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沙鼠上橄榄核中对耳间相位差异敏感的神经元:多样的单耳和时间反应特性。

Neurons sensitive to interaural phase disparity in gerbil superior olive: diverse monaural and temporal response properties.

作者信息

Spitzer M W, Semple M N

机构信息

Department of Anatomy and Neurobiology, University of California, Irvine 92717, USA.

出版信息

J Neurophysiol. 1995 Apr;73(4):1668-90. doi: 10.1152/jn.1995.73.4.1668.

DOI:10.1152/jn.1995.73.4.1668
PMID:7643174
Abstract
  1. We assessed mechanisms of binaural interaction underlying detection of interaural phase disparity (IPD) by recording single-unit responses in the superior olivary complex (SOC) of the anesthetized gerbil (Meriones unguiculatus). Binaural responses were obtained from 58 IPD-sensitive single units, 44 of which were histologically localized. Monaural responses were also obtained for 52 of 58 IPD-sensitive units. Additionally, responses were recorded from 16 units (best frequency < 2.4 kHz) in lateral SOC that were excited by ipsilateral stimulation and inhibited by contralateral stimulation (EI), none of which was IPD sensitive. Our results are consistent with a mechanism of binaural interaction involving detection of coincident excitatory inputs from the two ears. There was no compelling evidence of binaural sensitivity arising from IPD-dependent interactions of phase-locked excitatory and inhibitory inputs from the two ears. Despite the uniformity of binaural interactions, considerable diversity of temporal and monaural response properties was observed. 2. Monaural and binaural responses of 35 of 58 IPD-sensitive units were phase locked to the period of low-frequency (< 2.5 kHz) tones. Most phase-locking units were bilaterally excitable and, consistent with the coincidence-detection model, their IPD selectivity could be predicted from the difference between the mean phases of the monaural responses. The remaining units (23 of 58) did not phase lock in response to monaural or binaural tones. Most non-phase-locking units failed to respond to monaural stimulation of one or both ears (monaurally unresponsive units). 3. Some IPD-sensitive units were inhibited by monaural stimulation of the ipsilateral ear or both ears. A few units responded only at the onset of monaural and binaural tones. Phase locking was present in responses of some, but not all, of these monaurally inhibited and onset units. 4. Most IPD-sensitive neurons were encountered at sites within or immediately adjacent to the cell column of the medial superior olive (MSO). IPD-sensitive units were also recorded in the lateral superior olive (LSO), in the superior paraolivary nucleus (SPN), and within a region forming a medial-dorsal cap around MSO. Bilaterally excitable unites were concentrated around MSO, but were also encountered in SPN, the medial-dorsal region, and LSO. Some monaurally unresponsive units were recorded in the vicinity of the MSO, but most were located in the medial-dorsal region. Monaurally inhibited units were localized to the medial border of the MSO cell column or to SPN. Onset units were localized to SPN and the medial-dorsal region. EI units were located exclusively in LSO.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们通过记录麻醉的沙土鼠(长爪沙鼠)上橄榄复合体(SOC)中的单神经元反应,评估了双耳相互作用在检测耳间相位差异(IPD)中的机制。从58个对IPD敏感的单神经元获得了双耳反应,其中44个在组织学上进行了定位。对58个对IPD敏感的神经元中的52个也获得了单耳反应。此外,从外侧SOC中的16个神经元(最佳频率<2.4 kHz)记录了反应,这些神经元由同侧刺激兴奋,由对侧刺激抑制(EI),其中没有一个对IPD敏感。我们的结果与一种双耳相互作用机制一致,该机制涉及检测来自两只耳朵的同步兴奋性输入。没有令人信服的证据表明双耳敏感性源于两只耳朵的锁相兴奋性和抑制性输入的IPD依赖性相互作用。尽管双耳相互作用具有一致性,但观察到时间和单耳反应特性存在相当大的差异。2. 58个对IPD敏感的神经元中的35个的单耳和双耳反应与低频(<2.5 kHz)音调的周期锁相。大多数锁相神经元双侧可兴奋,并且与符合检测模型一致,它们的IPD选择性可以从单耳反应的平均相位之间的差异预测。其余的神经元(58个中的23个)在对单耳或双耳音调的反应中不锁相。大多数非锁相神经元对一只或两只耳朵的单耳刺激没有反应(单耳无反应神经元)。3. 一些对IPD敏感的神经元被同侧耳朵或两只耳朵的单耳刺激抑制。少数神经元仅在单耳和双耳音调开始时做出反应。在这些单耳抑制和起始神经元的一些但不是全部反应中存在锁相。4. 大多数对IPD敏感的神经元出现在内侧上橄榄核(MSO)细胞柱内或紧邻其的部位。在外侧上橄榄核(LSO)、上橄榄旁核(SPN)以及围绕MSO形成内侧背帽的区域内也记录到了对IPD敏感的神经元。双侧可兴奋的神经元集中在MSO周围,但在SPN、内侧背侧区域和LSO中也有发现。在MSO附近记录到了一些单耳无反应神经元,但大多数位于内侧背侧区域。单耳抑制神经元定位于MSO细胞柱的内侧边界或SPN。起始神经元定位于SPN和内侧背侧区域。EI神经元仅位于LSO。(摘要截断于400字)

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