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距舟关节和跟骰关节:跗横关节的解剖、生物力学及临床处理

The talonavicular and calcaneocuboid joints: anatomy, biomechanics, and clinical management of the transverse tarsal joint.

作者信息

Sammarco V James

机构信息

The Center for Orthopaedic Care, 2123 Auburn Avenue, Suite 235, Cincinnati, OH 45219, USA.

出版信息

Foot Ankle Clin. 2004 Mar;9(1):127-45. doi: 10.1016/S1083-7515(03)00152-9.

Abstract

The transverse tarsal plays a critical role in allowing the foot to transition from a flexible structure that dissipates impact as the foot strikes the ground and accepts the body's weight to the rigid structure that is required for efficient propulsion during toe off.Similarly, the medial longitudinal arch of the foot is controlled by the supportive structures of the talonavicular joint. A fine balance exists between muscular control and static support structures of the talonavicular joint. Failure of one support structure is often followed by fatigue of the remaining support and loss of function of the entire joint complex. This article describes the osseous and ligamentous anatomy of the talonavicular and calcaneocuboid joints and describes the biomechanical role of the transverse tarsal joint in standing and gait. Biomechanical principles are used to illustrate orthotic management of diseases that affect the transverse tarsal joint.

摘要

跗横关节在使足部从一个在足着地时消散冲击力并承受身体重量的灵活结构转变为在足趾离地时高效推进所需的刚性结构过程中起着关键作用。同样,足的内侧纵弓由距舟关节的支撑结构控制。距舟关节的肌肉控制和静态支撑结构之间存在着微妙的平衡。一个支撑结构的失效往往会导致其余支撑结构的疲劳以及整个关节复合体功能的丧失。本文描述了距舟关节和跟骰关节的骨性和韧带解剖结构,并阐述了跗横关节在站立和步态中的生物力学作用。生物力学原理用于说明影响跗横关节疾病的矫形治疗。

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