Mechanical Evaluation of Large-Size Fourth-Generation Composite Femur and Tibia Models

被引:199
作者
Gardner, Matthew P. [2 ]
Chong, Alexander C. M. [1 ,2 ]
Pollock, Anthony G. [2 ]
Wooley, Paul H. [1 ,2 ]
机构
[1] Orthopaed Res Inst, Wichita, KS 67214 USA
[2] Univ Kansas, Sch Med Wichita, Dept Surg, Sect Orthopaed, Wichita, KS 67214 USA
关键词
Composite analogue femur; Composite analogue tibia; Bone mechanics; Biomechanical model; Bone stiffness; STRUCTURAL-PROPERTIES; BONE; VALIDATION; FRACTURES; DESIGN;
D O I
10.1007/s10439-009-9887-7
中图分类号
R318 [生物医学工程];
学科分类号
100103 [病原生物学];
摘要
Composite analogue bone models provide consistent geometric and structural properties that represent a valuable asset in a range of biomechanical analyses and testing procedures. The objective of this study was to evaluate the diaphyseal structural properties of the large-size Fourth-Generation composite analogue femur and tibia models concentrated on mechanical behaviors under axial compression, bending and torsion. Thirty of each large-size composite analogue models (femora and tibiae) were tested under medial-lateral four-point bending, anterior-posterior four-point bending, axial compression and external rotational torque to evaluate flexural rigidity, axial stiffness, torsional rigidity and ultimate failure strength. The composite femur was tested under torsion at both the femoral neck and the mid-diaphyseal areas. Large-size Fourth-Generation composite replicate bones exhibited intra-specimen variations under 10% for all cases and was also found to perform within the biological range of healthy adult bones (age: < 80 years old) range with respect to flexural rigidity (< 8%) and torsional rigidity (< 12%). The failure modes of these composite models were close to published findings for human bones (four-point bending: butterfly fragment fracture; torsional: spiral fracture; and compression: transverse fracture). The large-size composite analogue femur and tibia are close to ideal replicas for standardization in biomechanical analyses. One advantage of these analogue models is that their variability is significantly lower than that of cadaveric specimens for all loading regimens. Published results vary widely in cadaveric studies, which is likely due to the high anatomic variability among cadaveric specimens. This study evaluated and advanced our overall understanding of the capacity of composite analogue bone models mimic the structural properties of average healthy adult human bones.
引用
收藏
页码:613 / 620
页数:8
相关论文
共 12 条
[1]
Fracture toughness and fatigue crack propagation rate of short fiber reinforced epoxy composites for analogue cortical bone [J].
Chong, Alexander C. M. ;
Miller, Forrest ;
Buxton, Mckee ;
Friis, Elizabeth A. .
JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2007, 129 (04) :487-493
[2]
Mechanical validation of whole bone composite femur models [J].
Cristofolini, L ;
Viceconti, M ;
Cappello, A ;
Toni, A .
JOURNAL OF BIOMECHANICS, 1996, 29 (04) :525-535
[3]
Mechanical validation of whole bone composite tibia models [J].
Cristofolini, L ;
Viceconti, M .
JOURNAL OF BIOMECHANICS, 2000, 33 (03) :279-288
[4]
Structural properties of a novel design of composite analogue humeri models [J].
Dunlap, James T. ;
Chong, Alexander C. M. ;
Lucas, George L. ;
Cooke, Francis W. .
ANNALS OF BIOMEDICAL ENGINEERING, 2008, 36 (11) :1922-1926
[5]
Fracture configurations of the equine radius and tibia after a simulated kick [J].
Fuerst, A. E. ;
Oswald, S. ;
Jaeggin, S. ;
Piskoty, G. ;
Michel, S. ;
Auer, J. A. .
VETERINARY AND COMPARATIVE ORTHOPAEDICS AND TRAUMATOLOGY, 2008, 21 (01) :49-58
[6]
Gonza E., 1982, Biomechanics of Trauma, P1
[7]
Structural properties of a new design of composite replicate femurs and tibias [J].
Heiner, AD ;
Brown, TD .
JOURNAL OF BIOMECHANICS, 2001, 34 (06) :773-781
[8]
Structural properties of fourth-generation composite femurs and tibias [J].
Heiner, Anneliese D. .
JOURNAL OF BIOMECHANICS, 2008, 41 (15) :3282-3284
[9]
Hip Fractures and the Contribution of Cortical Versus Trabecular Bone to Femoral Neck Strength [J].
Holzer, Gerold ;
von Skrbensky, Gobert ;
Holzer, Lukas A. ;
Pichl, Wolfgang .
JOURNAL OF BONE AND MINERAL RESEARCH, 2009, 24 (03) :468-474
[10]
The point of view of the clinician:: A prospective study of the mechanism of accidents and the morphology of tibial and fibular shaft fractures [J].
Johner, R ;
Stäubli, HU ;
Gunst, M ;
Cordey, J .
INJURY-INTERNATIONAL JOURNAL OF THE CARE OF THE INJURED, 2000, 31 :45-49