Literature DB >> 24833266

Molecular origin of a loading-induced black layer in the deep region of articular cartilage at the magic angle.

Nian Wang1, David Kahn, Farid Badar, Yang Xia.   

Abstract

PURPOSE: To investigate the molecular origin of an unusual low-intensity layer in the deep region of articular cartilage as seen in magnetic resonance imaging (MRI) when the tissue is imaged under compression and oriented at the magic angle.
MATERIALS AND METHODS: Microscopic MRI (μMRI) T2 and T1 ρ experiments were carried out on 18 specimens, both native and degraded (treated with trypsin). The glycosaminoglycan (GAG) concentrations in the specimens were quantified by both sodium ICP-OES and μMRI Gd(DTPA)(2-) -contrast methods. The mechanical modulus of the specimens was also measured.
RESULTS: Native tissue shows no load-induced layer, while the trypsin-degraded tissue shows clearly the low-intensity line at the deep part of tissue. The GAG reductions were confirmed by the sodium ICP-OES (from 81.7 ± 5.4 mg/mL to 9.2 ± 3.4 mg/mL), MRI GAG quantification (from 72.4 ± 6.7 mg/mL to 11.2 ± 2.9 mg/mL). The modulus reduction was confirmed by biomechanics (from 4.3 ± 0.7 MPa to 0.3 ± 0.1 MPa).
CONCLUSION: Both T2 and T1 ρ profiles in native and degraded cartilage show strongly strain-, depth-, and angle-dependence using high-resolution MRI. The GAG reduction is responsible for the visualization of a low-intensity layer in deep cartilage when it is loaded and oriented at 55°.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  MRI; T1ρ; T2; anisotropy; cartilage; laminar appearance; loading; magic angle

Mesh:

Substances:

Year:  2014        PMID: 24833266      PMCID: PMC4233195          DOI: 10.1002/jmri.24658

Source DB:  PubMed          Journal:  J Magn Reson Imaging        ISSN: 1053-1807            Impact factor:   4.813


  37 in total

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2.  Orientational dependent sensitivities of T2 and T1ρ towards trypsin degradation and Gd-DTPA2- presence in bovine nasal cartilage.

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4.  Depth and orientational dependencies of MRI T(2) and T(1ρ) sensitivities towards trypsin degradation and Gd-DTPA(2-) presence in articular cartilage at microscopic resolution.

Authors:  Nian Wang; Yang Xia
Journal:  Magn Reson Imaging       Date:  2012-01-13       Impact factor: 2.546

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6.  Strain-dependent T1 relaxation profiles in articular cartilage by MRI at microscopic resolutions.

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10.  The effects of mechanical loading and gadolinium concentration on the change of T1 and quantification of glycosaminoglycans in articular cartilage by microscopic MRI.

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  10 in total

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2.  Compressed sensing in quantitative determination of GAG concentration in cartilage by microscopic MRI.

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4.  Effects of cryopreservation on the depth-dependent elastic modulus in articular cartilage and implications for osteochondral grafting.

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5.  Characterization complex collagen fiber architecture in knee joint using high-resolution diffusion imaging.

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6.  Resolution-dependent influences of compressed sensing in quantitative T2 mapping of articular cartilage.

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7.  MRI properties of a unique hypo-intense layer in degraded articular cartilage.

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Review 8.  Magnetic resonance imaging (MRI) studies of knee joint under mechanical loading: Review.

Authors:  Saeed Jerban; Eric Y Chang; Jiang Du
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9.  Quantitative measurement of T2, T1ρ and T1 relaxation times in articular cartilage and cartilage-bone interface by SE and UTE imaging at microscopic resolution.

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10.  Detection of early osteoarthritis in canine knee joints 3 weeks post ACL transection by microscopic MRI and biomechanical measurement.

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  10 in total

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