Roman Max, Chaudhry Hans, Bukiet Bruce, Stecco Antonio, Findley Thomas W
Department of Biomedical Engineering , New Jersey Institute of Technology, University Heights, Newark, NJ 07102-1982, USA.
J Am Osteopath Assoc. 2013 Aug;113(8):600-10. doi: 10.7556/jaoa.2013.021.
More research is needed to understand the flow characteristics of hyaluronic acid (HA) during motions used in osteopathic manipulative treatment and other manual therapies.
To apply a 3-dimensional mathematical model to explore the relationship between the 3 manual therapy motions (constant sliding, perpendicular vibration, and tangential oscillation) and the flow characteristics of HA below the fascial layer.
The Squeeze Film Lubrication theory of fluid mechanics for flow between 2 plates was used, as well as the Navier-Stokes equations.
The fluid pressure of HA increased substantially as fascia was deformed during manual therapies. There was a higher rate of pressure during tangential oscillation and perpendicular vibration than during constant sliding. This variation of pressure caused HA to flow near the edges of the fascial area under manipulation, and this flow resulted in greater lubrication. The pressure generated in the fluid between the muscle and the fascia during osteopathic manipulative treatment causes the fluid gap to increase. Consequently, the thickness between 2 fascial layers increases as well. Thus, the presence of a thicker fluid gap can improve the sliding system and permit the muscles to work more efficiently.
The mathematical model employed by the authors suggests that inclusion of perpendicular vibration and tangential oscillation may increase the action of the treatment in the extracellular matrix, providing additional benefits in manual therapies that currently use only constant sliding motions.
需要更多研究来了解透明质酸(HA)在整骨手法治疗和其他手动疗法所使用的动作过程中的流动特性。
应用三维数学模型来探究三种手动疗法动作(持续滑动、垂直振动和切向振荡)与筋膜层下方HA的流动特性之间的关系。
使用了流体力学中两平板间流动的挤压薄膜润滑理论以及纳维-斯托克斯方程。
在手动疗法过程中,随着筋膜变形,HA的流体压力大幅增加。切向振荡和垂直振动过程中的压力上升速率高于持续滑动过程。这种压力变化导致HA在手法操作下在筋膜区域边缘附近流动,而这种流动带来了更大的润滑效果。整骨手法治疗过程中肌肉与筋膜之间的流体产生的压力会使流体间隙增大。因此,两层筋膜之间的厚度也会增加。所以,存在较厚的流体间隙可改善滑动系统,并使肌肉更高效地工作。
作者采用的数学模型表明,纳入垂直振动和切向振荡可能会增强治疗在细胞外基质中的作用,为目前仅使用持续滑动动作的手动疗法带来额外益处。