Robin W. Mills

Affiliations: 
University of Bristol, Bristol, England, United Kingdom 
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Pflaum T, Kranz S, Montag R, et al. (2017) Clinical long-term success of contemporary nano-filled resin composites in class I and II restorations cured by LED or halogen light. Clinical Oral Investigations
Mills R. (2016) Light energy attenuation through orthodontic ceramic brackets at different irradiation times Journal of Orthodontics. 43: 163-163
Jandt KD, Mills RW. (2013) A brief history of LED photopolymerization Dental Materials. 29: 605-617
Uhl A, Mills RW, Rzanny AE, et al. (2005) Time dependence of composite shrinkage using halogen and LED light curing Dental Materials. 21: 278-286
Uhl A, Michaelis C, Mills RW, et al. (2004) The influence of storage and indenter load on the Knoop hardness of dental composites polymerized with LED and halogen technologies Dental Materials. 20: 21-28
Uhl A, Mills RW, Jandt KD. (2003) Polymerization and light-induced heat of dental composites cured with LED and halogen technology Biomaterials. 24: 1809-1820
Uhl A, Mills RW, Jandt KD. (2003) Photoinitiator dependent composite depth of cure and Knoop hardness with halogen and LED light curing units Biomaterials. 24: 1787-1795
Mills RW, Uhl A, Jandt KD. (2002) Optical power outputs, spectra and dental composite depths of cure, obtained with blue light emitting diode (LED) and halogen light curing units (LCUs) British Dental Journal. 193: 459-463
Uhl A, Mills RW, Vowles RW, et al. (2002) Knoop hardness depth profiles and compressive strength of selected dental composites polymerized with halogen and LED light curing technologies Journal of Biomedical Materials Research. 63: 729-738
Mills RW, Uhl A, Blackwell GB, et al. (2002) High power light emitting diode (LED) arrays versus halogen light polymerization of oral biomaterials: Barcol hardness, compressive strength and radiometric properties Biomaterials. 23: 2955-2963
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