1. Bagratashvili, V.N., Krasnov, A.P., & Houdl S.M. (2007). Sintez novykh mineralpolimernykh kompozitsiy dlya implantologii i tkanevoy inzhenerii [Synthesis of new mineralpolymer composites for implantology and tissue engineering]. Moscow: Collection ILIT RAS [in Russian].
2. Bezrukov, V.M., & Hryhoryan, A.S. (1996). Gidroksyapatit kak substrat dlya kostnoy plastiki: teoreticheskiye i prakticheskiye aspekty problem [Hydroxyapatite as a substrate for bone plastics: theoretical and practical aspects of the problem]. Stomatologiya – Stomatology, 5 (75), 7-12 [in Russian].
3. Zaslavskyy, S.A., Svyryn, V.V., & Zaslavskyy, R.S. (2005). Ratsyonalnaya profilaktika postekstraktsyonnoy atrofii kostnoy tkani alveolyarnogo otrostka s primenenyem Cerasorb [Rational prevention of post-extraction bone marrow atrophy of the alveolar process using Cerasorb]. Stomatologiya – Stomatology, 4, 46-49 [in Russian].
4. Kulakov, A.S., & Grygoryan, L.S., & Krotova, A.I. (2009). Protsessy regeneratsii v kostnykh defektakh pri implantatsii v nikh kompozytsyonnogo materiala razlichnoy plotnosti na osnove polilaktida, napolnennogo gidroksiapatitom [Regeneration processes in bone defects during implantation of a composite material of different density based on polylactide filled with hydroxyapatite]. Stomatologiya – Stomatology, 1, 17-23 [in Russian].
5. Modina, T.N., Zaslavskiy, S.A., Bronshtein, D.A., & Zaslavskiy, R.S. (2005). Sravnitelnyy analiz vozmozhnostey neorganicheskogo osteozameshchayushchego materiala (IVV) i trykaltsyy-fosfata po rezultatam eksperementalno-morfologicheskogo issledovaniya [Comparative analysis of the possibilities of inorganic osteo-substituting material (ІВВ) and tricalcium phosphate according to the results of an experimental morphological study]. Moscow [in Russian].