Hanson P D, Markel M D, Vanderby R
Comparative Orthopaedic Research Laboratory, School of Veterinary Medicine, University of Wisconsin, Madison 53706, USA.
Am J Vet Res. 1995 Feb;56(2):233-40.
We evaluated the single-cycle structural properties for axial compression, torsion, and 4-point bending with a central load applied to the caudal or lateral surface of a diaphyseal segment from the normal adult equine humerus, radius, third metacarpal bone, femur, tibia, and third metatarsal bone. Stiffness values were determined from load-deformation curves for each bone and test mode. Compressive stiffness ranged from a low of 2,690 N/mm for the humerus to a high of 5,670 N/mm for the femur. Torsional stiffness ranged from 558 N.m/rad for the third metacarpal bone to 2,080 N.m/rad for the femur. Nondestructive 4-point bending stiffness ranged from 3,540 N.m/rad for the radius to 11,500 N.m/rad for the third metatarsal bone. For the humerus, radius, and tibia, there was no significant difference in stiffness between having the central load applied to the caudal or lateral surface. For the third metacarpal and metatarsal bones, stiffness was significantly (P < 0.05) greater with the central load applied to the lateral surface than the palmar or plantar surface. For the femur, bones were significantly (P < 0.05) stiffer with the central load applied to the caudal surface than the lateral surface. Four-point bending to failure load-deformation curves had a bilinear pattern in some instances, consisting of a linear region at lower bending moments that corresponded to stiffness values from the nondestructive tests and a second linear region at higher bending moments that had greater stiffness values.(ABSTRACT TRUNCATED AT 250 WORDS)
我们评估了正常成年马的肱骨、桡骨、第三掌骨、股骨、胫骨和第三跖骨骨干段尾侧或外侧表面施加中心载荷时的轴向压缩、扭转和四点弯曲的单周期结构特性。通过每种骨骼和测试模式的载荷-变形曲线确定刚度值。压缩刚度范围从肱骨的2690 N/mm到股骨的5670 N/mm。扭转刚度范围从第三掌骨的558 N·m/rad到股骨的2080 N·m/rad。无损四点弯曲刚度范围从桡骨的3540 N·m/rad到第三跖骨的11500 N·m/rad。对于肱骨、桡骨和胫骨,在尾侧或外侧表面施加中心载荷时,刚度没有显著差异。对于第三掌骨和跖骨,在外侧表面施加中心载荷时的刚度显著(P < 0.05)高于掌侧或跖侧表面。对于股骨,在尾侧表面施加中心载荷时的骨骼刚度显著(P < 0.05)高于外侧表面。在某些情况下,四点弯曲至破坏的载荷-变形曲线呈双线性模式,由较低弯矩下对应无损测试刚度值的线性区域和较高弯矩下具有更大刚度值的第二个线性区域组成。(摘要截断于250字)