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首页> 外文期刊>BMC Neuroscience >The auditory cortex of the bat Phyllostomus discolor : Localization and organization of basic response properties
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The auditory cortex of the bat Phyllostomus discolor : Localization and organization of basic response properties

机译:蝙蝠Phyllostomus变色的听皮层:基本反应特性的定位和组织。

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Background The mammalian auditory cortex can be subdivided into various fields characterized by neurophysiological and neuroarchitectural properties and by connections with different nuclei of the thalamus. Besides the primary auditory cortex, echolocating bats have cortical fields for the processing of temporal and spectral features of the echolocation pulses. This paper reports on location, neuroarchitecture and basic functional organization of the auditory cortex of the microchiropteran bat Phyllostomus discolor (family: Phyllostomidae). Results The auditory cortical area of P. discolor is located at parieto-temporal portions of the neocortex. It covers a rostro-caudal range of about 4800 μm and a medio-lateral distance of about 7000 μm on the flattened cortical surface. The auditory cortices of ten adult P. discolor were electrophysiologically mapped in detail. Responses of 849 units (single neurons and neuronal clusters up to three neurons) to pure tone stimulation were recorded extracellularly. Cortical units were characterized and classified depending on their response properties such as best frequency, auditory threshold, first spike latency, response duration, width and shape of the frequency response area and binaural interactions. Based on neurophysiological and neuroanatomical criteria, the auditory cortex of P. discolor could be subdivided into anterior and posterior ventral fields and anterior and posterior dorsal fields. The representation of response properties within the different auditory cortical fields was analyzed in detail. The two ventral fields were distinguished by their tonotopic organization with opposing frequency gradients. The dorsal cortical fields were not tonotopically organized but contained neurons that were responsive to high frequencies only. Conclusion The auditory cortex of P. discolor resembles the auditory cortex of other phyllostomid bats in size and basic functional organization. The tonotopically organized posterior ventral field might represent the primary auditory cortex and the tonotopically organized anterior ventral field seems to be similar to the anterior auditory field of other mammals. As most energy of the echolocation pulse of P. discolor is contained in the high-frequency range, the non-tonotopically organized high-frequency dorsal region seems to be particularly important for echolocation.
机译:背景技术哺乳动物的听觉皮层可细分为以神经生理学和神经结构特性以及与丘脑不同核的连接为特征的各个领域。除了主要的听觉皮层,回声定位棒还具有皮质场,用于处理回声定位脉冲的时间和频谱特征。本文报道了微手足动物蝙蝠Phyllostomus discolor(家庭:Phyllostomidae)的听觉皮层的位置,神经结构和基本功能组织。结果褪色假单胞菌的听觉皮层区域位于新皮层的顶颞部分。它在平坦的皮层表面上覆盖了约4800μm的弓尾范围和约7000μm的中外侧距离。十个成年体育变色的听觉皮层被详细地电生理图。细胞外记录了849个单位(单个神经元和最多三个神经元的神经元簇)对纯音刺激的反应。根据皮质皮质的响应特性(例如最佳频率,听觉阈值,第一尖峰潜伏期,响应持续时间,频率响应区域的宽度和形状以及双耳相互作用)对皮质单元进行表征和分类。根据神经生理学和神经解剖学标准,变色假单胞菌的听觉皮层可细分为前腹侧和后腹侧以及背背侧和后侧。详细分析了不同听觉皮层视野内反应特性的表示。这两个腹腔的特点是它们的同位异形组织具有相反的频率梯度。背侧皮质视野不是局部组织的,而是包含仅对高频有反应的神经元。结论褪色假单胞菌的听觉皮层在大小和基本功能组织上类似于其他叶类蝙蝠的听觉皮层。局部有组织的后方腹侧视野可能代表了初级听觉皮层,而局部有组织的前部腹侧视野似乎与其他哺乳动物的前侧听觉区域相似。由于褪色假单胞菌的回声定位脉冲的大部分能量都包含在高频范围内,因此非超声组织的高频背侧区域对于回声定位显得尤为重要。

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