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截骨位置和胫骨平台旋转对犬股四头肌机制失效所需拉力的影响。

Effect of Osteotomy Position and Tibial Plateau Rotation on the Tensile Force Required for Failure of the Canine Quadriceps Mechanism.

作者信息

Hamilton Katie, Tarlton John, Parsons Kevin, Toscano Mike, Burton Neil

机构信息

Langford Veterinary Services, University of Bristol, Bristol, United Kingdom.

Matrix Biology Group, School of Clinical Veterinary Science, Bristol, United Kingdom.

出版信息

Vet Surg. 2015 Aug;44(6):763-71. doi: 10.1111/vsu.12339. Epub 2015 May 22.

Abstract

OBJECTIVE

To measure the tensile force required for failure of the quadriceps mechanism with different tibial tuberosity widths and different degrees of rotation of the tibial plateau after radial osteotomy of the proximal tibia.

STUDY DESIGN

Ex vivo study, randomized unblocked design

ANIMALS

Thirty-five hind limbs from 18 adult Greyhound cadavers.

METHODS

Part 1 (15 limbs)--The center of rotation of the proximal tibial radial osteotomy was advanced craniodistally, progressively reducing absolute tibial tuberosity width (ATTW) for 5 different widths. Part 2 (21 limbs)-Tibial plateau rotation was performed at a set ATTW. Rotation was varied as a function of tibial tuberosity position with rotation proximal, level with, or distal to the tuberosity. All 35 limbs were tested with force applied via the quadriceps mechanism until construct failure occurred.

RESULTS

All but 2 limbs failed by fracture of the tibial tuberosity. The tensile force required for failure of the quadriceps mechanism increased linearly with increasing ATTW. Significantly less force (P = .016) was required for failure of the quadriceps mechanism when the rotation of the tibial plateau was distal to the level of the patella tendon (mean 1,877 N) compared to when it was above the level of the patella tendon (mean 2,533 N). Rotation of the tibial plateau distal to the level of the patella tendon insertion point resulted in fracture at the base of the tibial tuberosity, level with the tibial plateau buttress.

CONCLUSION

The overwhelming mode of failure of the quadriceps mechanism was by tibial tuberosity fracture, thus this was the weakest part of the construct. Reducing the tibial tuberosity width and rotation of the tibial plateau segment below the patella tendon insertion decreased the force required for tibial tuberosity fracture. These results support the idea of a safe point with the tibial plateau segment providing buttress to the tibial tuberosity.

摘要

目的

测量胫骨近端桡骨截骨术后,不同胫骨结节宽度和不同胫骨平台旋转角度下股四头肌机制失效所需的拉伸力。

研究设计

体外研究,随机非阻塞设计

动物

18只成年灵缇犬尸体的35条后肢。

方法

第一部分(15条肢体)——胫骨近端桡骨截骨的旋转中心向颅侧远端推进,逐步减小5种不同宽度的绝对胫骨结节宽度(ATTW)。第二部分(21条肢体)——在设定的ATTW下进行胫骨平台旋转。旋转角度根据胫骨结节位置而变化,分别为胫骨结节近端、与胫骨结节平齐或胫骨结节远端。对所有35条肢体通过股四头肌机制施加力进行测试,直至结构失效。

结果

除2条肢体外,其余均因胫骨结节骨折而失效。股四头肌机制失效所需的拉伸力随ATTW增加呈线性增加。当胫骨平台旋转至髌腱水平以下时,股四头肌机制失效所需的力(平均1877N)显著小于旋转至髌腱水平以上时所需的力(平均2533N)(P = 0.016)。胫骨平台旋转至髌腱插入点水平以下导致胫骨结节基部骨折,与胫骨平台支撑处平齐。

结论

股四头肌机制的主要失效模式是胫骨结节骨折,因此这是结构中最薄弱的部分。减小胫骨结节宽度以及将胫骨平台段旋转至髌腱插入点以下可降低胫骨结节骨折所需的力。这些结果支持了胫骨平台段为胫骨结节提供支撑存在安全点的观点。

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