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肱二头肌腱膜的力学特性。

Mechanical properties of the bicipital aponeurosis.

作者信息

Ocran Emmanuel, Oliver Michele, Agur Anne, Elmaraghy Amr, Gordon Karen

机构信息

School of Engineering, University of Guelph, Guelph, Ontario, Canada.

Division of Anatomy, Department of Surgery, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Mech Behav Biomed Mater. 2025 Mar;163:106876. doi: 10.1016/j.jmbbm.2024.106876. Epub 2024 Dec 20.

Abstract

As a biarticular muscle, the biceps brachii both supinates the forearm and flexes the elbow and shoulder, thus allowing the upper limb to perform a variety of activities of daily living (ADL). The biceps brachii originates on the coracoid apex as well as the supraglenoid tubercle and inserts on the radial tuberosity. At the distal end, the bicipital aponeurosis (BA) provides a transition of the biceps tendon into the antebrachial fascia. Previous work has reported the importance of the bicipital aponeurosis in stabilizing distal tendons. Other studies have reported the supination effect that the BA has on the forearm at the radioulnar joint, where it also protects the brachial artery and median nerve (neurovascular bundle). In addition, it has been speculated to have a proprioceptive function. However, despite the important functions fulfilled by this structure, the mechanical properties of the BA are yet to be quantified. Mechanical properties for eight fresh frozen BA specimens (82 ± 12 years, 5 females, 5 right) were quantified using a Cellscale Biaxial (Waterloo, ON) testing machine. Three samples (approximately 7 × 7mm each) were harvested from the proximal, middle and distal regions along the length of the BA. Samples were tested on a biaxial testing machine while maintaining the alignment of the longitudinal collagen fiber orientation with the X-axis of the tester. The testing protocol included 10 preconditioning sinusoidal cycles at 9% strain, at a strain rate of 1%/s, followed by biaxial testing to a maximum strain of 12% at a strain rate of 1%/s. Young's modulus was quantified for all biaxial tests from the linear portion of the resulting stress-strain relation. Results showed that elastic modulus values were significantly greater in the longitudinal direction aligned with the collagen fibers. The outcomes of this study will provide input values for future models of distal biceps repair, thus aiding surgical planning by providing insight into the potential load sharing contributions of the BA.

摘要

作为双关节肌,肱二头肌可使前臂旋后,并屈曲肘部和肩部,从而使上肢能够进行各种日常生活活动(ADL)。肱二头肌起于喙突尖以及盂上结节,止于桡骨粗隆。在远端,肱二头肌腱膜(BA)使肱二头肌肌腱过渡至前臂筋膜。先前的研究报道了肱二头肌腱膜在稳定远端肌腱方面的重要性。其他研究报道了肱二头肌腱膜在桡尺关节处对前臂的旋后作用,它还能保护肱动脉和正中神经(神经血管束)。此外,有人推测它具有本体感觉功能。然而,尽管该结构具有重要功能,但其力学性能尚未得到量化。使用Cellscale双轴测试机(安大略省滑铁卢)对8个新鲜冷冻的肱二头肌腱膜标本(年龄82±12岁,5名女性,5个右侧标本)的力学性能进行了量化。沿着肱二头肌腱膜的长度,从近端、中部和远端区域分别采集了3个样本(每个样本约7×7毫米)。在双轴测试机上对样本进行测试,同时保持纵向胶原纤维方向与测试仪的X轴对齐。测试方案包括在9%应变下以1%/秒的应变率进行10个预处理正弦循环,然后以1%/秒的应变率进行双轴测试,直至最大应变达到12%。根据所得应力-应变关系的线性部分,对所有双轴测试量化杨氏模量。结果表明,与胶原纤维对齐的纵向方向的弹性模量值明显更大。本研究的结果将为未来远端肱二头肌修复模型提供输入值,从而通过深入了解肱二头肌腱膜的潜在负荷分担作用来辅助手术规划。

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