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Table representation of search results timeline featuring number of search results per year.
Year | Number of Results |
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2019 | 1 |
2022 | 1 |
2023 | 1 |
2024 | 0 |
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3D-Printed composite scaffolds based on poly(ε-caprolactone) filled with poly(glutamic acid)-modified cellulose nanocrystals for improved bone tissue regeneration.
J Biomed Mater Res B Appl Biomater. 2022 Nov;110(11):2422-2437. doi: 10.1002/jbm.b.35100. Epub 2022 May 26.
J Biomed Mater Res B Appl Biomater. 2022.
PMID: 35618683
Comparison of Autografts and Biodegradable 3D-Printed Composite Scaffolds with Osteoconductive Properties for Tissue Regeneration in Bone Tuberculosis.
Vinogradova TI, Serdobintsev MS, Korzhikova-Vlakh EG, Korzhikov-Vlakh VA, Kaftyrev AS, Blum NM, Semenova NY, Esmedlyaeva DS, Dyakova ME, Nashchekina YA, Dogonadze MZ, Zabolotnykh NV, Yablonsky PK.
Vinogradova TI, et al. Among authors: serdobintsev ms.
Biomedicines. 2023 Aug 8;11(8):2229. doi: 10.3390/biomedicines11082229.
Biomedicines. 2023.
PMID: 37626725
Free PMC article.
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PGlu-Modified Nanocrystalline Cellulose Improves Mechanical Properties, Biocompatibility, and Mineralization of Polyester-Based Composites.
Stepanova M, Averianov I, Serdobintsev M, Gofman I, Blum N, Semenova N, Nashchekina Y, Vinogradova T, Korzhikov-Vlakh V, Karttunen M, Korzhikova-Vlakh E.
Stepanova M, et al. Among authors: serdobintsev m.
Materials (Basel). 2019 Oct 21;12(20):3435. doi: 10.3390/ma12203435.
Materials (Basel). 2019.
PMID: 31640122
Free PMC article.
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