Literature DB >> 8864911

Prediction of fracture load at different skeletal sites by geometric properties of the cortical shell.

P Augat1, H Reeb, L E Claes.   

Abstract

Quantitative bone assessment today is primarily based on the analysis of bone mineral density (BMD). The geometric properties of bone, which are an important parameter for skeletal strength, are generally not considered in the routine clinical assessment of osteoporosis. This study combined the geometric properties and the BMD values determined by peripheral quantitative computed tomography (pQCT) at the distal radius and at the femoral neck to predict fracture loads of the radius, femur, and lumbar vertebrae of 20 cadavers. Generalized osteopenia reduced the fracture loads at all three sites (p < 0.001). The strength of the radius and the femoral neck could best be predicted by considering either the second moment of inertia and trabecular BMD (R = 0.93) or the moment of inertia and the cortical BMD (R = 0.91). The geometric properties at the distal radius were highly correlated with the fracture load at the same skeletal site (R = 0.89) and were also used to estimate the fracture risk at the lumbar vertebrae (R = 0.75) and at the femoral neck (R = 0.87). We conclude that both geometry and density contribute substantially to the strength of the skeleton. The screening for osteoporosis and the prediction of fracture risk can be improved, therefore, by an additional consideration of the geometric properties of the cortex.

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Year:  1996        PMID: 8864911     DOI: 10.1002/jbmr.5650110921

Source DB:  PubMed          Journal:  J Bone Miner Res        ISSN: 0884-0431            Impact factor:   6.741


  65 in total

1.  Trabecular and cortical bone in the assessment of vertebral fracture risk.

Authors:  C R Russo; F Lauretani; B Bartali; L Ferrucci
Journal:  Osteoporos Int       Date:  2002-03       Impact factor: 4.507

2.  Autocorrelation and cepstral methods for measurement of tibial cortical thickness.

Authors:  Keith A Wear
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2003-06       Impact factor: 2.725

3.  Genome-wide association study identifies HMGN3 locus for spine bone size variation in Chinese.

Authors:  Shu-Feng Lei; Hui Shen; Tie-Lin Yang; Yan Guo; Shan-Shan Dong; Xiang-Hong Xu; Fei-Yan Deng; Qing Tian; Yong-Jun Liu; Yao-Zhong Liu; Jian Li; Hong-Wen Deng
Journal:  Hum Genet       Date:  2011-09-25       Impact factor: 4.132

4.  Role of endocortical contouring methods on precision of HR-pQCT-derived cortical micro-architecture in postmenopausal women and young adults.

Authors:  C E Kawalilak; J D Johnston; D M L Cooper; W P Olszynski; S A Kontulainen
Journal:  Osteoporos Int       Date:  2015-08-08       Impact factor: 4.507

5.  Accuracy of pQCT for evaluating the aged human radius: an ashing, histomorphometry and failure load investigation.

Authors:  M C Ashe; K M Khan; S A Kontulainen; P Guy; D Liu; T J Beck; H A McKay
Journal:  Osteoporos Int       Date:  2006-05-09       Impact factor: 4.507

6.  Cortical bone geometry in asthmatic children.

Authors:  J L Quick; K A Ward; J E Adams; M Z Mughal
Journal:  Arch Dis Child       Date:  2006-02-01       Impact factor: 3.791

7.  Gender differences in trabecular bone architecture of the distal radius assessed with magnetic resonance imaging and implications for mechanical competence.

Authors:  Martin Hudelmaier; A Kollstedt; E M Lochmüller; V Kuhn; F Eckstein; T M Link
Journal:  Osteoporos Int       Date:  2005-03-03       Impact factor: 4.507

8.  Predicting the failure load of the distal radius.

Authors:  Monique E Muller; Colin E Webber; Mary L Bouxsein
Journal:  Osteoporos Int       Date:  2003-04-25       Impact factor: 4.507

9.  Rapid cortical bone loss in patients with chronic kidney disease.

Authors:  Thomas L Nickolas; Emily M Stein; Elzbieta Dworakowski; Kyle K Nishiyama; Mafo Komandah-Kosseh; Chiyuan A Zhang; Donald J McMahon; Xiaowei S Liu; Stephanie Boutroy; Serge Cremers; Elizabeth Shane
Journal:  J Bone Miner Res       Date:  2013-08       Impact factor: 6.741

10.  A new fracture assessment approach coupling HR-pQCT imaging and fracture mechanics-based finite element modeling.

Authors:  Ani Ural; Peter Bruno; Bin Zhou; X Tony Shi; X Edward Guo
Journal:  J Biomech       Date:  2013-03-13       Impact factor: 2.712

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