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耳塞对猫初级听觉皮层单神经元方位敏感性的影响。I. 单耳方向线索的证据。

Effects of ear plugging on single-unit azimuth sensitivity in cat primary auditory cortex. I. Evidence for monaural directional cues.

作者信息

Samson F K, Clarey J C, Barone P, Imig T J

机构信息

Department of Physiology, Kansas University Medical Center, Kansas City 66160-7401.

出版信息

J Neurophysiol. 1993 Aug;70(2):492-511. doi: 10.1152/jn.1993.70.2.492.

DOI:10.1152/jn.1993.70.2.492
PMID:8410151
Abstract
  1. Single-unit recordings were carried out in primary auditory cortex (AI) of barbiturate-anesthetized cats. Neurons, sensitive to sound direction in the horizontal plane (azimuth), were identified by their responses to noise bursts, presented in the free field, that varied in azimuth and sound pressure level (SPL). SPLs typically varied between 0 and 80 dB and were presented at each azimuth that was tested. Each azimuth-sensitive neuron responded well to some SPLs at certain azimuths and did not respond well to any SPL at other azimuths. This report describes AI neurons that were sensitive to the azimuth of monaurally presented noise bursts. 2. Unilateral ear plugging was used to test each azimuth-sensitive neuron's response to monaural stimulation. Ear plugs, produced by injecting a plastic ear mold compound into the concha and ear canal, attenuated sound reaching the tympanic membrane by 25-70 dB. Binaural interactions were inferred by comparing responses obtained under binaural (no plug) and monaural (ear plug) conditions. 3. Of the total sample of 131 azimuth-sensitive cells whose responses to ear plugging were studied, 27 were sensitive to the azimuth of monaurally presented noise bursts. We refer to these as monaural directional (MD) cells, and this report describes their properties. The remainder of the sample consisted of cells that either required binaural stimulation for azimuth sensitivity (63/131), because they were insensitive to azimuth under unilateral ear plug conditions or responded too unreliably to permit detailed conclusions regarding the effect of ear plugging (41/131). 4. Most (25/27) MD cells received either monaural input (MD-E0) or binaural excitatory/inhibitory input (MD-EI), as inferred from ear plugging. Two MD cells showed other characteristics. The contralateral ear was excitatory for 25/27 MD cells. 5. MD-E0 cells (22%, 6/27) were monaural. They were unaffected by unilateral ear plugging, showing that they received excitatory input from one ear, and that stimulation of the other ear was without apparent effect. On the other hand, some monaural cells in AI were insensitive to the azimuth of noise bursts, showing that sensitivity to monaural directional cues is not a property of all monaural cells in AI. 6. MD-EI cells (70%, 19/27) exhibited an increase in responsiveness on the side of the plugged ear, showing that they received excitatory drive from one ear and inhibitory drive from the other. MD-EI cells remained azimuth sensitive with the inhibitory ear plugged, showing that they were sensitive to monaural directional cues at the excitatory ear.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在巴比妥麻醉的猫的初级听觉皮层(AI)中进行单神经元记录。通过对自由场中呈现的噪声脉冲的反应来识别对水平面(方位角)声音方向敏感的神经元,这些噪声脉冲在方位角和声压级(SPL)上有所变化。声压级通常在0至80分贝之间变化,并在每个测试的方位角呈现。每个方位角敏感神经元在某些方位角对某些声压级反应良好,而在其他方位角对任何声压级都反应不佳。本报告描述了对单耳呈现的噪声脉冲方位角敏感的AI神经元。2. 使用单侧耳塞来测试每个方位角敏感神经元对单耳刺激的反应。通过将塑料耳模化合物注入耳甲和耳道制成的耳塞,使到达鼓膜的声音衰减25 - 70分贝。通过比较在双耳(无耳塞)和单耳(有耳塞)条件下获得的反应来推断双耳相互作用。3. 在研究了对耳塞反应的131个方位角敏感细胞的总样本中,27个对单耳呈现的噪声脉冲方位角敏感。我们将这些称为单耳定向(MD)细胞,本报告描述了它们的特性。样本的其余部分由以下细胞组成:要么需要双耳刺激才能具有方位角敏感性(63/131),因为它们在单侧耳塞条件下对方位角不敏感,要么反应过于不可靠,无法就耳塞的影响得出详细结论(41/131)。4. 从耳塞实验推断,大多数(25/27)MD细胞接受单耳输入(MD-E0)或双耳兴奋/抑制输入(MD-EI)。两个MD细胞表现出其他特征。对25/27个MD细胞来说,对侧耳是兴奋性的。5. MD-E0细胞(22%,6/27)是单耳的。它们不受单侧耳塞的影响,表明它们从一只耳朵接受兴奋性输入,而另一只耳朵的刺激没有明显效果。另一方面,AI中的一些单耳细胞对噪声脉冲的方位角不敏感,表明对单耳定向线索的敏感性并非AI中所有单耳细胞的特性。6. MD-EI细胞(70%,19/27)在耳塞侧的反应性增加,表明它们从一只耳朵接受兴奋性驱动,从另一只耳朵接受抑制性驱动。MD-EI细胞在抑制性耳朵被堵塞时仍保持方位角敏感性,表明它们对兴奋性耳朵的单耳定向线索敏感。(摘要截断于400字)

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