\u3cp\u3ePurpose: Cardiac research and development of therapies and devices is being done with in silico models, using computer simulations, in vitro models, for example using pulse duplicators or in vivo models using animal models. These platforms, however, still show essential gaps in the study of comprehensive cardiac mechanics, hemodynamics, and device interaction. The PhysioHeart platform was developed to overcome these gaps by the ability to study cardiac hemodynamic functioning and device interaction ex vivo under in vivo conditions. Methods: Slaughterhouse pig hearts (420 ± 30 g) were used for their morphological and physiological similarities to human hearts. Hearts were arrested, isolated and transported similar to transplantation...
Comprehensive testing and evaluation of cardiovascular device function and performance is required p...
The purpose of this paper is to describe an isolated heart model that uses human hearts to study car...
Static heart phantom cannot provide a realistic human heart's information under movement state a...
Cardiac research and development of therapies and devices is being done with in silico models, using...
Purpose: Cardiac research and development of therapies and devices is being done with in silico mode...
Cardiovascular treatments have become complex and require often detailed biological expertise, while...
Integration of biological samples into in vitro mock loops is fundamental to simulate real device's ...
Ex vivo heart perfusion systems, allowing continuous perfusion of the coronary vasculature, have rec...
\u3cp\u3eBACKGROUND: The PhysioHeart™ is a mature acute platform, based isolated slaughterhouse hear...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Advances in direct mechanical ventricular actuation devices have been limited by the inability to te...
The complex motion of the beating heart is accomplished by the spatial arrangement of contracting ca...
: Ex situ heart perfusion (ESHP) has proven to be an important and valuable step toward better prese...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Comprehensive testing and evaluation of cardiovascular device function and performance is required p...
The purpose of this paper is to describe an isolated heart model that uses human hearts to study car...
Static heart phantom cannot provide a realistic human heart's information under movement state a...
Cardiac research and development of therapies and devices is being done with in silico models, using...
Purpose: Cardiac research and development of therapies and devices is being done with in silico mode...
Cardiovascular treatments have become complex and require often detailed biological expertise, while...
Integration of biological samples into in vitro mock loops is fundamental to simulate real device's ...
Ex vivo heart perfusion systems, allowing continuous perfusion of the coronary vasculature, have rec...
\u3cp\u3eBACKGROUND: The PhysioHeart™ is a mature acute platform, based isolated slaughterhouse hear...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Advances in direct mechanical ventricular actuation devices have been limited by the inability to te...
The complex motion of the beating heart is accomplished by the spatial arrangement of contracting ca...
: Ex situ heart perfusion (ESHP) has proven to be an important and valuable step toward better prese...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Comprehensive testing and evaluation of cardiovascular device function and performance is required p...
The purpose of this paper is to describe an isolated heart model that uses human hearts to study car...
Static heart phantom cannot provide a realistic human heart's information under movement state a...