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足底腱膜与足底球部的内部结构。

Plantar aponeurosis and internal architecture of the ball of the foot.

作者信息

Bojsen-Moller F, Flagstad K E

出版信息

J Anat. 1976 Jul;121(Pt 3):599-611.

PMID:1018010
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1231749/
Abstract

On the basis of its internal structure, the ball of the foot can be divided into three transverse areas, each with a different mechanical function: (1) an area proximal to the heads of the metatarsals in which the retinacula cutis are developed into a series of transverse bands, and in which the deep fibres of the plantar aponeurosis form ten sagittal septa connected to the deep transverse metatarsal ligament and through this the proximal phalanges of the toes, (2) an area below the heads of the metatarsals in which vertical fibres from the joint capsules and the sides of the fibrous flexor sheaths form a cushion below each metatarsal head, and in which fat bodies cover the digital nerves and vessels in their passage between the cushions, and (3) a distal area which comprises the interdigital web. The superficial fibres of the plantar aponeurosis are inserted into the skin of this distal area, and deep to them the plantar interdigital ligament forms a series of transverse lamellae connected to the proximal phalanges by a mooring ligament which arches from one fibrous flexor sheath to the next. When the metatarsophalangeal joints are extended, the fibres of the three areas are tensed and the skin is anchored firmly to the skeleton. The direction of the fibres in the distal and proximal area promotes the transfer of forces exerted on the skin during push-off and braking respectively, while the intermediate area is adapted to bear the weight of the body. A concentration of Pacinian corpuscles is found along the digital nerves in the weight-bearing area below the transverse metatarsal ligament. The nerves for the second, and especially for the third, interstice are close to or in contact with the sharp proximal edges of the sagittal septa.

摘要

根据其内部结构,足底球部可分为三个横向区域,每个区域具有不同的力学功能:(1)跖骨头近端区域,此处的皮肤支持带发育成一系列横向带,足底腱膜的深层纤维形成十条矢状间隔,与跖骨深横韧带相连,并通过该韧带与脚趾的近节趾骨相连;(2)跖骨头下方区域,关节囊和纤维屈肌鞘侧面的垂直纤维在每个跖骨头下方形成一个垫子,脂肪体在垫子之间的通道中覆盖指神经和血管;(3)远端区域,包括趾蹼。足底腱膜的浅层纤维插入该远端区域的皮肤,在其深层,足底趾间韧带形成一系列横向薄片,通过一条从一个纤维屈肌鞘弓向另一个纤维屈肌鞘的系泊韧带与近节趾骨相连。当跖趾关节伸展时,这三个区域的纤维会绷紧,皮肤会牢固地附着在骨骼上。远端和近端区域纤维的方向分别促进了在蹬离和制动过程中施加在皮肤上的力的传递,而中间区域则适合承受身体的重量。在跖骨深横韧带下方的负重区域,沿指神经发现有大量环层小体。第二间隙,尤其是第三间隙的神经靠近矢状间隔的尖锐近端边缘或与之接触。

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The palmar aponeurosis and the central spaces of the hand.掌腱膜与手部中央间隙。
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Mechanical Behaviour of Plantar Adipose Tissue: From Experimental Tests to Constitutive Analysis.足底脂肪组织的力学行为:从实验测试到本构分析
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Change in the sub-sesamoid soft tissue thickness under different loading conditions.不同负荷条件下籽骨下软组织厚度的变化。
J Phys Ther Sci. 2023 Aug;35(8):602-607. doi: 10.1589/jpts.35.602. Epub 2023 Aug 1.
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Changes of the kinematics of the human medial longitudinal foot arch, first metatarsophalangeal joint, and the length of plantar fascia in different running patterns.不同跑步模式下人类内侧纵足弓、第一跖趾关节的运动学变化以及足底筋膜长度的变化。
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