We present a biologically inspired actuator exhibiting a novel pumping action. The design of the ‘artificial heartbeat’ actuator is inspired by physical principles derived from the structure and function of the human heart. The actuator employs NiTi artificial muscles and is powered by electrical energy generated by microbial fuel cells (MFCs). We describe the design and fabrication of the actuator and report the results of tests conducted to characterize its performance. This is the first artificial muscle-driven pump to be powered by MFCs fed on human urine. Results are presented in terms of the peak pumping pressure generated by the actuator, as well as for the volume of fluid transferred, when the actuator was powered by energy stored i...
In recent years, hybrid devices that consist of a living cell or tissue component integrated with a ...
Blood pumps assist or take over the pump function of a failing heart. They are essentially activated...
While previous works on cell-based devices for integrated chemical systems have focused on exploitin...
We present a biologically inspired actuator exhibiting a novel pumping action. The design of the 'ar...
We describe the design, fabrication and testing of a biologically-driven actuator which serves as a ...
We consider the embodiment of a microbial fuel cell using artificial muscle actuators. The microbial...
Conventional rigid-body robots operate using actuators which differ markedly from the compliant, mus...
This paper reports on the proof-of-concept work to produce an energetically autonomous robot employi...
This paper reports on the initial work to produce an artificial metabolic system for an energeticall...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
© 2015 IEEE. We present a design for an energetically autonomous artificial organism, combining two ...
Untethered actuation is important for robotic devices to achieve autonomous motion, which is typical...
Pumps are critical life-sustaining components for all animals. At the earliest stages of life, the t...
We present a design for an energetically autonomous artificial organism, combining two subsystems; a...
Medical soft robotics constitutes a rapidly developing field in the treatment of cardiovascular dise...
In recent years, hybrid devices that consist of a living cell or tissue component integrated with a ...
Blood pumps assist or take over the pump function of a failing heart. They are essentially activated...
While previous works on cell-based devices for integrated chemical systems have focused on exploitin...
We present a biologically inspired actuator exhibiting a novel pumping action. The design of the 'ar...
We describe the design, fabrication and testing of a biologically-driven actuator which serves as a ...
We consider the embodiment of a microbial fuel cell using artificial muscle actuators. The microbial...
Conventional rigid-body robots operate using actuators which differ markedly from the compliant, mus...
This paper reports on the proof-of-concept work to produce an energetically autonomous robot employi...
This paper reports on the initial work to produce an artificial metabolic system for an energeticall...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
© 2015 IEEE. We present a design for an energetically autonomous artificial organism, combining two ...
Untethered actuation is important for robotic devices to achieve autonomous motion, which is typical...
Pumps are critical life-sustaining components for all animals. At the earliest stages of life, the t...
We present a design for an energetically autonomous artificial organism, combining two subsystems; a...
Medical soft robotics constitutes a rapidly developing field in the treatment of cardiovascular dise...
In recent years, hybrid devices that consist of a living cell or tissue component integrated with a ...
Blood pumps assist or take over the pump function of a failing heart. They are essentially activated...
While previous works on cell-based devices for integrated chemical systems have focused on exploitin...