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Three-dimensional kinematic evaluation of Tightrope CCL in a canine in vitro cranial cruciate deficient stifle model

机译:绳索CCL在犬体外颅十字形缺损窒息模型中的三维运动学评估

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摘要

The impact of surgical correction of cranial cruciate ligament-deficient stifles (CCDS) on the 3-dimensional (3D) kinematics of the canine stifle has been sparsely evaluated. Tightrope (TR) cranial cruciate ligament (CCL) has been proposed to restore baseline 3D kinematics in CCDS by using isometric points. We hypothesized that TR would restore baseline 3D kinematics of the stifle in our model. Ten pelvic limbs were used with a previously validated apparatus. Three experimental conditions were evaluated: i) intact stifle, ii) cranial cruciate ligament transection (CCLt), and iii) CCLt stabilized with TR; kinematic data was recorded. Tightrope CCL in CCDS did not limit sagittal flexion. Tightrope CCL neutralized internal rotation without restoring baseline curves, but it did not restore abduction, nor did it neutralize or restore cranial translation, but it did restore latero-medial and proximo-distal translations. In our model, TR without pre-conditioning of the FiberTape strands did not restore baseline stifle 3D kinematics and residual cranial translation could result in frequent meniscal tears.
机译:稀疏评估了手术矫正颅骨十字韧带缺陷型if钉(CCDS)对犬st钉的3维(3D)运动学的影响。已提出使用绳索(TR)颅交叉韧带(CCL)通过使用等距点来恢复CCDS中的基线3D运动学。我们假设TR可以恢复模型中窒息的基线3D运动学。将十个骨盆肢体与先前验证过的器械一起使用。评估了三个实验条件:i)完整的气管,ii)颅骨十字韧带横断(CCLt),和iii)用TR稳定的CCLt;记录运动学数据。 CCDS中的绳索CCL不会限制矢状屈曲。绳索CCL在不恢复基线曲线的情况下中和了内旋,但没有恢复外展,也没有中和或恢复了颅骨平移,但确实恢复了中内侧和近端-远侧平移。在我们的模型中,未预先调节FiberTape链的TR无法恢复3D运动的基线,并且残留的颅骨平移可能导致频繁的半月板撕裂。

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