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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Biomechanical aspects of trigger finger – which changed first, the pulley or the tendon?
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Biomechanical aspects of trigger finger – which changed first, the pulley or the tendon?

机译:扳机指的生物力学方面–首先改变的是滑轮还是肌腱?

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References(44) Although trigger finger is a relatively common hand disorder, its exact cause remains unknown. Whether the etiology of the abnormality resides in the tendon or in the pulley continues debate. The purpose of this review is to summarize what is known about the clinical and biomechanical presentation of trigger finger. While the A1 pulleys are more accessible for examination than the flexor tendons during surgery and have been more extensively studied, it should not yet be assumed that the tendons are any less responsible for the entrapment symptom. Previous assessments of these tissues include testing of their compliance, friction coefficient, and contact angle. Kinematic and kinetic performance of trigger fingers has been evaluated in vivo. Thickening and changes in gene expression have also been identified in trigger finger tendons. Further investigation into the role of flexor tendons in trigger finger should be performed to facilitate the understanding of the etiology and mechanism of trigger finger development. Future studies could incorporate non-invasive medical imaging in order to understand the appearance and material properties of the involved pulley and tendons, and to combine these characteristics with finger kinematics. Furthermore, understanding the mechanism of biologic adaptations of the A1 pulley and the flexor tendons in response to the mechanical loading might be helpful in providing clues and evidence for effective, novel treatment for trigger finger.
机译:参考文献(44)尽管扳机指是一种相对常见的手部疾病,但其确切原因仍然未知。异常的病因是在肌腱还是在滑轮中仍在争论。这篇综述的目的是总结关于扳机指的临床和生物力学表现的已知知识。尽管在手术期间比屈肌腱更容易检查A1滑轮,并且已经进行了更广泛的研究,但不应认为肌腱对包埋症状的影响较小。这些组织的先前评估包括测试其顺应性,摩擦系数和接触角。触发手指的运动和动力学性能已在体内进行了评估。在触发手指肌腱中也发现了基因表达的增厚和变化。应进一步研究屈肌腱在扳机指中的作用,以促进对扳机指发育的病因和机制的理解。未来的研究可能会纳入非侵入性医学成像,以了解所涉及滑轮和肌腱的外观和材料特性,并将这些特性与手指运动学结合起来。此外,了解A1滑轮和屈肌腱对机械负荷的生物学适应机制可能有助于提供线索和证据,以有效,新颖地治疗扳机指。

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