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M.V. Belyakov
Candidate of Medical Sciences
Application of carbon-carbon implants for anterior spondylodesis in inflammatory disorders of the spine

Candidate of Medical Science dissertation
14.00.27, 14.00.22
Saint Petersburg, 2006

M.V. Belyakov, S.V. Burlakov, S.K. Gordeev et al.
Clinical application of carbon implants in radical reconstructive surgery in patients with spondylitis

Tuberculosis and Lung Disease, 2011
т.88 – No. 4 – p. 54

M.V. Belyakov, V.N. Guseva, S.K. Gordeev et al.
Use of multifunctional carbon implants in surgery for inflammatory disorders of the spine

Spine Surgery, 2010
No. 1, p. 57-61

D.Y. Borzunov, V.I. Shevtsov, M.V. Stogov et al.
Analysis of carbon nanostructured implant application in traumatology and orthopedics

Bulletin of Traumatology and Orthopedics named after N.N. Priorov, 2016
No. 2, p. 77-81

S.V. Burlakov
Candidate of Medical Sciences
Application of combined carbon and porous titanium nickelide implants in radical reconstructive surgery in patients with tuberculosis and vertebral osteomyelitis

Candidate of Medical Science dissertation
14.00.27, 14.00.22
Saint Petersburg, 2009

S.V. Burlakov, V.V. Oleynik, A.A. Vishnevsky et al.
Experimental validation and clinical application of bone-carbon implants and bone autotransplants for anterior spondylodesis in tuberculous spondylitis

Spine Surgery, 2012
No. 4, p. 58-66

D. Volodarsky
Bright carbon future

Medical Newspaper, 2014
No. 92, p. 12

A.E. Garbuz, V.N. Guseva, D.V. Yakimenko, E.N. Bellendir, A.Z. Nekachalova
Anterior spondylodesis with carbon-carbon implants in spinal diseases

Tuberculosis in the Northwestern region of Russia: contemporary problems
Collection of scientific papers of the Saint Petersburg State Research Institute of Phthisiopulmonology
Saint Petersburg, 2001, p. 98-102

S.K. Gordeev
Carbon nanocomposite materials with nanodiamond: preparation and properties

Superhard Materials, 2002
No. 6, p. 60-67

S.K. Gordeev, A.V. Grechinskaya, E.I. Terukov et al.
Implants based on carbon-carbon composites for elements of various regions of the spine

Abstracts of the All-Russian Symposium on Amorphous and Microcrystalline Semiconductors
Saint Petersburg, 1998, p. 150

S.K. Gordeev, E.I. Terukov, A.E. Garbuz
Implants based on carbon-carbon composites for elements of the spine

Abstracts of the first international seminar on the Results of Fundamental Research for Investments
Saint Petersburg, 25-27 May, 1998, p. 29

V.I. Zhuravlev, M.V.Belyakov, L.I. Archakova
Innovative technologies in diagnosis and treatment of tuberculous lesions

Medical Academic Journal, 2009
Vol. 9, No.4, p. 68-73

V.L. Skryabin, A.S. Denisov
Use of carbon nanostructured implants for the replacement of postresection defects in tumor and cystic bone lesions

Clinical recommendations
Perm, 2014

K.S. Sergeev, A.A. Grin
Use of carbon nanostructured implants for the replacement of posttraumatic defects in intraarticular fractures of the proximal tibia

Clinical recommendations
Tyumen, 2014

S.M. Kutepov, E.A. Volokitina, M.V. Gilev, Y.V. Antoniadi
The first clinical experience in the use of carbon nanostructured implants for the treatment of intraarticular impression fractures

Bulletin of Ural Medical Academic Science, 2015
No. 4, p. 46-50

M.V. Belyakov, V.N. Guseva
Carbon nanostructured implants in spine surgery: from experiment to clinical practice

Materials from the scientific practical conference on the Prospects of the Introduction of Carbon Nanostructured Implants into Clinical Practice
Saint Petersburg, 2013

S.V. Burlakov, V.V. Oleynik, A.A. Vishnevsky
Comparative analysis of the results of application of various materials for anterior spondylodesis in spondylitis

Materials from the scientific practical conference on the Prospects of the Introduction of Carbon Nanostructured Implants into Clinical Practice
Saint Petersburg, 2013

V.L. Skryabin
Replacement of bone defects with carbon nanostructured materials

Materials from the Congress of French-Speaking Orthopedists
Saint Petersburg, 19-23 May, 2014.

