Zheng Yongqiang, Wang Jianhua, Liao Suixiang, Zhang Dongsheng, Zhang Jinshan, Ma Limin, Xia Hong
Southern Medical University, Guangzhou Department of Orthopedics, Jinjiang Municipal Hospital, Jinjiang Hospital of Orthopedics, Guangzhou General Hospital of Guangzhou Military Command Department of Orthopedics, Panyu Central Hospital, Guangzhou, P. R. China.
Medicine (Baltimore). 2017 Nov;96(47):e8597. doi: 10.1097/MD.0000000000008597.
Various modified instruments are used for the anterior reconstruction of the tumor lesion affecting the second cervical vertebra, but there have been no reports regarding individual integrated artificial axis (IAA) prosthesis fabricated by selective laser melting. In the present work, a new type of IAA prosthesis has been designed with a 3-dimensional (3D) finite element model of normal occiput-the fourth cervical vertebra being established to assess its biomechanics. For easy comparison, another 3D finite element model is also established for the T-shaped Harms cage and an additional posterior fixation was performed on each model. The models are tested under a preliminary loading of 40 N to simulate cervical physical action including flexion, extension, lateral bending, and rotation. Under various loads from 4 different directions, the maximum stress and displacement of the IAA are less than those of the modified T-shaped Harms cage. Except for flexion, the maximum stress of the third cervical vertebra endplate of the IAA is smaller than that of the modified T-shaped Harms cage. The new prosthesis with axis is a good choice for upper cervical operation, which not only can greatly increase the operation stability of the upper cervical segment but also could significantly reduce the risk of fixation failure due to Harms cage subsidence.
各种改良器械被用于影响第二颈椎的肿瘤病变的前路重建,但关于通过选择性激光熔化制造的个体化一体化人工枢椎(IAA)假体尚无相关报道。在本研究中,设计了一种新型IAA假体,并建立了正常枕骨-第四颈椎的三维(3D)有限元模型以评估其生物力学性能。为便于比较,还为T形哈姆斯椎间融合器建立了另一个3D有限元模型,并在每个模型上进行了额外的后路固定。在40 N的初步载荷下对模型进行测试,以模拟包括前屈、后伸、侧屈和旋转在内的颈部生理活动。在来自4个不同方向的各种载荷下,IAA的最大应力和位移均小于改良T形哈姆斯椎间融合器。除前屈外,IAA第三颈椎终板的最大应力小于改良T形哈姆斯椎间融合器。新型带轴假体是上颈椎手术的良好选择,它不仅能大大提高上颈椎节段的手术稳定性,还能显著降低因哈姆斯椎间融合器下沉导致固定失败的风险。