CORTICAL MINERAL-CONTENT OF THE RADIUS ASSESSED BY PERIPHERAL QCT PREDICTS COMPRESSIVE STRENGTH ON BIOMECHANICAL TESTING

被引:75
作者
LOUIS, O
BOULPAEP, F
WILLNECKER, J
VANDENWINKEL, P
OSTEAUX, M
机构
[1] FREE UNIV BRUSSELS,AKAD ZIEKENHUIS,DEPT CYCLOTRON,B-1090 BRUSSELS,BELGIUM
[2] FREE UNIV BRUSSELS,SCH APPL SCI,DEPT MECH,B-1090 BRUSSELS,BELGIUM
[3] STRATEC MED TECH,BIRKENFELD,GERMANY
关键词
OSTEODENSITOMETRY; PERIPHERAL QUANTITATIVE COMPUTED TOMOGRAPHY; COMPRESSIVE LOAD;
D O I
10.1016/8756-3282(94)00050-6
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Our aim was to evaluate the role of cortical bone in resistance to compression in the human radius. Thirty-three left cadaver forearms were scanned on an XCT 960 Stratec CT scanner. Cortical density and cortical thickness were measured at the junction of the middle and distal third of the radius. Subsequently, 2-cm-high cylindrical specimens, centrated on the level of the CT slice, were cut. After removal of the endosteal trabecular bone, the specimens were submitted to compressive testing, using an Instron machine, and load deformation curves were obtained. Maximal stress (load corrected for cross-sectional area) showed a significant relationship with the density (r = 0.78) as well as with the thickness (r = 0.74) of the cortex. The closest correlation involved the maximal load and the mineral content of the cortex specimens (r = 0.87). We conclude that the mineral content of these radius cortex specimens, measured using peripheral QCT, predicts their compressive strength on biomechanical testing.
引用
收藏
页码:375 / 379
页数:5
相关论文
共 16 条
[1]   PREDICTING FEMORAL-NECK STRENGTH FROM BONE-MINERAL DATA - A STRUCTURAL APPROACH [J].
BECK, TJ ;
RUFF, CB ;
WARDEN, KE ;
SCOTT, WW ;
RAO, GU .
INVESTIGATIVE RADIOLOGY, 1990, 25 (01) :6-18
[2]   RELATIONSHIPS BETWEEN BONE-STRUCTURE IN THE ILIAC CREST AND BONE-STRUCTURE AND STRENGTH IN THE LUMBAR SPINE [J].
DEMPSTER, DW ;
FERGUSONPELL, MW ;
MELLISH, RWE ;
COCHRAN, GVB ;
XIE, F ;
FEY, C ;
HORBERT, W ;
PARISIEN, M ;
LINDSAY, R .
OSTEOPOROSIS INTERNATIONAL, 1993, 3 (02) :90-96
[3]   COMPARATIVE METABOLIC ENZYMATIC-ACTIVITY IN TRABECULAR AS AGAINST CORTICAL OSTEOBLASTS [J].
DODDS, RA ;
EMERY, RJH ;
KLENERMAN, L ;
CHAYEN, J ;
BITENSKY, L .
BONE, 1989, 10 (04) :251-254
[4]   NONINVASIVE MEASUREMENTS OF BONE MASS, STRUCTURE, AND STRENGTH - CURRENT METHODS AND EXPERIMENTAL-TECHNIQUES [J].
FAULKNER, KG ;
GLUER, CC ;
MAJUMDAR, S ;
LANG, P ;
ENGELKE, K ;
GENANT, HK .
AMERICAN JOURNAL OF ROENTGENOLOGY, 1991, 157 (06) :1229-1237
[5]   CROSS-SECTIONAL GEOMETRICAL PROPERTIES AND BONE-MINERAL CONTENTS OF THE HUMAN RADIUS AND ULNA [J].
HSU, ES ;
PATWARDHAN, AG ;
MEADE, KP ;
LIGHT, TR ;
MARTIN, WR .
JOURNAL OF BIOMECHANICS, 1993, 26 (11) :1307-1318
[6]  
LOUIS O, 1993, INVEST RADIOL, V9, P802
[7]   FRACTURE RISK - A ROLE FOR COMPACT-BONE [J].
MAZESS, RB .
CALCIFIED TISSUE INTERNATIONAL, 1990, 47 (04) :191-193
[8]   THE PREDICTIVE VALUE OF QUANTITATIVE COMPUTED-TOMOGRAPHY FOR VERTEBRAL BODY COMPRESSIVE STRENGTH AND ASH DENSITY [J].
MOSEKILDE, L ;
BENTZEN, SM ;
ORTOFT, G ;
JORGENSEN, J .
BONE, 1989, 10 (06) :465-470
[9]   SEX-DIFFERENCES IN AGE-RELATED-CHANGES IN VERTEBRAL BODY SIZE, DENSITY AND BIOMECHANICAL COMPETENCE IN NORMAL INDIVIDUALS [J].
MOSEKILDE, L ;
MOSEKILDE, L .
BONE, 1990, 11 (02) :67-73
[10]   RELATIVE CONTRIBUTION OF TRABECULAR AND CORTICAL BONE TO STRENGTH OF HUMAN LUMBAR VERTEBRAE [J].
ROCKOFF, SD ;
SWEET, E ;
BLEUSTEIN, J .
CALCIFIED TISSUE RESEARCH, 1969, 3 (02) :163-+