Literature DB >> 14620975

Impaction bone grafting with freeze-dried irradiated bone. Part II. Changes in stiffness and compactness of morselized grafts: experiments in cadavers.

Olivier Cornu1, Ashit Bavadekar, Bernard Godts, John Van Tomme, Christian Delloye, Xavier Banse.   

Abstract

In the technique of impaction bone grafting, implant stability depends on the mechanical properties of the impacted morselized grafts. Although the procedure is usually performed with fresh-frozen femoral heads, there is still some concern about their supply and safety. Bone processing is a potential solution, but the mechanical properties of this material during and after impaction need to be determined. We used 6 osteoarthrotic femoral heads to prepare two paired batches of morselized bone. One batch was morselized and frozen. The other batch was chemically treated, morselized, freeze-dried and then gamma-irradiated. We impacted 18 samples from each batch in a contained cylinder. Freeze-dried bone grafts were tested after 30 minutes of rehydration. The changes in the compactness and stiffness of the material were monitored during the impaction. The compaction of the freeze-dried bone was faster than that of their fresh-frozen control. The maximal stiffness reached by both materials was the same (55 MPa), but the freeze-dried grafts required three to four times fewer impactions to achieve that stiffness. After 3, 10 and 50 impactions the freeze-dried bone was stiffer than the fresh-frozen bone. As it is easier to impact, the freeze-dried bone may be mechanically more efficient than the fresh-frozen bone in surgical conditions. Moreover, the processed bone meets the highest safety standards, as regards the risk of disease transmission.

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Year:  2003        PMID: 14620975     DOI: 10.1080/00016470310017947

Source DB:  PubMed          Journal:  Acta Orthop Scand        ISSN: 0001-6470


  3 in total

1.  Influence of antibiotic pellets on pore size and shear stress resistance of impacted native and thermodisinfected cancellous bone: An in vitro femoral impaction bone grafting model.

Authors:  C Fölsch; J Bok; G A Krombach; M Rickert; C A Fonseca Ulloa; G A Ahmed; M Kampschulte; A Jahnke
Journal:  J Orthop       Date:  2020-09-19

2.  Calcium Phosphate Bone Graft Substitutes with High Mechanical Load Capacity and High Degree of Interconnecting Porosity.

Authors:  Georg Hettich; Ronja A Schierjott; Matthias Epple; Uwe Gbureck; Sascha Heinemann; Hadi Mozaffari-Jovein; Thomas M Grupp
Journal:  Materials (Basel)       Date:  2019-10-23       Impact factor: 3.623

3.  Effect of synthetic bone replacement material of different size on shear stress resistance within impacted native and thermodisinfected cancellous bone: an in vitro femoral impaction bone grafting model.

Authors:  C Fölsch; P Sahm; C A Fonseca Ulloa; G A Krombach; M Kampschulte; M Rickert; A Pruss; A Jahnke
Journal:  Cell Tissue Bank       Date:  2021-04-24       Impact factor: 1.522

  3 in total

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