Bueno Aloisio C D, Galuppo Larry D, Taylor Kenneth T, Jensen David G, Stover Susan M
J. D. Wheat Veterinary Orthopedic Research Laboratory, School of Veterinary Medicine, University of California, Davis 95616, USA.
Vet Surg. 2003 Mar-Apr;32(2):167-77. doi: 10.1053/jvet.2003.50019.
To compare the mechanical shear strengths and stiffnesses obtained from in vitro testing of a simulated complete third carpal bone (C3) frontal plane radial facet slab fracture (osteotomy) stabilized with either a 4/5 Acutrak (AT) compression screw or a 4.5-mm AO cortical bone (AO) screw inserted in lag fashion. Drilling, tapping, and screw insertion torques, forces, and times also were compared between AT and AO implants.
In vitro biomechanical assessment of site preparation, screw insertion, and shear failure test variables of bone screw stabilized simulated C3 slab fracture in paired cadaveric equine carpi.
Eight pairs of cadaveric equine C3 without orthopedic abnormalities.
Standardized simulated C3 slab fractures were repaired with either AO or AT screws (AO/C3 and AT/C3 groups, respectively). Drilling, tapping, and screw insertion torques, forces, and times were measured with a materials testing machine for each screw type. Repaired specimens were tested in axially oriented shear until failure. Paired Students t-tests were used to assess differences between site preparation, screw insertion, and shear testing variables. Significance was set at P <.05.
There were no significant differences in bone fragment measurements of the standardized simulated C3 slab fractures created for AO or AT screws. There were no significant differences for mean and maximum drilling torques; however, the tapered AT drill had greater maximum drilling force compared with the 3.2-mm and 4.5-mm AO drill bits. Mean insertion torque and force measured from the self-tapping AT screw were not significantly different compared with the 4.5-mm AO tap. There were no significant differences in maximum screw torque among constructs. Total procedure time was significantly longer for the AT group (5.8 +/- 1.6 minutes) compared with the AO group (2.9 +/- 1.1 minutes; P =.001). AT stabilized specimens had significantly greater mean +/- SD initial shear stiffness (3.64 +/- 1.08 kN/mm) than AO specimens (1.64 +/- 0.73 kN/mm; P =.005). All other shear mechanical testing variables were not statistically different among screw types.
The 4/5 Acutrak insertion technique was accurate and safe, and the AT screw effectively stabilized simulated equine C3 frontal plane slab fractures. When tested in shear, this screw type was mechanically comparable to the 4.5-mm AO screw; however, AT constructs had greater initial shear stiffness. Initial shear stiffness was likely an indirect measure of interfragmentary compression, and thus may indicate that the AT screw provides a more rigid fixation for frontal plane C3 slab fractures in horses.
Considering the comparable mechanical behavior, greater initial shear stiffness for AT screw stabilized C3 slab fracture fragments, the ability to accurately insert the screw with the aid of a guide pin, and the potential for less persistent soft tissue irritation with the headless screw design, the 4/5 tapered AT screw is an attractive alternative for repair of C3 slab fractures in horses.
比较用4/5 Acutrak(AT)加压螺钉或采用拉力方式植入的4.5毫米AO皮质骨螺钉(AO)固定模拟的完整第三腕骨(C3)额状面桡侧小关节面骨折(截骨术)进行体外测试所获得的机械剪切强度和刚度。同时比较AT和AO植入物之间的钻孔、攻丝以及螺钉植入扭矩、力和时间。
对成对的尸体马腕骨中用骨螺钉固定模拟C3小关节面骨折的部位准备、螺钉植入及剪切破坏测试变量进行体外生物力学评估。
八对无骨科异常的尸体马C3。
用AO或AT螺钉分别修复标准化模拟C3小关节面骨折(分别为AO/C3和AT/C3组)。用材料试验机测量每种螺钉类型的钻孔、攻丝以及螺钉植入扭矩、力和时间。对修复后的标本进行轴向剪切测试直至破坏。采用配对学生t检验评估部位准备、螺钉植入及剪切测试变量之间的差异。显著性设定为P <.05。
为AO或AT螺钉创建的标准化模拟C3小关节面骨折的骨碎片测量值无显著差异。平均和最大钻孔扭矩无显著差异;然而,与3.2毫米和4.5毫米AO钻头相比,锥形AT钻头的最大钻孔力更大。自攻型AT螺钉测得的平均植入扭矩和力与4.5毫米AO丝锥相比无显著差异。各结构之间的最大螺钉扭矩无显著差异。与AO组(2.9 +/- 1.1分钟;P =.001)相比,AT组的总操作时间显著更长(5.8 +/- 1.6分钟)。AT固定的标本的平均±标准差初始剪切刚度(3.64 +/- 1.08 kN/mm)显著高于AO标本(1.64 +/- 0.73 kN/mm;P =.005)。所有其他剪切力学测试变量在螺钉类型之间无统计学差异。
4/5 Acutrak植入技术准确且安全,AT螺钉有效固定模拟的马C3额状面小关节面骨折。在剪切测试中,这种螺钉类型在力学上与4.5毫米AO螺钉相当;然而,AT结构具有更大的初始剪切刚度。初始剪切刚度可能是骨折块间压缩的间接指标,因此可能表明AT螺钉为马的C3额状面小关节面骨折提供了更坚固的固定。
考虑到力学行为相当、AT螺钉固定C3小关节面骨折块的初始剪切刚度更大、借助导针能准确植入螺钉以及无头螺钉设计可能减少软组织持续刺激的可能性,4/5锥形AT螺钉是修复马C3小关节面骨折的一个有吸引力的替代方案。