Zobrazeno 1 - 5
of 5
pro vyhledávání: '"M. S. Bozhokin"'
Autor:
M. S. Bozhokin, D. M. Marchenko, E. R. Mikhailova, A. P. Antipov, Yu. A. Nashchekina, D. B. Vcherashnij, S. V. Novoseltsev, V. N. Kruglov
Publikováno v:
Вестник медицинского института «Реавиз»: Реабилитация, врач и здоровье, Vol 12, Iss 2, Pp 14-21 (2022)
The hyaline cartilage damage problem is actual, but existing recovery methods are not fully sufficient. A promising solution of this problem can be the implantation of a tissue-engineered structure (TEC), consisting of a cell culture and a biodegrada
Externí odkaz:
https://doaj.org/article/e46063d5bf784fab95202a6b7f681173
Publikováno v:
Travmatologiâ i Ortopediâ Rossii, Vol 22, Iss 3, Pp 122-134 (2016)
Despite a wide variety of surgical procedures utilized in clinical practice for treatment of articular cartilage lesions, the search for other options of articular reconstruction remains a relevant and open issue at the current stage of medicine and
Externí odkaz:
https://doaj.org/article/05882fc8a143484c85458d5716bddc8d
Autor:
M. S. Bozhokin, D B Vcherashnii, Sergey Yastrebov, Ju V Zherebtsova, L L Beilinson, M. G. Khotin
Publikováno v:
Lasers in Medical Science. 37:435-441
The high incidence of cartilage destructions, as well as the social and economic importance of this pathology attracted great interest to the problem. At the present time, some data are available about the 632.8 nm low-intensity laser photobiomodulat
Publikováno v:
Technical Physics. 65:1521-1523
Elevated expression of the col2a1 gene responsible for synthesis of type II collagen, a major extracellular matrix protein of hyaline cartilage, was observed in multipotent stem cells of rat bone marrow exposed to low-power laser radiation with a wav
Autor:
M S, Bozhokin, D B, Vcherashnii, S G, Yastrebov, L L, Beilinson, Ju V, Zherebtsova, M G, Khotin
Publikováno v:
Lasers in medical science. 37(1)
The high incidence of cartilage destructions, as well as the social and economic importance of this pathology attracted great interest to the problem. At the present time, some data are available about the 632.8 nm low-intensity laser photobiomodulat