Paulick Lutz, Knell Sebastian C, Smolders Lucas A, Pozzi Antonio, Schmierer Philipp A
Small Animal Clinic Augsburg, Augsburg, Germany.
Clinic for Small Animal Surgery, Vetsuisse Faculty Zurich, Switzerland.
Vet Surg. 2022 Jan;51(1):191-201. doi: 10.1111/vsu.13718. Epub 2021 Oct 12.
To determine the biomechanical behavior of different plate systems used for oblique ilial fracture fixation in cats.
Ex vivo biomechanical study.
Fifty fresh-frozen feline hemipelvises.
Standardized simple oblique ilial fractures were created and fixed via lateral plating, using different implant systems (10 fractures in each group) The systems were: (1) the Advanced Locking Plate System (ALPS-5); (2) the Advanced Locking Plate System (ALPS-6.5); (3) the Locking Compression Plate 2.0 (LCP); (4) the FIXIN 1.9-2.5 Series (FIXIN), and (5) the Dynamic Compression Plate 2.0 (DCP). Stepwise sinusoidal cyclic loading was applied until failure (10-mm displacement). The groups were compared with regard to construct stiffness and the number of cycles withstood before 1-, 2-, 5-, and 10-mm displacement.
Bending stiffness was lower in ALPS-5 than in other specimens (P < .05). The ALPS-6.5 specimens withstood more cycles (P < .05) before 2-, 5-, and 10-mm displacement than the ALPS-5 and DCP specimens . The LCP and FIXIN specimens endured more cycles than DCP specimens before displaying 5- and 10-mm displacement (P < .05). The ALPS-6.5, FIXIN, and LCP specimens endured higher loads before failure than the DCP specimens (P < .05). Screw loosening occurred in all nonlocking specimens, and bone slicing occurred in all locking specimens.
The DCP and ALPS-5 constructs are less resistant to cyclic loading. Failure in nonlocking specimens involved screw loosening. It involved bone slicing in locking specimens.
Both the plate size and the plate-screw interface are key to lateral plating success in cases of feline ilial fractures. The use of locking plates reduces the risk of the screw loosening in such cases.
确定用于猫斜形髂骨骨折固定的不同钢板系统的生物力学行为。
体外生物力学研究。
50个新鲜冷冻的猫半骨盆。
制造标准化的简单斜形髂骨骨折,并通过外侧钢板固定,使用不同的植入系统(每组10处骨折)。这些系统分别是:(1)高级锁定钢板系统(ALPS-5);(2)高级锁定钢板系统(ALPS-6.5);(3)锁定加压钢板2.0(LCP);(4)FIXIN 1.9 - 2.5系列(FIXIN);(5)动力加压钢板2.0(DCP)。施加逐步正弦循环载荷直至失效(位移10毫米)。比较各小组在结构刚度以及在位移1、2、5和10毫米之前承受的循环次数方面的差异。
ALPS-5的弯曲刚度低于其他样本(P < 0.05)。在位移2、5和10毫米之前,ALPS-6.5样本比ALPS-5和DCP样本承受更多的循环次数(P < 0.05)。在显示位移5和10毫米之前,LCP和FIXIN样本比DCP样本承受更多的循环次数(P < 0.05)。ALPS-6.5、FIXIN和LCP样本在失效前承受的载荷高于DCP样本(P < 0.05)。所有非锁定样本均出现螺钉松动,所有锁定样本均出现骨切片现象。
DCP和ALPS-5结构对循环载荷的抵抗力较弱。非锁定样本的失效涉及螺钉松动。锁定样本的失效涉及骨切片现象。
在猫髂骨骨折病例中,钢板尺寸和钢板 - 螺钉界面都是外侧钢板固定成功的关键。在这种情况下,使用锁定钢板可降低螺钉松动的风险。