Acta Vet. Brno 2010, 79: 613-620
https://doi.org/10.2754/avb201079040613
Comparison of the Resistance to Bending Forces of the 4.5 LCP Plate-rod Construct and of 4.5 LCP Alone Applied to Segmental Femoral Defects in Miniature Pigs
References
1. 2009: Mesenchymal stem cells in bone tissue regeneration and application to bone healing. Acta Vet Brno 78: 635-645
< M, Nečas A, Srnec R, Janovec J, Stehlík L, Raušer P, Urbanová L, Plánka L, Jančář J, Amler J https://doi.org/10.2754/avb200978040635>
2. 2003: Guidelines for the clinical application of the LCP. Injury 34: S-B63-S-B76
< E, Sommer C https://doi.org/10.1016/j.injury.2003.09.026>
3. 2000: Effect of intramedullary pin size on reducing bone plate strain. Vet Comp Orthop Traumatol 13: 185-190
< D, Ferry K, Fawcett A, Gentry D, Hyman W, Geller S, Slater M https://doi.org/10.1055/s-0038-1632663>
4. 1997: Reduction in plate strain by addition of an intramedullary pin. Vet Surg 26: 451-459
< D, Hyman W, Nori M, Slater M https://doi.org/10.1111/j.1532-950X.1997.tb00516.x>
5. Hulse D, Kerwin S, Mertens D 2005: Fractures of the femoral diaphysis in AO principles of fracture management in the dog and cat. AO Publishing, Switzerland, pp. 287-295
6. 2007: Mechanical response of porous scaffolds for cartilage engineering. Physiol Res 56: S17-S25
J, Slovíková A, Amler E, Krupa P, Kecová H, Plánka L, Gál P, Nečas A
7. 2009: Stability of collagen scaffold implants for animals with iatrogenic articular cartilage defects. Acta Vet Brno 78: 643-648
< J, Vojtová L, Nečas A, Srnec R, Urbanová L, Crha M https://doi.org/10.2754/avb200978040643>
8. Koch D 2005: Screws and plates. In: AO principles of fracture management in the dog and cat. AO Publishing, Switzerland, pp. 26-50
9. 2007: Biochemical and biophysical aspects of collagen nanostructure in the extracellular matrix. Physiol Res 56: S51-S60
L, Bakešová J, Varga F, Košťáková E, Plánka L, Nečas A, Lukáš D, Amler E, Pelouch V
10. 2007: Use of 3D geometry modelling of osteochondrosis-like iatrogenic lesions as a template for press-and-fit scaffold seeded with mesenchymal stem cells. Physiol Res 56: S107-S114
P, Kršek P, Javorník M, Dostál O, Srnec R, Usvald D, Proks P, Kecová H, Amler E, Jančář J, Gál P, Plánka L, Nečas A
11. 2007: Current concepts: aseptic nonunion of femoral shaft diaphysis. Eur J Trauma Emerg Surg 2: 120-134
< E, Panagopoulos A, Zouboulis P, Sourgiadaki E https://doi.org/10.1007/s00068-007-6195-5>
12. 2008: Ultrasonic shock-wave as a control mechanism for liposome drug delivery system for possible use in scaffold implanted to animals with iatrogenic articular cartilage defects. Acta Vet Brno 77: 285-296
< A, Tománková K, Kolářová H, Bajgar R, Kolář P, Šunka P, Plencner M, Jakubová R, Beneš J, Koláčná L, Plánka L, Nečas A, Amler E https://doi.org/10.2754/avb200877020285>
13. 2008: Biomaterials and stem cells in the treatment of articular cartilage, meniscal, physeal, bone, ligamentous and tendineous defects. Acta Vet Brno 77: 277-284
< A, Plánka L, Srnec R, Raušer P, Urbanová L, Lorenzová J, Crha M, Jančář J, Gál P https://doi.org/10.2754/avb200877020277>
14. 2010a: Radiographic assessment of implant failures of titanium 3.5 LCP vs. 4.5 LCP used for flexible bridging osteosynthesis of large segmental femoral diaphyseal defects in a miniature pig model. Acta Vet Brno 79: 599-606
< A, Proks P, Urbanová L, Srnec R, Stehlík L, Crha M, Raušer P, Plánka L, Amler E, Vojtová L, Jančář J https://doi.org/10.2754/avb201079040599>
15. Nečas A, Proks P, Srnec R, Stehlík L, Urbanová L, Crha M, Raušer P, Janovec J, Dvořák M 2009: Současné trendy v chirurgické léčbě segmentálních fraktur (MIPO, LCP, biomateriály). In Zborník príspevkov z odbornej konferencie „Škola, veda, prax II.“, Košice, Slovenská republika: UVL Košice, pp. 123-127
