Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in over 14 million deaths worldwide every year. The mechanism of thrombosis involves factors from the blood and the vessel wall, and it also relies strongly on 3D vessel geometry and local blood flow patterns. Microfluidic chip-based vascular models allow controlled in vitro studies of the interaction between vessel wall and blood in thrombosis, but until now, they could not fully recapitulate the 3D geometry and blood flow patterns of real-life healthy or diseased arteries. Here we present a method for fabricating microfluidic chips containing miniaturized vascular structures that closely mimic architectures found in both healthy and stenotic bloo...
Atherosclerosis is one of the most serious and common forms of cardiovascular disease and a major ca...
Coronary artery disease is among the fetal disease affecting most individuals across the globe. It o...
Tumor-on-chip devices are becoming ideal platforms to recreate in vitro the particular physiological...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Microfluidics is the perfusion of precise amounts of fluids across channels in the micrometer-scale....
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
Vascular diseases, such as atherosclerosis and thrombosis, are the leading cause of morbidity and mo...
Atherosclerosis is one of the most serious and common forms of cardiovascular disease and a major ca...
Coronary artery disease is among the fetal disease affecting most individuals across the globe. It o...
Tumor-on-chip devices are becoming ideal platforms to recreate in vitro the particular physiological...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in ove...
Microfluidics is the perfusion of precise amounts of fluids across channels in the micrometer-scale....
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
Vascular diseases, such as atherosclerosis and thrombosis, are the leading cause of morbidity and mo...
Atherosclerosis is one of the most serious and common forms of cardiovascular disease and a major ca...
Coronary artery disease is among the fetal disease affecting most individuals across the globe. It o...
Tumor-on-chip devices are becoming ideal platforms to recreate in vitro the particular physiological...