References
-
1
Bjurholm A, Kreicbergs A, Brodin E. et al .
Substance P and CGRP immunoreactive nerves in bone.
Peptides.
1988;
9
165-171
-
2
Chan R C, Forester K, McDougal J J. et al .
Dynamic measurement of bone blood perfusion with modified laser-Doppler imaging.
J Orthop Res.
1999;
17
578-581
-
3
Cypher T J, Grossmann J P.
Biological principles of bone graft healing.
J Foot Ankle Surg .
1996;
35
413-417
-
4
Eisinger E C, Leal L.
Coralline hydroxyapatite bone graft substitutes.
J Foot Ankle Surg.
1996;
35
396-399
-
5
Hallfeldt K KJ, Schützle H, Puhlmann M. et al .
The osteoinductive properties of partially demineralized bone matrix.
Theor Surg.
1994;
9
212-219
-
6
Konttinen Y S, Imai S, Suda A.
Neuropeptides and the puzzle of bone remodelling. State of the art.
Acta Orthop Scand.
1996;
67
632-639
-
7
Lundgard A, Aalkjaer C, Bjurholm A. et al .
Vasorelaxation in isolated bone arteries. Vasoactive intestinal peptide, substance P, calcitonin gene-related peptide, and bradykinin studied in pigs.
Acta Orthop Scand.
1997;
68
481-489
-
8
Wolf K, Höcherl E, Farkas T. et al .
Vorkommen und Dynamik peptiderger Nervenfasern im Granulationsgewebe nach Distanzosteosynthese.
Unfallchirurg.
2001;
104
948-954
-
9
Wolf K, Hamar J, Rösch I. et al .
Die Distanzosteosynthese der Kaninchentibia. Ein Beitrag zur Untersuchung der Osteogenese im interfragmentären Spalt.
Osteologie.
1997;
4
161-169
-
10
Wolf K, Hamar J, Höcherl E. et al .
Development and reagibility of the microcirculation in the granulation tissue after distance osteosyntheses: An experimental analysis of laser-Doppler flowmetry under the influence of CGRP.
A. MellyM.D.
National Institute of Traumatology
Budapest
Hungary