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Monaural and binaural contributions to interaural-level-difference sensitivity in human auditory cortex

机译:单声道和双声道对人类听觉皮层间听觉水平差异敏感性的贡献

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摘要

Whole-brain functional magnetic resonance imaging was used to measure blood-oxygenation-level-dependent (BOLD) responses in human auditory cortex (AC) to sounds with intensity varying independently in the left and right ears. Echoplanar images were acquired at 3 Tesla with sparse image acquisition once per 12-second block of sound stimulation. Combinations of binaural intensity and stimulus presentation rate were varied between blocks, and selected to allow measurement of response-intensity functions in three configurations: monaural 55–85 dB SPL, binaural 55–85 dB SPL with intensity equal in both ears, and binaural with average binaural level of 70 dB SPL and interaural level differences (ILD) ranging ±30 dB (i.e., favoring the left or right ear). Comparison of response functions equated for contralateral intensity revealed that BOLD-response magnitudes (1) generally increased with contralateral intensity, consistent with positive drive of the BOLD response by the contralateral ear, (2) were larger for contralateral monaural stimulation than for binaural stimulation, consistent with negative effects (e.g., inhibition) of ipsilateral input, which were strongest in the left hemisphere, and (3) also increased with ipsilateral intensity when contralateral input was weak, consistent with additional, positive, effects of ipsilateral stimulation. Hemispheric asymmetries in the spatial extent and overall magnitude of BOLD responses were generally consistent with previous studies demonstrating greater bilaterality of responses in the right hemisphere and stricter contralaterality in the left hemisphere. Finally, comparison of responses to fast (40/s) and slow (5/s) stimulus presentation rates revealed significant rate-dependent adaptation of the BOLD response that varied across ILD values.
机译:全脑功能磁共振成像用于测量人类听觉皮层(AC)中血液氧合水平依赖性(BOLD)对左,右耳中强度独立变化的声音的响应。回声平面图像是在3 Tesla处采集的,稀疏图像采集是每12秒声音刺激块一次。在各个块之间,双耳强度和刺激表现率的组合有所不同,并选择以三种方式测量响应强度函数:单耳55-85 dB SPL,双耳55-85 dB SPL(两只耳朵的强度均相等)和双耳平均双耳水平为70 dB SPL,耳间水平差异(ILD)为±30 dB(即偏爱左耳或右耳)。比较相当于对侧强度的响应函数,发现BOLD响应幅度(1)通常随对侧强度而增加,与对侧耳朵对BOLD响应的积极推动相一致,(2)对侧单耳刺激比双耳刺激大,与同侧输入的负面影响(例如抑制)一致,这在左半球最强;(3)当对侧输入较弱时,同侧输入强度也随着同侧强度的增加而增加,与同侧刺激的其他积极影响相一致。 BOLD反应的空间范围和总体大小的半球不对称现象与先前的研究一致,这表明右半球的反应具有更大的双边性,而左半球的对侧性更严格。最后,比较对快速(40 / s)和慢速(5 / s)刺激表现速率的响应,发现ILD值之间变化的BOLD响应具有明显的速率依赖性。

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