Literature DB >> 17453909

Morphological changes in articular cartilage due to static compression: polarized light microscopy study.

Hisham A Alhadlaq1, Yang Xia, Fay M Hansen, Clifford M Les, George Lust.   

Abstract

We studied the deformation of the extracellular matrices in articular cartilage using a new compression-preservation method in histology. A Hoffman clamp was used to compress the tissue, which remained throughout the paraffin procedure and was removed from the embedded tissue block just before microtoming. Then 14 cartilage-bone blocks from 2 canine humeri were compressed for various strain levels from 5% to 65%. The histological sections were studied using a polarized light microscope, which generated a pair of two-dimensional maps of the fibril orientation (angle) and fibril organization (retardance) for each section. Results were 3-fold. One there was little change in the angle and retardance profiles of the tissue for strain levels 0-15% and a significant change in these profiles for strain levels 15% and above. Two for higher compression, more fibrils became aligned parallel to the articular surface; and three at approximately 30% strain, a second "transitional zone" was formed in the deep part of the tissue. We concluded that this novel compression procedure can be used effectively to study the altered architecture of the collagen matrix in compressed cartilage.

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Year:  2007        PMID: 17453909     DOI: 10.1080/03008200601130950

Source DB:  PubMed          Journal:  Connect Tissue Res        ISSN: 0300-8207            Impact factor:   3.417


  10 in total

1.  Fourier-transform infrared spectroscopic imaging of articular cartilage and biomaterials: A review.

Authors:  Nagarajan Ramakrishnan; Yang Xia
Journal:  Trends Appl Spectrosc       Date:  2013

2.  Human fascia lata ECM scaffold augmented with immobilized hyaluronan: inflammatory response and remodeling in the canine body wall and shoulder implantation sites.

Authors:  Diane R Leigh; Myung-Sun Kim; David Kovacevic; Andrew R Baker; Carmela D Tan; Anthony Calabro; Kathleen A Derwin
Journal:  J Biomater Sci Polym Ed       Date:  2014-11-17       Impact factor: 3.517

3.  Loading-induced changes on topographical distributions of the zonal properties of osteoarthritic tibial cartilage--A study by magnetic resonance imaging at microscopic resolution.

Authors:  Ji Hyun Lee; Farid Badar; David Kahn; John Matyas; Xianggui Qu; Yang Xia
Journal:  J Biomech       Date:  2015-08-28       Impact factor: 2.712

4.  Quantitative determination of morphological and territorial structures of articular cartilage from both perpendicular and parallel sections by polarized light microscopy.

Authors:  Daniel Mittelstaedt; Yang Xia; Alex Shmelyov; Nick Casciani; Aruna Bidthanapally
Journal:  Connect Tissue Res       Date:  2011-07-25       Impact factor: 3.417

5.  Molecular and morphological adaptations in compressed articular cartilage by polarized light microscopy and Fourier-transform infrared imaging.

Authors:  Y Xia; H Alhadlaq; N Ramakrishnan; A Bidthanapally; F Badar; M Lu
Journal:  J Struct Biol       Date:  2008-06-27       Impact factor: 2.867

Review 6.  Functional properties of chondrocytes and articular cartilage using optical imaging to scanning probe microscopy.

Authors:  Yang Xia; Eric M Darling; Walter Herzog
Journal:  J Orthop Res       Date:  2017-11-22       Impact factor: 3.494

7.  Chemical visualization of individual chondrocytes in articular cartilage by attenuated-total-reflection Fourier Transform Infrared Microimaging.

Authors:  Jianhua Yin; Yang Xia
Journal:  Biomed Opt Express       Date:  2011-03-18       Impact factor: 3.732

8.  Location-Specific Study of Young Rabbit Femoral Cartilage by Quantitative µMRI and Polarized Light Microscopy.

Authors:  Syeda Batool; Mouhamad Hammami; Hannah Mantebea; Farid Badar; Yang Xia
Journal:  Cartilage       Date:  2022 Jan-Mar       Impact factor: 3.117

9.  MRI of articular cartilage at microscopic resolution.

Authors:  Y Xia
Journal:  Bone Joint Res       Date:  2013-01-01       Impact factor: 5.853

10.  Diffusion tensor imaging of articular cartilage at 3T correlates with histology and biomechanics in a mechanical injury model.

Authors:  Uran Ferizi; Ignacio Rossi; Youjin Lee; Matin Lendhey; Jason Teplensky; Oran D Kennedy; Thorsten Kirsch; Jenny Bencardino; José G Raya
Journal:  Magn Reson Med       Date:  2016-07-25       Impact factor: 3.737

  10 in total

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