Claes L, Becker C, Simnacher M, Hoellen I
Abteilung Unfallchirurgische Forschung und Biomechanik, Universität Ulm.
Unfallchirurg. 1995 Mar;98(3):118-23.
Internal fixation of unstable intertrochanteric fractures of osteoporotic femurs often leads to complications, which are primarily caused by the mechanically weak bone. The aim of this study was to test whether a new glass-ionomeric cement could reinforce the weak trabecular bone of the femoral head and thus improve the preliminary stability of dynamic hip screws (DHS) used for internal fixation. As a standardized model, a intertrochanteric osteotomy was performed on eight pairs of human, female, cadaver femora; a bony defect was also created medially to diminish support of the femoral neck. To stabilize the osteotomy a 135 degrees DHS was inserted. In one femur of each pair the glass-ionomer cement was applied to see whether this would enhance stability. The elastic and irreversible deformation of the internal fixation was measured at the osteotomy level under a cyclic load of 1400 N applied to the femoral head. In both the cemented and the uncemented cases, the femoral head shifted irreversibly in the caudal direction and tilted into a varus position. Movements of the femoral head in other directions were mainly reversible and small. The irreversible movement of the femoral head was significantly larger, approximately twice as great, following uncemented DHS fixation than after cemented fixation. Most movement occurred during the first ten load cycles; higher load cycles did not increase the irreversible deformation in the cemented group, but in the uncemented group a further increase in deformation was detected. These results indicate that internal fixation of unstable intertrochanteric femoral fractures can be significantly improved by the use of cement.(ABSTRACT TRUNCATED AT 250 WORDS)
骨质疏松性股骨转子间不稳定骨折的内固定常导致并发症,这主要是由机械性能较弱的骨骼引起的。本研究的目的是测试一种新型玻璃离子骨水泥是否能增强股骨头薄弱的小梁骨,从而提高用于内固定的动力髋螺钉(DHS)的初始稳定性。作为标准化模型,对八对女性人体尸体股骨进行转子间截骨术;还在内侧制造骨缺损以减少股骨颈的支撑。为稳定截骨术,插入一枚135度的DHS。在每对股骨中的一根上应用玻璃离子骨水泥,以观察其是否能增强稳定性。在向股骨头施加1400N循环载荷的情况下,在截骨水平测量内固定的弹性和不可逆变形。在使用骨水泥和未使用骨水泥的情况下,股骨头均不可逆地向尾侧移位并内翻倾斜。股骨头在其他方向的移位主要是可逆的且较小。未使用骨水泥的DHS固定后,股骨头的不可逆移位明显更大,约为使用骨水泥固定后的两倍。大多数移位发生在最初的十个加载循环中;更高的加载循环并未增加使用骨水泥组的不可逆变形,但在未使用骨水泥组中检测到变形进一步增加。这些结果表明,使用骨水泥可显著改善不稳定股骨转子间骨折的内固定。(摘要截短至250字)