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大鼠梯形体内侧核和上橄榄旁核中听觉刺激时间特征的编码

Encoding of temporal features of auditory stimuli in the medial nucleus of the trapezoid body and superior paraolivary nucleus of the rat.

作者信息

Kadner A, Berrebi A S

机构信息

Department of Otolaryngology-Head and Neck Surgery, and the Sensory Neuroscience Research Center, Health Sciences Center, West Virginia University School of Medicine, PO Box 9303, Morgantown, WV 26506, USA.

出版信息

Neuroscience. 2008 Feb 6;151(3):868-87. doi: 10.1016/j.neuroscience.2007.11.008. Epub 2007 Nov 17.

Abstract

Neurons in the superior paraolivary nucleus (SPON) of the rat respond to the offset of pure tones with a brief burst of spikes. Medial nucleus of the trapezoid body (MNTB) neurons, which inhibit the SPON, produce a sustained pure tone response followed by an offset response characterized by a period of suppressed spontaneous activity. This MNTB offset response is duration dependent and critical to the formation of SPON offset spikes [Kadner A, Kulesza RJ Jr, Berrebi AS (2006) Neurons in the medial nucleus of the trapezoid body and superior paraolivary nucleus of the rat may play a role in sound duration coding. J Neurophysiol. 95:1499-1508; Kulesza RJ Jr, Kadner A, Berrebi AS (2007) Distinct roles for glycine and GABA in shaping the response properties of neurons in the superior paraolivary nucleus of the rat. J Neurophysiol 97:1610-1620]. Here we examine the temporal resolution of the rat's MNTB/SPON circuit by assessing its capability to i) detect gaps in tones, and ii) synchronize to sinusoidally amplitude modulated (SAM) tones. Gap detection was tested by presenting two identical pure tone markers interrupted by gaps ranging from 0 to 25 ms duration. SPON neurons responded to the offset of the leading marker even when the two markers were separated only by their ramps (i.e. a 0 ms gap); longer gap durations elicited progressively larger responses. MNTB neurons produced an offset response at gap durations of 2 ms or longer, with a subset of neurons responding to 0 ms gaps. SAM tone stimuli used the unit's characteristic frequency as a carrier, and modulation rates ranged from 40 to 1160 Hz. MNTB neurons synchronized to modulation rates up to approximately 1 kHz, whereas spiking of SPON neurons decreased sharply at modulation rates >or=400 Hz. Modulation transfer functions based on spike count were all-pass for MNTB neurons and low-pass for SPON neurons; the modulation transfer functions based on vector strength were low-pass for both nuclei, with a steeper cutoff for SPON neurons. Thus, the MNTB/SPON circuit encodes episodes of low stimulus energy, such as gaps in pure tones and troughs in amplitude modulated tones. The output of this circuit consists of brief SPON spiking episodes; their potential effects on the auditory midbrain and forebrain are discussed.

摘要

大鼠上橄榄旁核(SPON)中的神经元会以短暂的一串尖峰对纯音的结束做出反应。抑制SPON的梯形体内侧核(MNTB)神经元会产生持续的纯音反应,随后是一个以自发活动受抑制期为特征的结束反应。这种MNTB结束反应取决于持续时间,并且对SPON结束尖峰的形成至关重要[卡德纳A,库莱扎RJ Jr,贝雷比AS(2006年)大鼠梯形体内侧核和上橄榄旁核中的神经元可能在声音持续时间编码中起作用。《神经生理学杂志》。95:1499 - 1508;库莱扎RJ Jr,卡德纳A,贝雷比AS(2007年)甘氨酸和GABA在塑造大鼠上橄榄旁核神经元反应特性中的不同作用。《神经生理学杂志》97:1610 - 1620]。在这里,我们通过评估大鼠MNTB/SPON回路的以下能力来研究其时间分辨率:i)检测纯音中的间隙,以及ii)与正弦幅度调制(SAM)纯音同步。通过呈现两个由持续时间从0到25毫秒的间隙中断的相同纯音标记来测试间隙检测。即使两个标记仅由其斜坡分隔(即0毫秒间隙),SPON神经元也会对领先标记的结束做出反应;间隙持续时间越长,引发的反应越大。MNTB神经元在2毫秒或更长的间隙持续时间时产生结束反应,有一部分神经元对0毫秒间隙有反应。SAM纯音刺激使用该单元的特征频率作为载波,调制率范围为40至1160赫兹。MNTB神经元与高达约1千赫兹的调制率同步,而当调制率≥400赫兹时,SPON神经元的放电急剧减少。基于尖峰计数的调制传递函数对MNTB神经元是全通的,对SPON神经元是低通的;基于矢量强度的调制传递函数对两个核都是低通的,SPON神经元的截止更陡峭。因此,MNTB/SPON回路对低刺激能量的片段进行编码,例如纯音中的间隙和幅度调制纯音中的波谷。该回路的输出由短暂的SPON放电片段组成;讨论了它们对听觉中脑和前脑的潜在影响。

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