February 27, 2020
Robotic Heart symbolic image

“Hybrid” Robotic Heart will get rid of organ transplant problem

There is a lot in the field of science that is transforming this century into a century of human welfare. Scientists are constantly exposing new technologies, through which radical changes are coming in the field of medicine. It is believed that after the robotic heart, organ transplant will be relieved.

Project is worth billions
The device is one of four projects selected for the award of thirty million pounds for changing the treatment of heart disease. The team of best researchers associated with the cardiovascular system includes experts from Oxford, Imperial College London, Harvard and Sheffield, along with many other leading researchers in the world.

Visible signs of radical change
Projects selected along with robotic hearts include vaccines for heart disease, genetic treatment for heart defects, and the best next-generation ‘wearable’ technology for pre-existing heart attacks and strokes Can address This technique will bring radical changes in many ways.

BHF’s biggest investment
The British Heart Foundation (BHF) is funding the 30 million pound ‘Big Beat Challenge’. It had received 75 applications from teams from 40 countries. Four finalists have been given 50 thousand pounds as an initial amount to give their views in the next six months. One of these will be shortlisted for the main award in the summer. It is the single largest investment in advancing science in BHF’s 60-year history.

Get rid of organ transplant in 8 years
Scientists believe that this robotic heart will get rid of the problem of organ transplant in eight years after exposure. Experts from the Netherlands, Cambridge and London are developing a ‘soft robot’ heart that will routinely monitor blood attacks close to the body. Their goal is to transplant its working sample into animals in three years and then to humans by 2028.

Hybrid Heart Project
The ‘Hybrid Heart’ project led by the University of Amsterdam uses synthetic robotic materials. It replicates the contraction of the heart in association with layers of lab-made human cells to ensure the device is approved by the body’s immune system. It is powered by a wireless battery. It can save hundreds of lives. Scientists hope it will replace heart transplant.

This is how the team is working
Teams led by Oxford and Harvard are working on developing a way to correct genetic heart defects. Cambridge and the Wellcome Sanger are involved in mapping the institute’s cells to determine the cause of heart attacks and strokes. New ‘wearable’ technology is being produced under the leadership of Catholic University and the University of Sheffield in Belgium.

Artificial tissue
Soft, but strong synthetic layer that mimics the heart muscle. It pumps blood by shrinking and leaving.

Outer layer
It is made from the patient’s cells and assures that the immune system will accept the patient’s robotic heart.

Organic layer
It receives specific blood cells, which will gradually give shape to new tissues.

Wireless charging

Wireless charging can be done with a device in a body vest or jacket. It can work for up to an hour when taking off the jacket or vest.

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