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Titlebook: Basic and Applied Aspects of Noise-Induced Hearing Loss; Richard J. Salvi,D. Henderson,V. Colletti Book 1986 Springer Science+Business Med

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期刊全称Basic and Applied Aspects of Noise-Induced Hearing Loss
影响因子2023Richard J. Salvi,D. Henderson,V. Colletti
视频videohttp://file.papertrans.cn/182/181200/181200.mp4
学科分类NATO Science Series A:
图书封面Titlebook: Basic and Applied Aspects of Noise-Induced Hearing Loss;  Richard J. Salvi,D. Henderson,V. Colletti Book 1986 Springer Science+Business Med
影响因子In September 1985, NATO sponsored an Advanced Study WOl‘kshop entitled, "Noise-Induced Hearing Loss: Basic and Applied Aspects." Tne meeting was held in a mountain retreat near Lucca, Italy and was attended by scientists, clinicians, and public officials from 12 countries. This was the third in a series of such conferences organized by the authors. The first two were supported by the United States National Institute of Occupational Safety and Health; their proceedings were published as "The Effects of Noise on Hearing" in 1976 and "New Perspectives on Noise-Induced Hearing Loss" in 1982. The Organizing Committee approached NATO because it was felt that the problem of noise was common to all industrialized countries and was an especially serious problem for the military. Thus, the NATO sponsorship and the Italian site of the meeting were part of the Organizing Committee‘s plan to obtain an international and thorough repr‘esentation on the problem of noise-induced hearing loss. The NATO meeting and proceedings followed the format of the previous two symposia with an initial focus on the anatomical and physiological disturbances resulting from noise-induced hearing loss. This was foll
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The Response of Mammalian Cochlear Hair Cells to Acoustic Overstimulations in a series of experiments by recording directly from the IHCs and OHCs during conditions of acoustic overstimulation. The results suggest that functional differences in the behavior of these two cell groups to overstimulation may underlie the cellular basis for NIHL. These cellular changes probab
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Psychophysical and Physiological Aspects of Auditory Temporal Processing in Listeners with Noise-Indlowing noise-exposure. Intense noise exposures are known to result in the loss of tuning in the basilar membrane vibration pattern (see Patuzzi this volume) and the frequency response areas of hair cell and single auditory nerve fibers (see Cody and Russell and Liberman et al. this volume). The chan
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Adjustments in Coronary Blood Flow with Noise Stimulationonfirmed causes of miocardial ischemia. Other associated factors are sedentary occupations and psychological or environmental stress. In spite of the large number of risk factors, it may be noted that noise is not included. This may be due to the lack of attention given to the problem or to the negl
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Noise History, Audiometric Profile, and Acoustic Reflex Responsivityion and thus the reflex is practically inactive for most of the exposure time [7–11]. Most of these conclusions had been derived from studies that had utilized simple acoustic stimuli (continuous pure tones and noise) and experimental laboratory conditions (low levels of background noise), which dif
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High Performance Through Process Excellencel mechanical origin, including rupture of the basilar membrane and Reissners membrane. Spoendlin suggested intensities of around 125 dB SPL as the threshold for mechanically-induced lesions as opposed to metabolically-induced damage. However, the dependance of this rms sound pressure on the exposure
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Innovation: An Important Goal of MPE,lowing noise-exposure. Intense noise exposures are known to result in the loss of tuning in the basilar membrane vibration pattern (see Patuzzi this volume) and the frequency response areas of hair cell and single auditory nerve fibers (see Cody and Russell and Liberman et al. this volume). The chan
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Basic Formation on Wavelet Transforms,ion and thus the reflex is practically inactive for most of the exposure time [7–11]. Most of these conclusions had been derived from studies that had utilized simple acoustic stimuli (continuous pure tones and noise) and experimental laboratory conditions (low levels of background noise), which dif
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