Several studies have established that dynamic stimulation by mixing media and dynamic compression enhances the production of extracellular matrix (ECM) and mechanical properties of tissue-engineered (TE) constructs seeded with articular chondrocytes. Very few studies have attempted to engineer a whole meniscus and none have attempted to dynamically stimulate this tissue in vitro. The overall objective of this dissertation was to investigate the effect of dynamic stimulation on the biochemical and mechanical properties of image-guided tissue engineered menisci. The central hypothesis of this dissertation is that mechanical stimulation will alter the ECM assembly and mechanical behavior of anatomically shaped constructs. The first specific ai...
Meniscal tear is still an unsolved problem in regenerative medicine. The almost total inabi...
<p>Mesenchymal stem cells (MSCs) have been investigated with promising results for meniscus healing ...
Contains fulltext : 59235.pdf (publisher's version ) (Closed access)Meniscus lesio...
Tissue engineering has been proposed to alleviate injury to the knee meniscus, which leads to loss o...
Meniscal injuries are one of the most common traumatic injuries in the knee accounting for over 1 mi...
ObjectiveThis study aimed to improve the functional properties of anatomically-shaped meniscus const...
The meniscus is a soft, fibrocartilaginous tissue critical for the maintenance of normal knee biomec...
This study aimed to improve the functional properties of anatomically-shaped meniscus constructs thr...
SummaryObjectiveInjuries to the avascular regions of the meniscus fail to heal and so are treated by...
Tissue engineering approaches have attempted to address some of the problems associated with articul...
SummaryObjectiveTo overcome current limitations of Tissue Engineering (TE) strategies, deeper compre...
Objectives: Total or partial meniscectomy have been the gold standard for the treatment of degenerat...
The menisci fulfill essential biomechanical functions since they have a chondroprotective effect on ...
In the United States, there are over 1 million meniscus related surgeries per year. Meniscus injury ...
Efforts have been made to engineer knee meniscus tissue for injury repair, yet most attempts have be...
Meniscal tear is still an unsolved problem in regenerative medicine. The almost total inabi...
<p>Mesenchymal stem cells (MSCs) have been investigated with promising results for meniscus healing ...
Contains fulltext : 59235.pdf (publisher's version ) (Closed access)Meniscus lesio...
Tissue engineering has been proposed to alleviate injury to the knee meniscus, which leads to loss o...
Meniscal injuries are one of the most common traumatic injuries in the knee accounting for over 1 mi...
ObjectiveThis study aimed to improve the functional properties of anatomically-shaped meniscus const...
The meniscus is a soft, fibrocartilaginous tissue critical for the maintenance of normal knee biomec...
This study aimed to improve the functional properties of anatomically-shaped meniscus constructs thr...
SummaryObjectiveInjuries to the avascular regions of the meniscus fail to heal and so are treated by...
Tissue engineering approaches have attempted to address some of the problems associated with articul...
SummaryObjectiveTo overcome current limitations of Tissue Engineering (TE) strategies, deeper compre...
Objectives: Total or partial meniscectomy have been the gold standard for the treatment of degenerat...
The menisci fulfill essential biomechanical functions since they have a chondroprotective effect on ...
In the United States, there are over 1 million meniscus related surgeries per year. Meniscus injury ...
Efforts have been made to engineer knee meniscus tissue for injury repair, yet most attempts have be...
Meniscal tear is still an unsolved problem in regenerative medicine. The almost total inabi...
<p>Mesenchymal stem cells (MSCs) have been investigated with promising results for meniscus healing ...
Contains fulltext : 59235.pdf (publisher's version ) (Closed access)Meniscus lesio...