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Subperiosteal Transmission Of Intra-Articular Pressure Between Articulated And Stationary Joints

机译:关节和固定关节之间的关节腔内骨膜下传导

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摘要

Hydrostatic pressures can be transmitted between synovial capsules. In each of ten rabbits, we simultaneously measured pressure in two joints, one of which was passively ranged, and the other of which was kept stationary. The intra-articular pressure inside the stationary joint changed every time its companion joint was ranged. But the pressure in the stationary joint did not change when the periosteum was transected above the ranged joint. This phenomenon was observed in all four animals that served as their own controls. The study suggests that the intra-articular pressure was transmitted through the space between the periosteum and the bone surface. Alternative explanations, like measurements of venous blood pressure, did not show correlation with hydrostatic pressure changes in the joints. The Floating Skeleton concept suggests a biomechanical rationale for this newly observed phenomenon: that there exists a subperiosteal hydrostatic connection of synovial joints, and that this “net” distributes excess pressures among joints through the periosteal sheath to sustain the integrity of the joint contacting surfaces over a lifetime.
机译:静水压力可以在滑膜囊之间传递。在十只兔子的每只中,我们同时测量了两个关节的压力,其中一个处于被动范围,而另一个处于静止状态。固定关节内的关节内压力每变化一次,都会改变。但是,当骨膜在远程关节上方横切时,固定关节的压力没有改变。在作为它们自己的对照的所有四只动物中都观察到了这种现象。研究表明,关节内压力是通过骨膜和骨表面之间的空间传递的。替代性解释,例如静脉血压的测量,并未显示与关节中静水压力变化的相关性。浮动骨架的概念为这种新发现的现象提出了生物力学原理:滑膜关节存在骨膜下的静水压连接,并且该“网”通过骨膜鞘在关节之间分配过大的压力,以维持关节接触表面的完整性。整个人生。

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