In vitro fatigue behavior of the equine third metacarpus: Remodeling and microcrack damage analysis

被引:44
作者
Martin, RB
Stover, SM
Gibson, VA
Gibeling, JC
Griffin, LV
机构
[1] UNIV CALIF DAVIS, SCH MED, ORTHOPAED RES LABS, DAVIS, CA 95616 USA
[2] UNIV CALIF DAVIS, SCH VET MED, VET ORTHOPED RES LAB, DAVIS, CA 95616 USA
[3] UNIV CALIF DAVIS, SCH ENGN, DEPT CHEM ENGN, DAVIS, CA 95616 USA
关键词
D O I
10.1002/jor.1100140517
中图分类号
R826.8 [整形外科学]; R782.2 [口腔颌面部整形外科学]; R726.2 [小儿整形外科学]; R62 [整形外科学(修复外科学)];
学科分类号
摘要
We studied remodeling and microcrack damage in specimens of Thoroughbred racehorse third metacarpal bone that had been subjected to monotonic or fatigue failure. We asked three questions. What effects does mechanical loading have on histologically observable microcrack damage? Are there regional variations in remodeling of the equine cannon bone, and do these variations correlate with mechanical properties? To what extent are remodeling and microcrack damage age-dependent? Machined beams from the medial, lateral, and dorsal cortices were loaded to fracture in four-point bending monotonically, or cyclically at a load initially producing 10,000 microstrain. Specimens were then bulk-strained in basic fuchsin, and cross sections were prepared from loaded and load-free regions of each beam. Current and past remodeling, porosity, and microcrack density and length were determined histomorphometrically. Stained and unstained microcracks were observed. Unstained cracks were associated with regions of woven bone and appeared to be damaged Sharpey's fibers. Their density (approximately 30/mm(2)) did not increase after failure, but their length (approximately 25 mu m) did, especially near the surfaces of the beam. Stained cracks were wider and longer than unstained cracks after failure were more numerous in those beams having a higher elastic modulus, a shorter fatigue life, or greater deformation of failure. The extent of past remodeling increased with age, especially in the medial region; the rate of current remodeling generally declined with age, but not in the dorsal region, which has the best fatigue resistance. In summary, while remodeling varied with age and region, its effects on bone structure did not appear to influence microdamage. Basic fuchsin staining of damage in fractured equine bone was independent of age and region and confined to near the fracture surfaces. Distributed microdamage consisted only of what appeared to be subtle disruptions of Sharpey's fibers.
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页码:794 / 801
页数:8
相关论文
共 26 条
[1]   AN ELECTRON MICROSCOPE STUDY ON PRIMARY PERIOSTEAL BONE [J].
ASCENZI, A ;
BONUCCI, E ;
BOCCIARELLI, DS .
JOURNAL OF ULTRASTRUCTURE RESEARCH, 1967, 18 (5-6) :605-+
[2]   BONE REMODELING IN RESPONSE TO INVIVO FATIGUE MICRODAMAGE [J].
BURR, DB ;
MARTIN, RB ;
SCHAFFLER, MB ;
RADIN, EL .
JOURNAL OF BIOMECHANICS, 1985, 18 (03) :189-&
[3]   VALIDITY OF THE BULK-STAINING TECHNIQUE TO SEPARATE ARTIFACTUAL FROM INVIVO BONE MICRODAMAGE [J].
BURR, DB ;
STAFFORD, T .
CLINICAL ORTHOPAEDICS AND RELATED RESEARCH, 1990, (260) :305-308
[4]   BONE CREEP-FATIGUE DAMAGE ACCUMULATION [J].
CALER, WE ;
CARTER, DR .
JOURNAL OF BIOMECHANICS, 1989, 22 (6-7) :625-635
[5]  
CARTER DR, 1977, CLIN ORTHOP RELAT R, P265
[6]   FATIGUE LIFE OF COMPACT BONE .1. EFFECTS OF STRESS AMPLITUDE, TEMPERATURE AND DENSITY [J].
CARTER, DR ;
HAYES, WC .
JOURNAL OF BIOMECHANICS, 1976, 9 (01) :27-+
[7]   UNIAXIAL FATIGUE OF HUMAN CORTICAL BONE - THE INFLUENCE OF TISSUE PHYSICAL CHARACTERISTICS [J].
CARTER, DR ;
CALER, WE ;
SPENGLER, DM ;
FRANKEL, VH .
JOURNAL OF BIOMECHANICS, 1981, 14 (07) :461-470
[8]   FATIGUE BEHAVIOR OF ADULT CORTICAL BONE - THE INFLUENCE OF MEAN STRAIN AND STRAIN RANGE [J].
CARTER, DR ;
CALER, WE ;
SPENGLER, DM ;
FRANKEL, VH .
ACTA ORTHOPAEDICA SCANDINAVICA, 1981, 52 (05) :481-490
[9]   FATIGUE LIFE OF COMPACT BONE .2. EFFECTS OF MICROSTRUCTURE AND DENSITY [J].
CARTER, DR ;
HAYES, WC ;
SCHURMAN, DJ .
JOURNAL OF BIOMECHANICS, 1976, 9 (04) :211-+
[10]   COMPACT BONE FATIGUE DAMAGE .1. RESIDUAL STRENGTH AND STIFFNESS [J].
CARTER, DR ;
HAYES, WC .
JOURNAL OF BIOMECHANICS, 1977, 10 (5-6) :325-337