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Responses of Auditory Cortex to Complex Stimuli: Functional Organization Revealed Using Intrinsic Optical Signals

机译:听觉皮层对复杂刺激的反应:使用内在光信号揭示的功能组织

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摘要

We used optical imaging of intrinsic signals to study the large-scale organization of ferret auditory cortex in response to complex sounds. Cortical responses were collected during continuous stimulation by sequences of sounds with varying frequency, period, or interaural level differences. We used a set of stimuli that differ in spectral structure, but have the same periodicity and therefore evoke the same pitch percept (click trains, sinusoidally amplitude modulated tones, and iterated ripple noise). These stimuli failed to reveal a consistent periodotopic map across the auditory fields imaged. Rather, gradients of period sensitivity differed for the different types of periodic stimuli. Binaural interactions were studied both with single contralateral, ipsilateral, and diotic broadband noise bursts and with sequences of broadband noise bursts with varying level presented contralaterally, ipsilaterally, or in opposite phase to both ears. Contralateral responses were generally largest and ipsilateral responses were smallest when using single noise bursts, but the extent of the activated area was large and comparable in all three aural configurations. Modulating the amplitude in counter phase to the two ears generally produced weaker modulation of the optical signals than the modulation produced by the monaural stimuli. These results suggest that binaural interactions seen in cortex are most likely predominantly due to subcortical processing. Thus our optical imaging data do not support the theory that the primary or nonprimary cortical fields imaged are topographically organized to form consistent maps of systematically varying sensitivity either to stimulus pitch or to simple binaural properties of the acoustic stimuli.
机译:我们使用内在信号的光学成像来研究雪貂听觉皮层响应复杂声音的大规模组织。在连续刺激期间,通过具有不同频率、周期或耳间水平差异的声音序列收集皮层反应。我们使用了一组频谱结构不同但具有相同周期性的刺激,因此会引起相同的音高感知(点击序列、正弦幅度调制音调和迭代涟漪噪声)。这些刺激未能在成像的听觉视野中揭示一致的周期图。相反,不同类型的周期性刺激的周期敏感性梯度不同。研究了双耳相互作用,包括单个对侧、同侧和双侧宽频噪声爆发,以及对侧、同侧或双耳相反相位呈现的不同水平的宽带噪声爆发序列。当使用单个噪声爆发时,对侧反应通常最大,同侧反应最小,但激活区域的范围很大,并且在所有三种听觉配置中都具有可比性。与两只耳朵的反相调制幅度通常比单耳刺激产生的调制产生弱的光信号调制。这些结果表明,在皮层中看到的双耳相互作用很可能主要是由于皮层下处理。因此,我们的光学成像数据不支持以下理论:成像的初级或非初级皮层场在地形上组织起来,以形成对刺激音高或声学刺激的简单双耳特性的系统变化敏感性的一致映射。

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