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首页> 外文期刊>Journal of biomechanical engineering. >Development of a Traumatic Anterior Cruciate Ligament and Meniscal Rupture Model With a Pilot In Vivo Study
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Development of a Traumatic Anterior Cruciate Ligament and Meniscal Rupture Model With a Pilot In Vivo Study

机译:体内试验性外伤性前交叉韧带和半月板破裂模型的开发

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The current study describes the development of a small animal, closed-joint model of traumatic anterior cruciate ligament (ACL) and meniscal rupture. This model can be used in future studies to investigate the roles of these acute damages on the long-term health of an injured knee joint. Forty-two Flemish Giant rabbits received an insult to the left tibiofemoral joint ex vivo in order to document optimal energy and joint orientation needed to generate ACL and meniscal rupture, without gross fracture of bone. Impact energies ranged from 10 J to 22 J, and joint flexion angle ranged from 60 deg to 90 deg. Three in vivo animals were impacted at 13 J with the knee flexed at 90 deg, as this was determined to be the optimal load and joint orientation for ACL and meniscal ruptures, and sacrificed at 12 weeks. Impact data from the ex vivo group revealed that 13 J of dropped-mass energy, generating approximately 1100 N of load on the knee, would cause ACL and meniscal ruptures, without gross bone fracture. Acute damage to the lateral and medial menisci was documented in numerous ex vivo specimens, with isolated lateral meniscal tears being more frequent than isolated medial tears in other cases. The in vivo animals showed no signs of ill health or other physical complications. At 12 week post-trauma these animals displayed marked degeneration of the traumatized joint including synovitis, cartilage erosion, and the formation of peripheral osteophytes. Histological microcracks at the calcified cartilage-subchondral bone interface were also evident in histological sections of these animals. A closed-joint model of traumatic ACL and meniscal rupture was produced, without gross bone fracture, and a pilot, in vivo study showed progressive joint degeneration without any other noticeable physical impairments of the animals over 12 weeks. This closed-joint, traumatic injury model may be useful in future experimental studies of joint disease and various intervention strategies.
机译:当前的研究描述了创伤性前十字韧带(ACL)和半月板破裂的小动物,闭合关节模型的发展。此模型可用于将来的研究中,以研究这些急性损伤对受伤的膝关节长期健康的影响。四十二只佛兰芒巨兔离体左胫股关节受到了侮辱,以记录产生ACL和半月板破裂所需的最佳能量和关节方向,而没有严重的骨折。冲击能量范围为10 J至22 J,关节弯曲角度范围为60度至90度。三只活体动物在13 J时受到撞击,膝盖屈曲90度,因为这被确定为ACL和半月板破裂的最佳负荷和关节方向,并在12周时处死。来自离体组的影响数据显示,下降的13 J能量(在膝盖上产生大约1100 N的负荷)将导致ACL和半月板破裂,而没有严重的骨折。在许多离体标本中都记录了对外侧半月板和内侧半月板的急性损伤,在其他情况下,孤立的外侧半月板撕裂比孤立的内侧半月板撕裂更为频繁。体内动物没有表现出不良健康或其他身体并发症的迹象。创伤后第12周,这些动物的受创伤关节明显退化,包括滑膜炎,软骨侵蚀和周围骨赘的形成。在这些动物的组织学切片中,钙化软骨-软骨下骨界面的组织学微裂纹也很明显。建立了创伤性ACL和半月板破裂的闭合关节模型,没有严重的骨折,并且一项先导的体内研究显示,在12周内,动物进行性关节退行性变,没有任何其他明显的身体损伤。该闭合关节创伤性损伤模型可能在关节疾病的未来实验研究和各种干预策略中有用。

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