An elastic force-length relation has been recorded for tympanic membrane implants. A model based on the fibre structure of these materials was used to obtain a value for their elastic modulus for tympanic membrane.
DecraemerW.F., MaesM.A., VanhuyseV.J.An elastic stress-strain relation for soft biological tissues based on a structural model. Journal of Biomechanics1980; 13: 463–8.
2.
JamesF., RoosM.A system for function minimization and analysis of the parameter errors and correlation. Computer Phys. Comm.1975; 10: 343–67.
3.
FungY.C.B.Stress-strain history relations. In: FungY.C., PeroneN., AnlikerM., eds. Biomechanics, its foundations and objectives.New York: Prentice Hall, 1972; 181–208.
4.
MarquetJ.F.E.Homograft in middle ear surgery. Ten years of experience. Trans Amer Acad Ophthal Otolaryng1975; 80: 30–6.
5.
RuttenW.L.C., BakkerD., KnitJ.H., MaesM., GroteJ.J.Middle ear research using a squid magnetometer. I. Micro- and macromechanical selection of polymer materials for artificial tympanic membranes. To be published.
6.
DecraemerW.F.Viscoëlasticiteit van trommelvliesprothesen. Doctoral Dissertation, UIA, University of Antwerp, Antwerpen, Belgium. 1977.