首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Calcaneocuboid joint and stability of the longitudinal arch of the foot at high and low gear push off.
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Calcaneocuboid joint and stability of the longitudinal arch of the foot at high and low gear push off.

机译:跟骨跟骨关节和脚纵弓的稳定性在高低档时会推开。

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摘要

The calcaneocuboid joint was studied in ligamentous specimens of ten human feet, and in skeletons of two gorillas (Gorilla gorilla beringei), six chimpanzees (Pan troglodytes), three orangutans (Pongo pygmaeus) and 25 human feet. The movement of the transverse tarsal joint was further studied in a living foot on a walk-way with a glass plate inserted, and with an underlying mirror. In man the joint is shaped as an asymmetrical sector of one end of an hour-glass shaped surface of revolution with its main axis oriented longitudinally in the foot. The calcaneocuboid joint becomes close packed by a pronation of the forefoot in relation to the hind foot because of a congruency between the joint surfaces obtained in this position and because the calcaneus overhangs the cuboid dorsally and stops the movement. At low gear push off the foot is inverted and the calcaneocuboid joint loose packed. The stresses are absorbed across the fibular, postaxial border of the foot. At high high gear push off there is a functional pronation of the forefoot with a stabilization of the transverse tarsal joint and a more effective tightening of the plantar aponeurosis. The foot becomes a rigid lever for propulsion. In contrast to the human condition, the anthropoid calcaneus has an anteromedial extension associated with symmetry of the calcaneocuboid joint. The calcaneus does not overhang the cuboid and there appears to be no close packed position. Correspondingly, the anthropoid foot has a mid-tarsal break at each push off in addition to the metatarsophalangeal break.
机译:在十只脚的韧带标本中研究了跟骨关节,并在两只大猩猩(大猩猩大猩猩),六只黑猩猩(盘尾猿),三只猩猩(红嘴py)和25只人类的脚的骨骼中进行了研究。在装有玻璃板和下面的镜子的人行道上的活脚中进一步研究了横向关节的运动。在人中,关节的形状是沙漏形旋转表面的一端的不对称扇形,其主轴在脚部纵向定向。由于在此位置获得的关节表面之间的一致性,并且由于跟骨背向长方体悬垂并停止了运动,所以跟骨后方跟骨相对于后足而言,跟骨后方关节变得紧密堆积。在低速档时,脚倒转,跟骨关节松散堆积。应力通过脚的腓骨后轴边界吸收。在高挡位下推时,前脚有功能性内旋,稳定了横向骨关节,更有效地收紧了足底腱膜。脚变成用于推进的刚性杠杆。与人类状况相反,类人骨跟骨具有跟前跟骨对称的对称性。跟骨没有悬在长方体上,并且似乎没有紧密堆积的位置。相应地,除了the趾趾间断外,类人猿脚在每次下垂时都有-中间断。

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