Zobrazeno 1 - 10
of 31
pro vyhledávání: '"G. I. Popov"'
Autor:
P. V. Popryadukhin, G. I. Popov, G. Yu. Yukina, I. P. Dobrovolskaya, E. M. Ivan’kova, V. N. Vavilov, V. E. Yudin
Publikováno v:
International Journal of Biomaterials, Vol 2017 (2017)
Tubular vascular grafts 1.1 mm in diameter based on poly(L-lactide) microfibers were obtained by electrospinning. X-ray diffraction and scanning electron microscopy data demonstrated that the samples treated at T=70°C for 1 h in the fixed state on a
Externí odkaz:
https://doaj.org/article/1bcad943fbb1440a811006e620bb33f6
Autor:
G. I. Popov, V. N. Vavilov, P. V. Popryadukhin, G. Yu. Yukina, E. G. Sukhorukova, A. A. Davydov, E. M. Ivankova, A. E. Kryukov, N. V. Smirnova, V. E. Yudin
Publikováno v:
Cell and Tissue Biology. 17:188-196
Autor:
N. N. Gurgenidze, G. I. Popov, A. A. Kutenkov, A. A. Trushin, A. N. Zayceva, A. N. Shvetsov, I. V. Kazantsev, A. A. Zakharenko
Publikováno v:
Russian Journal of Pediatric Hematology and Oncology. 9:53-63
Background. In some rare cases pediatric solid tumors may infiltrate or incase major vessels, which may require vascular plastics as part of radical tumor resection. As these situations are rare in pediatric surgeon practice, there is no common appro
Autor:
N. A. Mikhailova, V. B. Karpovich, Natalia M. Yudintceva, Maxim Shevtsov, Yu. A. Nashchekina, I. A. Samusenko, G. I. Popov
Publikováno v:
Cell and Tissue Biology. 15:577-585
Abstract Polycaprolactone (PCL) is widely applied for the construction of small-diameter tissue-engineered vascular grafts (TEGs) due to its biomechanical properties, slow degradation, and good biocompatibility. In the present study the TEG based on
Autor:
Vladimir E. Yudin, Elena M. Ivan’kova, G. Yu. Yukina, V. N. Vavilov, P. V. Popryadukhin, G. I. Popov, E. G. Sukhorukova
Publikováno v:
Cell and Tissue Biology. 14:294-301
Nonwoven tubular bioresorbable matrices with an inner diameter of 1.1 mm were obtained by electroforming from solutions of poly (L-lactide) (PLA). Matrices were implanted into the abdominal aorta of rats as a tissue-engineering vascular implant for a
Autor:
G. I. Popov, Vladimir E. Yudin, V. N. Vavilov, N. V. Smirnova, A. E. Kryukov, Yu. A. Naschekina, Elena M. Ivan’kova, P. V. Popryadukhin
Publikováno v:
Cell and Tissue Biology. 12:359-366
In modern cardiovascular surgery, there remains a problem associated with a lack of venous material for bypass operations. Great interest has emerged in developing small-diameter vascular grafts ensuring stable patency. One possible solution is the c
Autor:
G. Yu. Yukina, Yu. A. Nashchekina, V. N. Vavilov, P. V. Popryadukhin, Vladimir E. Yudin, G. I. Popov, N. V. Smirnova, Artem E. Kryukov, Elena M. Ivan’kova
Publikováno v:
Regional blood circulation and microcirculation. 17:61-68
Cell integration and cultivation on the matrix are the key processes in the development of a tissue-engineered vascular implant (TEVI) based on a biodegradable polymer scaffold. The aim of this researh is to identify the optimal method of mesenchymal
Autor:
V. N. Vavilov, N. V. Smirnova, G. I. Popov, Artem E. Kryukov, Elena M. Ivan’kova, Yu. A. Naschekina, Vladimir E. Yudin, P. V. Popryadukhin
Publikováno v:
Tsitologiya. :279-286
Autor:
G. I. Popov, Elena M. Ivan’kova, Galina Yukina, Vladimir E. Yudin, V. N. Vavilov, P. V. Popryadukhin
Publikováno v:
European Journal of Vascular and Endovascular Surgery. 58:e448-e449
Publikováno v:
European Journal of Vascular and Endovascular Surgery. 58:e190-e191