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Clinical Otolaryngology and Allied Sciences|February 1, 1995
A 3-D finite element analysis of the natural frequencies of vibration of a stapes prosthesis replacement reconstruction of the middle earK R Williams, A W Blayney, T H LesserClinical Otolaryngology and Allied Sciences|April 1, 1997
Mode shapes of a damaged and repaired tympanic membrane as analysed by the finite element methodK R Williams, A W Blayney, T H LesserClinical Otolaryngology and Allied Sciences|February 1, 1991
Mechanics and materials in middle ear reconstructionT H Lesser, K R Williams, A W BlayneyActa Oto-Laryngologica|January 1, 1992
Problems in alloplastic middle ear reconstructionA W Blayney, K R Williams, J P Erre, et al.Biomaterials|July 1, 1986
An optical and electron microscopy study of materials implanted in the rat middle ear. I CarbonK R Williams, A W BlayneyBiomaterials|July 1, 1986
An optical and electron microscopy study of materials implanted in the rat middle ear. II. A bioactive glass ceramicK R Williams, A W BlayneyBiomaterials|July 1, 1987
Tissue response of several polymeric materials implanted in the rat middle earK R Williams, A W BlayneyClinical Otolaryngology and Allied Sciences|June 1, 1992
A dynamic and natural frequency analysis of the Fisch II spandrel using the finite element methodK R Williams, T H LesserThe Journal of Laryngology and Otology|March 1, 1988
The tympanic membrane in cross section: a finite element analysisT H Lesser, K R WilliamsClinical Otolaryngology and Allied Sciences|October 1, 1993
Natural frequencies of vibration of a fibre supported human tympanic membrane analysed by the finite element methodK R Williams, T H LesserPageof 25