Bioprinted optoelectronically active cardiac tissues
Optoelectronically active scaffolds modulate the beating of cardiac tissues while offering tissue regeneration capabilities.
Optoelectronically active scaffolds modulate the beating of cardiac tissues while offering tissue regeneration capabilities.
The deal includes an additional $5 million that could be paid to Catapult based on its performance after the sale.
Hyperelasticity allows simple soft joints to embody an energy-storage release through transient bistability under compression.
Exquisite, fossilized skull sheds light on the evolutionary origins of waterfowl
University of Toronto researchers have invented a method that uses DNA sequencing to measure metabolites. This enables rapid and precise analysis of biological compounds that…
GC Wealth is aimed at founders and entrepreneurs within GC Famiglia’s global community of entrepreneurs and CEOs connected to General Catalyst.
Vijay Pande, PhD, founding investor of Andreessen Horowitz’s Bio + Health fund and a general partner with the tech venture capital firm , discusses how…
Long-overlooked insect architecture could cause forest fires to release more carbon
Lung cancer is still the leading cause of cancer incidence and mortality worldwide, with about 2.5 million people diagnosed with the disease in 2022 alone.…
ONLINE COVER The Bacteria Behind Lung Rejection. The cover illustration shows two transplanted lungs, one healthy and tolerated by the recipient (left), the other infected…
Listen to further insights from Shift Health CEO Lance Rodela applied to Healthcare needs.LinkedIn Newsletter – https://www.linkedin.com/newsletters/72504975…