K.S. Sergeev
Interbody spondylodesis with the use of carbon nanostructured implants in spinal injuries

Clinical recommendations
Tyumen, 2014

A. Meshchersky
On the path of biological compatibility. On the prospects of the introduction of carbon nanostructured implants into clinical practice

Medical Newspaper, 2014
No. 2, p. 10

S.P. Mironov, V.I. Shevtsov, N.A. Kononovich et al.
Carbon nanostructured implants – an innovative product for traumatology and orthopedics. Part I: results of experimental studies

Bulletin of Traumatology and Orthopedics named after N.N. Priorov, 2015
No. 3, p. 46-53

V.I. Shevtsov, V.D. Shatokhin, S.Y. Pushkin
Supportive plastic surgery of bone defects with the use of nanostructured implants

Clinical recommendations
Samara, 2014

V.N. Guseva, M.V. Belyakov, A.Y. Mushkin et al.
Anterior spondylodesis with the use of carbon nanostructured implants

Clinical recommendations
Saint Petersburg, 2014

L.B. Reznik, I.V. Stasenko
Application of nanocarbon implants in the replacement of post-osteomyelitic long bone defects (experimental study)

The Genius of Orthopedics, 2015
No. 3, p. 95-96

V.I. Shevtsov, A.Y. Mushkin, K.S. Sergeev et al.
Carbon – new dimensions to its application in medicine. A doctor’s abstract

Medical Newspaper, 2014
No. 86, p. 7-10

Y. Chayun
Vsevolozhsk to get nanobones

Kommersant
Saint Petersburg, 16 September, 2014
No. 166, p. 15

N.A. Kononovich, V.I. Shevtsov, E.N. Gorbach, V.A. Medik, M.V. Stogov, D.Y. Borzunov, M.A. Stepanov
Experimental Study of Nanostructured Carbon Implantsfor Management of Circular Diaphyseal Long Bone Defects

iMedPub Journals, 2015
Vol. 1 No. 1:7

N.A. Kononovich, V.I. Shevtsov, E.N. Gorbach, V.A. Medik, M.V. Stogov, D.Y. Borzunov, M.A. Stepanov
Экспериментальное исследование использования углеродных наноструктурных имплантатов при замещении циркулярных диафизарных дефектов длинных костей

iMedPub Journals, 2015
Vol. 1 No. 1:7

S. Gordeev, S.Korchagina, V.Guseva, M.Belyakov, T.Vinogradova, A.Mushkin, G.Ostrovidova
Macro- and nanocarbon materials for medical applications

Abstracts of Saint-Petersburg Int. Workshop on nanobiotechnologies
27-29 Nov.2006, p.40-41

S.Gordeev
Nanoporous and nanofragmental carbon composite materials

G.Benedek et.al. (eds.) Nanostructured Carbon for Advanced Applications
Kluwer Academic Publishers, 2001, p.71-88

Snetkov A.I, Batrakov S.Yu., Frantov A.R., Balametov S.G.
SUBSTITUTION OF POSTRESECTION BONE DEFECTS WITH NANOSTRUCTURED CARBON IMPLANTS IN TUMORAL OR TUMOR-LIKE DIEASES OF THE SKELETON
L.B. Reznik, S.A. Erofeev, I.V. Stasenko, D.Yu. Borzunov
Morphological assessment of osteointegration of various implants for management of long bone defects (experimental study)
Reznik L.B., Dzyuba G.G., Erofeev S.A., Stasenko I.V.
The use of nanocarbon implants in the reconstruction of diaphyseal postosteomyelitic defects of long bones
D.A. Kolbovskiy, S.V. Kolesov, V.V. Shvets, V.V. Rerikh, A.A. Vishnevsky, I.V. Skorina, A.I. Kaz'min, N.S. Morozova, V.S. Pereverzev, M.A. Khit'
Osteoconductive properties of carbon fibre implants used in surgery of spine injuries and disorders (case report)
S.V. Kolesov, A.I. Kazmin, I.V. Skorina, V.V. Shvets, M.L. Sazhnev, A.A. Panteleev, V.S. Pereverzev, D.A. Kolbovski
Cage Subsidence after Surgery on the Anterior Part of the Subaxial Cervical Spine: a Monocentric Prospective Clinical Study with a 3-Year Follow-Up
S.V. Kolesov, D.A. Kolbovskiy, V.V. Shvets, V.V. Rerikh, A.V. Vishnevskiy, N.S. Morozova, I.V. Skorina, D.S. Gorbatyuk
Two-year results of spinal fracture treatment using carbon implants (Multicenter study)
Gavryushenko N.S., Batrakov S.Yu., Balametov S.G.
COMPARATIVE CHARACTERISTIC OF MECHANICAL STRENGTH PROPERTIES OF THE CARBON NANOSTRUCTURAL IMPLANT AND NATIVE BONE
S.G. Balametov, S.Yu. Batrakov, N.S. Gavryushenko
THE RESULTS OF THE APPLICATION OF THE CARBON NANOSTRUCTURED IMPLANT FOR TUMOROUS, TUMOR LIKE AND INFLAMMATORY SPINAL DISEASES IN PEDIATRIC BONE PATHOLOGY