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沙鼠内侧上橄榄核中不连贯树突输入的体细胞整合。

Somatic Integration of Incoherent Dendritic Inputs in the Gerbil Medial Superior Olive.

机构信息

Department of Neuroscience, Erasmus MC, University Medical Center Rotterdam, Rotterdam, 3000 CA, The Netherlands.

Department of Neuroscience, Erasmus MC, University Medical Center Rotterdam, Rotterdam, 3000 CA, The Netherlands

出版信息

J Neurosci. 2023 May 31;43(22):4093-4109. doi: 10.1523/JNEUROSCI.2215-22.2023. Epub 2023 May 2.

Abstract

The medial superior olive (MSO) is a binaural nucleus that is specialized in detecting the relative arrival times of sounds at both ears. Excitatory inputs to its neurons originating from either ear are segregated to different dendrites. To study the integration of synaptic inputs both within and between dendrites, we made juxtacellular and whole-cell recordings from the MSO in anesthetized female gerbils, while presenting a "double zwuis" stimulus, in which each ear received its own set of tones, which were chosen in a way that all second-order distortion products (DP2s) could be uniquely identified. MSO neurons phase-locked to multiple tones within the multitone stimulus, and vector strength, a measure for spike phase-locking, generally depended linearly on the size of the average subthreshold response to a tone. Subthreshold responses to tones in one ear depended little on the presence of sound in the other ear, suggesting that inputs from different ears sum linearly without a substantial role for somatic inhibition. The "double zwuis" stimulus also evoked response components in the MSO neuron that were phase-locked to DP2s. Bidendritic subthreshold DP2s were quite rare compared with bidendritic suprathreshold DP2s. We observed that in a small subset of cells, the ability to trigger spikes differed substantially between both ears, which might be explained by a dendritic axonal origin. Some neurons that were driven monaurally by only one of the two ears nevertheless showed decent binaural tuning. We conclude that MSO neurons are remarkably good in finding binaural coincidences even among uncorrelated inputs. Neurons in the medial superior olive are essential for precisely localizing low-frequency sounds in the horizontal plane. From their soma, only two dendrites emerge, which are innervated by inputs originating from different ears. Using a new sound stimulus, we studied the integration of inputs both within and between these dendrites in unprecedented detail. We found evidence that inputs from different dendrites add linearly at the soma, but that small increases in somatic potentials could lead to large increases in the probability of generating a spike. This basic scheme allowed the MSO neurons to detect the relative arrival time of inputs at both dendrites remarkably efficient, although the relative size of these inputs could differ considerably.

摘要

中脑上橄榄复合体(MSO)是一个专门用于检测双耳声音相对到达时间的双侧核。源自任一耳的兴奋性输入被分离到不同的树突上。为了研究树突内和树突间突触输入的整合,我们在麻醉的雌性沙鼠中进行了细胞外记录和全细胞记录,同时呈现了一种“双 zwuis”刺激,其中每只耳朵接收到自己的一组音调,这些音调的选择方式使得所有二阶失真产物(DP2)都可以被唯一识别。MSO 神经元对多音刺激中的多个音调进行锁相,向量强度是一种用于测量尖峰锁相的度量,通常与对音调的亚阈值反应的平均大小呈线性相关。一只耳朵的音调的亚阈值反应很少依赖于另一只耳朵声音的存在,这表明来自不同耳朵的输入在线性相加,而没有体细胞抑制的重要作用。“双 zwuis”刺激还在 MSO 神经元中引发了与 DP2 锁相的反应成分。与双树突阈上 DP2 相比,双树突亚阈 DP2 相当罕见。我们观察到,在一小部分细胞中,两个耳朵触发尖峰的能力有很大的差异,这可能是由树突轴突起源解释的。一些只被两只耳朵中的一只耳驱动的神经元仍然表现出相当好的双耳调谐。我们的结论是,即使在不相关的输入中,MSO 神经元也非常善于寻找双耳巧合。中脑上橄榄复合体的神经元对于精确定位水平面上的低频声音至关重要。从中枢神经系统,只有两个树突出现,由来自不同耳朵的输入支配。使用新的声音刺激,我们以前所未有的细节研究了这些树突内和树突间输入的整合。我们发现证据表明,来自不同树突的输入在线性上在体上相加,但体部电位的微小增加可能导致产生尖峰的概率大幅增加。这个基本方案使 MSO 神经元能够非常有效地检测两个树突上输入的相对到达时间,尽管这些输入的相对大小可能有很大差异。

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