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首页> 外文期刊>BMC Musculoskeletal Disorders >Strain patterns in normal anterior talofibular and calcaneofibular ligaments and after anatomical reconstruction using gracilis tendon grafts: A cadaver study
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Strain patterns in normal anterior talofibular and calcaneofibular ligaments and after anatomical reconstruction using gracilis tendon grafts: A cadaver study

机译:普通前塔曲率和钙质鹦鹉的应变模式以及使用Gracilis肌腱移植的解剖重建之后:尸体研究

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Inversion ankle sprains, or lateral ankle sprains, often result in symptomatic lateral ankle instability, and some patients need lateral ankle ligament reconstruction to reduce pain, improve function, and prevent subsequent injuries. Although anatomically reconstructed ligaments should behave in a biomechanically normal manner, previous studies have not measured the strain patterns of the anterior talofibular ligament (ATFL) and calcaneofibular ligament (CFL) after anatomical reconstruction. This study aimed to measure the strain patterns of normal and reconstructed ATFL and CFLs using the miniaturization ligament performance probe (MLPP) system. The MLPP was sutured into the ligamentous bands of the ATFLs and CTLs of three freshly frozen cadaveric lower-extremity specimens. Each ankle was manually moved from 15° dorsiflexion to 30° plantar flexion, and a 1.2-N?m force was applied to the ankle and subtalar joint complex. The normal and reconstructed ATFLs exhibited maximal strain (100) during supination in three-dimensional motion. Although the normal ATFLs were not strained during pronation, the reconstructed ATFLs demonstrated relative strain values of 16–36. During the axial motion, the normal ATFLs started to gradually tense at 0° plantar flexion, with the strain increasing as the plantar flexion angle increased, to a maximal value (100) at 30° plantar flexion; the reconstructed ATFLs showed similar strain patterns. Further, the normal CFLs exhibited maximal strain (100) during plantar flexion-abduction and relative strain values of 30–52 during dorsiflexion in three-dimensional motion. The reconstructed CFLs exhibited the most strain during dorsiflexion-adduction and demonstrated relative strain values of 29–62 during plantar flexion-abduction. During the axial motion, the normal CFLs started to gradually tense at 20° plantar flexion and 5° dorsiflexion. Our results showed that the strain patterns of reconstructed ATFLs and CFLs are not similar to those of normal ATFLs and CFLs.
机译:反转踝螺纹或侧踝扭伤,通常导致症状侧踝不稳定,一些患者需要侧踝韧带重建,以减少疼痛,改善功能,防止随后的伤害。虽然解剖学重建的韧带应该以生物力学上正常的方式行事,但先前的研究尚未测量解剖重建后前胎瓣(ATFL)和钙质鹦鹉(ATFL)和钙质鹦鹉(CFL)的应变模式。该研究旨在使用小型化韧带性能探针(MLPP)系统测量正常和重建的ATFL和CFL的应变模式。将MLPP缝合到ATFLS和三个新冷冻的尸体下肢样本的ζ和CTL中。将每个脚踝从15°背屈手动移动到30°Portarar屈曲,并且将1.2-N·M力施加到踝关节和子间隙络合物上。正常和重建的ATFL在三维运动中汲取期间表现出最大菌株(100)。尽管在校牙期间不紧张常规ATFL,但是重建的ATFLS展示了16-36的相对应变值。在轴向运动期间,正常的ATFL在0°Portar屈曲时开始逐渐紧张,随着Portorar屈曲角度的增加而增加,在30°Portar屈曲下的最大值(100)增加;重建的ATFL显示出类似的应变模式。此外,正常CFL在跖屈的屈曲期间表现出最大菌株(100),并且在三维运动中的背离期间的30-52的相对应变值。重建的CFL在背离添加过程中表现出最大的菌株,并且在跖屈屈曲期间显示出相对应变值29-62。在轴向运动期间,正常的CFL开始在20°Portar屈曲和5°背裂时逐渐紧张。我们的研究结果表明,重建的ATFL和CFL的应变模式与正常ATFL和CFL的应变模式与那些相似。

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