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contributor authorKleinhans, Kelsey L.
contributor authorJaworski, Lukas M.
contributor authorSchneiderbauer, Michaela M.
contributor authorJackson, Alicia R.
date accessioned2017-05-09T01:15:25Z
date available2017-05-09T01:15:25Z
date issued2015
identifier issn0148-0731
identifier otherbio_137_10_101004.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/157187
description abstractOsteoarthritis (OA) is a significant socioeconomic concern, affecting millions of individuals each year. Degeneration of the meniscus of the knee is often associated with OA, yet the relationship between the two is not well understood. As a nearly avascular tissue, the meniscus must rely on diffusive transport for nutritional supply to cells. Therefore, quantifying structure–function relations for transport properties in meniscus fibrocartilage is an important task. The purpose of the present study was to determine how mechanical loading, tissue anisotropy, and tissue region affect glucose diffusion in meniscus fibrocartilage. A onedimensional (1D) diffusion experiment was used to measure the diffusion coefficient of glucose in porcine meniscus tissues. Results show that glucose diffusion is straindependent, decreasing significantly with increased levels of compression. It was also determined that glucose diffusion in meniscus tissues is anisotropic, with the diffusion coefficient in the circumferential direction being significantly higher than that in the axial direction. Finally, the effect of tissue region was not statistically significant, comparing axial diffusion in the central and horn regions of the tissue. This study is important for better understanding the transport and nutritionrelated mechanisms of meniscal degeneration and related OA in the knee.
publisherThe American Society of Mechanical Engineers (ASME)
titleEffect of Static Compressive Strain, Anisotropy, and Tissue Region on the Diffusion of Glucose in Meniscus Fibrocartilage
typeJournal Paper
journal volume137
journal issue10
journal titleJournal of Biomechanical Engineering
identifier doi10.1115/1.4031118
journal fristpage101004
journal lastpage101004
identifier eissn1528-8951
treeJournal of Biomechanical Engineering:;2015:;volume( 137 ):;issue: 010
contenttypeFulltext


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