Knee cartilage experiences site-specific focal lesion and degeneration, which is likely associated with tissue inhomogeneity and nonuniform mechanical stimuli in the joint, for which a complete picture remains to be depicted. The present study aimed to develop a methodology to quantify knee cartilage inhomogeneity using porcine knee specimens. Automated indentation-relaxation and needle probing were performed on fully intact cartilage to obtain data that essentially represent continuous distributions of cartilage properties in the knee. Machine learning was then introduced to approximate the tissue inhomogeneity with several regions via clusters of indentation locations, and finite element modeling was used to obtain poromechanical properties for each region using indentation-relaxation and thickness data. Significant region dependence was established from the full time-dependent mechanical response. Seventeen regions, or clusters, were found to best approximate the site-specific poromechanical properties of articular cartilage for femoral groove, lateral and medial condyles and tibial plateaus, after up to eight clusters were tested for each of the five cartilage sections. The region partitions recommended, and tissue properties acquired would facilitate implementation of tissue inhomogeneity in future applications, e.g., contact modeling of the knee joint. The results obtained from 14 porcine knees revealed interesting region differences, for example, the two condyles have the same effective stiffness when responding to slowly applied mechanical loadings but substantially lower stiffness in the medial condyle when responding to fast loadings. This mechanical behavior may be associated with the fact that medial femoral cartilage is more prone to focal lesions than the lateral one.
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Laboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech RepublicLaboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech Republic
Kronek, Jakub
Horny, L.
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Laboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech RepublicLaboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech Republic
Horny, L.
Adamek, T.
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University Hospital Na KralovskychVinohradech, Srobarova 50, 10034, Prague, Czech RepublicLaboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech Republic
Adamek, T.
Chlup, H.
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Laboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech RepublicLaboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech Republic
Chlup, H.
Zitny, R.
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Laboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech RepublicLaboratory of Biomechanics, Czech Technical University in Prague, Technicka 4, 16607, Prague, Czech Republic
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Indian Inst Technol Kharagpur, Ctr Oceans Rivers Atmosphere & Land Sci, Kharagpur 721302, W Bengal, IndiaWorld Agroforestry CIFOR ICRAF, New Delhi 110012, India
Behera, Mukunda Dev
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Das, Pulakesh
Rizvi, Javed
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World Agroforestry CIFOR ICRAF, New Delhi 110012, IndiaWorld Agroforestry CIFOR ICRAF, New Delhi 110012, India
Rizvi, Javed
Dhyani, Shiv Kumar
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World Agroforestry CIFOR ICRAF, New Delhi 110012, IndiaWorld Agroforestry CIFOR ICRAF, New Delhi 110012, India
Dhyani, Shiv Kumar
Biradar, Chandrashekhar M.
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World Agroforestry CIFOR ICRAF, New Delhi 110012, IndiaWorld Agroforestry CIFOR ICRAF, New Delhi 110012, India