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Titlebook: Biomaterials in Otology; Proceedings of the F J. J. Grote (Professor of Otolaryngology) Conference proceedings 1984 Martinus Nijhoff Publis

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https://doi.org/10.1007/978-3-663-08653-6ces (2) and the need to be able to trim the device at surgery. A rationale for use of polymers with pore sizes of less than 100 um could have been based on having porosity a) which provided a prosthesis of sufficient strength, and b) which fell below the minimum pore size requirements (7) for bone i
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warding reconstructive middle ear opera­ tion. With the development of the intact canal wall techniques and the use of homologous implant materials the problems of middle ear surgery see­ med to be solved. However, we now know that closed techniques have dis­ advantages after longer post-operative periods and978-94-009-6758-8978-94-009-6756-4
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On Alloplasts for Otology a detailed histological comparison of the reactions of various polymeric alloplasts implanted so as to replace a peritoneal defect in rodents was published., analogous information for the middle ear is not yet available. To this need must be added firm acoustical data for the various designs of oss
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