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Titlebook: Cochlear Implants; Models of the Electr Josef M. Miller,Francis A. Spelman Book 1990 Springer-Verlag New York Inc. 1990 behavior.ear.implan

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Models of Neural Responsiveness to Electrical Stimulationithin the cochlea. In the vicinity of the neural elements, these fields appear as extracellular voltage gradients or profiles that are continuous along the entire length of the neurons. These extracellular voltage fields produce current flow into and out of the neural elements depending on the local
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Reproducing Auditory Nerve Temporal Patterns with Sharply Resonant Filterssuch devices share one underlying intent. That intent is to determine from the incoming sound spectrum which cochlear nerve fibers should be excited at any given moment. The presence of high-frequency components causes excitation of basal fibers, while low-frequency components cause excitation of ap
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Response Characteristics of Nerve Fibers to Patterned Electrical Stimulationents. Obviously two features of normal auditory nerve performance have to be offered to the patient’s brain: an adequate time structure of the discharge pattern in the nerve fibers and a sufficient place-frequency coding. Correct time structure will be most important for single-channel devices, as i
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