Literature DB >> 22402583

Effects of unloading on knee articular cartilage T1rho and T2 magnetic resonance imaging relaxation times: a case series.

Richard B Souza1, Thomas Baum, Samuel Wu, Brian T Feeley, Nancy Kadel, Xiaojuan Li, Thomas M Link, Sharmila Majumdar.   

Abstract

STUDY
DESIGN: Case series.
BACKGROUND: It has been shown in rodent and canine models that cartilage composition is significantly altered in response to long-term unloading. To date, however, no in vivo human studies have investigated this topic. The objective of this case series was to determine the influence of unloading and reloading on T1rho and T2 relaxation times of articular cartilage in healthy young joints. CASE DESCRIPTION: Ten patients who required 6 to 8 weeks of non-weight bearing (NWB) for injuries affecting the distal lower extremity participated in the study. Quantitative T1rho and T2 imaging of the ipsilateral knee joint was performed at 3 time points: (1) prior to surgery (baseline), (2) immediately after a period of NWB (post-NWB), and (3) after 4 weeks of full weight bearing (post-FWB). Cartilage regions of interest were segmented and overlaid on T1rho and T2 relaxation time maps for quantification. Descriptive statistics are provided for all changes. OUTCOMES: Increases of 5% to 10% in T1rho times of all femoral and tibial compartments were noted post-NWB. All values returned to near-baseline levels post-FWB. Increases in medial tibia T2 times were noted post-NWB and remained elevated post-FWB. The load-bearing regions showed the most significant changes in response to unloading, with increases of up to 12%. DISCUSSION: The observation of a transient shift in relaxation times confirms that cartilage composition is subject to alterations based on loading conditions. These changes appear to be mostly related to proteoglycan content and more localized to the load-bearing regions. However, following 4 weeks of full weight bearing, relaxation times of nearly all regions had returned to baseline levels, demonstrating reversibility in compositional fluctuations. LEVEL OF EVIDENCE: Therapy, level 4.

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Year:  2012        PMID: 22402583      PMCID: PMC3673554          DOI: 10.2519/jospt.2012.3975

Source DB:  PubMed          Journal:  J Orthop Sports Phys Ther        ISSN: 0190-6011            Impact factor:   4.751


  42 in total

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2.  Quantification of cartilage biomechanical and biochemical properties via T1rho magnetic resonance imaging.

Authors:  Andrew J Wheaton; George R Dodge; Dawn M Elliott; Steven B Nicoll; Ravinder Reddy
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3.  Incomplete restoration of immobilization induced softening of young beagle knee articular cartilage after 50-week remobilization.

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4.  Altered mechanics and histomorphometry of canine tibial cartilage following joint immobilization.

Authors:  M A Leroux; H S Cheung; J L Bau; J Y Wang; D S Howell; L A Setton
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5.  Remobilization does not fully restore immobilization induced articular cartilage atrophy.

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6.  In vivo T(1rho) and T(2) mapping of articular cartilage in osteoarthritis of the knee using 3 T MRI.

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Authors:  Ravinder R Regatte; Sarma V S Akella; J H Lonner; J B Kneeland; Ravinder Reddy
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Review 3.  Effects of sex and gender on adaptation to space: musculoskeletal health.

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5.  Experimental Influences in the Accurate Measurement of Cartilage Thickness in MRI.

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6.  Response of knee cartilage T1rho and T2 relaxation times to in vivo mechanical loading in individuals with and without knee osteoarthritis.

Authors:  R B Souza; D Kumar; N Calixto; J Singh; J Schooler; K Subburaj; X Li; T M Link; S Majumdar
Journal:  Osteoarthritis Cartilage       Date:  2014-04-30       Impact factor: 6.576

7.  Cartilage MRI relaxation times after arthroscopic partial medial meniscectomy reveal localized degeneration.

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9.  Inter- and intra-rater reliability of patellofemoral kinematic and contact area quantification by fast spin echo MRI and correlation with cartilage health by quantitative T1ρ MRI.

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Review 10.  Cartilage and meniscal T2 relaxation time as non-invasive biomarker for knee osteoarthritis and cartilage repair procedures.

Authors:  T Baum; G B Joseph; D C Karampinos; P M Jungmann; T M Link; J S Bauer
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