Recent advances in skeletal muscle tissue engineering have resulted in an in vitro tissue model that can be used for studying the effects of genetic alterations, pharmacological interventions, and exercise on muscle physiology and function. Here, we present applications for this technology to further our understanding of the molecular mechanisms underlying skeletal muscle adaptation in response to exercise
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Biological systems have acquired effective adaptive strategies to cope with physiological challenges...
Engineering models of human skeletal muscle tissue provides unique translational opportunities to in...
Recent advances in skeletal muscle tissue engineering have resulted in an in vitro tissue model that...
Skeletal muscle is a major target for tissue engineering, given its relative size in the body, fract...
Research within exercise physiology has traditionally focused upon measurements of gross physiologic...
The overriding aim of this thesis was to optimise, scale and utilise an in vitro model of skeletal m...
Skeletal muscle is the most abundant tissue in the lean human body and is responsible for all motor ...
The bioengineering of skeletal muscle tissue in-vitro has enabled researchers to more closely mimic ...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle tissue exhibits endogenous ability to regenerate. However, the self-repair mechanism...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
Skeletal muscle tissue engineering is relatively new field exploiting knowledge of histology, cell b...
Skeletal muscle is a malleable tissue capable of altering the type and amount of protein in response...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Biological systems have acquired effective adaptive strategies to cope with physiological challenges...
Engineering models of human skeletal muscle tissue provides unique translational opportunities to in...
Recent advances in skeletal muscle tissue engineering have resulted in an in vitro tissue model that...
Skeletal muscle is a major target for tissue engineering, given its relative size in the body, fract...
Research within exercise physiology has traditionally focused upon measurements of gross physiologic...
The overriding aim of this thesis was to optimise, scale and utilise an in vitro model of skeletal m...
Skeletal muscle is the most abundant tissue in the lean human body and is responsible for all motor ...
The bioengineering of skeletal muscle tissue in-vitro has enabled researchers to more closely mimic ...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle tissue exhibits endogenous ability to regenerate. However, the self-repair mechanism...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
Skeletal muscle tissue engineering is relatively new field exploiting knowledge of histology, cell b...
Skeletal muscle is a malleable tissue capable of altering the type and amount of protein in response...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Biological systems have acquired effective adaptive strategies to cope with physiological challenges...
Engineering models of human skeletal muscle tissue provides unique translational opportunities to in...