Second international fascia research congress.

Second international fascia research congress.
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DOI:
10.3822/ijtmb.v2i2.52
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发表时间:
2009-06-29
期刊:
International journal of therapeutic massage & bodywork
影响因子:
--
通讯作者:
Findley TW
Findley TW
中科院分区:
其他
文献类型:
--
作者:
Findley TW

文献摘要

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在2007年筋膜研究大会上,主要演讲者发表的论文的研究结果为2009年10月在阿姆斯特丹举行的第二届大会做准备。细胞骨架结构和细胞外基质之间的机械转导及其对健康和疾病的影响。筋膜内存在收缩细胞(肌成纤维细胞)。临床医生感兴趣的是它们在筋膜组织中产生收缩张力的作用——肌成纤维细胞是如何形成的,它们是如何被激活的,以及它们对被动肌张力的影响。筋膜组织的生物力学特性:蠕变、松弛、迟滞、持续脊柱屈曲对腰椎组织的影响、应变引起的水化变化、肌筋膜操作和筋膜粘弹性变形。这些特性是这些组织对治疗反应的基础。筋膜是如何受神经支配的,以及本体感觉和疼痛是如何被脊髓和其他神经系统产生、检测和调节的。筋膜基质内的机械信号形式,例如通过扭转针灸针产生的胶原蛋白基质的拉扯。活体组织筋膜运动测量新技术。筋膜的作用在新的科学发现中得到证实
Findings from papers published by key speakers at the 2007 Fascia Research Congress are presented in preparation for the second congress, October 2009, in Amsterdam. mechanotransduction between the cytoskeletal structure and the extracellular matrix, and its implications for health and disease. the presence of contractile cells (myofibroblasts) within the fascial fabric. Clinicians are interested in their role in creating contractile tonus in the fascial fabric—how myofibroblasts form, how they are activated, and their influence on passive muscle tonus. the biomechanical properties of fascial tissues: creep, relaxation, hysteresis, effect of sustained spinal flexion on lumbar tissues, strain-induced hydration changes, myofascial manipulation, and fascial viscoelastic deformation. These properties underlie the response of these tissues to therapy. how fascia is innervated, and how proprioception and pain are created, detected, and modulated by the spinal cord and the rest of the nervous system. forms of mechanical signaling within the fascial matrix, such as the tugging in the collagen matrix created by twisting acupuncture needles. new techniques for measurement of fascial motion in living tissue. The role of fascia is demonstrated in new scientific findings in