Halát Gabriel, Halát Hannah E, Negrin Lukas L, Koch Thomas, Hirtler Lena, Fuchssteiner Christoph, Hajdu Stefan
Department of Orthopedics and Trauma Surgery, Medical University of Vienna, Währinger Gürtel 18-20, 1090 Vienna, Austria.
Institute of Materials Science and Technology, Faculty of Mechanical and Industrial Engineering, TU Wien, Getreidemarkt 9, 1060 Vienna, Austria.
J Clin Med. 2025 Feb 8;14(4):1092. doi: 10.3390/jcm14041092.
: The aim of this biomechanical investigation was to evaluate a V-shaped three-point graft tenodesis technique using a free palmaris longus (PL) tendon for reconstructing traumatic A2 pulley lesions and to compare its biomechanical performance with two previously described reconstruction techniques. : After A2 pulley lesion simulation in 27 fingers (index, middle and ring finger) from nine human anatomical hand specimens, reconstructions were performed using the innovative V-shaped graft tenodesis technique, a double-loop encircling technique and a suture anchor graft fixation technique. Load at failure and the failure mechanisms were evaluated. : The V-shaped graft tenodesis technique was superior biomechanically ( = 0.004) considering load at failure (mean: 299 N). The only observed failure mechanism in this group was the extrusion of the central tenodesis screw. In contrast, reconstructions in the other two groups failed due to suture cut-out. : Patients may benefit from the new technique's high load tolerance during early mobilization. Furthermore, a reduction in complications may be anticipated due to an absence of sutures and the sparing of extensor structures.
本生物力学研究的目的是评估一种使用游离掌长肌腱的V形三点移植腱固定技术,用于重建创伤性A2滑车损伤,并将其生物力学性能与之前描述的两种重建技术进行比较。在对来自9个手部人体解剖标本的27根手指(示指、中指和环指)进行A2滑车损伤模拟后,采用创新的V形移植腱固定技术、双环环绕技术和缝线锚钉移植固定技术进行重建。评估了破坏载荷和破坏机制。考虑到破坏载荷(平均:299 N),V形移植腱固定技术在生物力学上更具优势(P = 0.004)。该组中观察到的唯一破坏机制是中央腱固定螺钉的挤出。相比之下,其他两组的重建因缝线穿出而失败。患者可能会从新技术在早期活动期间的高载荷耐受性中受益。此外,由于没有缝线和保留了伸肌结构,预计并发症会减少。