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Your search keyword '"Pseudarthrosis metabolism"' showing total 27 results

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27 results on '"Pseudarthrosis metabolism"'

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1. Spatial transcriptomics implicates impaired BMP signaling in NF1 fracture pseudarthrosis in murine and patient tissues.

2. MEK-SHP2 inhibition prevents tibial pseudarthrosis caused by NF1 loss in Schwann cells and skeletal stem/progenitor cells.

3. Molecular Dissection of Somatic Skeletal Disease in Neurofibromatosis Type 1.

4. In silico clinical trials for pediatric orphan diseases.

5. Human pseudoarthrosis tissue contains cells with osteogenic potential.

6. Combined MEK inhibition and BMP2 treatment promotes osteoblast differentiation and bone healing in Nf1Osx -/- mice.

7. Neurofibromin deficiency-associated transcriptional dysregulation suggests a novel therapy for tibial pseudoarthrosis in NF1.

8. [The frequency of endothelial dysfunction in patients with pseudarthrosis of long bones with hyperhomocysteinemia and associated metabolic disorder].

9. Vitamin D concentration in patients with normal and impaired bone union.

10. Adjunctive hyperbaric oxygen therapy in the treatment of atrophic tibial nonunion with Ilizarov external fixator: a radiographic and scintigraphic study in rabbits.

11. A murine model of neurofibromatosis type 1 tibial pseudarthrosis featuring proliferative fibrous tissue and osteoclast-like cells.

12. Biologic characteristics of fibrous hamartoma from congenital pseudarthrosis of the tibia associated with neurofibromatosis type 1.

13. The osteogenic potential of pseudoarthrosis tissue and bone from human scaphoid non-unions.

14. Glycopeptide bone penetration in patients with septic pseudoarthrosis of the tibia.

15. Osteogenic protein-1 induced gene expression: evaluation in a posterolateral spinal pseudarthrosis model.

16. NF1 gene expression in mouse fracture healing and in experimental rat pseudarthrosis.

17. Major fibrillar collagens and fibronectin in an experimental nonunion: an immunohistochemical study.

18. [Immunohistochemical investigations of congenital pseudarthrosis of the tibia].

19. Extended expression of cartilage components in experimental pseudoarthrosis.

20. Glycosaminoglycans in congenital pseudarthrosis.

21. [Clinico-biochemical criteria of the effectiveness of using bone matrix in treating ununited fractures and pseudarthroses of the long bones].

23. [Metabolic processes in the bony tissue during Ilizarov's treatment of pseudarthroses of the leg].

24. [Biochemical studies on pseudoarthrosis tissue].

26. [Physiopathology of pseudoarthrosis].

27. 85Sr uptake study in non-union in man.

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