A major reason we can perceive faint sounds and communicate in noisy environments is that the outer hair cells of the organ of Corti enhance the sound-evoked motions inside the cochlea. To understand how the organ of Corti works, we have built and tested the phase-sensitive Fourier domain optical coherence tomography (PSFDOCT) system. This system has key advantages over our previous time domain OCT system [1]. The PSFDOCT system has better signal to noise and simultaneously acquires vibration data from all points along the optical-axis [2]. Feasibility of this system to measure in vitro cochlear vibrations in the apex was demonstrated earlier [3]. In this study, we measure the in vivo vibrations of the organ of Corti via round window in liv...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
Low-frequency hearing is critically important for speech and music perception, but no mechanical mea...
In the mammalian cochlea, the basilar membrane's (BM) mechanical responses are amplified, and freque...
The differential motion of the organ of Corti has been expected as a result of the outer hair cell f...
Direct measurement of absolute vibration parameters from different locations within the mammalian or...
Hearing in mammals, depend on an amplifying motion which hypothetically uses force from outer hair c...
All With the advent of Optical Coherence Tomography (OCT), a variation of the standard laser-interfe...
Hearing loss affects millions of Americans and is of increasing concern to an aging population. It ...
Thesis (Ph. D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Tech...
We describe a novel application of spectral-domain phase-sensitive optical coherence tomography (SD ...
The micromechanical mechanisms that underpin tuning and dynamic range compression in the mammalian i...
AbstractThe vibration of the organ of Corti, a three-dimensional micromechanical structure that inco...
Objectives Doppler optical coherence tomography (DOCT) is useful for both, the spatially resolved me...
Recent developments in imaging techniques, namely confocal laser scanning microscopy, offer new tool...
In the mammalian cochlea, the basilar membrane's (BM) mechanical responses are amplified, and freque...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
Low-frequency hearing is critically important for speech and music perception, but no mechanical mea...
In the mammalian cochlea, the basilar membrane's (BM) mechanical responses are amplified, and freque...
The differential motion of the organ of Corti has been expected as a result of the outer hair cell f...
Direct measurement of absolute vibration parameters from different locations within the mammalian or...
Hearing in mammals, depend on an amplifying motion which hypothetically uses force from outer hair c...
All With the advent of Optical Coherence Tomography (OCT), a variation of the standard laser-interfe...
Hearing loss affects millions of Americans and is of increasing concern to an aging population. It ...
Thesis (Ph. D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Tech...
We describe a novel application of spectral-domain phase-sensitive optical coherence tomography (SD ...
The micromechanical mechanisms that underpin tuning and dynamic range compression in the mammalian i...
AbstractThe vibration of the organ of Corti, a three-dimensional micromechanical structure that inco...
Objectives Doppler optical coherence tomography (DOCT) is useful for both, the spatially resolved me...
Recent developments in imaging techniques, namely confocal laser scanning microscopy, offer new tool...
In the mammalian cochlea, the basilar membrane's (BM) mechanical responses are amplified, and freque...
The mammalian cochlea has historically resisted attempts at high-resolution, non-invasive imaging du...
Low-frequency hearing is critically important for speech and music perception, but no mechanical mea...
In the mammalian cochlea, the basilar membrane's (BM) mechanical responses are amplified, and freque...