Планирование доклинических исследований на светлогорских мини-свиньях в имплантологии
Abstract
About the Authors
A. A. KulakovRussian Federation
V. A. Badalyan
Russian Federation
G. D. Kapanadze
Russian Federation
References
1. Ашуев Ж.А., Кулаков А.А., Капанадзе Г.Д. Использование мини-свиней в экспериментальной имплантологии // Биомедицина. 2007. №6. С. 81-88.
2. Капанадзе Г.Д. Использование миниатюрных свиней в биомедицинских экспериментах // Биомедицина. 2006. №2. С. 40-51.
3. Сарвилина И.В., Каркищенко В.Н., Горшкова Ю.В. Междисциплинар-
4. Aerssens J., Boonen S., Lowet G., Dequeker J. Interspecies differences in bone composition, density, and quality: potential implications for in vivo bone research // Endocrinology. 1998. Vol. 139. № 4. P. 663-670.
5. Block M.S., Gardiner D., Almerico B., Neal C. Loaded hydroxyapatite- coated implants and uncoated titanium-threaded implants in distracted dog alveolar ridges // Oral Surg. 2000. –Vol. 89. № 6. P. 676-685.
6. Gaggl A., Schultes G., Regauer S., Karcher H. Healing process after alveolar ridge distraction in sheep // Oral Surg. 2000. Vol. 90. № 4. P. 420 - 429.
7. Mosekilde L., Kragstrup J., Richards A. Compressive strength, ash weight, and volume of vertebral trabecular bone in experimental fluorosis in pigs // Calcif. Tissue Int. 1987. Vol. 40. P. 318-322.
8. Mosekilde L., Weisbrode S.E., Safron J.A., Stills H.F., Jankowsky M. L., Ebert D.C., Danielsen C.C., Sogaard C.H., Franks A.F., Stevens M.L., Paddock C.L., Boyce R.W. Calcium-restricted ovariectomized Sinclair S-1 minipigs: an animal model of osteopenia and trabecular plate perforation // Bone. 1993. Vol. 14. P. 379-382.
9. Newman E., Turner A.S., Wark J.D. The potential of sheep for the study of osteopenia: current status and comparison with other animal models // Bone. 1995. Vol. 16. Р. 277S-284S.
10. Oda T., Sawaki Y., Ueda M. Experimental alveolar ridge augmentation by distraction osteogenesis using a simple device that permits secondary implant placement // Int J. Oral Maxillofac. Implants. 2000. Vol. 15. P. 95-102.
11. Osaka Y., Kitano S., Wada K., Komori T. Endosseous implants in horizontal
12. Tumbleson M.E., Schook L.B. Advances in swine biomedical research. New York, 1996. С. 1-19.
13. Voigt J., Borysiewicz L. Uniting research into human and animal health // Vet. Rec. 2010. Vol. 166. № 13. Р. 406-407.
14. Wang X., Mabrey J.D., Agrawal C.M. An interspecies comparison of bone fracture properties // Biomed. Mater. Eng. 1993. Vol. 8. P. 1-9.
15. Wikesjo U.M., Selvig K.A., Zimmerman G., Nilveus R. Periodontal repair in dogs: healing in experimentally created chronic periodontal defects // J. Periodontal. 1991. Vol. 62. P. 258-263.
16. Wikesjo U.M., Sigurdsson T.J., Lee M.B., Tatakis D.N., Selvig K.A. Dynamics of wound healing in periodontal regenerative theraphy // J. Calif. Dent. Assoc. 1995. Vol. 23. P. 30-35.
17. Pearce A.I., Richards R., Milz S., Schneider E. Аnimal models for implant biomaterial research in bone // Europ. Cells and Materials. 2007. Vol. 13. P. 1-10.
18. Pellegrini G., Seol Y.G., GruberR., Giannobili W.V. Pre-clinical models for oral and periodontal reconstructive therapies // J. Dent. Res. 2009. Vol. 88. P. 1065-1076.
19. Raab D.M., Crenshaw T.D., Kimmel D.B., Smith E.L. A histomorphometric study of cortical bone activity during increased weight-bearing exercise // J. Bone Miner. Res. 1991. Vol. 6. № 4. P. 741-749.
20. Schimandle J.H., Boden S.D. Spine update. The use of animal models to study spinal fusion // Spine. 1994. Vol. 19. P. 1998-2006.
21. Swindle M.M., Smith A.C., Hepburn B.J. Swine as models in experimental surgery // J. Invest. Surg. 1988. №1 P. 65-79.
22. Thorwarth M., Schultze-Mosgau S., Kessler P., Wiltfang J., Schlegel K.A.
Review
For citations:
Kulakov A.A., Badalyan V.A., Kapanadze G.D. . Journal Biomed. 2012;1(3):18-24. (In Russ.)