A monocyte-based in-vitro system for testing individual responses to the implanted material: future for personalized implant construction; EPMA Journal; Vol. 7
| Parent link: | EPMA Journal Vol. 7.— 2016.— [ A45 , 22 p.] |
|---|---|
| مؤلف مشترك: | Национальный исследовательский Томский политехнический университет Институт физики высоких технологий Кафедра биотехнологии и органической химии |
| مؤلفون آخرون: | Kzhyshkowska Ju. Julia, Gudima A. Aleksandru, Stankevich K. S. Ksenia Sergeevna, Filimonov V. D. Viktor Dmitrievich, Kluter H. Haralg, Mamontova E. M. Evgeniya Mikhaylovna, Tverdokhlebov S. I. Sergei Ivanovich |
| الملخص: | Title screen Режим доступа: по договору с организацией-держателем ресурса |
| اللغة: | الإنجليزية |
| منشور في: |
2016
|
| الموضوعات: | |
| الوصول للمادة أونلاين: | https://link.springer.com/content/pdf/10.1186/s13167-016-0054-6.pdf#page=22 |
| التنسيق: | الكتروني فصل الكتاب |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=667369 |
مواد مشابهة
Модификация макрофагов и моноцитов человека магнитными наночастицами in vitro для доставки, опосредованной клетками; Бюллетень сибирской медицины; Т. 19, № 4
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Bioactive Surface Engineering of Composite Titanium Implants; Inorganic Materials; Vol. 57, iss. 9
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The Influence of High-Energy Krypton Ion Implantation Temperature on Structure and Properties of Ni–Ti Alloy; Russian Physics Journal; Vol. 61, iss. 11
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Temperature Gradients in the Targets During High-Intensity Implantation in Forced Cooling; Energy Fluxes and Radiation Effects (EFRE-2020 online)
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Microstructure of titanium alloy modified by high-intensity implantation of low- and high-energy aluminium ions; Surface and Coatings Technology; Vol. 391
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Repetitively-pulsed nitrogen implantation in titanium by a high-power density ion beam; Energy Fluxes and Radiation Effects (EFRE); International Conference on Modification of Materials with Particle Beams and Plasma Flows (16th CMM)
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Phase and elemental composition of silicon-containing hydroxyapatite-based coatings fabricated by RF-magnetron sputtering for medical implants; Inorganic Materials: Applied Research; Vol. 4, iss. 3
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منشور في: (2013)
Investigation of Regularities of High-Intensity Ion Implantation in Combination with Subsequent Exposure to the Surface of a High-Current Electron Beam; Energy Fluxes and Radiation Effects (EFRE-2020 online)
منشور في: (2020)
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High-Intensity Implantation With an Ion Beam's Energy Impact on Materials; IEEE Transactions on Plasma Science; Vol. 49, iss. 9
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منشور في: (2021)
حسب: Ryabchikov A. I. Aleksandr Ilyich
منشور في: (2021)
Surface modification of Al by high-intensity low-energy Ti-ion implantation: Microstructure, mechanical and tribological properties; Surface and Coatings Technology; Vol. 372
منشور في: (2019)
منشور في: (2019)
Low energy, high intensity metal ion implantation method for deep dopant containing layer formation; Surface and Coatings Technology; Vol. 355
منشور في: (2018)
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Beyond Tissue replacement: The Emerging role of smart implants in healthcare; Materials Today Bio; Vol. 22
منشور في: (2023)
منشور في: (2023)
Special Aspects of High-Intensity Low-Energy Ion Implantation; Russian Physics Journal; Vol. 63, iss. 10
منشور في: (2021)
منشور في: (2021)
Study of the synergy effect of high-intensity aluminum ions implantation into titanium and energy impact on the surface; Materials. Technologies. Design; Т. 5, № 3 (13)
منشور في: (2023)
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منشور في: (2015)
منشور في: (2015)
Polylactic Acid Properties after Steam Sterilization and Possibility of Its Using as a Corneal Implant; AIP Conference Proceedings; Vol. 2167 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2019 (AMHS'19)
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Hydrogen-Permeability of Titanium-Nitride (TiN) Coatings Obtained via the Plasma-Immersion Ion Implantation of Titanium and TiN Vacuum-Arc Deposition on Zr-1%Nb Alloy; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 12, iss. 4
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A review of plasma-assisted methods for calcium phosphate-based coatings fabrication; Surface and Coatings Technology; Vol. 206, iss. 8-9
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حسب: Surmenev R. A. Roman Anatolievich
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Low-energy high-current plasma immersion implantation of nitrogen ions in plasma of non-self-sustained arc discharge with thermionic and hollow cathodes; Surface and Coatings Technology; Vol. 340
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Self-Aligned Multilayer Dielectric “DummyGate” Technology for L–, S– and X–Band GaAsMMICs Fabrication; Micro/Nanosystems Technologies, MNST'2010
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منشور في: (2010)
مواد مشابهة
-
Модификация макрофагов и моноцитов человека магнитными наночастицами in vitro для доставки, опосредованной клетками; Бюллетень сибирской медицины; Т. 19, № 4
منشور في: (2020) -
Inhibitory effect of IQ-1S, a selective c-Jun N-terminal kinase (JNK) inhibitor, on phenotypical and cytokine-producing characteristics in human macrophages and T-cells; European Journal of Pharmacology; Vol. 878
منشور في: (2020) -
Pyridazinones and Structurally Related Derivatives with Anti-Inflammatory Activity; Molecules; Vol. 27, iss. 12
منشور في: (2022) -
High Intensity low Aluminum Ion Energy Implantation into Titanium; Ion Implantation Technology (IIT 2018)
منشور في: (2018) -
Evaluation of human macrophage functional state by voltammetric monitoring of nitrite ions; Analytical and Bioanalytical Chemistry; Vol. 412
منشور في: (2019)