Indresano Andrew A, Frank Jonathan E, Middleton Pameia, Jaramillo Fernán
Department of Biology, Carleton College, Northfield, MN 55057-4025, USA.
J Assoc Res Otolaryngol. 2003 Sep;4(3):363-70. doi: 10.1007/s10162-002-3044-4.
Noise has been commonly thought to degrade the performance of sensory systems. However, it is now clear that the detection and transmission of weak signals in sensory systems can be enhanced by noise via stochastic resonance (SR). In hair cells, the quality of mechanoelectrical transduction is enhanced up to twofold by nanometer level mechanical noise acting on the hair bundle. We wanted to know whether these gains could be preserved, perhaps even enhanced, as information flows across hair cell synapses, and into the stream of action potentials that in the frog conveys acoustic information to the central nervous system. To approach this question, we studied the effects of noise on the signal-to-noise ratio (SNR) of the 8th nerve's response to small mechanical stimuli directly applied to the amphibian sacculus. We found that approximately 2.5 nm of mechanical noise enhanced the response of the saccular nerve up to fourfold, suggesting that the positive effects of low-amplitude mechanical noise result in improved transmission of acoustic information.
人们通常认为噪声会降低感觉系统的性能。然而,现在很清楚的是,感觉系统中弱信号的检测和传输可以通过随机共振(SR)被噪声增强。在毛细胞中,作用于毛束的纳米级机械噪声可将机电转换质量提高两倍。我们想知道,当信息流经毛细胞突触,并进入青蛙中把声学信息传递到中枢神经系统的动作电位流时,这些增益是否能够得以保留,甚至可能得到增强。为了解决这个问题,我们研究了噪声对第八神经对直接施加于两栖类球囊的小机械刺激反应的信噪比(SNR)的影响。我们发现,约2.5纳米的机械噪声可将球囊神经的反应增强四倍,这表明低振幅机械噪声的积极作用可改善声学信息的传递。