Respiratory diseases are a challenging problem to treat. Inhalable medicines are a promising solution that depends on the ability to deliver tiny particles known as aerosols to the correct location in ...
UBC Okanagan researchers have developed a 3D bio-printed model that closely mimics the complexity of natural lung tissue, an innovation that could transform how scientists study lung disease and ...
Respiratory diseases are a challenging problem to treat. Inhalable medicines are a promising solution that depend on the ability to deliver tiny particles known as aerosols to the correct location in ...
Respiratory diseases are a challenging problem to treat. Inhalable medicines are a promising solution that depend on the ability to deliver tiny particles known as aerosols to the correct location in ...
A method has been reported by researchers from Tsinghua University in China, which enables the efficient and high-throughput production of lung cancer assembloids. These assembloids are ...
Biological assailants like fungi, bacteria, and viruses continuously test natural defenses that have evolved over millennia. Newer and stranger particles that originate from burning fuels, harmful ...
What organ has the surface area of a tennis court, expands and contracts 17,000 times every day, and contains passageways that range from centimeter-sized tubes to vessels that are narrower than the ...
University of Delaware Assistant Professor Catherine Fromen and current graduate student Dominic Hoffman work with an adaptable lung model that can replicate realistic breathing maneuvers and offer ...
Dr. Emmanuel Osei has developed a way to 3D print tissue that resembles a living lung. This work could change how lung disease is studied and improve health options for those living with the illness.