Higgins K R, Lavery L A, Ashry H R, Athanasiou K A
Department of Orthopaedics/Podiatry Service, University of Texas Health Science Center, San Antonio, USA.
J Am Podiatr Med Assoc. 1995 Oct;85(10):528-32. doi: 10.7547/87507315-85-10-528.
The structural characteristics of 4.0-mm stainless steel screws compared with 4.0-mm poly-L-lactic acid absorbable screws and 2.0-mm stainless steel Steinmann pins compared with 2.0-mm poly-L-lactic acid absorbable pins in oblique closing base wedge osteotomies of the first metatarsal were evaluated. The authors performed oblique closing base wedge using an osteotomy guide in six matched pairs of fresh frozen first metatarsal bones. Fixation was achieved with either a 4.0-mm stainless steel screw or poly-L-lactic acid absorbable screw. An additional five pairs of matched specimens were used to compare 2.0-mm stainless steel and poly-L-lactic acid absorbable pins with the same approach. Specimens were loaded to failure with the Bionix Material Testing System at a constant rate of 0.166 mm/sec. A Student's t-test for paired samples was used with a 95% confidence interval to measure differences in ultimate load, ultimate displacement, and structural stiffness. There was not a significant difference in any of the parameters evaluated in the 4.0-mm poly-L-lactic acid absorbable versus stainless steel screw comparison (P > 0.05). Stainless steel 2.0-mm pins had significantly greater structural stiffness (P = 0.032) and less ultimate displacement (P = 0.021) than their poly-L-lactic acid absorbable counterparts. There was not a significant difference in ultimate load in poly-L-lactic acid absorbable and stainless steel pins (P = 0.59).
评估了在第一跖骨斜行闭合基底楔形截骨术中,4.0毫米不锈钢螺钉与4.0毫米聚L-乳酸可吸收螺钉,以及2.0毫米不锈钢斯氏针与2.0毫米聚L-乳酸可吸收针的结构特征。作者使用截骨导向器对六对新鲜冷冻的第一跖骨进行斜行闭合基底楔形截骨术。分别用4.0毫米不锈钢螺钉或聚L-乳酸可吸收螺钉进行固定。另外使用五对匹配的标本,以相同方法比较2.0毫米不锈钢针和聚L-乳酸可吸收针。使用Bionix材料测试系统以0.166毫米/秒的恒定速率对标本加载直至破坏。采用配对样本的学生t检验,以95%置信区间来测量极限载荷、极限位移和结构刚度的差异。在4.0毫米聚L-乳酸可吸收螺钉与不锈钢螺钉的比较中,所评估的任何参数均无显著差异(P>0.05)。2.0毫米不锈钢针的结构刚度显著大于(P=0.032)其聚L-乳酸可吸收对应物,且极限位移更小(P=0.021)。聚L-乳酸可吸收针与不锈钢针的极限载荷无显著差异(P=0.59)。