In this paper, PATRAN software was used to establish a complete 3D finite element model of human ears, and it was then combined with NASTRAN software to analyze frequency responses. This paper conducted a detailed analysis on the dynamic parameters including umbo and stapes displacements of normal human ears under sound pressures 90 dB and 105 dB. The numerically computational results were compared with experimental data. When the analyzed frequency was less than 1000 Hz, the computational result of numerical simulation was well consistent with the upper limit. When the analyzed frequency was more than 1000 Hz, the computational result of numerical simulation was well consistent with the lower limit. Therefore, the numerically computational...
For a deeper understanding of the inner ear dynamics, a Finite-Element model of the human cochlea is...
In order to get a better insight into the function of the human middle ear it is necessary to simula...
The tympanic membrane is a key component of the human auditory apparatus which is a complex biomecha...
This paper used PATRAN software to establish a three-dimensional spiral cochlear model according to ...
This paper used PATRAN/NASTRAN software to establish a three-dimensional finite element model of hum...
This paper used PATRAN/NASTRAN software to establish a three-dimensional finite element model of hum...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
Due to ethical issues and the nature of the ear, it is difficult to directly perform experimental me...
This paper presents a method to generate a finite element model of the human auditory inner ear syst...
The intact tympanic membrane ensures a good hearing quality for humans. Sometimes, the tympanic mem-...
The dynamic characteristics of human ossicle responses to stimulus frequencies of 125 Hz, 250 Hz, 50...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
The aim of the present study was to analyze the human mastoid cavity on sound transmission using fin...
membrane response for finite element model validation of a human middle ear Tae-Soo Ahn1, Moo-Jin Ba...
The aim of the present study was to analyze the human mastoid cavity on sound transmission using fi...
For a deeper understanding of the inner ear dynamics, a Finite-Element model of the human cochlea is...
In order to get a better insight into the function of the human middle ear it is necessary to simula...
The tympanic membrane is a key component of the human auditory apparatus which is a complex biomecha...
This paper used PATRAN software to establish a three-dimensional spiral cochlear model according to ...
This paper used PATRAN/NASTRAN software to establish a three-dimensional finite element model of hum...
This paper used PATRAN/NASTRAN software to establish a three-dimensional finite element model of hum...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
Due to ethical issues and the nature of the ear, it is difficult to directly perform experimental me...
This paper presents a method to generate a finite element model of the human auditory inner ear syst...
The intact tympanic membrane ensures a good hearing quality for humans. Sometimes, the tympanic mem-...
The dynamic characteristics of human ossicle responses to stimulus frequencies of 125 Hz, 250 Hz, 50...
AbstractWe have developed a new finite element (FE) model of human right ear, including the accurate...
The aim of the present study was to analyze the human mastoid cavity on sound transmission using fin...
membrane response for finite element model validation of a human middle ear Tae-Soo Ahn1, Moo-Jin Ba...
The aim of the present study was to analyze the human mastoid cavity on sound transmission using fi...
For a deeper understanding of the inner ear dynamics, a Finite-Element model of the human cochlea is...
In order to get a better insight into the function of the human middle ear it is necessary to simula...
The tympanic membrane is a key component of the human auditory apparatus which is a complex biomecha...