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本文引用的文献

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Modulatory influences on time-coding neurons in the ventral cochlear nucleus.调节性影响对腹侧耳蜗核时间编码神经元的影响。
Hear Res. 2019 Dec;384:107824. doi: 10.1016/j.heares.2019.107824. Epub 2019 Oct 17.
2
Cochlear impulse responses resolved into sets of gammatones: the case for beating of closely spaced local resonances.耳蜗冲动反应分解为一组组伽马通:紧密间隔的局部共振的拍频情况。
PeerJ. 2018 Nov 27;6:e6016. doi: 10.7717/peerj.6016. eCollection 2018.
3
Temporal information in tones, broadband noise, and natural vocalizations is conveyed by differential spiking responses in the superior paraolivary nucleus.在超外侧橄榄核中,音调、宽带噪声和自然语音中的时间信息是通过差分放电反应来传递的。
Eur J Neurosci. 2018 Aug;48(4):2030-2049. doi: 10.1111/ejn.14073. Epub 2018 Aug 16.
4
Voice Onset Time (VOT) at 50: Theoretical and practical issues in measuring voicing distinctions.50毫秒时的嗓音起始时间(VOT):测量嗓音差异的理论与实践问题
J Phon. 2017 Jul;63:75-86. doi: 10.1016/j.wocn.2017.05.002. Epub 2017 May 23.
5
Cellular Computations Underlying Detection of Gaps in Sounds and Lateralizing Sound Sources.声音间隙检测和声音源定位背后的细胞计算
Trends Neurosci. 2017 Oct;40(10):613-624. doi: 10.1016/j.tins.2017.08.001. Epub 2017 Aug 31.
6
Octopus Cells in the Posteroventral Cochlear Nucleus Provide the Main Excitatory Input to the Superior Paraolivary Nucleus.后耳蜗核八腕鱼细胞为上橄榄旁核提供主要兴奋性输入。
Front Neural Circuits. 2017 May 31;11:37. doi: 10.3389/fncir.2017.00037. eCollection 2017.
7
Skipped-stimulus approach reveals that short-term plasticity dominates synaptic strength during ongoing activity.跳过刺激法表明,在持续活动期间,短期可塑性主导突触强度。
J Neurosci. 2015 May 27;35(21):8297-307. doi: 10.1523/JNEUROSCI.4299-14.2015.
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Large somatic synapses on neurons in the ventral lateral lemniscus work in pairs.腹外侧索神经元上的大型躯体突触成对工作。
J Neurosci. 2014 Feb 26;34(9):3237-46. doi: 10.1523/JNEUROSCI.3664-13.2014.
9
Temporal properties of responses to sound in the ventral nucleus of the lateral lemniscus.外侧丘系腹核中对声音反应的时间特性。
J Neurophysiol. 2014 Feb;111(4):817-35. doi: 10.1152/jn.00971.2011. Epub 2013 Nov 27.
10
Enhancement and distortion in the temporal representation of sounds in the ventral cochlear nucleus of chinchillas and cats.在南美栗鼠和猫的耳蜗腹核中,声音的时间表示的增强和失真。
PLoS One. 2012;7(9):e44286. doi: 10.1371/journal.pone.0044286. Epub 2012 Sep 18.

猫听觉脑干起始神经元的信息处理。

Information Processing by Onset Neurons in the Cat Auditory Brainstem.

机构信息

Instituto de Investigación en Discapacidades Neurológicas (IDINE), Universidad de Castilla-La Mancha, 02006, Albacete, Spain.

Department of Neuroscience, University of Wisconsin, Madison, WI, 53705, USA.

出版信息

J Assoc Res Otolaryngol. 2020 Jun;21(3):201-224. doi: 10.1007/s10162-020-00757-0. Epub 2020 May 26.

DOI:10.1007/s10162-020-00757-0
PMID:32458083
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7392981/
Abstract

Octopus cells in the ventral cochlear nucleus (VCN) have been difficult to study because of the very features that distinguish them from other VCN neurons. We performed in vivo recordings in cats on well-isolated units, some of which were intracellularly labeled and histologically reconstructed. We found that responses to low-frequency tones with frequencies < 1 kHz reveal higher levels of neural synchrony and entrainment to the stimulus than the auditory nerve. In responses to higher frequency tones, the neural discharges occur mostly near the stimulus onset. These neurons also respond in a unique way to 100 % amplitude-modulated (AM) tones with discharges exhibiting a bandpass tuning. Responses to frequency-modulated sounds (FM) are unusual: Octopus cells react more vigorously during the ascending than the descending parts of the FM stimulus. We examined responses of neurons in the ventral nucleus of the lateral lemniscus (VNLL) whose discharges to tones and AM sounds are similar to octopus cells. Repeated stimulation with short tone pips of VCN and VNLL onset neurons evokes trains of action potentials with gradual shifts toward later times in their first spike latency. This behavior parallels short-term post-synaptic depression observed by other authors in in vitro VCN recordings of octopus cells. VCN and VNLL onset units in cats respond to frozen noise stimuli with gaps as narrow as 1 ms with a robust discharge near the stimulus onset following the gap. This finding suggests that VCN and VNLL onset cells play a role in gap detection, which is of great importance to speech perception.

摘要

腹侧耳蜗核(VCN)中的章鱼细胞由于其与其他 VCN 神经元区分开来的特征而难以研究。我们在猫身上进行了活体记录,对一些被隔离的细胞进行了记录,其中一些细胞被进行了细胞内标记和组织学重建。我们发现,对频率低于 1 kHz 的低频音调的反应比听神经表现出更高水平的神经同步和对刺激的同步。对高频音调的反应,神经放电大多发生在刺激开始附近。这些神经元对 100%幅度调制(AM)音调的反应也很独特,其放电表现出带通调谐。对调频声音(FM)的反应是不寻常的:章鱼细胞在 FM 刺激的上升部分比下降部分反应更强烈。我们检查了外侧丘系腹核(VNLL)神经元的反应,其对音调的反应和 AM 声音与章鱼细胞相似。用短的 VCN 和 VNLL 起始神经元的音调脉冲重复刺激会引发动作电位的串,其第一个动作电位潜伏期逐渐向后延迟。这种行为与其他作者在体外 VCN 记录的章鱼细胞中观察到的短期突触后抑制相似。猫的 VCN 和 VNLL 起始单元对冻结噪声刺激的反应与间隙为 1 ms 的刺激一样强烈,在间隙后靠近刺激开始处有强烈的放电。这一发现表明 VCN 和 VNLL 起始细胞在间隙检测中发挥作用,这对语音感知非常重要。