Literature DB >> 10100939

Applications of micro-CT and MR microscopy to study pre-clinical models of osteoporosis and osteoarthritis.

R D Kapadia1, G B Stroup, A M Badger, B Koller, J M Levin, R W Coatney, R A Dodds, X Liang, M W Lark, M Gowen.   

Abstract

There is a tremendous unmet therapeutic need for the treatment of osteoporosis and osteoarthritis. The ovariectomized rat and the guinea pig are widely used animal models for the evaluation of new therapeutics for osteoporosis and osteoarthritis, respectively. We have utilized X-ray micro-CT techniques to quantitatively evaluate the differences in trabecular bone in the rat proximal tibia following ovariectomy and treatment with estrogen (17-B-estradiol). Results demonstrate a loss of trabecular bone and architecture following ovariectomy (p < 0.001), and a marked inhibition of trabecular bone loss in the estrogen treated group (p < 0.001). A similar change in architecture can be visualized in images obtained by high resolution MR microscopy. In addition, a good correlation was observed between the values of trabecular bone fraction (BV/TV) in the rat tibiae as obtained from 3-dimensional micro-CT data and 2-dimensional static histomorphometry (r = 0.89, 0.73, 0.79 for sham, OVX, and treated groups, respectively). Micro-CT images were also obtained from a set of lumbar vertebrae from sham operated and ovariectomized rats. Significant bone loss can be measured as early as 8 weeks following ovariectomy (p < 0.005). Micro-CT and MR images were also obtained to study age related changes in the stifle joint of the guinea pig. Significant boney changes can be seen in the tibia and femur from the animals at various ages. Changes in cartilage and joint space can also be visualized in the images. The utility of micro-CT imaging in evaluating the mouse skeletal system is illustrated by obtaining morphological and architectural details from high resolution images of the mouse hind limb and proximal tibia, respectively. The results demonstrate the advantages that multi-dimensional imaging techniques can offer in evaluating bone and joint related changes in animal models of osteoporosis and osteoarthritis.

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Year:  1998        PMID: 10100939

Source DB:  PubMed          Journal:  Technol Health Care        ISSN: 0928-7329            Impact factor:   1.285


  21 in total

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Review 2.  Trabecular bone failure at the microstructural level.

Authors:  Ralph Müller; G Harry van Lenthe
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Authors:  J Van Dessel; Y Huang; M Depypere; I Rubira-Bullen; F Maes; R Jacobs
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4.  The use of nano-computed tomography to enhance musculoskeletal research.

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Review 6.  Hierarchical microimaging of bone structure and function.

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Authors:  Geertje van der Horst; Christel van den Hoogen; Jeroen T Buijs; Henry Cheung; Henny Bloys; Rob C M Pelger; Giocondo Lorenzon; Bertrand Heckmann; Jean Feyen; Philippe Pujuguet; Roland Blanque; Philippe Clément-Lacroix; Gabri van der Pluijm
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8.  Osteophyte volume calculation using dissimilarity-excluding Procrustes registration of archived bone models from healthy volunteers.

Authors:  Amy M Morton; Bardiya Akhbari; Douglas C Moore; Joseph J Crisco
Journal:  J Orthop Res       Date:  2019-12-25       Impact factor: 3.494

9.  Limitations of using micro-computed tomography to predict bone-implant contact and mechanical fixation.

Authors:  S Liu; J Broucek; A S Virdi; D R Sumner
Journal:  J Microsc       Date:  2011-09-15       Impact factor: 1.758

10.  Guidelines for Dual Energy X-Ray Absorptiometry Analysis of Trabecular Bone-Rich Regions in Mice: Improved Precision, Accuracy, and Sensitivity for Assessing Longitudinal Bone Changes.

Authors:  Jiayu Shi; Soonchul Lee; Michael Uyeda; Justine Tanjaya; Jong Kil Kim; Hsin Chuan Pan; Patricia Reese; Louis Stodieck; Andy Lin; Kang Ting; Jin Hee Kwak; Chia Soo
Journal:  Tissue Eng Part C Methods       Date:  2016-04-15       Impact factor: 3.056

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