16. 2010b: Healing of large segmental bone defect after implantation of autogenous cancellous bone graft in comparison with hydroxyapatite and 0.5% collagen scaffold in combination with mesenchymal stem cells. Acta Vet Brno 79: 607-612
< A, Proks P, Urbanová L, Srnec R, Stehlík L, Crha M, Raušer P, Plánka L, Amler E, Vojtová L, Jančář J https://doi.org/10.2754/avb201079040607>
17. 2010: Quality of newly formed cartilaginous tissue in defects of articular surface after transplantation of mesenchymal stem cells in a composite scaffold based on collagen I with chitosan micro- and nanofibres. Phys Res 59: 605-614
A, Plánka L, Srnec R, Crha M, Hlučilová J, Klíma J, Starý D, Křen L, Amler E, Vojtová L, Jančář J, Gál P
18. Nečas A, Urbanová L, Srnec R 2007: Principy použití LCP plotének. In: Nečas A, Beale BS, Hulse DA, Srnec R a kol.: Osteotomie a nové trendy v léčbě nemocí kostí a kloubů. VFU Brno, pp. 19-22
19. Piermattei DL, Flo GL 1997: Brinker, Piermattei, and Flo’s Handbook of Small Animal Orthopedics and Fracture Repair. 3rd ed. Philadelphia: WB Saunders, pp. 24-146
20. Plánka L, Gál P, Kecová H, Klíma J, Hlučilová J, Filová E, Amler E, Krupa P, Křen L, Srnec R, Urbanová L, Lorenzová J, Nečas A 2008: Allogeneic and autogenous transplantations of MSCs in treatment of the physeal bone bridge in rabbits. BMC Biotechnology 8: 70, doi:10.1186/1472-6750-8-70
<https://doi.org/10.1186/1472-6750-8-70>
21. 2007: Prevention of bone bridge formation using transplantation of the autogenous mesenchymal stem cells to physeal defects: an experimental study in rabbits. Acta Vet Brno 76: 253-263
< L, Nečas A, Gál P, Kecová H, Filová E, Křen L, Krupa P https://doi.org/10.2754/avb200776020253>
22. 2009a: Use of allogenic stem cells for the prevention of bone bridge formation in miniature pigs. Phys Res 58: 885-893
L, Nečas A, Srnec R, Raušer P, Starý D, Jančář J, Amler E, Filová E, Hlučilová J, Křen L, Gál P
23. 2009b: Comparison of preventive and therapeutic transplantations of allogeneic mesenchymal stem cells in healing of the distal femoral growth plate cartilage defects in miniature pigs. Acta Vet Brno 78: 293-302
< L, Starý D, Hlučilová J, Klíma J, Jančář J, Křen L, Lorenzová J, Urbanová L, Crha M, Srnec R, Dvořák M, Gál P, Nečas A https://doi.org/10.2754/avb200978020293>
24. 2003; Use of a plate-rod construct and principles of biological osteosynthesis for repair of diaphyseal fractures in dogs and cats:47 cases (1994-2001). JAVMA, 223: 330-335
< MR, Beale BS, Hulse DA https://doi.org/10.2460/javma.2003.223.330>
25. 2003: Biomechanical testing of the LCP - how can stability in locked internal fixators be controlled? Injury Int J Care Injured 34: S-B11-S-B19
< K, Dieter U, Stachowiak G, Gächter A, Kuster MS https://doi.org/10.1016/j.injury.2003.09.021>
26. 2000: Functional load of plates in fracture fixation in vivo and its correlate in bone healing. Injury Int J Care Injured 31: S-B37-S-B50
< K, Klaue K, Perren SM https://doi.org/10.1016/S0020-1383(00)80042-X>
27. 1989: The effects of fixation on fracture healing. J Bone Joint Surg 71: 306-310
< ME, Chao EYS, Kelly PJ https://doi.org/10.2106/00004623-198971020-00022>
28. Urbanová L, Srnec R, Proks P, Stehlík L, Nečas A 2010: Testování pevnosti fixace segmentálního defektu femuru samotnou 4,5 LCP a v konstrukci plate and rod. (Testing of stiffness of segmental femoral defect fixation using 4.5 LCP alone versus 4.5 LCP in plate-rod construct). In: Sborník XII. konference mladých vědeckých pracovníků s mezinárodní účastí, 2.6.2010, 217-219
29. 2007: Biomechanical characterization of cartilages by a novel approach of blunt impact testing. Physiol Res 56: 61-68
F, Držík M, Handl M, Chlpík J, Kos P, Filová E, Rampichová M, Nečas A, Trč T, Amler E
30. 2003: General principles for the clinical use of the LCP. Injury Int J Care Injured 34: B31-B42
< M. https://doi.org/10.1016/j.injury.2003.09.023>