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Compressive loads in longitudinal lateral meniscus tears: a biomechanical study in porcine knees.

机译:在纵向压缩载荷外侧半月板眼泪:生物力学研究猪膝盖。

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PURPOSE: To determine the displacement forces across a lateral meniscal tear during motion. TYPE OF STUDY: Experimental laboratory biomechanical study. METHODS: A middle third longitudinal lateral meniscal cut was created arthroscopically at the "red-white" junction in 5 intact porcine knees. With a pressure transducer in the tear, the knees were repeatedly cycled through a full range of motion. Pressure data were gathered with the knees held at neutral, internal rotation (IRot), and external rotation (ERot) and matched to the specific flexion angle measured by electronic goniometer. Averaged pressure measurements were calculated at each 5 degrees interval. RESULTS: The highest pressures were seen at full extension (neutral, 589 mm Hg; IRot, 1,110 mm Hg; ERot, 337 mm Hg) and declined to a low at 90 degrees of flexion (neutral, 133 mm Hg; IRot, 314 mm Hg; ERot, 187 mm Hg). Then the pressures increased steadily after 100 degrees as the knees were further flexed. The highest pressure was always seen with IRot. IRot during flexion resulted in higher lateral meniscus compressive loads than ERot. CONCLUSIONS: This model demonstrated that a middle third longitudinal lateral meniscal cut is compressed throughout the full range of knee motion. At no time were negative intrameniscal tear pressures registered that would suggest meniscal cut separation. CLINICAL RELEVANCE: These data suggest that meniscal compressive loads, not distractive loads, occur throughout knee flexion and extension. The absence of distractive loads across a meniscal cut suggests that the ability of a repair to align the meniscal fragment may be more important than a high load to failure strength.
机译:目的:确定位移在运动期间外侧半月板撕裂。类型的研究:实验的实验室生物力学研究。纵向横向半月板削减了“红白”结的arthroscopically 5完整的猪膝盖。眼泪,膝盖是反复循环通过全方位的运动。聚集的膝盖中性举行,内部旋转(IRot)和外部旋转(ERot)和匹配特定的弯曲角度衡量电子测角仪。压力测量计算在每个5度区间。被认为在充分扩展(中性,589毫米汞柱;IRot, 1110毫米汞柱;低90度的弯曲(中性,133毫米汞柱;100年之后的压力稳步增长度进一步弯曲膝盖。压力总是与IRot最高。在弯曲导致更高的外侧比ERot半月板压缩载荷。结论:该模型证明了中间第三纵外侧半月板削减压缩整个全系列的膝盖运动。撕裂的压力,建议注册半月板切割分离。这些数据表明,半月板压缩负载,而不是扰乱的负载,在发生膝盖弯曲和扩展。分散注意力的负载在半月板削减建议将修复的能力半月板碎片可能比一个更重要高负载失败的力量。

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