Multiscale Mechanical Evaluation of Human Supraspinatus Tendon Under Shear Loading After Glycosaminoglycan Reduction.

scientific article published on 2 May 2017

Multiscale Mechanical Evaluation of Human Supraspinatus Tendon Under Shear Loading After Glycosaminoglycan Reduction. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1115/1.4036602
P932PMC publication ID6993773
P698PubMed publication ID28462418

P2093author name stringFei Fang
Spencer P Lake
P2860cites workContribution of chondroitin-dermatan sulfate-containing proteoglycans to the function of rat mesenteric arteriesQ73645144
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Effect of dermatan sulfate glycosaminoglycans on the quasi-static material properties of the human medial collateral ligamentQ79892652
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Distributions of types I, II and III collagen by region in the human supraspinatus tendonQ86433567
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Achilles tendons from decorin- and biglycan-null mouse models have inferior mechanical and structural properties predicted by an image-based empirical damage modelQ35822769
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Microstructural heterogeneity directs micromechanics and mechanobiology in native and engineered fibrocartilageQ36723070
Multi-parametric MRI characterization of enzymatically degraded articular cartilageQ36994935
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The injury response of aged tendons in the absence of biglycan and decorin.Q37714500
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Different regions of bovine deep digital flexor tendon exhibit distinct elastic, but not viscous, mechanical properties under both compression and shear loadingQ40214176
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Chondroitin sulphate glycosaminoglycans contribute to widespread inferior biomechanics in tendon after focal injuryQ40383159
The Mechanical, Structural, and Compositional Changes of Tendon Exposed to ElastaseQ41161722
The family of the small leucine-rich proteoglycans: key regulators of matrix assembly and cellular growthQ41465984
Determining the contribution of glycosaminoglycans to tendon mechanical properties with a modified shear-lag modelQ41833339
Effect of sulfated glycosaminoglycan digestion on the transverse permeability of medial collateral ligamentQ41864974
Regional variation in human supraspinatus tendon proteoglycans: decorin, biglycan, and aggrecan.Q42324070
Effect of fiber distribution and realignment on the nonlinear and inhomogeneous mechanical properties of human supraspinatus tendon under longitudinal tensile loadingQ42928030
Site-related variations in glycosaminoglycan content and swelling properties of bovine flexor tendonQ43730079
Neer Award 1999. Overuse activity injures the supraspinatus tendon in an animal model: a histologic and biomechanical studyQ48373688
Tensile force transmission in human patellar tendon fascicles is not mediated by glycosaminoglycans.Q50279292
Glycosaminoglycans contribute to extracellular matrix fiber recruitment and arterial wall mechanics.Q51216476
Multiscale mechanical integrity of human supraspinatus tendon in shear after elastin depletion.Q51225157
Equivalent stiffness after glycosaminoglycan depletion in tendon--an ultra-structural finite element model and corresponding experiments.Q51647319
Towards an Understanding of the Genetics of Tendinopathy.Q52967765
Intratendinous strain fields of the supraspinatus tendon: effect of a surgically created articular-surface rotator cuff tear.Q53664649
Effects of proteoglycan extraction on the tensile behavior of articular cartilageQ68751837
Mechanical loading and TGF-beta regulate proteoglycan synthesis in tendonQ73422892
Interstitial fluid pressurization during confined compression cyclical loading of articular cartilageQ73531921
P433issue7
P577publication date2017-05-02
P1433published inJournal of Biomechanical EngineeringQ2331335
P1476titleMultiscale Mechanical Evaluation of Human Supraspinatus Tendon Under Shear Loading After Glycosaminoglycan Reduction
P478volume139

Reverse relations

Q47668703Functionally Distinct Tendons From Elastin Haploinsufficient Mice Exhibit Mild Stiffening and Tendon-Specific Structural Alterationcites workP2860

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