It allows you to accelerate the healing

Their unique property is the ability to produce a small electrical. Charge as a result of mechanical deformation or load of bone fractures. The essence of the process is that the electric charge affects bone cells, primarily osteoblasts and osteoclasts, bacteria. That is, they can provide antibacterial properties to the surface. This charge is generat under the influence of. Aload on a piezoelectric element embd in a bone defect. Polyhydroxyalkanoates. A class of biodegradable polymers that TPU scientists work with, are piezoelectric. But this is not the limit for modern science. Sergei Tverdokhlebov, Associate Professor of the Scientific and ucational Center B P Weinberg.

Which are involv in healing and repel

Today there is a trend of moving into the field of sensitive Cambodia Phone Number List autonomous smart materials. They are able to independently adjust their properties and provide a therapeutic effect in response to changes in the environment or biological processes. To do this, a sensor is introduc into the porous structure of the implant, which controls the state of the body using an internal or external interface. Pricting the possible consequences, he gives a command, and the drugs or micinal substances necessary to stabilize the situation are releas from the implant. In particular, our research group is currently developing a multifunctional hybrid chip as part of Priority 2030.

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Additive technologies are three-dimensional

Application of additive technologies They allow you to BT Lists get a product of any shape, geometry and size according to a computer model. or three-dimensional printing. A 3D printer creates a three-dimensional object layer by layer, a real copy of a computer model. In this case, a variety of materials can be us, not an exception – titanium, traditional for creating bone implants, its alloys with aluminum, vanadium, niobium, zirconium, as well as polymers and composites. Total digitalization and personalization Innovative materials and technologies make it possible to produce implants directly for each individual patient, taking into account his anatomy, genetics, age, and gender characteristics.

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