Biocompatibility and Bioresorption of 3D-Printed Polylactide and Polyglycolide Tissue MembranesKim E.V.,
Petronyuk Y.S.,
Guseynov N.A.,
Tereshchuk S.V.,
Popov A.A.,
Volkov A.V.,
Gorshenev V.N.,
Olkhov A.A.,
Levin V.M.,
Dymnikov A.B.,
Rodionov V.E.,
Tumanyan G.A.,
Ivashkevich S.G.,
Bonartsev A.P.,
Borozdkin L.L. We studied biocompatibility and bioresorption of 3
D-printed polylactide and polyglycolide tissue
Plasma electrolyte produce 17-4PH powder for use in 3D MicroPrint technology of the processes of obtaining fine powders from steel 17-
4PH, for the purpose of their further application in 3
D Технологии 3D-печати создания персонализированных стелекФилатов, С. А.,
Долгих, М. Н.,
Пас Эстевес, Э. А.,
Филатова, О. С.,
Гавриленко, Н. А.,
Батырев, Е. В. additive 3
D-printing technologies. The use of additive approaches to the production of footwear allows us
Возможности применения технологии 3-D печати для пневматических узлов печатного оборудованияВ работе рассматривается применение 3
D-печати для модернизации и поддержания работоспособности
Applying 3D-printing technology in planning operations of cancer patients in the zygomatic bone. 3
D printing was performed at different peripheral devices using the method of layering
3D printing in the automotive industry3
D printing in the automotive industry