首页> 外文期刊>Journal of bodywork and movement therapies >Fascial hierarchies and the relevance of crossed-helical arrangements of collagen to changes in shape; part II: The proposed effect of blood pressure (Traube-Hering-Mayer) waves on the fascia
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Fascial hierarchies and the relevance of crossed-helical arrangements of collagen to changes in shape; part II: The proposed effect of blood pressure (Traube-Hering-Mayer) waves on the fascia

机译:肌肉等级和胶原骨交叉螺旋安排与形状变化的相关性; 第二部分:血压(Traube-Hering-Mayer)波对筋膜的拟议效果

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Periodic changes in arterial pressure and volume have long been related to respiratory and sympathetic nerve activity (Traube-Hering-Mayer waves) but their origins and nomenclature have caused considerable confusion since they were first discovered in the eighteenth century. However, although they remain poorly understood and the underlying details of their control are complicated, these waves do provide valuable clinical information on the state of blood pressure regulation in both normal and pathological conditions; and a correlation with oscillatory motions observed by certain practitioners suggests that they may also have some physiological value that relates to changes in the volume of fascial 'tubes'. Part I of this paper (Scarr, 2016) described a complex fascial network of collagen-reinforced tubular sheaths that are an integral part of muscle structure and function, and continuous with 'higher-level' fascial tubes surrounding groups of muscles, the limbs and entire body. The anisotropic arrangements of collagen fibres within the walls of these tubes reflect the most efficient distribution of mechanical stresses and have been considered to coordinate changes in shape, and a proposed link between cyclic variations in arterial pressure and volume, and the behaviour of these fascial compartments is now described.
机译:动脉压和体积的周期性变化与呼吸和交感神经活动(Traube-Hering-Mayer波浪)有关,但它们的起源和命名均导致了很大的混乱,因为它们在十八世纪最初发现。然而,虽然它们仍然明白并且其控制的潜在细节很复杂,但这些波确实提供了关于正常和病理条件的血压调节状态的有价值的临床信息;与某些从业者观察到的与振荡动作的相关性表明,它们也可能具有一些与拟合性“管道体积变化有关的生理值。本文的第I部分(SCARR,2016)描述了一种复杂的胶原增强管状护套的肌肉型,是肌肉结构和功能的组成部分,以及与肌肉,四肢组群的“更高级别”的筋膜管连续整个身体。这些管壁内的胶原纤维的各向异性布置反映了机械应力的最有效分布,并且已经被认为是坐标形状的变化,以及动脉压和体积的循环变化之间的建议连杆,以及这些识字室的行为现在描述了。

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