Examples of using Tissue engineering in English and their translations into Hebrew
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The World Congress on Tissue Engineering.
Tissue engineering is a branch of science that might also help patients who are waiting for a transplant.
Medical Imaging Tissue Engineering Design.
The Guy Hilton Research Centre the MSc in Cell and Tissue Engineering.
Nina Tandon: Could tissue engineering mean personalized medicine?
Another scientist, Mark Post at Maastricht University in the Netherlands,is also using tissue engineering to produce meat in a lab.
Tissue engineering uses special methods and materials to try to grow livers in the lab.
It also could potentially improve tissue engineering approaches for translational medicine.".
EBs are used in a wide range of 2-D and3-D cellular-based disease models for drug screening/testing, tissue engineering and personalized medicine.
Research on tissue engineering for increasing growth and maturing of primordial ovarian follicles.
These devices are increasinglyattractive in the biomedical fields of drug delivery, tissue engineering, gene carriers and smart sensors1,2.
Such systems bear vast potential in the tissue engineering discipline, in production of artificial organs and in studying the origins of life.
Taking into consideration that knowledge, and the fact that liver donors are scarce,another strategy of the tissue engineering is to“recycle” the whole liver or a small part.
So we use tissue engineering with blood cells to immunize outside the body and study the effect of the vaccine against, for example, infants or elderly individuals or others.
The second paper was published in the journal Tissue Engineering, together with postdoc Dr. Martha Alvarez-Elizondo.
Among her roles, she served as the CEO of a start-up company engaged in proof of concept of tissue banking andtissue culture for tissue engineering. In addition, Dr.
But that's not even all of it,because once a drug is approved, tissue engineering techniques can actually help us develop more personalized treatments.
Newcastle University tissue engineering professor Che Connon, who led the work explained,"Many teams across the world have been chasing the ideal bio-ink to make this process feasible.
But that's not even all of it,because once a drug is approved, tissue engineering techniques can actually help us develop more personalized treatments.
As described in a recent issue of Nature Biotechnology, the pairing-up method may be applied to the mapping of other cell types in the body,and in the future it may facilitate tissue engineering and the development of new therapies.
Leading researcher of the study and tissue engineering professor, Che Connon from the Newcastle University said in a statement that,“Many teams across the world have been chasing the ideal bio-ink to make this process feasible.
Thus, PDCs cultured under osteogenicconditions might be useful for bone tissue engineering and offer the advantage of higher cellular proliferation.
By combining tissue engineering techniques with microfluidics, the field is actually evolving towards just that, a model of the entire ecosystem of the body, complete with multiple organ systems to be able to test how a drug you might take for your blood pressure might affect your liver or an antidepressant might affect your heart.
However, many of the available devices are either designed as a bioreactor for tissue engineering applications or are not conducive to real time imaging with stretch.
Dr. Makover has more than 20 years of experience in various fields of biotech and medical devices including drug development,diagnostics, tissue engineering, as well as venture capital investments.
And so thinking about the models that we have just discussed, you can see,going forward, that tissue engineering is actually poised to help revolutionize drug screening at every single step of the path: disease models making for better drug formulations, massively parallel human tissue models helping to revolutionize lab testing, reduce animal testing and human testing in clinical trials, and individualized therapies that disrupt what we even consider to be a market at all.
In the last decade there's been an explosion of use of bone marrow stem cells to treat the patient's other diseases such as heart disease, vascular disease,orthopedics, tissue engineering, even in neurology to treat Parkinson's and diabetes.
The global biomaterials market is one of the largest and most significant markets, receiving widespread recognition amongst numerous companies and entities,largely due to the rapidly developing field of tissue engineering and the demand for materials for medical applications.
Furthermore, the fact that different types of cells(such as heart cells) that are unique to each patient can be created may pave the way forfuture use of these cells in the developing field of tissue engineering and cell transplant for the treatment of a range of diseases(e.g., congestive heart failure).
So not only do we do the veggie house, we also do the in-vitro meat habitat, or homes that we're doing research on now in Brooklyn, where, as an architecture office, we're for the first of its kind to put in a molecular cell biology lab andstart experimenting with regenerative medicine and tissue engineering and start thinking about what the future would be if architecture and biology became one.