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About the size of a big cherry, the first-of-its-kind 3D printed heart has cells, blood vessels, ventricles and chambers. This feat is the work of Prof. Tal Dvir and his team at Tel Aviv University. They managed to engineer such miniature organs using cells and biological materials that are originated from human patients. Besides the remarkable technical achievement, this breakthrough could potentially be the answer to the shortage of organ donors in the future.
Prof. Gregoire Courtine believes paralysed patients will be able to walk again. This belief has represented the focus of years of work aimed at regenerating the functions of the spinal cord after injury. Thanks to his ERC funding in both 2010 and 2015, Prof. Courtine and his team have been able to develop so-called “personalised neuroprosthetics” that have led immobile rats, and more recently monkeys, to overcome their paralysis.
As Europe continues to confront the consequences of the 2008 financial crisis it becomes ever-more important to fathom not only how Europe can return to productive levels of employment, but why it is failing to do so. Professor Pissarides’s ERC research examines both what kind of jobs Europeans do and future trends in employment. He will present his research to the public at TEDx Brussels event on 1 December.
If Darwin could have scuba dived, he would have enjoyed the East African lakes: Victoria, Malawi and Tanganyika. Here live the cichlids – a colourful fish which has evolved rapidly into thousands of species, emulating and surpassing Darwin's finches in the Galapagos. Prof. Walter Salzburger, an Austrian researcher, is using his ERC grants to study the diversity of cichlids from ecological, morphological and genetic viewpoints. He believes these unique fish provide an ideal model system to understand the "how" and the "why" in questions of evolutionary biology: questions that relate to all life on earth.
By combining computer science and molecular biology, researchers have been able to work on a programmable biological computer that in the future may navigate within the human body, diagnosing diseases and administering treatments. This is what Professor Ehud Shapiro and his team have called a ‘Doctor in a cell’.