Pourabbas B, Emad J, Dehghani J, Heidari S, Vosoughi A R
Bone and Joint Diseases Research Center, Department of Orthopedic Surgery, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran.
Kowsar Hospital, Shiraz, Iran.
Musculoskelet Surg. 2023 Dec;107(4):397-403. doi: 10.1007/s12306-023-00782-1. Epub 2023 Apr 8.
To investigate the effect of the rod-to-rod distance on the mechanical stability of single-rod and double-rod external fixator frames.
Four different constructs, one single-rod and three double-rod constructs with different rod-rod distances, were subjected to the axial, bending, and torsional forces. The stiffness of different configurations was calculated.
Single-rod configuration had statistically the lowest stiffness when subjected to the axial, bending, and torsional forces. Maximum stiffness against the axial and anterior-posterior bending forces was achieved when the rod-rod distance was adjusted to 50 mm (halfway between the first rod and the end of the Schanz pins). There was no statistically significant difference in lateral bending stiffness among different double-rod configurations (p value: 0.435). The maximum stiffness against torsional forces was achieved when the rod-rod distance was adjusted to 100 mm (the second rod at the end of the Schanz pins).
Double-rod uniplanar external fixator frames are significantly stiffer than the single-rod constructs, and however, the rod-rod distance can significantly affect the construct stiffness. We found that a frame with 50 mm rod-rod distance was the optimum fixator among tested configurations that allowed a balance between axial, bending, and torsional stiffness of the construct.
研究杆间距对单杆和双杆外固定架机械稳定性的影响。
对四种不同结构,即一种单杆结构和三种不同杆间距的双杆结构施加轴向、弯曲和扭转力。计算不同构型的刚度。
在承受轴向、弯曲和扭转力时,单杆构型在统计学上刚度最低。当杆间距调整到50毫米(第一根杆与斯氏针末端中间位置)时,轴向和前后弯曲力的刚度达到最大值。不同双杆构型之间的横向弯曲刚度在统计学上无显著差异(p值:0.435)。当杆间距调整到100毫米(第二根杆位于斯氏针末端)时,扭转力的刚度达到最大值。
双杆单平面外固定架结构比单杆结构刚度显著更高,然而,杆间距可显著影响结构刚度。我们发现,在测试构型中,杆间距为50毫米的框架是能使结构在轴向、弯曲和扭转刚度之间达到平衡的最佳固定架。