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下丘神经元对时变双耳相位差的反应:虚拟运动轨迹移动的影响。

Responses of inferior colliculus neurons to time-varying interaural phase disparity: effects of shifting the locus of virtual motion.

作者信息

Spitzer M W, Semple M N

机构信息

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

出版信息

J Neurophysiol. 1993 Apr;69(4):1245-63. doi: 10.1152/jn.1993.69.4.1245.

Abstract
  1. Motion of sound sources results in temporal variation of the binaural cues for sound localization. We evaluated the influence of virtual motion on neural tuning to one of these cues, interaural phase disparity (IPD). Responses to dichotic stimuli were recorded from single units in the inferior colliculus of the anesthetized cat and gerbil (Meriones unguiculatus). Static IPDs were generated by presenting dichotic tone pairs with a constant phase offset maintained for the duration of the stimulus. Time-varying IPDs were generated by simultaneously presenting a pure tone to one ear and a phase-modulated tone to the other ear. Sets of time-varying stimuli consisted of modulations through partially overlapping ranges of IPD, corresponding to movement of a sound source through partially overlapping arcs in the horizontal plane. 2. In agreement with previous results, neuronal discharge was typically a peaked function of static IPD resulting from both binaural facilitation at favorable IPDs and binaural suppression at unfavorable IPDs. Responses to time-varying IPD stimuli appeared to be shaped by the same facilitative and inhibitory mechanisms that underlie static IPD tuning. Modulation toward the peak of binaural facilitation increased the probability of discharge, and modulation toward the peak of binaural suppression decreased the probability of discharge. However, it was also clear that IPD tuning could be significantly altered by the temporal context of the stimulus. For the vast majority of units in response to modulation through partially overlapping ranges of IPD the discharge rate profiles were generally nonoverlapping. This shift in IPD tuning induced by the virtual motion reflects the fact that the binaural interaction associated with a given IPD depends on the recent history of stimulation. In addition, modulation in opposite directions through the same range of IPDs often elicited asymmetric responses. These nonlinearities imply that most inferior colliculus neurons do not unambiguously encode a specific IPD, but instead may encode small changes of IPD occurring virtually anywhere within their receptive fields. In a few cases modulation through overlapping ranges of IPD elicited contiguous response profiles, indicating that for these units responses were determined entirely by instantaneous IPD. 3. The nonlinearity of responses to time-varying IPD stimuli could not be attributed to monaural entrainment to the phase-modulated signals, did not depend on the phase modulation waveform, and occurred irrespective of which ear received the phase-modulated signal. Responses were similar in cats and gerbils, suggesting that the underlying mechanisms are common to binaural processing in diverse mammalian species.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 声源的运动会导致用于声音定位的双耳线索随时间变化。我们评估了虚拟运动对其中一种线索——双耳相位差(IPD)的神经调谐的影响。在麻醉的猫和沙鼠(长爪沙鼠)的下丘中,从单个神经元记录对双耳刺激的反应。通过呈现双耳纯音对并在刺激持续时间内保持恒定的相位偏移来产生静态IPD。通过同时向一只耳朵呈现纯音而向另一只耳朵呈现相位调制音来产生随时间变化的IPD。随时间变化的刺激集由通过部分重叠的IPD范围进行调制组成,这对应于声源在水平面中通过部分重叠的弧线的移动。2. 与先前的结果一致,神经元放电通常是静态IPD的峰值函数,这是由有利IPD时的双耳易化和不利IPD时的双耳抑制导致的。对随时间变化的IPD刺激的反应似乎由与静态IPD调谐相同的易化和抑制机制所塑造。朝着双耳易化峰值的调制增加了放电概率,而朝着双耳抑制峰值的调制降低了放电概率。然而,很明显IPD调谐会因刺激的时间背景而显著改变。对于绝大多数对通过部分重叠的IPD范围进行调制作出反应的神经元,放电率分布通常不重叠。由虚拟运动引起的IPD调谐的这种变化反映了与给定IPD相关的双耳相互作用取决于最近的刺激历史这一事实。此外,通过相同范围的IPD在相反方向上的调制常常引发不对称反应。这些非线性意味着大多数下丘神经元并非明确地编码特定的IPD,而是可能编码在其感受野内几乎任何位置发生的IPD的微小变化。在少数情况下,通过重叠的IPD范围进行调制会引发连续的反应分布,表明对于这些神经元,反应完全由瞬时IPD决定。3. 对随时间变化的IPD刺激的反应的非线性不能归因于对相位调制信号的单耳夹带,不依赖于相位调制波形,并且无论哪只耳朵接收相位调制信号都会发生。猫和沙鼠的反应相似,表明潜在机制在不同哺乳动物物种的双耳处理中是共有的。(摘要截断于400字)

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