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US Patent 11992309 Wideband acoustic immittance measurement apparatus

Patent 11992309 was granted and assigned to Natus Medical on May, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Natus Medical
Natus Medical
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Current Assignee
Natus Medical
Natus Medical
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119923090
Patent Inventor Names
Camilla Magnussen0
Ask Bojesen0
Date of Patent
May 28, 2024
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Patent Application Number
173051020
Date Filed
June 30, 2021
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Patent Citations
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US Patent 10582328 Audio response based on user worn microphones to direct or adapt program responses system and method
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US Patent 10542961 System and method for infrasonic cardiac monitoring
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US Patent 8989830 Wearable light-guiding devices for physiological monitoring
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US Patent 9107620 Hearing-ability measurement device and method thereof
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US Patent 9744358 System and method for neural cochlea stimulation
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US Patent 9750437 Determination of neuronal action potential amplitude based on multidimensional differential geometry
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US Patent 10413197 Apparatus, systems and methods for obtaining cleaner physiological information signals
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Patent Primary Examiner
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May A Abouelela
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CPC Code
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A61B 5/7282
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G10L 15/22
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G10L 15/07
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G10L 15/08
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G10L 2015/225
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G10L 19/008
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A61B 5/4803
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A61B 2562/0204
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Patent abstract

A wideband acoustic immittance measurement apparatus including an ear probe having an acoustic output port for emitting sound into an ear canal and an acoustic input port for receiving sound from the ear canal, a loudspeaker that is acoustically connected with the acoustic output port, a microphone acoustically connected with the acoustic input port for generating an audio signal as a function of sound received at the acoustic input port, and a processor for controlling the loudspeaker to emit sound spanning a frequency range and receiving the audio signal of the microphone, determining a complex acoustic admittance Y(f)=G(f)+jB(f) as a function of frequency f based on the emitted sound and the received audio signal, and identifying at least one middle ear resonance based on both the real and imaginary part of the determined acoustic admittance as a function of frequency f.

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