Driscoll M, Blyum L
Advanced Bio-Mechanical Rehabilitation, 11991 Pierre-Baillargeon St, Suite 201, Montreal, H1E 2E5, Canada.
J Bodyw Mov Ther. 2011 Jul;15(3):335-42. doi: 10.1016/j.jbmt.2010.05.002. Epub 2010 Jun 25.
The health of physiological tissue is governed by the continuous conversion of mechanical stimulus (stress) to bio-chemical response, a concept known as mechanical homeostasis. If this regulatory imperative becomes flawed, it may be detrimental, and consequently invoke or encourage the progression of various musculoskeletal disorders. This notion is corroborated by the quantification of altered function and irregular mechanical properties found within the articulations of such phenotypes as cerebral palsy. Although the divergence from healthy to irregular tissue behavior is likely multifactorial, the presence of imbalanced mechanical properties may promote the concept of physiological stress shielding. Extrapolating upon the stress shielding phenomenon may allow inferences to be drawn with respect to the pathomechanisms of progressive disorders. Further, recognition of this association may also provide a new platform from which to interpret the impact of conventional treatments aimed at such syndromes and, in turn, perhaps support new therapeutic avenues.
生理组织的健康受机械刺激(应力)向生化反应的持续转化所支配,这一概念被称为机械稳态。如果这种调节指令出现缺陷,可能会有害,并因此引发或促进各种肌肉骨骼疾病的进展。脑瘫等表型关节内发现的功能改变和不规则机械特性的量化证实了这一观点。尽管从健康组织行为到不规则组织行为的差异可能是多因素的,但机械性能失衡的存在可能会促进生理应力屏蔽的概念。推断应力屏蔽现象可能有助于推断进行性疾病的发病机制。此外,认识到这种关联还可能提供一个新的平台,用以解释针对此类综合征的传统治疗方法的影响,进而可能支持新的治疗途径。