The ability of cranial bone to repair defects of continuity is limited and it is mostly dependent on the age of the patient. In infancy and in early pediatric age, the scarce thickness of the calvarial bones and the need for a harmonic development of the child's skull limit the application of most of the surgical procedures usually utilized in older patients. We tested the ability of mononucleated cells, derived from the patient's bone marrow and transplanted on the site of the cranial bone defect, to increase the rate of mineralization of the autologous osteogenesis to obtain the complete restoration of the skull continuity.

Velardi, F., Amante, P., Caniglia, M., De Rossi, G., Gaglini, P., Isacchi, G., et al. (2006). Osteogenesis induced by autologous bone marrow cells transplant in the pediatric skull. CHILDS NERVOUS SYSTEM, 22(9), 1158-1166 [10.1007/s00381-006-0100-0].

Osteogenesis induced by autologous bone marrow cells transplant in the pediatric skull

ISACCHI, GIANCARLO;ZINNO, FRANCESCO
2006-09-01

Abstract

The ability of cranial bone to repair defects of continuity is limited and it is mostly dependent on the age of the patient. In infancy and in early pediatric age, the scarce thickness of the calvarial bones and the need for a harmonic development of the child's skull limit the application of most of the surgical procedures usually utilized in older patients. We tested the ability of mononucleated cells, derived from the patient's bone marrow and transplanted on the site of the cranial bone defect, to increase the rate of mineralization of the autologous osteogenesis to obtain the complete restoration of the skull continuity.
set-2006
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore MED/05 - PATOLOGIA CLINICA
English
Con Impact Factor ISI
Skull Fractures; Tissue Engineering; Age Factors; Humans; Tomography, X-Ray Computed; Lactic Acid; Child; Prostheses and Implants; Child, Preschool; Collagen; Imaging, Three-Dimensional; Skull; Postoperative Complications; Bone Density; Durapatite; Follow-Up Studies; Polymers; Image Processing, Computer-Assisted; Male; Craniotomy; Bone Marrow Transplantation; Female; Osteogenesis
Velardi, F., Amante, P., Caniglia, M., De Rossi, G., Gaglini, P., Isacchi, G., et al. (2006). Osteogenesis induced by autologous bone marrow cells transplant in the pediatric skull. CHILDS NERVOUS SYSTEM, 22(9), 1158-1166 [10.1007/s00381-006-0100-0].
Velardi, F; Amante, P; Caniglia, M; De Rossi, G; Gaglini, P; Isacchi, G; Palma, P; Procaccini, E; Zinno, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/56227
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