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攀岩者指深屈肌和蚓状肌撕裂的病理力学:尸体模型。

Pathomechanics of lumbrical and flexor digitorum profundus muscle tears in climbers: A cadaveric model.

机构信息

Department of Morphological Sciences, School of Medicine, Universitat Autònoma de Barcelona, Bellaterra, Spain; Hand Therapy BCN, Barcelona, Spain.

Institut Kaplan, Surgery of the Hand and the Upper Extremity, Barcelona, Spain.

出版信息

J Biomech. 2024 Jun;171:112196. doi: 10.1016/j.jbiomech.2024.112196. Epub 2024 Jun 21.

DOI:10.1016/j.jbiomech.2024.112196
PMID:38924964
Abstract

Lumbrical muscles originate on the flexor digitorum profundus (FDP) tendons and, during fist making, they move in the same direction when FDP muscle produces maximal proximal tendon gliding. Injuries of the bipennate lumbricals have been described when a shear force acts between the origins on adjacent tendons of the FDP, as they glide in opposite directions in asymmetric hand postures. Other structures of the deep flexors complex can be affected during this injury mechanism, due to the so-called quadriga effect, which can commonly occur during sport climbing practise. Biomechanical studies are needed to better understand the pathomechanism. A cadaveric study was designed to analyse the effects of load during the fourth lumbrical muscle injury mechanism. The amount of FDP tendon gliding and metacarpophalangeal (MCP) joint flexion of the 5th finger were calculated. Ten fresh-frozen cadaveric specimens (ten non-paired forearms and hands) were used. The specimens were placed on a custom-made loading apparatus. The FDP of the 5th finger was loaded, inducing isolated flexion of the 5th finger, until rupture. The rupture occurred in all specimens, under a load of 11 kg (SD 4.94), at 9.23 mm of proximal tendon gliding (SD 3.55) and at 21.4° (SD 28.91) of MCP joint flexion. Lumbrical muscle detachment from the 4th FDP was observed, from distal to proximal, and changes in FDP tendons at the distal forearm level too. The quadriga effect can lead to injury of the bipennate lumbrical muscles and the deep flexors complex in the hand and forearm.

摘要

蚓状肌起源于指深屈肌腱(FDP),在握拳时,当 FDP 肌肉产生最大的近侧肌腱滑动时,它们朝着相同的方向移动。当 FDP 肌腱在相反的方向滑动时,双羽状蚓状肌在相邻肌腱的起源处会发生剪切力,从而导致双羽状蚓状肌损伤。在这种损伤机制中,由于所谓的四骑效应,深部屈肌复合体的其他结构也可能受到影响,这种情况在运动攀岩练习中很常见。需要进行生物力学研究以更好地了解发病机制。一项尸体研究旨在分析第四蚓状肌损伤机制中的负荷作用。计算了 FDP 肌腱滑动和第 5 指近节指间关节(MCP)弯曲的量。使用了十个新鲜冷冻的尸体标本(十个非配对的前臂和手)。标本被放置在定制的加载设备上。加载第 5 指的 FDP,诱导第 5 指单独弯曲,直到断裂。所有标本均在 11 公斤(SD 4.94)的负荷下,在近端肌腱滑动 9.23 毫米(SD 3.55)和 MCP 关节弯曲 21.4°(SD 28.91)时发生断裂。从远端到近端观察到蚓状肌从第 4 FDP 上分离,并且在远侧前臂水平的 FDP 肌腱也发生了变化。四骑效应可导致手部和前臂的双羽状蚓状肌和深部屈肌复合体损伤。

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