Transfer of macroscale tissue strain to microscale cell regions in the deformed meniscus.

scientific article published on 16 May 2008

Transfer of macroscale tissue strain to microscale cell regions in the deformed meniscus. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1529/BIOPHYSJ.107.126938
P8608Fatcat IDrelease_vmguzqriurhfhpwreapiv5fy7m
P932PMC publication ID2483778
P698PubMed publication ID18487290
P5875ResearchGate publication ID5363794

P50authorFarshid GuilakQ38328879
P2093author name stringLori A Setton
Christopher L Gilchrist
Maureen L Upton
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Chondrocyte deformation induces mitochondrial distortion and heterogeneous intracellular strain fields.Q39747899
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Role of cell location and morphology in the mechanical environment around meniscal cellsQ40304763
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The concentration, gene expression, and spatial distribution of aggrecan in canine articular cartilage, meniscus, and anterior and posterior cruciate ligaments: a new molecular distinction between hyaline cartilage and fibrocartilage in the knee joiQ46600538
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Knee joint immobilization decreases aggrecan gene expression in the meniscusQ48003029
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Biaxial strain effects on cells from the inner and outer regions of the meniscusQ51130667
Region-specific constitutive gene expression in the adult porcine meniscusQ51191240
The effect of matrix tension-compression nonlinearity and fixed negative charges on chondrocyte responses in cartilage.Q51200206
Measurement of intracellular strain on deformable substrates with texture correlationQ51203163
Finite element modeling predictions of region-specific cell-matrix mechanics in the meniscus.Q51251963
Spatial organization of types I and II collagen in the canine meniscus.Q51564638
In situ intercellular mechanics of the bovine outer annulus fibrosus subjected to biaxial strains.Q51725736
Differential effects of static and dynamic compression on meniscal cell gene expression.Q51813194
The mechanical environment of the chondrocyte: a biphasic finite element model of cell-matrix interactions in articular cartilageQ73006977
Early changes in lapine menisci during osteoarthritis development: Part II: molecular alterationsQ73441888
The micromechanical environment of intervertebral disc cells: effect of matrix anisotropy and cell geometry predicted by a linear modelQ74100956
Absolute concentrations of mRNA for type I and type VI collagen in the canine meniscus in normal and ACL-deficient knee joints obtained by RNase protection assayQ74414344
Dynamic imaging of cellular interactions with extracellular matrixQ80350447
The effects of cyclic mechanical strain and tumor necrosis factor alpha on the response of cells of the meniscusQ81057968
The biomechanical role of the chondrocyte pericellular matrix in articular cartilageQ83347112
P433issue4
P407language of work or nameEnglishQ1860
P304page(s)2116-2124
P577publication date2008-05-16
P1433published inBiophysical JournalQ2032955
P1476titleTransfer of macroscale tissue strain to microscale cell regions in the deformed meniscus
P478volume95

Reverse relations

cites work (P2860)
Q34016987A biphasic multiscale study of the mechanical microenvironment of chondrocytes within articular cartilage under unconfined compression
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Q36645140Biomechanics of meniscus cells: regional variation and comparison to articular chondrocytes and ligament cells
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Q35184931DTAF dye concentrations commonly used to measure microscale deformations in biological tissues alter tissue mechanics
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Q34811713Dynamic tensile loading improves the functional properties of mesenchymal stem cell-laden nanofiber-based fibrocartilage
Q34148823Evaluation of a post-processing approach for multiscale analysis of biphasic mechanics of chondrocytes
Q64123021Experimental mechanical strain measurement of tissues
Q35609209Fiber stretch and reorientation modulates mesenchymal stem cell morphology and fibrous gene expression on oriented nanofibrous microenvironments
Q35183538Impact of cellular microenvironment and mechanical perturbation on calcium signalling in meniscus fibrochondrocytes
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Q39951776Interfibrillar shear stress is the loading mechanism of collagen fibrils in tendon
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