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Organization of auditory areas in the superior temporal gyrus of marmoset monkeys revealed by real-time optical imaging

机译:通过实时光学成像揭示了Marmoset猴子的高级时间回忆中的听觉区域的组织

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The prevailing model of the primate auditory cortex proposes a core-belt-parabelt structure. The model proposes three auditory areas in the lateral belt region; however, it may contain more, as this region has been mapped only at a limited spatial resolution. To explore this possibility, we examined the auditory areas in the lateral belt region of the marmoset using a high-resolution optical imaging technique. Based on responses to pure tones, we identified multiple areas in the superior temporal gyrus. The three areas in the core region, the primary area (A1), the rostral area (R), and the rostrotemporal area, were readily identified from their frequency gradients and positions immediately ventral to the lateral sulcus. Three belt areas were identified with frequency gradients and relative positions to A1 and R that were in agreement with previous studies: the caudolateral area, the middle lateral area, and the anterolateral area (AL). Situated between R and AL, however, we identified two additional areas. The first was located caudoventral to R with a frequency gradient in the ventrocaudal direction, which we named the medial anterolateral (MAL) area. The second was a small area with no obvious tonotopy (NT), positioned between the MAL and AL areas. Both the MAL and NT areas responded to a wide range of frequencies (at least 2-24 kHz). Our results suggest that the belt region caudoventral to R is more complex than previously proposed, and we thus call for a refinement of the current primate auditory cortex model.
机译:灵长类动物听觉皮层的普遍模型提出了一种核心皮带剖宫制结构。该模型提出了侧带区域的三个听觉区域;然而,它可以包含更多,因为该区域仅被映射到有限的空间分辨率。为了探索这种可能性,我们使用高分辨率光学成像技术检查了Marmoset的侧带区域中的听觉区域。基于对纯音调的反应,我们确定了较好的颞克鲁斯的多个区域。核心区域中的三个区域,主要区域(A1),振动区域(R)和rostrotemporal区域被容易地从其频率梯度识别,并且立即将腹侧腹部延伸到横向沟槽。用频率梯度和相对位置鉴定了三个皮带区域,与先前的研究一致的A1和R:剖位区域,中间面积和前外侧区域(Al)。然而,在R和A1之间,我们确定了两个其他地区。第一个位于剖腹产梯度的剖腹产方向,我们将内侧前部(MAL)区域命名。第二个是一个没有明显的调节(NT)的小区域,位于Mal和Al地区之间。 MAL和NT区域都响应了广泛的频率(至少2-24 kHz)。我们的研究结果表明,皮带区至R的剖腹产比以前提出的更复杂,因此我们要求改进当前的灵长类动物听觉皮质模型。

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