Literature DB >> 7387528

Regeneration of bone in the presence of calcium sulfate.

A S Coetzee.   

Abstract

I describe 110 patients in whom diseased and destructed bone was restored to normal healthy bone. The first ten patients were healed by using bismuth-iodoform, and the following 100 patients were treated using the hemihydrate of calcium sulfate (CaSO4.2H3O). Both alloplasts were replaced in all patients by normal healthy cancellous bone within two to four months. It is a safe procedure in which bone regeneration is stimulated to a maximum rate. During June 1974, bismuth-iodoform was used as an allograft. On July 9, 1974, the first three operations in the history of otorhinolaryngology, to my knowledge, were performed using CaSO4. Normal physiologic absorption of CaSO4 occurs with the simultaneous deposition of autogenous cancellous bone. Calcium sulfate is an outstanding bone substitute, ensuring bone formation and giving results comparable with autogenous bone, if not better.

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Year:  1980        PMID: 7387528     DOI: 10.1001/archotol.1980.00790310029007

Source DB:  PubMed          Journal:  Arch Otolaryngol        ISSN: 0003-9977


  25 in total

1.  Evaluation of colloidal silica suspension as efficient additive for improving physicochemical and in vitro biological properties of calcium sulfate-based nanocomposite bone cement.

Authors:  Shokoufeh Borhan; Saeed Hesaraki; Shaghayegh Ahmadzadeh-Asl
Journal:  J Mater Sci Mater Med       Date:  2010-10-23       Impact factor: 3.896

2.  Osteoinduction and -conduction through absorbable bone substitute materials based on calcium sulfate: in vivo biological behavior in a rabbit model.

Authors:  D Pförringer; N Harrasser; H Mühlhofer; M Kiokekli; A Stemberger; M van Griensven; M Lucke; R Burgkart; A Obermeier
Journal:  J Mater Sci Mater Med       Date:  2018-01-09       Impact factor: 3.896

3.  [Conductive bone substitute material with variable antibiotic delivery].

Authors:  C Englert; P Angele; J Fierlbeck; S Dendorfer; T Schubert; R Müller; S Lienhard; J Zellner; M Nerlich; C Neumann
Journal:  Unfallchirurg       Date:  2007-05       Impact factor: 1.000

4.  Composite chitosan and calcium sulfate scaffold for dual delivery of vancomycin and recombinant human bone morphogenetic protein-2.

Authors:  Heather A Doty; Megan R Leedy; Harry S Courtney; Warren O Haggard; Joel D Bumgardner
Journal:  J Mater Sci Mater Med       Date:  2014-02-07       Impact factor: 3.896

5.  The use of particulate hydroxyapatite and plaster of Paris in aesthetic and reconstructive surgery.

Authors:  N G Georgiade; J Hanker; S Levin; G Ruff
Journal:  Aesthetic Plast Surg       Date:  1993       Impact factor: 2.326

6.  One-stage surgery for adult chronic osteomyelitis: concomitant use of antibiotic-loaded calcium sulphate and bone marrow aspirate.

Authors:  Ahmed Abdel Badie; Mohamed S Arafa
Journal:  Int Orthop       Date:  2018-07-19       Impact factor: 3.075

7.  Mechanical and degradation behavior of polymer-calcium sulfate composites.

Authors:  K N Lewis; M V Thomas; D A Puleo
Journal:  J Mater Sci Mater Med       Date:  2006-06       Impact factor: 3.896

8.  Antimicrobial Formulations of Absorbable Bone Substitute Materials as Drug Carriers Based on Calcium Sulfate.

Authors:  D Pförringer; A Obermeier; M Kiokekli; H Büchner; S Vogt; A Stemberger; R Burgkart; M Lucke
Journal:  Antimicrob Agents Chemother       Date:  2016-06-20       Impact factor: 5.191

9.  Factors influencing the compressive strength of an injectable calcium sulfate-hydroxyapatite cement.

Authors:  M Nilsson; L Wielanek; J-S Wang; K E Tanner; L Lidgren
Journal:  J Mater Sci Mater Med       Date:  2003-05       Impact factor: 3.896

10.  In vitro and in vivo evaluation of the effects of demineralized bone matrix or calcium sulfate addition to polycaprolactone-bioglass composites.

Authors:  O Erdemli; O Captug; H Bilgili; D Orhan; A Tezcaner; D Keskin
Journal:  J Mater Sci Mater Med       Date:  2010-01       Impact factor: 3.896

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