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In the research on spatial hearing and virtual auditory space, it is important to effectively model the head-related transfer functions (HRTFs).
      
A non-linear spatial hearing model based on bases pursuit algorithm
      
In the research on spatial hearing and realization of virtual auditory space, it is important to effectively model the head-related transfer functions (HRTFs) or head-related impulse responses (HRIRs).
      
The Effect of Sound Intensity on the Frequency Resolving Power of Hearing and the Effect of Interference
      
Sensitivity of Dolphin's Hearing as a Function of the Sound-Source Position
      
Fifty healthy subjects with normal hearing took part in the tests based on the method of monaural presentation of stimuli-the sentences that represented the main kinds of Russian emotional and linguistic intonations.
      
Comparative characteristics of spatial hearing of patients with different forms of cortical epilepsy
      
Patients with organic lesions (tumors, cysts) involving the temporal lobe cortex may reveal more severe spatial hearing disorders than temporal epilepsy patients with the same localization of the foci of convulsive activity.
      
Possible neurophysiological mechanisms underlying the found spatial hearing disorders as well as the possibility of using the results obtained to solve the problems of differential diagnosis are considered.
      
General and specific characteristics of the reorganization of brain functioning aimed at compensating visual or hearing defects were revealed by estimating the electroencephalogram (EEG) dynamics and evoked potentials (EP).
      
The parameters of the comb filter were chosen from measurements of speech intelligibility in experienced subjects, at which no one subject with normal hearing taking part in the experiment for the first time exhibited 100% intelligibility.
      
The level of acoustic pressure (AP) at a comfortable loudness level and the phrase intelligibility after comb filtering of a speech signal were measured in normally hearing subjects.
      
Possible mechanisms of the changes in spatial hearing are discussed.
      
The temporal parameters of the perception of radially moving sound sources partly masked with broadband internalized noise at an intensity of 40, 46, or 52 dB above the hearing threshold have been studied.
      
A significant role of the epileptic lesion of the hippocampus (which is not an auditory structure) in the impairment of spatial hearing was demonstrated.
      
Organs of hearing and equilibrium during ontogenesis of mammals
      
The use of ecologomorphological approach made it possible to establish that specific structural features of the hearing organ in different mammals are determined by adaptation to specific acoustic properties of the environment.
      
It was shown that morphofunctional adaptations directed at optimization of acoustic sensitivity in different environmental conditions were leading in the hearing organ evolution.
      
The major signs of this disorder are severe anemia developed in the prenatal or early postnatal life, hepatosplenomegaly, and a progressive loss of sight and hearing.
      
The first subsystem is called passive hearing, and the second, active hearing.
      
 

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