The meniscus plays a critical biomechanical role in the knee, providing load support, joint stability, and congruity. Importantly, growing evidence indicates that the mechanobiologic response of meniscal cells plays a critical role in the physiologic, pathologic, and repair responses of the meniscus. Here we review experimental and theoretical studies that have begun to directly measure the biomechanical effects of joint loading on the meniscus under physiologic and pathologic conditions, showing that the menisci are exposed to high contact stresses, resulting in a complex and nonuniform stress-strain environment within the tissue. By combining microscale measurements of the mechanical properties of meniscal cells and their pericellular and...
Current therapies for meniscal injury seek to preserve and repair damaged tissue since loss of menis...
Menisci are subjected to different pathologies that affect the proper functions and biology of the k...
SummaryObjectiveTo overcome current limitations of Tissue Engineering (TE) strategies, deeper compre...
a b s t r a c t The meniscus plays a critical biomechanical role in the knee, providing load support...
The menisci of the knee are complex fibro-cartilaginous tissues that play important roles in load be...
The menisci of the knee are complex fibro-cartilaginous tissues that play important roles in load be...
Meniscus adapts to joint loads by depth- and site-specific variations in its composition and structu...
Abstract Central to understanding mechanotransduction in the knee meniscus is the characterization o...
Background Deteriorating meniscal function is thought to play a role in knee osteoarthritis. Menisca...
Within the human tibiofemoral joint, meniscus plays a key role due to its peculiar time-dependent me...
Abstract Background Knowledge regarding the biomechanics of the meniscus has grown exponentially thr...
SummaryObjectivesCells of the knee meniscus respond to changes in their biochemical and biomechanica...
AbstractObjective The menisci play an important role in the biomechanics of the knee, and loss of me...
Menisci are subjected to different pathologies that affect the proper functions and biology of the k...
In this study, the biomechanical properties of meniscus under pull-out and compression forces are in...
Current therapies for meniscal injury seek to preserve and repair damaged tissue since loss of menis...
Menisci are subjected to different pathologies that affect the proper functions and biology of the k...
SummaryObjectiveTo overcome current limitations of Tissue Engineering (TE) strategies, deeper compre...
a b s t r a c t The meniscus plays a critical biomechanical role in the knee, providing load support...
The menisci of the knee are complex fibro-cartilaginous tissues that play important roles in load be...
The menisci of the knee are complex fibro-cartilaginous tissues that play important roles in load be...
Meniscus adapts to joint loads by depth- and site-specific variations in its composition and structu...
Abstract Central to understanding mechanotransduction in the knee meniscus is the characterization o...
Background Deteriorating meniscal function is thought to play a role in knee osteoarthritis. Menisca...
Within the human tibiofemoral joint, meniscus plays a key role due to its peculiar time-dependent me...
Abstract Background Knowledge regarding the biomechanics of the meniscus has grown exponentially thr...
SummaryObjectivesCells of the knee meniscus respond to changes in their biochemical and biomechanica...
AbstractObjective The menisci play an important role in the biomechanics of the knee, and loss of me...
Menisci are subjected to different pathologies that affect the proper functions and biology of the k...
In this study, the biomechanical properties of meniscus under pull-out and compression forces are in...
Current therapies for meniscal injury seek to preserve and repair damaged tissue since loss of menis...
Menisci are subjected to different pathologies that affect the proper functions and biology of the k...
SummaryObjectiveTo overcome current limitations of Tissue Engineering (TE) strategies, deeper compre...