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British Dental Journal|November 7, 1992
Characterisation of the ultrastructure of glass-ionomer (poly-alkenoate) cementP V Hatton, I M BrookClinical Materials|December 9, 1993
The response of cultured bone cells to resorbable polyglycolic acid and silicone membranes for use in orbital floor fracture repairP V Hatton, J Walsh, I M BrookCell Biology International|July 1, 1993
X-ray microanalytical detection of iron in pigmentation of oral mucosaP V Hatton, I M Brook, S SwiftThe British Journal of Oral & Maxillofacial Surgery|August 1, 1995
Self-reinforced polyglycolic acid membrane: a bioresorbable material for orbital floor repair. Initial clinical reportI McVicar, P V Hatton, I M BrookJournal of Materials Science. Materials in Medicine|September 7, 2004
Dependence of in vitro biocompatibility of ionomeric cements on ion releaseA J Devlin, P V Hatton, I M BrookJournal of Dentistry|March 21, 2006
Biocompatibility of glass-ionomer bone cementsP V Hatton, K Hurrell-Gillingham, I M BrookBiomaterials|March 1, 1997
Role of exchanged ions in the integration of ionomeric (glass polyalkenoate) bone substitutesD H Carter, P Sloan, I M Brook, et al.Biomaterials|January 1, 1992
Bone cell interactions with a granular glass-ionomer bone substitute material: in vivo and in vitro culture modelsI M Brook, G T Craig, P V Hatton, et al.Clinical Oral Implants Research|February 13, 2001
In vitro and in vivo evaluation of e-PTFE and alkali-cellulose membranes for guided bone regenerationL A Salata, P V Hatton, A J Devlin, et al.Pageof 8