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本文引用的文献

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Using electrical noise to enhance the ability of humans to detect subthreshold mechanical cutaneous stimuli.利用电噪声增强人类检测阈下机械性皮肤刺激的能力。
Chaos. 1998 Sep;8(3):599-603. doi: 10.1063/1.166341.
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Stochastic resonance in biology. How noise can enhance detection of weak signals and help improve biological information processing.生物学中的随机共振。噪声如何增强对微弱信号的检测并有助于改善生物信息处理。
Chemphyschem. 2002 Mar 12;3(3):285-90. doi: 10.1002/1439-7641(20020315)3:3<285::AID-CPHC285>3.0.CO;2-A.
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Stochastic resonance in psychophysics and in animal behavior.心理物理学和动物行为中的随机共振。
Biol Cybern. 2002 Aug;87(2):91-101. doi: 10.1007/s00422-002-0328-z.
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Noise-induced compensation for postural hypotension in primary autonomic failure.原发性自主神经功能衰竭中噪声诱导的体位性低血压代偿
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Phase synchronization and stochastic resonance effects in the crayfish caudal photoreceptor.小龙虾尾端光感受器中的相位同步和随机共振效应。
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 May;65(5 Pt 1):050901. doi: 10.1103/PhysRevE.65.050901. Epub 2002 May 17.
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Noise-induced entrainment and stochastic resonance in human brain waves.噪声诱导的人脑电波夹带与随机共振
Phys Rev Lett. 2002 May 27;88(21):218101. doi: 10.1103/PhysRevLett.88.218101. Epub 2002 May 10.
7
Internal stochastic resonance in the coherence between spinal and cortical neuronal ensembles in the cat.猫脊髓与皮层神经元集群之间相干性中的内禀随机共振。
Neurosci Lett. 2002 Jun 28;326(2):93-6. doi: 10.1016/s0304-3940(02)00318-x.
8
Stochastic resonance in human electroencephalographic activity elicited by mechanical tactile stimuli.机械触觉刺激引发的人类脑电图活动中的随机共振。
Neurosci Lett. 2002 May 24;324(3):213-6. doi: 10.1016/s0304-3940(02)00212-4.
9
Enhancing tactile sensation in older adults with electrical noise stimulation.通过电噪声刺激增强老年人的触觉感受
Neuroreport. 2002 Apr 16;13(5):597-600. doi: 10.1097/00001756-200204160-00012.
10
Amplitude of somatosensory cortical evoked potentials is correlated with spontaneous activity of spinal neurones in the cat.体感皮层诱发电位的幅度与猫脊髓神经元的自发活动相关。
Neurosci Lett. 2002 May 3;323(3):187-90. doi: 10.1016/s0304-3940(02)00131-3.

体感系统中的随机共振:噪声对触觉刺激诱发的场电位的影响。

Stochastic resonance within the somatosensory system: effects of noise on evoked field potentials elicited by tactile stimuli.

作者信息

Manjarrez Elías, Rojas-Piloni Gerardo, Méndez Ignacio, Flores Amira

机构信息

Instituto de Fisiología, Benemérita Universidad Autónoma de Puebla, Puebla, Pue CP 72570, México.

出版信息

J Neurosci. 2003 Mar 15;23(6):1997-2001. doi: 10.1523/JNEUROSCI.23-06-01997.2003.

DOI:10.1523/JNEUROSCI.23-06-01997.2003
PMID:12657656
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6742011/
Abstract

Stochastic resonance (SR) is commonly understood to be the enhancement, by noise, of the response of a system to a weak input signal. The aim of this study was to demonstrate the occurrence of SR in spinal and cortical evoked field potentials (EFPs) elicited by periodic tactile stimuli in the anesthetized cat. The electrodes were positioned in spinal and cortical somatosensory regions in which the largest negative EFPs were detected. The periodic tactile stimuli consisted of local skin displacements on the central pad of the hindpaw. Two series of experiments were performed. First, periodic tactile stimuli and the noisy tactile stimuli were applied with the same indenter. Second, noisy tactile stimuli were applied with an additional indenter placed on the glabrous skin of the third hindpaw digit. This last protocol ensured that the signal and noise were mixed not in the skin but in the somatosensory regions of the CNS. All cats showed distinct SR behavior at the spinal and cortical stages of the sensory encoding. Such SR was abolished in the cortical but not in the spinal recording after sectioning of the dorsal columns and the ipsilateral dorsolateral funiculus. This suggests that the spinal neurons may also contribute to the SR observed at the cortical level. To the best of our knowledge, this is the first documented evidence that such a remarkable phenomenon embodies electrical processes of the spinocortical somatosensory system itself.

摘要

随机共振(SR)通常被理解为噪声增强系统对弱输入信号的响应。本研究的目的是证明在麻醉猫中,周期性触觉刺激诱发的脊髓和皮质诱发电位(EFP)中存在随机共振。电极放置在脊髓和皮质体感区域,在这些区域检测到最大的负向EFP。周期性触觉刺激包括后爪中央肉垫上的局部皮肤位移。进行了两个系列的实验。首先,使用相同的压头施加周期性触觉刺激和有噪声的触觉刺激。其次,使用放置在后爪第三趾无毛皮肤上的额外压头施加有噪声的触觉刺激。最后这个方案确保信号和噪声不是在皮肤中而是在中枢神经系统的体感区域混合。所有猫在感觉编码的脊髓和皮质阶段都表现出明显的随机共振行为。在切断背柱和同侧背外侧索后,皮质记录中的这种随机共振被消除,但脊髓记录中的没有被消除。这表明脊髓神经元也可能对在皮质水平观察到的随机共振有贡献。据我们所知,这是首次有文献证明这种显著现象体现了脊髓皮质体感系统本身的电过程。