It has always been assumed that the manubrium is in effect perfectly rigid. In this paper, a more realistic model of the manubrium is incorporated into an existing finite‐element model of the cat eardrum. The manubrial thickness is based on a three‐dimensional reconstruction from serial histological sections. After a review of the literature, a value of 2×1011 dyn cm−2 is adopted for the Young’s modulus of the bone. The mode of vibration of the model is investigated for different manubrial‐thickness values and it is found that a significant degree of manubrial bending occurs in the model for realistic values of manubrial thickness. As a result of the bending, the frequency response at the umbo at high frequencies displays much higher amplit...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
In order to get a better insight into the function of the human middle ear it is necessary to simula...
Summary. The human ear is a complex biomechanical system and is divided into three parts: outer, mid...
This article presents frequency responses calculated using a three‐dimensional finite‐element model ...
The mechanical coupling between the eardrum and the manubrium was studied by means of a finite-eleme...
In this work, three-dimensional finite-element models of the normal and surgically repaired cat midd...
A finite‐element model of the cat eardrum is presented which includes the effects of the three‐dimen...
The middle ear is a small air-filled cavity which contains a chain of three small bones or ossicles:...
This paper presents a three‐dimensional finite‐element model of the cat eardrum which includes inert...
A phase-shift shadow moiré interferometer was used to measure the shape of the cat eardrum with a no...
Currently available mathematical models of the eardrum are limited to low pressure levels owing to t...
Discontinuity of the middle-ear ossicular chain results in conductive hearing loss. Two prostheses c...
A study was carried out to observe the effect of inclusion of geometric nonlinearity in an FE model....
Most models of the middle ear are based on oversimplified geometries and iterative material-property...
The difficulty to estimate the mechanical properties of the tympanic membrane (TM) is a limitation t...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
In order to get a better insight into the function of the human middle ear it is necessary to simula...
Summary. The human ear is a complex biomechanical system and is divided into three parts: outer, mid...
This article presents frequency responses calculated using a three‐dimensional finite‐element model ...
The mechanical coupling between the eardrum and the manubrium was studied by means of a finite-eleme...
In this work, three-dimensional finite-element models of the normal and surgically repaired cat midd...
A finite‐element model of the cat eardrum is presented which includes the effects of the three‐dimen...
The middle ear is a small air-filled cavity which contains a chain of three small bones or ossicles:...
This paper presents a three‐dimensional finite‐element model of the cat eardrum which includes inert...
A phase-shift shadow moiré interferometer was used to measure the shape of the cat eardrum with a no...
Currently available mathematical models of the eardrum are limited to low pressure levels owing to t...
Discontinuity of the middle-ear ossicular chain results in conductive hearing loss. Two prostheses c...
A study was carried out to observe the effect of inclusion of geometric nonlinearity in an FE model....
Most models of the middle ear are based on oversimplified geometries and iterative material-property...
The difficulty to estimate the mechanical properties of the tympanic membrane (TM) is a limitation t...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
In order to get a better insight into the function of the human middle ear it is necessary to simula...
Summary. The human ear is a complex biomechanical system and is divided into three parts: outer, mid...