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- W2005094281 abstract "Understanding of the human hearing process requires the quantification of the transient response of the human ear andthe human tympanic membrane (TM or eardrum) in particular. Current state-of-the-art medical methods to quantify thetransient acousto-mechanical response of the TM provide only averaged acoustic or local information at a few points.This may be insufficient to fully describe the complex patterns unfolding across the full surface of the TM. Existingengineering systems for full-field nanometer measurements of transient events, typically based on holographic methods,constrain the maximum sampling speed and/or require complex experimental setups.We have developed and implemented of a new high-speed (i.e., > 40 Kfps) holographic system (HHS) with a hybridspatio-temporal local correlation phase sampling method that allows quantification of the full-field nanometer transient(i.e., > 10 kHz) displacement of the human TM. The HHS temporal accuracy and resolution is validated versus a LDVon both artificial membranes and human TMs. The high temporal (i.e., 100k data points)resolution of our HHS enables simultaneous measurement of the time waveform of the full surface of the TM. Thesecapabilities allow for quantification of spatially-dependent motion parameters such as energy propagation delays surfacewave speeds, which can be used to infer local material properties across the surface of the TM. The HHS could providea new tool for the investigation of the auditory system with applications in medical research, in-vivo clinical diagnosis aswell as hearing aids design." @default.
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- W2005094281 date "2014-08-18" @default.
- W2005094281 modified "2023-09-24" @default.
- W2005094281 title "High-speed holographic system for full-field transient vibrometry of the human tympanic membrane" @default.
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- W2005094281 doi "https://doi.org/10.1117/12.2063523" @default.
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