculative concept is proposed of vertebral symphyseal dysplasia with implications for Dr Stokes' research and the etiology of AIS. What is not controversial is the need to test this hypothesis using additional factors in his current model and in three-dimensional quantitative models that incorporate intervertebral discs and simulate thoracic as well as lumbar scoliosis. The growth modulation process in the vertebral body can be viewed as one type of the biologic phenomenon of mechanotransduction. In certain connective tissues this involves the effects of mechanical strain on chondrocytic metabolism a possible target for novel therapeutic intervention.

摘要

对于青少年特发性脊柱侧凸(AIS)的病因,目前尚无普遍接受的科学理论。作为扩大对脊柱侧凸病因理解使命的一部分,国际脊柱侧凸病因联合会(IBSE)引入了电子焦点小组(EFG),作为增加对重要主题知识辩论的一种方式。这被指定为在线德尔菲讨论。这场辩论的文本由伊恩·A·斯托克斯博士撰写。它评估了这样一种假说:在进行性脊柱侧凸中,青少年生长期间椎体楔形变是由“恶性循环”(发病机制的恶性循环假说)中不对称的肌肉负荷通过影响椎体生长板(终板骨骺)导致的。一个额面数学模拟通过测量改变的压缩对椎体生长的调节,测试了脊柱侧凸脊柱中肌肉产生的计算出的负荷不对称是否能解释观察到的脊柱侧凸增加率。该模型仅处理椎体(而非椎间盘)楔形变。它假定预先存在的脊柱侧凸曲线启动了椎体生长的机械调节改变,进而导致脊柱侧凸恶化,而其他一切在解剖学和生理学上都是“正常的”。结果提供了与恶性循环假说一致的定量数据。斯托克斯博士的生物力学研究引发了争议。有人提出了一个关于椎体联合发育异常的新推测概念,这对斯托克斯博士的研究以及AIS的病因学都有影响。毫无争议的是,需要在他当前的模型以及纳入椎间盘并模拟胸段和腰段脊柱侧凸的三维定量模型中,使用其他因素来检验这一假说。椎体中的生长调节过程可被视为机械转导这一生物现象的一种类型。在某些结缔组织中,这涉及机械应变对软骨细胞代谢的影响,这可能是新型治疗干预的一个靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab7a/1626075/1ecbd0dc219b/1748-7161-1-16-1.jpg

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