Mukhin V V
Med Tr Prom Ekol. 1997(1):30-3.
The authors suggest that information component of acoustic impact, leading to physiologic changes, should be considered through regulation of entropy in occupational acoustic environment when being an information source. Studies of hearing and some vegetative functions before and after a noise lasting for hour proved that with the current levels (60-80 dB A) and entropy (1.25-2.85 byte/symbol) higher energy of the stimulus is balanced by its lower information load.
作者建议,当作为一种信息源时,导致生理变化的声学冲击的信息成分应通过调节职业声学环境中的熵来加以考虑。对持续一小时的噪声前后听力及一些植物性功能的研究证明,在当前水平(60 - 80 dB A)和熵(1.25 - 2.85字节/符号)下,刺激的较高能量被其较低的信息负荷所平衡。