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圆韧带的力学性能:一项评估其在儿童髋关节手术中改善稳定性潜力的初步研究。

The mechanical properties of the ligamentum teres: a pilot study to assess its potential for improving stability in children's hip surgery.

作者信息

Wenger Dennis, Miyanji Firoz, Mahar Andrew, Oka Richard

机构信息

Department of Orthopedics, Rady Children's Hospital-San Diego, CA 92123, USA.

出版信息

J Pediatr Orthop. 2007 Jun;27(4):408-10. doi: 10.1097/01.bpb.0000271332.66019.15.

Abstract

The anatomic and histological characteristics of the ligamentum teres and its vascular contributions to the femoral head have been well described. The function of the ligamentum teres remains poorly understood. Although excision is the current standard in treating complete developmental hip dysplasia, we developed an interest in maintaining, shortening, and reattaching the ligament to assure early postoperative stability in developmental hip dysplasia. To analyze its potential for providing hip joint stability, we investigated the biomechanical properties of the ligamentum teres in an in vitro porcine model. Six immature porcine hips were dissected, with the proximal femur and acetabular anatomy kept intact, isolating the ligamentum teres. Specimens were loaded in tension using custom fixation rigs at 0.5 mm/s in line with the fibers. Data for displacement and force were collected and sampled at 10 Hz for duration of each test. The ligamentum teres failed in a stepwise fashion. The mean ultimate load to failure was 882 +/- 168 N. Mean stiffness and failure stress were calculated as 86 +/- 25 N/mm and 10 +/- 2 MPa, respectively. The biomechanical function of the ligamentum teres is not inconsequential. We found the ultimate load of the ligamentum teres in the porcine model to be similar to those reported for the human anterior cruciate ligament. The strength of the ligamentum teres may confirm its potential for providing early stability in childhood hip reconstructions. In the setting of dysplasia, the preservation and the transfer of the ligamentum teres to augment stability should be considered as an adjunct to open reduction.

摘要

圆韧带的解剖学和组织学特征及其对股骨头的血管供应已得到充分描述。然而,圆韧带的功能仍知之甚少。尽管目前治疗完全性发育性髋关节发育不良的标准方法是切除圆韧带,但我们对保留、缩短并重新附着该韧带以确保发育性髋关节发育不良术后早期稳定性产生了兴趣。为了分析其提供髋关节稳定性的潜力,我们在体外猪模型中研究了圆韧带的生物力学特性。解剖了六只未成熟猪的髋关节,保持股骨近端和髋臼解剖结构完整,分离出圆韧带。使用定制的固定装置以0.5毫米/秒的速度沿纤维方向对标本施加张力。在每次测试过程中,以10赫兹的频率收集并采样位移和力的数据。圆韧带呈逐步失效。平均极限破坏载荷为882±168牛。平均刚度和破坏应力分别计算为86±25牛/毫米和10±2兆帕。圆韧带的生物力学功能并非无关紧要。我们发现猪模型中圆韧带的极限载荷与人类前交叉韧带的报道相似。圆韧带的强度可能证实了其在儿童髋关节重建中提供早期稳定性的潜力。在发育不良的情况下,保留和转移圆韧带以增强稳定性应被视为切开复位的辅助手段。

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