The MMS-10 Tympanic Displacement Analyser (TDA) is a new device to measure the perilymphatic pressure of the human inner ear in a non-invasive way. In this study, the instrument was used in 50 normal hearing subjects (100 ears) in three different conditions: i) sitting upright and supine; ii) in the morning and afternoon; iii) before and after physical exertion. The perilymphatic pressure in supine position was significantly higher than that in upright-sitting position. The measured perilymphatic pressure did not alter during the day, indicating the absence of diurnal variation. Also, the perilymphatic pressure did not change significantly following physical exertion. Our study showed the well known large inter-individual differences in the...
Introduction Tympanometry is an objective measure of middle ear function that has been an integral ...
The middle ear (ME) pressure is regulated by gas diffusion over the ME mucosa and pressure equalizat...
Objective: Intracranial pressure increase is known to affect inner ear pressure through the cochlear...
The MMS-10 Tympanic Displacement Analyser (TDA) is a new device to measure the perilymphatic pressur...
The MMS-10 Tympanic Displacement Analyser is a new device to measure the perilymphatic pressure in h...
The MMS-10 Tympanic Displacement Analyser is a new device for measuring perilymphatic pressure in hu...
The homeostasis and the hydrostatic pressure of both inner ear fluids, endolymph and perilymph, are ...
The homeostasis of inner-ear fluids is essential for the functions of hearing and equilibrium. Inner...
Objective: Inner ear disorders are proposed to be affected by changes in inner ear hydrostatic press...
The hydrostatic pressure of the inner ear depends on the cerebrospinal fluid pressure through the co...
A new method was developed for continuous measurement of the middle ear pressure during a 24-h perio...
Disturbances in the pressure homeostasis of the middle ear (ME) system cause a pressure gradient acr...
OBJECTIVE: Evoked tympanic membrane displacement (TMD) is a non-invasive technique for assessing int...
OBJECTIVES: The tympanic membrane (TM) represents a pressure buffer, which contributes to the overal...
Objective: Tympanic membrane displacements (TMDs) are used to non-invasively gauge inner-ear fluid p...
Introduction Tympanometry is an objective measure of middle ear function that has been an integral ...
The middle ear (ME) pressure is regulated by gas diffusion over the ME mucosa and pressure equalizat...
Objective: Intracranial pressure increase is known to affect inner ear pressure through the cochlear...
The MMS-10 Tympanic Displacement Analyser (TDA) is a new device to measure the perilymphatic pressur...
The MMS-10 Tympanic Displacement Analyser is a new device to measure the perilymphatic pressure in h...
The MMS-10 Tympanic Displacement Analyser is a new device for measuring perilymphatic pressure in hu...
The homeostasis and the hydrostatic pressure of both inner ear fluids, endolymph and perilymph, are ...
The homeostasis of inner-ear fluids is essential for the functions of hearing and equilibrium. Inner...
Objective: Inner ear disorders are proposed to be affected by changes in inner ear hydrostatic press...
The hydrostatic pressure of the inner ear depends on the cerebrospinal fluid pressure through the co...
A new method was developed for continuous measurement of the middle ear pressure during a 24-h perio...
Disturbances in the pressure homeostasis of the middle ear (ME) system cause a pressure gradient acr...
OBJECTIVE: Evoked tympanic membrane displacement (TMD) is a non-invasive technique for assessing int...
OBJECTIVES: The tympanic membrane (TM) represents a pressure buffer, which contributes to the overal...
Objective: Tympanic membrane displacements (TMDs) are used to non-invasively gauge inner-ear fluid p...
Introduction Tympanometry is an objective measure of middle ear function that has been an integral ...
The middle ear (ME) pressure is regulated by gas diffusion over the ME mucosa and pressure equalizat...
Objective: Intracranial pressure increase is known to affect inner ear pressure through the cochlear...