For over 300 years, scientists have understood that stimulation, in the form of an electrical impulse, is required for normal muscle function. More recently, the role of specific parameters of the electrical impulse (i.e., the pulse amplitude, pulse width, and work-to-rest ratio) has become better appreciated. However, most existing bioreactor systems do not permit sufficient control over these parameters. Therefore, the aim of the current study was to engineer an inexpensive muscle electrical stimulation bioreactor to apply physiologically relevant electrical stimulation patterns to tissue-engineered muscles and monolayers in culture. A low-powered microcontroller and a DC-DC converter were used to power a pulse circuit that converted a 4....
Introduction: Tissue-engineered skeletal muscle constructs should be designed to generate contractil...
The goal of this project was to create an accurate model for skeletal muscle in vitro, with a specif...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
For over 300 years, scientists have understood that stimulation, in the form of an electrical impuls...
The bioengineering of skeletal muscle tissue in-vitro has enabled researchers to more closely mimic ...
This paper describes the development of novel bioreactor systems for use in studying the development...
This paper describes the development of novel bioreactor systems for use in studying the development...
The bioengineering of skeletal muscle tissue in-vitro has enabled researchers to more closely mimic ...
Engineered skeletal muscle tissues are ideal candidates for applications in drug screening systems, ...
An in vitro system of electrical stimulation was used to explore whether an innovative “noisy” stimu...
Low-labor production of tissue-engineered muscles (TEMs) is one of the key technologies to realize t...
This project set out to develop a system to mechanically stimulate in vitro skeletal muscle tissue t...
1.7 billion people worldwide are affected by musculoskeletal conditions, and 90% of drugs fail phase...
Background and Aims Physical exercise leads to substantial adaptive responses in skeletal muscles a...
Engineered skeletal muscle tissue has the potential to aid in valuable research and treatment method...
Introduction: Tissue-engineered skeletal muscle constructs should be designed to generate contractil...
The goal of this project was to create an accurate model for skeletal muscle in vitro, with a specif...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
For over 300 years, scientists have understood that stimulation, in the form of an electrical impuls...
The bioengineering of skeletal muscle tissue in-vitro has enabled researchers to more closely mimic ...
This paper describes the development of novel bioreactor systems for use in studying the development...
This paper describes the development of novel bioreactor systems for use in studying the development...
The bioengineering of skeletal muscle tissue in-vitro has enabled researchers to more closely mimic ...
Engineered skeletal muscle tissues are ideal candidates for applications in drug screening systems, ...
An in vitro system of electrical stimulation was used to explore whether an innovative “noisy” stimu...
Low-labor production of tissue-engineered muscles (TEMs) is one of the key technologies to realize t...
This project set out to develop a system to mechanically stimulate in vitro skeletal muscle tissue t...
1.7 billion people worldwide are affected by musculoskeletal conditions, and 90% of drugs fail phase...
Background and Aims Physical exercise leads to substantial adaptive responses in skeletal muscles a...
Engineered skeletal muscle tissue has the potential to aid in valuable research and treatment method...
Introduction: Tissue-engineered skeletal muscle constructs should be designed to generate contractil...
The goal of this project was to create an accurate model for skeletal muscle in vitro, with a specif...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...